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	<title>Böhler, David M. Sc. Archives - Additive Manufacturing in Construction (AMC) TRR277</title>
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		<title>Project A 04</title>
		<link>https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/</link>
		
		<dc:creator><![CDATA[Erasmus Stillner]]></dc:creator>
		<pubDate>Fri, 19 Nov 2021 15:20:59 +0000</pubDate>
				<category><![CDATA[2 spalten]]></category>
		<guid isPermaLink="false">http://amc-trr277.de/?post_type=projects&#038;p=3414</guid>

					<description><![CDATA[<p>The post <a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<div class="view-single-area thumbnail-dr-ing-abtin-baghdadi, m-sc-david-bohler, m-sc-martin-david, prof-dr-ing-klaus-droeder, m-sc-robin-doerrie, b-sc-daniel-fernandez-barba, m-sc-niklas-freund, m-sc-felix-gabriel, b-sc-gabriela-kienbaum, prof-dr-ing-harald-kloft, prof-dr-ing-dirk-lowke, m-sc-manuel-megnet, b-sc-annahita-meshkini, m-sc-anna-marie-opolka, jennifer-rudolph, christian-wacker"><div class="project-icon"><p><img fetchpriority="high" decoding="async" src="https://amc-trr277.de/wp-content/uploads/2021/11/A04_Icon-2022-png-500px.png" alt="" width="500" height="500" /></p>
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<a href='https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-scaled.jpg' title="" data-rl_title="" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="900" height="600" src="https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-900x600.jpg" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-900x600.jpg 900w, https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-1500x1000.jpg 1500w, https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-768x512.jpg 768w, https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-1536x1024.jpg 1536w, https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-2048x1365.jpg 2048w, https://amc-trr277.de/wp-content/uploads/2021/11/XO8A0012-1320x880.jpg 1320w" sizes="auto, (max-width: 900px) 100vw, 900px" /></a>
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<a href='https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-scaled.jpg' title="" data-rl_title="" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="900" height="600" src="https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-900x600.jpg" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-900x600.jpg 900w, https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-1500x1000.jpg 1500w, https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-768x512.jpg 768w, https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-1536x1025.jpg 1536w, https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-2048x1366.jpg 2048w, https://amc-trr277.de/wp-content/uploads/2021/11/044A5189-1320x880.jpg 1320w" sizes="auto, (max-width: 900px) 100vw, 900px" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-scaled.jpg' title="" data-rl_title="" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="900" height="675" src="https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-900x675.jpg" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-900x675.jpg 900w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-1500x1125.jpg 1500w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-768x576.jpg 768w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-1536x1152.jpg 1536w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-2048x1536.jpg 2048w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20240822_132645-1320x990.jpg 1320w" sizes="auto, (max-width: 900px) 100vw, 900px" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-scaled.jpg' title="" data-rl_title="" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="675" height="900" src="https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-675x900.jpg" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-675x900.jpg 675w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-1125x1500.jpg 1125w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-768x1024.jpg 768w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-1152x1536.jpg 1152w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-1536x2048.jpg 1536w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-1320x1760.jpg 1320w, https://amc-trr277.de/wp-content/uploads/2021/11/IMG_20230413_170908-scaled.jpg 1920w" sizes="auto, (max-width: 675px) 100vw, 675px" /></a>

<h3>Networking with other projects</h3>
<p><a href="https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023.png" data-rel="lightbox-image-bGlnaHRib3gtaW1hZ2UtNQ==" data-rl_title="" data-rl_caption="" data-rl_title="" data-rl_caption="" title=""><img loading="lazy" decoding="async" class="alignnone size-medium wp-image-7459" src="https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-1500x294.png" alt="" width="1500" height="294" srcset="https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-1500x294.png 1500w, https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-900x176.png 900w, https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-768x150.png 768w, https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-1536x301.png 1536w, https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-2048x401.png 2048w, https://amc-trr277.de/wp-content/uploads/2024/09/A04_TRR277-Icons_Vernetzungen_2023-1320x258.png 1320w" sizes="auto, (max-width: 1500px) 100vw, 1500px" /></a></p>
<h3>Poster</h3>
<a href="https://amc-trr277.de/wp-content/uploads/2024/09/TRR277_A04_Poster_1-DFG-Begutachtung.pdf" class="pdfemb-viewer" style="" data-width="max" data-height="max" data-mobile-width="0"  data-scrollbar="none" data-download="on" data-tracking="on" data-newwindow="on" data-pagetextbox="off" data-scrolltotop="off" data-startzoom="100" data-startfpzoom="100" data-toolbar="bottom" data-toolbar-fixed="on">TRR277_A04_Poster_1-DFG-Begutachtung<br/></a>
<a href="https://amc-trr277.de/wp-content/uploads/2024/09/TRR277_A04_Poster_2-DFG-Begutachtung.pdf" class="pdfemb-viewer" style="" data-width="max" data-height="max" data-mobile-width="0"  data-scrollbar="none" data-download="on" data-tracking="on" data-newwindow="on" data-pagetextbox="off" data-scrolltotop="off" data-startzoom="100" data-startfpzoom="100" data-toolbar="bottom" data-toolbar-fixed="on">TRR277_A04_Poster_2-DFG-Begutachtung<br/></a>
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<div id="two" class="c2">
<div class="project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
</div>
<p><span lang="EN-GB">The project aims to fundamentally understand the Shotcrete 3D Printing (SC3DP) technology to manufacture sustainable, multi-objective optimised, reinforced concrete components with precise surface quality and improved building physics via functional integration. It seeks to minimise the carbon footprint of 3D printed structures by exploring various material strategies, such as reducing cement content by increasing the aggregate size or replacing cement with a different binder and design methods to optimise the usage of concrete in order to decrease the overall concrete volume used. Additionally, it focuses on establishing a reliable material and process control, emphasising fresh material laws for printability and durability, real-time monitoring of concrete properties, and component build-up strategies.</span></p>
<h3>Objective</h3>
<ul>
<li>Increase sustainability of printed materials and structures</li>
<li>Investigate material properties and process interactions</li>
<li>Investigation of the durability behaviour and development of new assessment methods for the durability of 3D printed concrete</li>
<li>Develop new reinforcement processes</li>
<li>Explore novel surface designs &amp; surface qualities</li>
<li>Expand to on-site SC3DP</li>
</ul>
<h3>Methods</h3>
<ul>
<li>Evolutionary algorithms for force-flow-based designs and reinforcement layouts</li>
<li>Adaptive control algorithms for process and material monitoring</li>
<li>Experimental studies on fresh-state mechanics and rheology</li>
<li>Durability testing of printed materials</li>
<li>Combined reinforcement strategies evaluation, considering design and bond behaviour</li>
<li>End effectors development for automated reinforcement and free-form surface processing</li>
</ul>
<h3>Networking with other projects</h3>
<p>The A04 Project is linked to many other projects on three different Layers. Firstly, the process of SC3DP serves especially the C-Projects as basis for their research as A04 provides test-specimens and data of 3D-printed concrete e.g. for milling connections in C05. Secondly, A04 cooperates with B03 and B04 to monitor the process and its parameters to make it more stable and develop simulations of the process. Lastly, the A-Projects themselves exchange process parameters and techniques for reinforcement integration methods for e.g. post processing of concrete or end effector designs.</p>

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<div id="three" class="c3 ts-fixed"><div id="wp_views-2" class="widget widget_wp_views clearfix"><h3 class="widget-title">Project leaders</h3>

 
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		<a class="person-modal" href="#modal-container-prof-dr-ing-klaus-droeder" data-lity="">Prof. Dr.-Ing. Klaus Dröder</a> 
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   <h2 class="modal-person-name modal-project-leader"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-klaus-droeder/">Dröder, Klaus Prof. Dr.-Ing.</a></h2>
<p>advises the scientific staff in continuous consideration of the defined research objectives and investigates opportunities to generate novel research projects and publications. He is responsible for the content and organisational coordination of all work on the part of IWF.</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
</div>
	
	
	
