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	<title>Dorresteijn, Evelien M. Sc. Archives - Additive Manufacturing in Construction (AMC) TRR277</title>
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		<title>Project A 01</title>
		<link>https://amc-trr277.de/projects/project-area-a/focus-area-project-a01/</link>
		
		<dc:creator><![CDATA[Erasmus Stillner]]></dc:creator>
		<pubDate>Fri, 19 Nov 2021 15:14:00 +0000</pubDate>
				<category><![CDATA[2 spalten]]></category>
		<guid isPermaLink="false">http://amc-trr277.de/?post_type=projects&#038;p=3407</guid>

					<description><![CDATA[<p>The post <a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a01/">Project A 01</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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<div id="wpv-view-layout-4792-TCPID3407" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4792-TCPID3407" data-viewnumber="4792-TCPID3407" data-pagination="{&quot;id&quot;:&quot;4792&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;disabled&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-evelien-dorresteijn/feed/?wpv_view_count=4792-TCPID3407&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-evelien-dorresteijn/feed/?wpv_view_count=4792-TCPID3407">

 
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		<div class="view-single-area thumbnail-m-sc-evelien-dorresteijn, m-sc-friedrich-herding, prof-dr-ing-arno-kwade, prof-dr-ing-dirk-lowke, m-sc-arne-lueddecke, m-sc-niklas-meier, dr-ing-harald-zetzener"><div class="project-icon"><p><img fetchpriority="high" decoding="async" src="https://amc-trr277.de/wp-content/uploads/2021/11/A01_Icon-2022-png-500px.png" alt="" width="500" height="500" /></p>
</div><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/A1-scaled-wpv_600x.jpg" width="600" height="" alt="" /><!-- Conditional Deafult image --></div>
	
	
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</div> <h3 class="first">Approach</h3>
<p><a href="http://amc-trr277.de/wp-content/uploads/2021/11/A01_ApproachGoals.png" data-rel="lightbox-image-bGlnaHRib3gtaW1hZ2UtMA==" data-rl_title="" data-rl_caption="" data-rl_title="" data-rl_caption="" title=""><img loading="lazy" decoding="async" class="alignnone wp-image-4802 size-full" src="http://amc-trr277.de/wp-content/uploads/2021/11/A01_ApproachGoals.png" alt="" width="1432" height="774" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/A01_ApproachGoals.png 1432w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_ApproachGoals-300x162.png 300w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_ApproachGoals-768x415.png 768w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_ApproachGoals-1320x713.png 1320w" sizes="auto, (max-width: 1432px) 100vw, 1432px" /></a></p>
<h3 class="first">Visuals</h3>

<a href='https://amc-trr277.de/wp-content/uploads/2021/11/Bild2.jpg' title="Figure 2: 3D printing of prismatic specimens for bending tensile and compressive strength / Credit: Dreßler, iBMB TU Braunschweig" data-rl_title="Figure 2: 3D printing of prismatic specimens for bending tensile and compressive strength / Credit: Dreßler, iBMB TU Braunschweig" 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/Bild2-900x600.jpg" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/Bild2-900x600.jpg 900w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild2-768x512.jpg 768w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild2.jpg 1039w" sizes="auto, (max-width: 900px) 100vw, 900px" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/Bild8.png' title="Figure 3: De-powdering of a printed column / Credit: Herding, iBMB TU Braunschweig" data-rl_title="Figure 3: De-powdering of a printed column / Credit: Herding, iBMB TU Braunschweig" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="454" height="255" src="https://amc-trr277.de/wp-content/uploads/2021/11/Bild8.png" class="attachment-thumbnail size-thumbnail" alt="" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-1.png' title="Figure 4: SEM image of the surface of an uncoated (left) and a coated (right) sand particle. / Credit: Meier, iPAT TU Braunschweig" data-rl_title="Figure 4: SEM image of the surface of an uncoated (left) and a coated (right) sand particle. / Credit: Meier, iPAT TU Braunschweig" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="774" height="275" src="https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-1.png" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-1.png 774w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-1-768x273.png 768w" sizes="auto, (max-width: 774px) 100vw, 774px" /></a>