	
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		<a class="person-modal" href="#modal-container-prof-dr-ing-harald-kloft" data-lity="">Prof. Dr.-Ing. Harald Kloft</a> 
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  <h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-harald-kloft/">See profile</a></h3>
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   <h2 class="modal-person-name modal-project-leader"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-harald-kloft/">Kloft, Harald Prof. Dr.-Ing.</a></h2>
<p>leads the scientific staff in the orientation and execution of the design process creation and supports them in an advisory capacity in the creation of test geometries and demonstrators. He is responsible for the content and organisational coordination of all work on the part of ITE. He instructs the research engineer at ITE in the conceptual structure, execution and evaluation of the theoretical and experimental research work. He is the spokesperson of the TRR 277.</p>

   

 
<div id="wpv-view-layout-3566-CPID3519" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID3519" data-viewnumber="3566-CPID3519" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3519&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3519">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<div class="view-focus-area-a07"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a07/">Project A 07</a></div>
<div class="publication-project-summary"><p>Wire and Arc Additive Manufacturing (WAAM) of Complex Individualized Steel Components</p>
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		<div class="view-focus-area-a10"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a10/">Project A 10</a></div>
<div class="publication-project-summary"><p class="20ProjektTitel"><span lang="EN-GB">Earth Additive Manufacturing (EAM) – Material and Process Combinations for AM with Earth-based Materials</span></p>
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		<div class="view-focus-area-c05"><a href="https://amc-trr277.de/projects/project-area-c/focus-area-c-05/">Project C 05</a></div>
<div class="publication-project-summary"><p>Jointing Principles for Combination of Concrete Elements Produced by Different Additive Manufacturing Processes</p>
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		<div class="view-project-ct"><a href="https://amc-trr277.de/projects/central-tasks/">Central tasks</a></div>
<div class="publication-project-summary"></div>
	
		<div class="view-project-ct"><a href="https://amc-trr277.de/projects/overview-central-tasks-of-the-amc/">Overview Central tasks of the AMC</a></div>
<div class="publication-project-summary"><p>Central Tasks of the AMC</p>
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		<a class="person-modal" href="#modal-container-prof-dr-ing-dirk-lowke" data-lity="">Prof. Dr.-Ing. Dirk Lowke</a> 
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  <a href="https://amc-trr277.de/trr277-people/prof-dr-ing-dirk-lowke/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/csm_Lowke_TUM_ca2843dc48-wpv_600x.jpg" width="600" height="" alt="" /><!-- Conditional Deafult image --><!-- End Conditional Deafult image --></a>
  <h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-dirk-lowke/">See profile</a></h3>
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   <h2 class="modal-person-name modal-project-leader"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-dirk-lowke/">Lowke, Dirk Prof. Dr.-Ing.</a></h2>
<p>Prof. Dr.-Ing. Dirk Lowke is Chair of Materials and Methods in Digital Construction. He will advise the scientific staff in carrying out their work in line with the formulated project aims. He is responsible for the coordination and quality control of all work conducted by the Chair of Materials and Methods in Digital Construction at the Department of Materials Engineering at TU Munich.</p>

   

 
<div id="wpv-view-layout-3566-CPID3527" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID3527" data-viewnumber="3566-CPID3527" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3527&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3527">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a01"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a01/">Project A 01</a></div>
<div class="publication-project-summary"><p>Particle-Bed 3D Printing by Selective Cement Activation (SCA) – Sustainability, process enhancement and material models</p>
</div>
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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</div><div id="wp_views-3" class="widget widget_wp_views clearfix"><h3 class="widget-title">Contributors</h3>

 
<div id="wpv-view-layout-3738-CPID3414" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3738-CPID3414" data-viewnumber="3738-CPID3414" data-pagination="{&quot;id&quot;:&quot;3738&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3738-CPID3414&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:[],&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3738-CPID3414">

	
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		<a class="person-modal" href="#modal-container-dr-ing-abtin-baghdadi" data-lity="">Dr.-Ing. Abtin Baghdadi</a> 
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  <a href="https://amc-trr277.de/trr277-people/dr-ing-abtin-baghdadi/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/csm_Foto_Abtin_Baghdadi_da512f53d4-wpv_600x.jpg" width="600" height="" alt="" /></a><!-- Conditional Deafult image --><!-- End Conditional Deafult image --><h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/dr-ing-abtin-baghdadi/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/dr-ing-abtin-baghdadi/">Baghdadi, Abtin Dr.-Ing.</a></h2>
<p>is a research associate at Institute of Structural Design (ITE) of TU Braunschweig. He is responsible for experimental, theoretical and numerical research work as well as for the coordination of the cooperations within the SFB.</p>

   

 
<div id="wpv-view-layout-3566-CPID3610" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID3610" data-viewnumber="3566-CPID3610" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3610&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3610">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
</div>
	
		<div class="view-focus-area-c05"><a href="https://amc-trr277.de/projects/project-area-c/focus-area-c-05/">Project C 05</a></div>
<div class="publication-project-summary"><p>Jointing Principles for Combination of Concrete Elements Produced by Different Additive Manufacturing Processes</p>
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		<a class="person-modal" href="#modal-container-m-sc-david-bohler" data-lity="">M. Sc. David Böhler</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-david-bohler/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2024/02/Boehler_8ec13a6f47-wpv_600x.jpg" width="600" height="" alt="" /></a><!-- Conditional Deafult image --><!-- End Conditional Deafult image --><h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/m-sc-david-bohler/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-david-bohler/">Böhler, David M. Sc.</a></h2>
<p>is a research assistant at the Technical University of Munich in the group of Prof. Dr. Lowke. Together with Jennifer Rudolph, he will lead and organise the material development and testing programme as well as the data analysis and material modelling within the Lowke group. David Böhler will focus on investigating the durability of 3D printed concrete.</p>

   

 
<div id="wpv-view-layout-3566-CPID7155" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID7155" data-viewnumber="3566-CPID7155" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID7155&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID7155">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<a class="person-modal" href="#modal-container-m-sc-martin-david" data-lity="">M. Sc. Martin David</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-martin-david/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/csm_csm_mdavid_18ccf0ba66_2_a635b90e4c-wpv_600x.jpg" width="600" height="" alt="" /></a><!-- Conditional Deafult image --><!-- End Conditional Deafult image --><h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/m-sc-martin-david/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-martin-david/">David, Martin M. Sc.</a></h2>
<p>is a doctoral researcher at the Institute for Machine Tools and Production Technology (IWF) at TU Braunschweig. He is working on the development of different end effectors for an automated concrete reinforcement as well as the surface processing of printed SC3DP elements. Additionally he is developing different nozzle geometries for the SC3DP process. Moreover, he will frequently publish the resul&#8230;</p>

   

 
<div id="wpv-view-layout-3566-CPID3616" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID3616" data-viewnumber="3566-CPID3616" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3616&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID3616">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<a class="person-modal" href="#modal-container-m-sc-robin-doerrie" data-lity="">M. Sc. Robin Dörrie</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-robin-doerrie/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/XO8A7218-scaled-e1739958513708-wpv_600x.jpg" width="600" height="" alt="" /></a><!-- Conditional Deafult image --><!-- End Conditional Deafult image --><h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/m-sc-robin-doerrie/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-robin-doerrie/">Dörrie, Robin M. Sc.</a></h2>
<p>is a doctoral researcher for the duration of the research project. He is leading the A04 project and organising the development of new concepts and strategies for the integration of reinforcement in SC3DP elements. Furthermore he is investigating the SC3DP process, its limitations and the spatial effect for the application in architecture and design within the work group of Prof. Dr.-Ing. Harald K&#8230;</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<a class="person-modal" href="#modal-container-m-sc-niklas-freund" data-lity="">M. Sc. Niklas Freund</a> 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-niklas-freund/">Freund, Niklas M. Sc.</a></h2>
<p>is a doctoral researcher for the duration of the research project. He will lead and organise the material development and testing program as well as the data evaluation and material modelling work within WG Lowke. Moreover, he will frequently publish the results achieved within the community.</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<a class="person-modal" href="#modal-container-m-sc-manuel-megnet" data-lity="">M. Sc. Manuel Megnet</a> 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-manuel-megnet/">Megnet, Manuel M. Sc.</a></h2>
<p>is a doctoral researcher at the Institute for Machine Tools and Production Technology (IWF) at TU Braunschweig. He is working on the development of different end effectors for an automated concrete reinforcement. Additionally he is developing different nozzle geometries for the SC3DP process. Moreover, he will frequently publish the results achieved within the community.</p>

   

 
<div id="wpv-view-layout-3566-CPID7328" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID7328" data-viewnumber="3566-CPID7328" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID7328&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID7328">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<a class="person-modal" href="#modal-container-m-sc-anna-marie-opolka" data-lity="">M. Sc. Anna Marie Opolka</a> 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-anna-marie-opolka/">Opolka, Anna Marie M. Sc.</a></h2>
<p>is a doctoral researcher at the Institute for Machine Tools and Production Technology (IWF) at TU Braunschweig. She is specialized in robotic manufacturing processes, especially for additive manufacturing and supports the development for the processing of printed SC3DP elements within project A04.</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<a class="person-modal" href="#modal-container-jennifer-rudolph" data-lity="">M. Sc. Jennifer Rudolph</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-jennifer-rudolph/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2023/01/AMC-Website_Bild_M.-Sc.-Jennifer-Rudolph-wpv_600x.jpg" width="600" height="" alt="" /></a><!-- Conditional Deafult image --><!-- End Conditional Deafult image --><h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/m-sc-jennifer-rudolph/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-jennifer-rudolph/">Rudolph, Jennifer</a></h2>
<p>is a research assistant at the Technical University of Braunschweig in the group of Prof. Dr. Lowke. Together with David Böhler, she will lead and organise the material development and testing programme as well as the data analysis and material modelling within the Lowke group. Jennifer Rudolph will focus on investigating the mix designs as well as the environmental and rheological optimisation of&#8230;</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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<h3 class="widget-title">Related Publications</h3>
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		<a class="publication-modal" href="#modal-container-human-robot-collaboration-in-digital-fabrication-with-concrete-quantifying-productivity-and-psychophysiological-strain-of-human-workers" data-lity="">Human–robot collaboration in digital fabrication with concrete: quantifying productivity and psychophysiological strain of human workers</a> 

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<div class="view-Project A 04, Project C 06"><p><strong>2026 |</strong>B. Sawicki. P. Düking, G. Placzek: <strong>Human–robot collaboration in digital fabrication with concrete: quantifying productivity and psychophysiological strain of human workers </strong>Constr Robot 10, 4, 2026, <a href="https://doi.org/10.1007/s41693-025-00173-x">https://doi.org/10.1007/s41693-025-00173-x</a></p>
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		<a class="publication-modal" href="#modal-container-shotcrete-3d-printed-reinforced-concrete-beam-design-testing-and-comparison-against-conventional-cast-reinforced-concrete-solution" data-lity="">Shotcrete 3D printed reinforced concrete beam: design, testing, and comparison against conventional cast reinforced concrete solution</a> 

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<div class="view-Project A 04"><p><strong>2026 | </strong>B. Sawicki, Z. Chen, T. Leusmann: <strong>Shotcrete 3D printed reinforced concrete beam: design, testing, and comparison against conventional cast reinforced concrete solution</strong> Mater Struct 59, 44, 2026, <a href="https://doi.org/10.1617/s11527-026-02945-5">https://doi.org/10.1617/s11527-026-02945-5</a></p>
<p><strong>Data | </strong>LeoPard, 2026, <a href="https://doi.org/10.24355/dbbs.084-202506031524-0">https://doi.org/10.24355/dbbs.084-202506031524-0 </a></p>
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		<a class="publication-modal" href="#modal-container-from-digital-to-real-optimised-and-functionally-integrated-shotcrete-3d-printing-elements-for-multi-storey-structures" data-lity="">From Digital to Real Optimised and Functionally Integrated Shotcrete 3D Printing Elements for Multi-Storey Structures</a> 

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<div class="view-Project A 04"><p><strong>2025 | </strong>R. Dörrie, S. Gantner, F.S. Amiri, L. Lachmayer, M. David, T. Rothe, N. Freund, A. Nouman, K. Mawas, O. Oztoprak, P. Renner: <strong>From Digital to Real: Optimised and Functionally Integrated Shotcrete 3D Printing Elements for Multi-Storey Structures</strong>, Buildings 2025, Special Issue Robotics, Automation and Digitization in Construction, 2025, <a href="https://doi.org/10.3390/buildings15091461">https://doi.org/10.3390/buildings15091461</a></p>
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		<a class="publication-modal" href="#modal-container-investigation-on-process-guidelines-and-geometric-capabilities-for-robust-shotcrete-3d-printing-2" data-lity="">Investigation on process guidelines and geometric capabilities for robust shotcrete 3D printing</a> 

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<div class="view-Project A 04"><p><strong>2025 | </strong>R. Dörrie, L. Lachmayer, A. Baghdadi, M. David, K. Dröder, A. Raatz, H. Kloft:<strong> Investigation on process guidelines and geometric capabilities for robust shotcrete 3D printing</strong>, Materials &amp; Design, 2025, <a href="https://doi.org/10.1016/j.matdes.2025.115050">https://doi.org/10.1016/j.matdes.2025.115050</a></p>
<p><strong>Data | </strong>LeoPARD, 2025, <a href="https://doi.org/10.24355/dbbs.084-202510271126-0">https://doi.org/10.24355/dbbs.084-202510271126-0</a></p>
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		<a class="publication-modal" href="#modal-container-interaction-of-reinforcement-process-and-form-in-digital-fabrication-with-concrete" data-lity="">Interaction of reinforcement, process, and form in Digital Fabrication with Concrete</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2024|</strong>H. Kloft, B. Sawicki, F. Bos, R. Dörrie, N. Freund, S. Gantner, L. Gebhard, N. Hack, E. Ivaniuk, J. Kruger, W. Kaufmann:<strong> Interaction of reinforcement, process, and form in Digital Fabrication with Concrete,</strong> Cement and Concrete Research Volume 186, 2024, <a href="https://doi.org/10.1016/j.cemconres.2024.107640">https://doi.org/10.1016/j.cemconres.2024.107640</a></p>
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		<a class="publication-modal" href="#modal-container-digital-fabrication-with-concrete-beyond-horizontal-planar-layers" data-lity="">Digital fabrication with concrete beyond horizontal planar layers</a> 

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<div class="view-Project A 04, Project A 05, Project A 09"><p><strong>2024|</strong>D. Lowke, A. Anton, R. Buswell, S.E. Jenny, R. J. Flatt, E.L. Fritschi, N. Hack, I. Mai, M. Popescu, H. Kloft<strong>: Digital fabrication with concrete beyond horizontal planar layers,</strong> Cement and Concrete Research Volume 186, 2024, <a href="https://doi.org/10.1016/j.cemconres.2024.107663">https://doi.org/10.1016/j.cemconres.2024.107663</a></p>
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		<a class="publication-modal" href="#modal-container-investigation-on-process-guidelines-and-geometric-capabilities-for-robust-shotcrete-3d-printing" data-lity="">Investigation on process guidelines and geometric capabilities for robust shotcrete 3D printing</a> 

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<div class="view-Project A 04"><p><strong>2025 | </strong>R. Dörrie, L. Lachmayer, A. Baghdadi, M. David, K. Dröder, A. Raatz, H. Kloft: <strong>Investigation on process guidelines and geometric capabilities for robust shotcrete 3D printing</strong> Materials &amp; Design, 2025, 115050,<a href="https://doi.org/10.1016/j.matdes.2025.115050"> https://doi.org/10.1016/j.matdes.2025.115050</a></p>
<p><strong>Data |</strong>LeoPARD, 2025, <a href="https://doi.org/10.24355/dbbs.084-202510271126-0">https://doi.org/10.24355/dbbs.084-202510271126-0</a></p>
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		<a class="publication-modal" href="#modal-container-surface-processing-of-shotcrete-3d-printed-concrete-elements-using-a-rotating-trowel-disc-influence-of-timing-on-resulting-surface-quality" data-lity="">Surface Processing of Shotcrete 3D Printed Concrete Elements Using a Rotating Trowel Disc–Influence of Timing on Resulting Surface Quality</a> 