<h3>Networking with other projects</h3>
<p class="first"><a href="https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023.png" data-rel="lightbox-image-bGlnaHRib3gtaW1hZ2UtNA==" data-rl_title="" data-rl_caption="" data-rl_title="" data-rl_caption="" title=""><img loading="lazy" decoding="async" class="alignnone size-medium wp-image-7450" src="https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-1500x294.png" alt="" width="1500" height="294" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-1500x294.png 1500w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-900x176.png 900w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-768x150.png 768w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-1536x301.png 1536w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-2048x401.png 2048w, https://amc-trr277.de/wp-content/uploads/2021/11/A01_TRR277-Icons_Vernetzungen_2023-1320x258.png 1320w" sizes="auto, (max-width: 1500px) 100vw, 1500px" /></a></p>
<h3>Poster</h3>
<p><a href="https://amc-trr277.de/wp-content/uploads/2021/11/TRR277_A01_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_A01_Poster_1-DFG-Begutachtung<br/></a> <a href="https://amc-trr277.de/wp-content/uploads/2021/11/TRR277_A01_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_A01_Poster_2-DFG-Begutachtung<br/></a></p>
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<div id="two" class="c2">
<div class="project-summary"><p>Particle-Bed 3D Printing by Selective Cement Activation (SCA) – Sustainability, process enhancement and material models</p>
</div>
<p>The focus of this project is on particle-bed 3D printing (PB3DP) by Selective Cement Activation (SCA) with the aim to gain a fundamental understanding of the involved material-process interactions. In SCA a liquid is selectively applied on a dry particle-bed, consisting of fine aggregates and cement, so that the hydration reaction of the cement and thus the hardening only occurs locally. This process allows in particular the manufacturing of free formed elements with almost no restrictions in shape and topology.</p>
<h3>Aim</h3>
<p>The goal of this project is a fundamental understanding of the material-process interactions in particle-bed 3D printing by Selective Cement Activation. This is necessary to tailor both the material and the process to obtain the desired component properties.</p>
<h3>Networking with other projects</h3>
<p>TThe collaborations will specifically address the following aspects: The usage of RC material for SCA printing (A02), reinforcement integration (A05), computational modelling of the fluid intrusion into the particle-bed (B03), fracture analysis of hardened-state material (C01), shape optimisation of 3D printed elements (C02), sharing expert knowledge about SCA (C04), jointing principles (C05) and the evaluation of the ecological footprint of SCA printing (C09)</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>

 
<div id="wpv-view-layout-3558-CPID3407" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3558-CPID3407" data-viewnumber="3558-CPID3407" data-pagination="{&quot;id&quot;:&quot;3558&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-evelien-dorresteijn/feed/?wpv_view_count=3558-CPID3407&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-evelien-dorresteijn/feed/?wpv_view_count=3558-CPID3407">

	
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		<a class="person-modal" href="#modal-container-prof-dr-ing-arno-kwade" data-lity="">Prof. Dr.-Ing. Arno Kwade</a> 
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  <h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-arno-kwade/">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-arno-kwade/">Kwade, Arno Prof. Dr.-Ing.</a></h2>
<p>Head of the institute for particle technology. Head of iPAT and supports the academic staff regarding the conditioning of particle products.</p>

   

 
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<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>
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		<div class="view-focus-area-a02"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a02/">Project A 02</a></div>
<div class="publication-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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		<a class="person-modal" href="#modal-container-prof-dr-ing-dirk-lowke" data-lity="">Prof. Dr.-Ing. Dirk Lowke</a> 
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  <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>

   

 
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<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>
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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><div id="wp_views-3" class="widget widget_wp_views clearfix"><h3 class="widget-title">Contributors</h3>

 
<div id="wpv-view-layout-3738-CPID3407" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3738-CPID3407" data-viewnumber="3738-CPID3407" 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-evelien-dorresteijn/feed/?wpv_view_count=3738-CPID3407&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-evelien-dorresteijn/feed/?wpv_view_count=3738-CPID3407">

	
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		<a class="person-modal" href="#modal-container-m-sc-evelien-dorresteijn" data-lity="">M. Sc. Evelien Dorresteijn</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-evelien-dorresteijn/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2023/05/Evelien_Dorresteijn-e1683311989596-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-evelien-dorresteijn/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-evelien-dorresteijn/">Dorresteijn, Evelien M. Sc.</a></h2>
<p>is a researcher at Institute of Building Materials, Concrete Construction and Fire Safety and works for the project A01.</p>

   