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<div class="view-Project A 04"><p><strong>2024 | </strong>R. Dörrie, M. David, N. Freund, D. Lowke, K. Dröder, H. Kloft: <strong>Surface Processing of Shotcrete 3D Printed Concrete Elements Using a Rotating Trowel Disc–Influence of Timing on Resulting Surface Quality</strong> RILEM International Conference on Concrete and Digital Fabrication, pp. 397-404, Cham: Springer Nature Switzerland.</p>
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		<a class="publication-modal" href="#modal-container-automated-reinforcement-integration-in-shotcrete-3d-printing-through-green-state-milling" data-lity="">Automated Reinforcement Integration in Shotcrete 3D Printing Through Green State Milling</a> 

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<div class="view-Project A 04"><p><strong>2024 | </strong>R. Dörrie, H. Kloft, B. Sawicki, N. Freund, D. Lowke: <strong>Automated Reinforcement Integration in Shotcrete 3D Printing Through Green State Milling</strong> RILEM International Conference on Concrete and Digital Fabrication, pp. 319-326, Cham: Springer Nature Switzerland, <a href="https://doi.org/10.1007/978-3-031-70031-6_37">https://doi.org/10.1007/978-3-031-70031-6_37</a></p>
<p><strong>Data | </strong>Photographs of cross-section of automated reinforcement integration in Shotcrete 3D Printing through green state milling, LeoPARD, 2024, <a href="https://doi.org/10.24355/dbbs.084-202403201419-0">https://doi.org/10.24355/dbbs.084-202403201419-0</a></p>
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		<a class="publication-modal" href="#modal-container-design-and-characterisation-of-a-two-component-mortar-system-for-shotcrete-3d-printing-an-approach-to-the-targeted-control-of-material-properties" data-lity="">Design and Characterisation of a Two-Component Mortar System for Shotcrete 3D Printing: An Approach to the Targeted Control of Material Properties</a> 

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<div class="view-Project A 04"><p><strong>2024 | </strong> J. V. Rudolph, D. Lowke: <strong>Design and Characterisation of a Two-Component Mortar System for Shotcrete 3D Printing: An Approach to the Targeted Control of Material Properties</strong> Proceedings of the RILEM International Conference on Concrete and Digital Fabrication, 217–224, Cham: Springer Nature Switzerland, 2024. <a href="https://doi.org/10.1007/978-3-031-70031-6_26">https://doi.org/10.1007/978-3-031-70031-6_26</a></p>
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		<a class="publication-modal" href="#modal-container-robot-guided-end-effector-for-an-automated-finishing-of-concrete-free-form-surfaces" data-lity="">Robot-Guided End Effector for an Automated Finishing of Concrete Free-Form Surfaces</a> 

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<div class="view-Project A 04"><p><strong>2024 | </strong>M. David, K. Dröder: <strong>Robot-Guided End Effector for an Automated Finishing of Concrete Free-Form Surfaces</strong> Fourth RILEM International Conference on Concrete and Digital Fabrication Munich, RILEM Bookseries, Volume 53, Springer, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_7">https://doi.org/10.1007/978-3-031-70031-6_7</a></p>
<p><strong>Data | </strong>Bild- und Videodaten zu Versuchsreihe “Verformung von flexiblem Oberflächenendeffektor”, LeoPARD, 2025, <a href="https://doi.org/10.24355/dbbs.084-202503071410-0">https://doi.org/10.24355/dbbs.084-202503071410-0</a>.</p>
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		<a class="publication-modal" href="#modal-container-vibrated-short-rebar-insertion-the-effect-of-integration-time-on-the-resulting-bond-quality" data-lity="">Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality</a> 

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<div class="view-Project A 04"><p><strong>2024 |</strong>N. Freund, M. David, K. Dröder, D. Lowke: Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality, Proceedings of Fourth RILEM International Conference on Concrete and Digital Fabrication (DC 2024), RILEM Bookseries, vol. 53, Springer, Cham, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_38.">https://doi.org/10.1007/978-3-031-70031-6_38.</a></p>
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		<a class="publication-modal" href="#modal-container-durability-of-3d-printed-concrete-a-comparison-of-extrusion-3d-printing-shotcrete-3d-printing-and-conventional-casting" data-lity="">Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</a> 

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<div class="view-Project A 04"><p><strong>2024 |</strong>D. Böhler, I. Mai, D. Lowke: <strong>Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</strong>, Fourth RILEM International Conference on Concrete and Digital Fabrication Munich, RILEM Bookseries, vol 53, Springer, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_33">https://doi.org/10.1007/978-3-031-70031-6_33</a></p>
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		<a class="publication-modal" href="#modal-container-shotcrete-3d-printing-effect-of-material%e2%80%90process-interaction-on-the-global-and-local-material-density" data-lity="">Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</a> 

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<div class="view-Project A 04"><p><strong>2023 |</strong>D. Böhler, N. Freund, I. Mai, D. Lowke: <strong>Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</strong>, ce/papers, 2023, 6, 770–776, <a href="https://doi.org/10.1002/cepa.2822">https://doi.org/10.1002/cepa.2822</a></p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-4" data-lity="">The effects of nozzle diameter and length on the resulting strand properties for shotcrete 3D printing</a> 

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<div class="view-Project A 04"><p><strong>2023 | </strong>David, M., Freund, N., Dröder, K., Lowke, D.: <strong>The effects of nozzle diameter and length on the resulting strand properties for shotcrete 3D printing.</strong> In: Material and Structures 56, 157 (2023).<br />
<a href="https://doi.org/10.1617/s11527-023-02246-1">https://doi.org/10.1617/s11527-023-02246-1</a></p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2" data-lity="">Automated force-flow-oriented reinforcement integration for Shotcrete 3D Printing</a> 

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<div class="view-Project A 04"><p><strong>2023 | </strong>R. Dörrie, N. Freund, E. Herrmann, A. Baghdadi, I., Mai, F. Galli, M. David, K. Dröder, D. Lowke, H. Kloft: <strong>Automated force-flow-oriented reinforcement integration for Shotcrete 3D Printing.</strong> In: Automation in Construction, 155, p.105075, https://doi.org/10.1016/j.autcon.2023.105075<br />
<a href="https://doi.org/10.3390/buildings12111806">https://doi.org/10.3390/buildings12111806</a></p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2" data-lity="">Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</a> 

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<div class="view-Project A 04"><p><strong>2023 | </strong>N. Freund, M. David, D. Böhler, I. Mai, S. Ullmann, K. Dröder, D. Lowke: <strong>Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</strong>. In: International Conference on Building Materials (ibausil) 2023</p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2" data-lity="">Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density</a> 

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<div class="view-Project A 04"><p><strong>2023 | </strong>D. Böhler, N. Freund, I. Mai, D. Lowke, D: <strong>Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density.</strong> In: International Conference on Building Materials (ibausil) 2023</p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2" data-lity="">Combined Additive Manufacturing Techniques for Adaptive Coastline Protection Structures</a> 

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<div class="view-Project A 04"><p><strong>2022 | </strong>R. Dörrie, V. Laghi, L. Arrè, G. Kienbaum, N. Babovic, N. Hack, H. Kloft: <strong>Combined Additive Manufacturing Techniques for Adaptive Coastline Protection Structures.</strong> In: Buildings, vol. 12, no. 11, p. 1806, 2022.<br />
<a href="https://doi.org/10.3390/buildings12111806">https://doi.org/10.3390/buildings12111806</a></p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2" data-lity="">Force-Flow compliant robotic path planning approach for reinforced concrete elements</a> 

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<div class="view-Project A 04"><p><strong>2022 | </strong>R. Dörrie, and H. Kloft: <strong>Force-Flow compliant robotic path planning approach for reinforced concrete elements.</strong> In Proc. Int. Conf. on Concrete and Digital Fabrication, 2022, pp. 370-375.</p>
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		<a class="publication-modal" href="#modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction" data-lity="">Implementation of a surrogate model for a novel path-based finite element simulation for additive manufacturing processes in construction</a> 

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<div class="view-Project A 04"><p><strong>2022 | </strong><span lang="EN-US">Ekanayaka, V.; Hürkamp, A.</span> :  <strong><span class="markedcontent"><span lang="EN-US"><b>Implementation of a surrogate model for a novel path-based finite element simulation for additive manufacturing processes in construction. </b></span></span></strong>In: <span class="markedcontent"><span lang="EN-US">PAMM. </span></span> (<span class="markedcontent"><span lang="EN-US">2022</span>.</span>)</p>
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		<a class="publication-modal" href="#modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-3-2-2-2-2-2-2-2-2-2-2" data-lity="">Bewehrungskonzepte beim 3D-Druck von Konstruktionsbeton</a> 