 
<div id="wpv-view-layout-3566-CPID6614" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID6614" data-viewnumber="3566-CPID6614" 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-evelien-dorresteijn/feed/?wpv_view_count=3566-CPID6614&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-evelien-dorresteijn/feed/?wpv_view_count=3566-CPID6614">

	
<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>
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		<a class="person-modal" href="#modal-container-m-sc-friedrich-herding" data-lity="">M. Sc. Friedrich Herding</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-friedrich-herding/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/csm_Herding_Friedrich_85ef1d517e-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-friedrich-herding/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-friedrich-herding/">Herding, Friedrich M. Sc.</a></h2>
<p>M. Sc. Friedrich Herding is a research associate in the working group of Prof. Dr.-Ing. Dirk Lowke. He is researching the material-process interaction in the SCA process.</p>

   

 
<div id="wpv-view-layout-3566-CPID3571" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID3571" data-viewnumber="3566-CPID3571" 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-evelien-dorresteijn/feed/?wpv_view_count=3566-CPID3571&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-evelien-dorresteijn/feed/?wpv_view_count=3566-CPID3571">

	
<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>
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		<a class="person-modal" href="#modal-container-m-sc-niklas-meier" data-lity="">M. Sc. Niklas Meier</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-niklas-meier/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2022/04/Niklas-Meier-scaled-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-niklas-meier/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-niklas-meier/">Meier, Niklas M. Sc.</a></h2>
<p>is a research associate in the work group of Prof. Dr.-Ing. Arno Kwade. He is responsible for the development of tailored particles for the SCA process.</p>

   

 
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<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>
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		<a class="person-modal" href="#modal-container-dr-ing-harald-zetzener" data-lity="">Dr.-Ing. Harald Zetzener</a> 
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  <a href="https://amc-trr277.de/trr277-people/dr-ing-harald-zetzener/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2021/11/harald-SW-scaled-e1647904627505-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-harald-zetzener/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/dr-ing-harald-zetzener/">Zetzener, Harald Dr.-Ing.</a></h2>
<p>deputy director of the institute for particle technology, head of Division Powder and Slurry Processes, supports Prof. Kwade in leading the project.</p>

   

 
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<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>
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		<div class="view-focus-area-a02"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a02/">Project A 02</a></div>
<div class="publication-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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<h3 class="widget-title">Related Publications</h3>
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		<a class="publication-modal" href="#modal-container-surface-modification-of-bulk-material-for-particle-bed-3d-concrete-printing-effect-on-wettability-porosity-and-mechanical-properties" data-lity="">Surface modification of bulk material for particle bed 3D concrete printing – Effect on wettability, porosity, and mechanical properties</a> 

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<div class="view-Project A 01"><p><strong>2025 | </strong>N. Meier, F. Herding, H. Zetzener, I. Mai, D. Lowke, A. Kwade: <strong>Surface modification of bulk material for particle bed 3D concrete printing – Effect on wettability, porosity, and mechanical properties</strong> Advanced Powder Technology, 2025, <a href="https://doi.org/10.1016/j.apt.2025.105123">https://doi.org/10.1016/j.apt.2025.105123</a></p>
<p><strong>Data |</strong>Zenodo, 2025, <a href="https://doi.org/10.5281/zenodo.17641009">https://doi.org/10.5281/zenodo.17641009</a></p>
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		<a class="publication-modal" href="#modal-container-improving-the-dimensional-accuracy-in-selective-cement-activation-by-w-c-ratio-gradation-2" data-lity="">Improving the Dimensional Accuracy in Selective Cement Activation by w/c-Ratio Gradation</a> 

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<div class="view-Project A 01"><p><strong>2024 |</strong>F. Herding, D. Lowke: <strong>Improving the Dimensional Accuracy in Selective Cement Activation by w/c-Ratio Gradation</strong> Fourth RILEM International Conference on Concrete and Digital Fabrication, 2024,<a href="https://doi.org/10.1007/978-3-031-70031-6_43"> https://doi.org/10.1007/978-3-031-70031-6_43</a></p>
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		<a class="publication-modal" href="#modal-container-breuer-x-am-functional-hybridisation-in-concrete-building-envelope-elements-through-additive-manufacturing-2" data-lity="">BREUER X AM: FUNCTIONAL HYBRIDISATION IN CONCRETE BUILDING ENVELOPE ELEMENTS THROUGH ADDITIVE MANUFACTURING</a> 