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<div class="view-Project A 04"><p><strong>2022 | </strong>Lowke, D.; Gehlen, C.; Kloft, H.; Freund, N.; Matthäus, C.: <strong>Bewehrungskonzepte beim 3D-Druck von Konstruktionsbeton.</strong> In: BfT International, 02.2021, S. 92.</p>
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		<a class="publication-modal" href="#modal-container-digital-fabrication-with-cement-based-materials-process-classification-and-case-studies" data-lity="">Digital Fabrication with Cement-Based Materials: Process Classification and Case Studies</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2022 | </strong>Buswell, R. A.; Bos, F. P.; Leal da Silva, W. R.; Hack, N.; Kloft, H.; Lowke, D.; Freund, N.; Fromm, A.; Dini, E.; Wangler, T.; Lloret-Fritschi, E.; Schipper, R.; Mechtcherine, V.; Perrot, A.; Vasilic, K.; Roussel, N.: <strong>Digital Fabrication with Cement-Based Materials: Process Classification and Case Studies</strong>. In: Roussel, N. and Lowke, D. <em>(2022). Digital Fabrication with Cement-Based Materials</em> (Reports 36). RILEM State-of-the-Art. DOI: <a href="https://doi.org/10.1007/978-3-030-90535-4_2">https://doi.org/10.1007/978-3-030-90535-4_2</a></p>
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		<a class="publication-modal" href="#modal-container-5280-2" data-lity="">Structural Design and Testing of Digitally Manufactured Concrete Structures</a> 

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<div class="view-Project A 04"><p><strong>2022 | </strong><tt class="letterText"></tt>Asprone, D.; Menna, C.; Bos, F.; Mata-Falcón, J.; Ferrara, L.; Auricchio, F.; Cadoni, E.; Cunha, V. M. C. F.; Esposito, L.; Fromm, A.; Grünewald, S.; Kloft, H.; Mechtcherine, V.; Naidu Nerella, V.; Schipper, R.: <strong>Structural Design and Testing of Digitally Manufactured Concrete Structures</strong>. In: Roussel, N. and Lowke, D. <em>(2022). Digital Fabrication with Cement-Based Materials</em> (Reports 36). RILEM State-of-the-Art. DOI: <a href="https://doi.org/10.1007/978-3-030-90535-4_6">https://doi.org/10.1007/978-3-030-90535-4_6</a></p>
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		<a class="publication-modal" href="#modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-3-2-2-2-2-2-2-2-2-2" data-lity="">Interlayer Reinforcement in Shotcrete-3D-Printing: The Effect of Accelerator Dosage on the Resulting Bond Behavior of Integrated Reinforcement Bars</a> 

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<div class="view-Project A 04"><p><strong>2022 | </strong>Freund, N., &amp; Lowke, D.: Interlayer Reinforcement in Shotcrete-3D-Printing: <strong>Interlayer Reinforcement in Shotcrete-3D-Printing: The Effect of Accelerator Dosage on the Resulting Bond Behavior of Integrated Reinforcement Bars.</strong> In: Open Conference Proceedings, 1, 83–95, 2022<br />
<a href="https://doi.org/10.52825/ocp.v1i.72">https://doi.org/10.52825/ocp.v1i.72</a></p>
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		<a class="publication-modal" href="#modal-container-large-particle-3d-concrete-printing-a-green-and-viable-solution" data-lity="">Large Particle 3D Concrete Printing &#8211; A Green and Viable Solution</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2021 | </strong>Mai, I.; Brohmann, L.; Freund, N.; Gantner, S.; Kloft, H.; Lowke, D.; Hack, N.: Large Particle 3D Concrete Printing &#8211; A Green and Viable Solution. In: <em>Materials</em>, 14, 6125, 2021. DOI: <a href="https://doi.org/10.3390/ma14206125" target="_blank" rel="noopener noreferrer">https://doi.org/10.3390/ma14206125</a>.</p>
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		<a class="publication-modal" href="#modal-container-integrating-reinforcement-in-digital-fabrication-with-concrete-a-review-and-classification-framework" data-lity="">Integrating reinforcement in digital fabrication with concrete: A review and classification framework</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2021 | </strong>Mechtcherine, V.; Buswell, R.; Kloft, H.; Bos, F. P.; Hack, N.; Wolfs, R.; Sanjayan, J.; Nematollahi, B.; Ivaniuk, E.; Neef, T.: Integrating reinforcement in digital fabrication with concrete: A review and classification framework. In: <em>Cement and Concrete Composites</em>, 119, 2021. &#8211; DOI: <a href="https://doi.org/10.1016/j.cemconcomp.2021.103964" target="_blank" rel="noopener noreferrer">https://doi.org/10.1016/j.cemconcomp.2021.103964</a>.</p>
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		<a class="publication-modal" href="#modal-container-automated-shotcrete-3d-printing-printing-interruption-for-extended-component-complexity" data-lity="">Automated shotcrete 3D printing – Printing interruption for extended component complexity</a> 

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<div class="view-Project A 04, Project B 04"><p><strong>2021 | </strong>Lachmayer, L.; Dörrie, R.; Kloft,H.; Raatz, A.: Automated shotcrete 3D printing – Printing interruption for extended component complexity. In: <em>ISARC</em>, 2021.</p>
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		<a class="publication-modal" href="#modal-container-new-calculation-approach-for-selecting-and-orienting-the-reinforcing-material-for-robotic-concrete-manufacturing" data-lity="">New calculation approach for selecting and orienting the reinforcing material for robotic concrete manufacturing</a> 

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<div class="view-Project A 04"><p><strong>2021 | </strong>Baghdadi, A.; Doerrie, R.; Kloft, H.: New calculation approach for selecting and orienting the reinforcing material for robotic concrete manufacturing. In: <em>Proceedings of the IASS Annual Symposium</em> 2020/21 and the 7th International Conference on Spatial Structures Inspiring the Next Generation. 23 – 27 August, Guilford, UK, 2021.</p>
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		<a class="publication-modal" href="#modal-container-injection-3d-concrete-printing-in-a-carrier-liquid-underlying-physics-and-applications-to-lightweight-space-frame-structures" data-lity="">Injection 3D concrete printing in a carrier liquid – Underlying physics and applications to lightweight space frame structures</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2021 | </strong>Lowke, D.: Injection 3D concrete printing in a carrier liquid – Underlying physics and applications to lightweight space frame structures. In: <em>Cement and Concrete Composites</em>, 2021. &#8211; DOI: <a href="https://doi.org/10.1016/j.cemconcomp.2021.104169" target="_blank" rel="noopener noreferrer">https://doi.org/10.1016/j.cemconcomp.2021.104169</a>.</p>
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		<a class="publication-modal" href="#modal-container-bewehrungskonzepte-beim-3d-druck-von-konstruktionsbeton" data-lity="">Bewehrungskonzepte beim 3D-Druck von Konstruktionsbeton</a> 

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<div class="view-Project A 02, Project A 04"><p><strong>2021 | </strong>Lowke, D.; Gehlen, C.; Kloft, H.; Freund, N.; Matthäus, C.: Bewehrungskonzepte beim 3D-Druck von Konstruktionsbeton. In: <em>BfT International</em>, 02.2021, S. 92, 2021.</p>
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		<a class="publication-modal" href="#modal-container-dauerhaftigkeit-potenzial-additiver-fertigung-und-performance-im-vergleich-zu-konventioneller-fertigung" data-lity="">Dauerhaftigkeit – Potenzial additiver Fertigung und Performance im Vergleich zu konventioneller Fertigung</a> 

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<div class="view-Project A 02, Project A 04"><p><strong>2021 | </strong>Gehlen, C.; Lowke, D.; Weger, D.; Dreßler, I.: Dauerhaftigkeit – Potenzial additiver Fertigung und Performance im Vergleich zu konventioneller Fertigung. In: <em>BfT International</em>, 02.2021, S. 94, 2021.</p>
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		<a class="publication-modal" href="#modal-container-additive-fertigung-im-bauwesen-3d-betondruck-als-eine-schlusseltechnologie-fur-die-digitalisierung-der-bauwirtschaft" data-lity="">Additive Fertigung im Bauwesen: 3D-Betondruck als eine Schlüsseltechnologie für die Digitalisierung der Bauwirtschaft</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2020 | </strong>Hack, N.; Kloft, H.; Lowke, D.: Additive Fertigung im Bauwesen: 3D-Betondruck als eine Schlüsseltechnologie für die Digitalisierung der Bauwirtschaft. In: Ingenieurbaukunst 2020 – Made in Germany, Jahrbuch der Bundesingenieurkammer, S. 178-183, 2020.</p>
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		<a class="publication-modal" href="#modal-container-influence-of-process-parameters-on-the-interlayer-bond-strength-of-concrete-elements-additive-manufactured-by-shotcrete-3d-printing-sc3dp" data-lity="">Influence of process parameters on the interlayer bond strength of concrete elements additive manufactured by Shotcrete 3D Printing (SC3DP)</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2020 | </strong>Kloft, H.; Krauss, H.-W.; Hack, N.; Herrmann, E.; Neudecker, S.; Varady, P.; Lowke, D.: Influence of process parameters on the interlayer bond strength of concrete elements additive manufactured by Shotcrete 3D Printing (SC3DP). In: Cement and Concrete Research 134, 2020. &#8211; DOI: <a href="https://doi.org/10.1016/j.cemconres.2020.106078">https://doi.org/10.1016/j.cemconres.2020.106078</a>.</p>
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		<a class="publication-modal" href="#modal-container-bewehrungsstrategien-fur-den-beton-3d-druck" data-lity="">Bewehrungsstrategien für den Beton-3D-Druck</a> 

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<div class="view-Project A 04, Project A 05, Project C 05"><p><strong>2020 | </strong>Kloft, H.; Empelmann, M.; Hack, N.; Herrmann, E. Lowke, D.: Bewehrungsstrategien für den Beton-3D-Druck. In: Beton- und Stahlbetonbau 115, 2020. &#8211; DOI: <a href="https://onlinelibrary.wiley.com/doi/epdf/10.1002/best.202000032">https://onlinelibrary.wiley.com/doi/epdf/10.1002/best.202000032</a>.</p>
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		<a class="publication-modal" href="#modal-container-studying-the-bond-properties-of-vertical-integrated-short-reinforcement-in-the-shotcrete-3d-printing-process" data-lity="">Studying the Bond Properties of Vertical Integrated Short Reinforcement in the Shotcrete 3D Printing Process</a> 

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<div class="view-Project A 04"><p><strong>2020 | </strong>Freund, N.; Dressler, I.; Lowke, D.: Studying the Bond Properties of Vertical Integrated Short Reinforcement in the Shotcrete 3D Printing Process. In: RILEM Bookseries 28, pp. 612–621, 2020. &#8211; DOI: <a href="https://doi.org/10.1007/978-3-030-49916-7_62">https://doi.org/10.1007/978-3-030-49916-7_62</a>.</p>
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		<a class="publication-modal" href="#modal-container-control-of-strand-properties-produced-with-shotcrete-3d-printing-by-accelerator-dosage-amd-process-parameters" data-lity="">Control of Strand Properties Produced with Shotcrete 3D Printing by Accelerator Dosage amd Process Parameters</a> 

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<div class="view-Project A 04"><p><strong>2020 | </strong>Dressler, I.; Freund, N.; Lowke, D.: Control of Strand Properties Produced with Shotcrete 3D Printing by Accelerator Dosage amd Process Parameters. In: RILEM Bookseries 28, pp. 42–52, 2020. &#8211; DOI: <a href="https://doi.org/10.1007/978-3-030-49916-7_5">https://doi.org/10.1007/978-3-030-49916-7_5</a>.</p>
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		<a class="publication-modal" href="#modal-container-experimental-and-numerical-assessment-of-new-precast-concrete-connections-under-bending-loads" data-lity="">Experimental and numerical assessment of new precast concrete connections under bending loads</a> 

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<div class="view-Project A 04"><p><strong>2020 | </strong>Baghdadi, A.; Heristchian, M.; Ledderose, L.; Kloft, H.: Experimental and numerical assessment of new precast concrete connections under bending loads. In: Engineering Structures 212, ELSEVIER, 2020. &#8211; DOI: <a href="https://doi.org/10.1016/j.engstruct.2020.110456">https://doi.org/10.1016/j.engstruct.2020.110456</a>.</p>
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		<a class="publication-modal" href="#modal-container-a-process-classification-framework-for-defining-and-describing-digital-fabrication-with-concrete" data-lity="">A process classification framework for defining and describing Digital Fabrication with Concrete</a> 

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<div class="view-Project A 04, Project A 05"><p><strong>2020 | </strong>Buswell, R.A.; Leal da Silva; W.R.; Bos, F.P.; Schipper, H.R.; Lowke, D.; Hack, N.; Kloft, H.; Mechtcherine, V.; Wangler, T.; Roussel, N.: A process classification framework for defining and describing Digital Fabrication with Concrete. In: Cement and Concrete Research 134, 2020. &#8211; DOI: <a href="https://doi.org/10.1016/j.cemconres.2020.106068">https://doi.org/10.1016/j.cemconres.2020.106068</a>.</p>
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		<a class="publication-modal" href="#modal-container-the-effect-of-accelerator-dosage-on-fresh-concrete-properties-and-on-interlayer-strength-in-shotcrete-3d-printing" data-lity="">The Effect of Accelerator Dosage on Fresh Concrete Properties and on Interlayer Strength in Shotcrete 3D Printing</a> 

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<div class="view-Project A 04"><p><strong>2020 | </strong>Dreßler, I.; Freund, N.; Lowke, D.: The Effect of Accelerator Dosage on Fresh Concrete Properties and on Interlayer Strength in Shotcrete 3D Printing. In: Materials 2020, 13, 374, 2020. &#8211; DOI: <a href="https://doi.org/10.3390/ma13020374">https://doi.org/10.3390/ma13020374</a>.</p>
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		<a class="publication-modal" href="#modal-container-herausforderungen-fur-einen-traditionellen-werkstoff-auf-dem-weg-in-die-zukunft-digitaler-beton" data-lity="">Herausforderungen für einen traditionellen Werkstoff auf dem Weg in die Zukunft – Digitaler Beton.</a> 

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<div class="view-Project A 04"><p><strong>2020 | </strong>Lowke, D.: Herausforderungen für einen traditionellen Werkstoff auf dem Weg in die Zukunft – Digitaler Beton. In: <em>BFT International</em>, 02-2020, Vol. 86, S. 75, 2020.</p>
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		<a class="publication-modal" href="#modal-container-injection-3d-concrete-printing-i3dcp-basic-principles-and-case-studies" data-lity="">Injection 3D Concrete Printing (I3DCP): Basic Principles and Case Studies.</a> 

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<div class="view-Project A 04, Project C 06"><p><strong>2020 | </strong>Hack, N.; Dressler, I.; Brohmann, L.; Gantner, S.; Lowke, D.; Kloft, H.: Injection 3D Concrete Printing (I3DCP): Basic Principles and Case Studies. In: Materials 2020, 13, 1093, 2020. &#8211; DOI: <a href="https://doi.org/10.3390/ma13051093" target="_blank" rel="noopener noreferrer">https://doi.org/10.3390/ma13051093</a>.</p>
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<div class="sidebar-focus-area-a">
  <h3>More projects of <br>Focus Area A</h3>
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<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a01/">Project A 01</a>
  <div class="project-summary"><p>Particle-Bed 3D Printing by Selective Cement Activation (SCA) – Sustainability, process enhancement and material models</p>
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		<div class="view-focus-area container-focus-area-a02">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a02/">Project A 02</a>
  <div class="project-summary"><p>Particle-Bed 3D Printing by Selective Cement Paste Intrusion (SPI) – Particle Surface Functionalisation, Particle Synthesis and Integration of WAAM Reinforcement</p>
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		<div class="view-focus-area container-focus-area-a03">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a03/">Project A 03</a>
  <div class="project-summary"><p>Extrusion of Near-Nozzle Mixed Concrete –Individually Graded in Density and in Rate of 3D Fibre Reinforcement</p>
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		<div class="view-focus-area container-focus-area-a05">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a05/">Project A 05</a>
  <div class="project-summary"><p>Integration of Individualized Prefabricated Fibre Reinforcement in Additive Manufacturing with Concrete</p>
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		<div class="view-focus-area container-focus-area-a06">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a>
  <div class="project-summary"><p>Laser Powder-Bed Fusion (LPBF) of Steel Elements for Construction – Basics of Design and Mechanical Resilience.</p>
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		<div class="view-focus-area container-focus-area-a07">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a07/">Project A 07</a>
  <div class="project-summary"><p>Wire and Arc Additive Manufacturing (WAAM) of Complex Individualized Steel Components</p>
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		<div class="view-focus-area container-focus-area-a08">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a08/">Project A 08 (completed)</a>
  <div class="project-summary"><p>Structural Timber by Individual Layer Fabrication (ILF)</p>
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		<div class="view-focus-area container-focus-area-a09">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a09/">Project A 09</a>
  <div class="project-summary"><p>Injection 3D Concrete Printing (I3DCP) – Material Efficient Lightweight Reinforced Concrete Structures Based on Spatially Complex Strut-and-Tie-Models</p>
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		<div class="view-focus-area container-focus-area-a10">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a10/">Project A 10</a>
  <div class="project-summary"><p class="20ProjektTitel"><span lang="EN-GB">Earth Additive Manufacturing (EAM) – Material and Process Combinations for AM with Earth-based Materials</span></p>
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<p>The post <a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>M. Sc. David Böhler</title>
		<link>https://amc-trr277.de/trr277-people/m-sc-david-bohler/</link>
		
		<dc:creator><![CDATA[Meike Bährens]]></dc:creator>
		<pubDate>Thu, 08 Feb 2024 15:55:34 +0000</pubDate>
				<category><![CDATA[AMC Researchers]]></category>
		<guid isPermaLink="false">https://amc-trr277.de/?post_type=trr277-people&#038;p=7155</guid>

					<description><![CDATA[<p>is a research assistant at the Technical University of Munich in the group of Prof. Dr. Lowke. Together with Jennifer Rudolph, he will lead and organise the material development and testing programme as well as the data analysis and material modelling within the Lowke group. David Böhler will focus on investigating the durability of 3D printed concrete.</p>
<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-david-bohler/">M. Sc. David Böhler</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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<div class="masonry-grid">

	
		<h1 class="single-thumbnail">M. Sc. David Böhler</h1>
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  <!-- Location --><div class="single-location">Current location: TU München</div>
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<span lang="EN-GB">Chair of Binder Jetting Technology</span></div>
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  <div class="single-person"><p><u></u><u><a href="mailto:david.boehler@tum.de">david.boehler@tum.de</a></u></p>
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</div> <p><span lang="EN-GB">is a research assistant at the Technical University of Munich in the group of Prof. Dr. Lowke. Together with Jennifer Rudolph, he will lead and organise the material development and testing programme as well as the data analysis and material modelling within the Lowke group. David Böhler will focus on investigating the durability of 3D printed concrete.</span></p>
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<div id="wpv-view-layout-3566-CPID7155" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID7155" data-viewnumber="3566-CPID7155" data-pagination="{&quot;id&quot;:&quot;3566&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID7155&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:[],&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=3566-CPID7155">

	
<h3 class="widget-title">Project(s)</h3>
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		<div class="view-focus-area-a04"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a></div>
<div class="publication-project-summary"><p>Integrated Additive Manufacturing Processes for Reinforced Shotcrete 3D Printing (SC3DP) Elements with Precise Surface Quality</p>
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		<div class="sidebar-m-sc-david-bohler publications-sidebar">
  <!-- Conditional Info: Publications --><h3 class="widget-title publications-title">Publications</h3><!-- End Conditional Info: Publications -->
 

  
<div id="wpv-view-layout-4214-CPID7155" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4214-CPID7155" data-viewnumber="4214-CPID7155" data-pagination="{&quot;id&quot;:&quot;4214&quot;,&quot;query&quot;:&quot;normal&quot;,&quot;type&quot;:&quot;disabled&quot;,&quot;effect&quot;:&quot;fade&quot;,&quot;duration&quot;:500,&quot;speed&quot;:5,&quot;pause_on_hover&quot;:&quot;enabled&quot;,&quot;stop_rollover&quot;:&quot;false&quot;,&quot;cache_pages&quot;:&quot;enabled&quot;,&quot;preload_images&quot;:&quot;enabled&quot;,&quot;preload_pages&quot;:&quot;enabled&quot;,&quot;preload_reach&quot;:1,&quot;spinner&quot;:&quot;builtin&quot;,&quot;spinner_image&quot;:&quot;https://amc-trr277.de/wp-content/plugins/wp-views/embedded/res/img/ajax-loader.gif&quot;,&quot;callback_next&quot;:&quot;&quot;,&quot;manage_history&quot;:&quot;enabled&quot;,&quot;has_controls_in_form&quot;:&quot;disabled&quot;,&quot;infinite_tolerance&quot;:&quot;0&quot;,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=4214-CPID7155&amp;wpv_paged=WPV_PAGE_NUM&quot;,&quot;loop&quot;:{&quot;type&quot;:&quot;&quot;,&quot;name&quot;:&quot;&quot;,&quot;data&quot;:&#091;&#093;,&quot;id&quot;:0}}" data-permalink="/trr277-person/m-sc-david-bohler/feed/?wpv_view_count=4214-CPID7155">

	
	
	
		<div class="view-publication-single"><p><strong>2024 |</strong>N. Freund, M. David, K. Dröder, D. Lowke: Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality, Proceedings of Fourth RILEM International Conference on Concrete and Digital Fabrication (DC 2024), RILEM Bookseries, vol. 53, Springer, Cham, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_38.">https://doi.org/10.1007/978-3-031-70031-6_38.</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2024 |</strong>D. Böhler, I. Mai, D. Lowke: <strong>Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</strong>, Fourth RILEM International Conference on Concrete and Digital Fabrication Munich, RILEM Bookseries, vol 53, Springer, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_33">https://doi.org/10.1007/978-3-031-70031-6_33</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2023 |</strong>D. Böhler, N. Freund, I. Mai, D. Lowke: <strong>Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</strong>, ce/papers, 2023, 6, 770–776, <a href="https://doi.org/10.1002/cepa.2822">https://doi.org/10.1002/cepa.2822</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2023 | </strong>N. Freund, M. David, D. Böhler, I. Mai, S. Ullmann, K. Dröder, D. Lowke: <strong>Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</strong>. In: International Conference on Building Materials (ibausil) 2023</p>
</div>
	
		<div class="view-publication-single"><p><strong>2023 | </strong>D. Böhler, N. Freund, I. Mai, D. Lowke, D: <strong>Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density.</strong> In: International Conference on Building Materials (ibausil) 2023</p>
</div>
	
		<div class="view-publication-single"><p><strong>2022 | </strong>Lachmayer, L.; Böhler, D.; Freund, N.; Mai, I.; Lowke, D.; Raatz, A.:<strong> Modelling the influence of material and process parameters on shotcrete 3D printing strands – cross-section adjustment for automatic robotic manufacturing.</strong> Automation in Construction, Volume 145, <a href="https://doi.org/10.1016/j.autcon.2022.104626">https://doi.org/10.1016/j.autcon.2022.104626</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2022 |</strong> Böhler, D., Mai, I., Freund, N., Lachmayer, L., Raatz, A., Lowke, D.:<strong> Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements.</strong> In: Buswell, R., Blanco, A., Cavalaro, S., Kinnell, P. (eds) Third RILEM International Conference on Concrete and Digital Fabrication. DC 2022. RILEM Bookseries, vol 37. Springer, Cham.<br />
<a href="https://doi.org/10.1007/978-3-031-06116-5_38">https://doi.org/10.1007/978-3-031-06116-5_38</a></p>
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<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-david-bohler/">M. Sc. David Böhler</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality</title>
		<link>https://amc-trr277.de/amc-publikation/vibrated-short-rebar-insertion-the-effect-of-integration-time-on-the-resulting-bond-quality/</link>
		
		<dc:creator><![CDATA[Ida Mantey]]></dc:creator>
		<pubDate>Mon, 31 Mar 2025 11:50:45 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7812</guid>

					<description><![CDATA[<p>2024 &#124;N. Freund, M. David, K. Dröder, D. Lowke: Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality, Proceedings of Fourth RILEM International Conference on Concrete and Digital Fabrication (DC 2024), RILEM Bookseries, vol....</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/vibrated-short-rebar-insertion-the-effect-of-integration-time-on-the-resulting-bond-quality/">Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2024 |</strong>N. Freund, M. David, K. Dröder, D. Lowke: Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality, Proceedings of Fourth RILEM International Conference on Concrete and Digital Fabrication (DC 2024), RILEM Bookseries, vol. 53, Springer, Cham, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_38.">https://doi.org/10.1007/978-3-031-70031-6_38.</a></p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/vibrated-short-rebar-insertion-the-effect-of-integration-time-on-the-resulting-bond-quality/">Vibrated Short Rebar Insertion &#8211; The Effect of Integration Time on the Resulting Bond Quality</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</title>
		<link>https://amc-trr277.de/amc-publikation/durability-of-3d-printed-concrete-a-comparison-of-extrusion-3d-printing-shotcrete-3d-printing-and-conventional-casting/</link>
		
		<dc:creator><![CDATA[Alessa Zinn]]></dc:creator>
		<pubDate>Fri, 04 Oct 2024 10:43:50 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7544</guid>

					<description><![CDATA[<p>2024 &#124;D. Böhler, I. Mai, D. Lowke: Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting, Fourth RILEM International Conference on Concrete and Digital Fabrication Munich, RILEM Bookseries, vol 53, Springer, 2024, https://doi.org/10.1007/978-3-031-70031-6_33</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/durability-of-3d-printed-concrete-a-comparison-of-extrusion-3d-printing-shotcrete-3d-printing-and-conventional-casting/">Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2024 |</strong>D. Böhler, I. Mai, D. Lowke: <strong>Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</strong>, Fourth RILEM International Conference on Concrete and Digital Fabrication Munich, RILEM Bookseries, vol 53, Springer, 2024, <a href="https://doi.org/10.1007/978-3-031-70031-6_33">https://doi.org/10.1007/978-3-031-70031-6_33</a></p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/durability-of-3d-printed-concrete-a-comparison-of-extrusion-3d-printing-shotcrete-3d-printing-and-conventional-casting/">Durability of 3D Printed Concrete: A Comparison of Extrusion 3D Printing, Shotcrete 3D Printing and Conventional Casting</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</title>
		<link>https://amc-trr277.de/amc-publikation/shotcrete-3d-printing-effect-of-material%e2%80%90process-interaction-on-the-global-and-local-material-density/</link>
		
		<dc:creator><![CDATA[Alessa Zinn]]></dc:creator>
		<pubDate>Mon, 30 Sep 2024 16:34:02 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7535</guid>

					<description><![CDATA[<p>2023 &#124;D. Böhler, N. Freund, I. Mai, D. Lowke: Shotcrete 3D printing – effect of material‐process interaction on the global and local material density, ce/papers, 2023, 6, 770–776, https://doi.org/10.1002/cepa.2822</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/shotcrete-3d-printing-effect-of-material%e2%80%90process-interaction-on-the-global-and-local-material-density/">Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2023 |</strong>D. Böhler, N. Freund, I. Mai, D. Lowke: <strong>Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</strong>, ce/papers, 2023, 6, 770–776, <a href="https://doi.org/10.1002/cepa.2822">https://doi.org/10.1002/cepa.2822</a></p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/shotcrete-3d-printing-effect-of-material%e2%80%90process-interaction-on-the-global-and-local-material-density/">Shotcrete 3D printing – effect of material‐process interaction on the global and local material density</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</title>
		<link>https://amc-trr277.de/amc-publikation/implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/</link>
		
		<dc:creator><![CDATA[Lea Schulze]]></dc:creator>
		<pubDate>Thu, 05 Oct 2023 14:05:12 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=6802</guid>

					<description><![CDATA[<p>2023 &#124; N. Freund, M. David, D. Böhler, I. Mai, S. Ullmann, K. Dröder, D. Lowke: Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties. In: International Conference on Building Materials (ibausil) 2023</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/">Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2023 | </strong>N. Freund, M. David, D. Böhler, I. Mai, S. Ullmann, K. Dröder, D. Lowke: <strong>Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</strong>. In: International Conference on Building Materials (ibausil) 2023</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/">Shotcrete 3D Printing &#8211; Interaction of nozzle geometry, homogeneity and hardened concrete properties</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density</title>
		<link>https://amc-trr277.de/amc-publikation/implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/</link>
		
		<dc:creator><![CDATA[Lea Schulze]]></dc:creator>
		<pubDate>Thu, 05 Oct 2023 13:51:45 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=6801</guid>

					<description><![CDATA[<p>2023 &#124; D. Böhler, N. Freund, I. Mai, D. Lowke, D: Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density. In: International Conference on Building Materials (ibausil) 2023</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/">Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2023 | </strong>D. Böhler, N. Freund, I. Mai, D. Lowke, D: <strong>Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density.</strong> In: International Conference on Building Materials (ibausil) 2023</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/">Shotcrete 3D Printing &#8211; Effect of material-process interaction on the global and local material density</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Modelling the influence of material and process parameters on shotcrete 3D printing strands – cross-section adjustment for automatic robotic manufacturing</title>
		<link>https://amc-trr277.de/amc-publikation/a-novel-methodology-for-the-thermographic-cooling-rate-measurement-during-powder-bed-fusion-of-metals-using-a-laser-beam-2-2-2/</link>
		
		<dc:creator><![CDATA[Lea Schulze]]></dc:creator>
		<pubDate>Fri, 27 Jan 2023 17:36:18 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=6404</guid>

					<description><![CDATA[<p>2022 &#124; Lachmayer, L.; Böhler, D.; Freund, N.; Mai, I.; Lowke, D.; Raatz, A.: Modelling the influence of material and process parameters on shotcrete 3D printing strands – cross-section adjustment for automatic robotic manufacturing. Automation in Construction, Volume 145, https://doi.org/10.1016/j.autcon.2022.104626</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/a-novel-methodology-for-the-thermographic-cooling-rate-measurement-during-powder-bed-fusion-of-metals-using-a-laser-beam-2-2-2/">Modelling the influence of material and process parameters on shotcrete 3D printing strands – cross-section adjustment for automatic robotic manufacturing</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2022 | </strong>Lachmayer, L.; Böhler, D.; Freund, N.; Mai, I.; Lowke, D.; Raatz, A.:<strong> Modelling the influence of material and process parameters on shotcrete 3D printing strands – cross-section adjustment for automatic robotic manufacturing.</strong> Automation in Construction, Volume 145, <a href="https://doi.org/10.1016/j.autcon.2022.104626">https://doi.org/10.1016/j.autcon.2022.104626</a></p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/a-novel-methodology-for-the-thermographic-cooling-rate-measurement-during-powder-bed-fusion-of-metals-using-a-laser-beam-2-2-2/">Modelling the influence of material and process parameters on shotcrete 3D printing strands – cross-section adjustment for automatic robotic manufacturing</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements</title>
		<link>https://amc-trr277.de/amc-publikation/fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2-2-3-2/</link>
		
		<dc:creator><![CDATA[Lea Schulze]]></dc:creator>
		<pubDate>Tue, 28 Jun 2022 14:10:52 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=5904</guid>

					<description><![CDATA[<p>2022 &#124; Böhler, D., Mai, I., Freund, N., Lachmayer, L., Raatz, A., Lowke, D.: Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements. In: Buswell, R., Blanco, A., Cavalaro, S., Kinnell, P. (eds) Third RILEM...</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2-2-3-2/">Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2022 |</strong> Böhler, D., Mai, I., Freund, N., Lachmayer, L., Raatz, A., Lowke, D.:<strong> Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements.</strong> In: Buswell, R., Blanco, A., Cavalaro, S., Kinnell, P. (eds) Third RILEM International Conference on Concrete and Digital Fabrication. DC 2022. RILEM Bookseries, vol 37. Springer, Cham.<br />
<a href="https://doi.org/10.1007/978-3-031-06116-5_38">https://doi.org/10.1007/978-3-031-06116-5_38</a></p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2-2-3-2/">Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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