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<div class="view-Project A 01, Project C 03, Project C 05, Project C 06"><p><strong>2024 |</strong>J. Fleckenstein, B. Knychalla, D. Briels, A. Baghdadi, G. Placzek, F. Herding, P. Schwerdtner, T. Auer, D. Lowke, H. Kloft, K. Dörfler, P. Ayres, M. Thomson , R. Sheil, M. Skavara:<strong> BREUER X AM: FUNCTIONAL HYBRIDISATION IN CONCRETE BUILDING ENVELOPE ELEMENTS THROUGH ADDITIVE MANUFACTURING</strong> Fabricate 2024: Creating Resourceful Futures, 2024, <a href="https://doi.org/10.2307/jj.11374766.29">https://doi.org/10.2307/jj.11374766.29</a></p>
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		<a class="publication-modal" href="#modal-container-improving-the-dimensional-accuracy-in-selective-cement-activation-by-w-c-ratio-gradation" data-lity="">Improving the dimensional accuracy in selective cement activation by w/c-ratio gradation</a> 

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<div class="view-Project A 01"><p><strong>2024 |</strong>F. Herding, D. Lowke: <strong>Improving the dimensional accuracy in selective cement activation by w/c-ratio gradation</strong>, Fourth RILEM International Conference on Concrete and Digital Fabrication Munich, RILEM Bookseries, vol 53, Springer,  <a href="https://doi.org/10.1007/978-3-031-70031-6_43">https://doi.org/10.1007/978-3-031-70031-6_43</a></p>
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		<a class="publication-modal" href="#modal-container-breuer-x-am-functional-hybridisation-in-concrete-building-envelope-elements-through-additive-manufacturing" data-lity="">BREUER X AM: Functional hybridisation in concrete building envelope elements through additive manufacturing</a> 

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<div class="view-Project A 01, Project C 03, Project C 05, Project C 06"><p><strong>2024 |</strong>J. Fleckenstein, B. Knychalla, D. Briels, A. Baghdadi, G. Placzek, F. Herding, P. Schwerdtner, T. Auer, D. Lowke, H. Kloft, K. Dörfler, P. Ayres, M. R. Thomsen, B. Sheil, M. Skavara: BREUER X AM: Functional hybridisation in concrete building envelope elements through additive manufacturing, Fabricate 2024: Creating Resourceful Futures, UCL Press, 2024, 196–205, <a href="https://doi.org/10.2307/jj.11374766.29">https://doi.org/10.2307/jj.11374766.29</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-23" data-lity="">Surfaces of coastal biogenic structures: exploiting advanced digital design and fabrication strategies for the manufacturing of oyster reef and mussel bed surrogates</a> 

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<div id="modal-container-implementation-of-a-surrogate-model-for-a-novel-path-based-finite-element-simulation-for-additive-manufacturing-processes-in-construction-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-23" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 01"><p><strong>2024 | </strong>J. Hitzegrad, L. Brohmann, F. Herding, K. Pfennings, S. Jonischkies, E. Scharnbeck, J. Mainka, I. Mai, C. Windt, H. Kloft, A. Wehrmann, D. Lowke, N. Goseberg: <strong>Surfaces of coastal biogenic structures: exploiting advanced digital design and fabrication strategies for the manufacturing of oyster reef and mussel bed surrogates</strong>, Front. Mar. Sci., 11:1395025, 2024, https://doi.org/10.3389/fmars.2024.1395025</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-21" data-lity="">Experimental results for mechanical and thermal properties of SCA material</a> 

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<div class="view-Project A 01, Project A 02, Project C 03"><p><strong>2023 | </strong>F. Herding, A. Strasser, D. Briels, D. Lowke, T. Kränkel: <strong>Experimental results for mechanical and thermal properties of SCA material</strong>, Dataset, TUM: Munich, 2023, <a href="https://doi.org/10.14459/2023mp1720074">https://doi.org/10.14459/2023mp1720074</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" data-lity="">Reduction of the cement content in Selective Cement Activation</a> 

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<div class="view-Project A 01"><p><strong>2023 | </strong>F. Herding, I. Mai, D. Lowke: <strong>Reduction of the cement content in Selective Cement Activation.</strong> In: ibausil 2023<br />
<a href="https://doi.org/10.1002/cepa.2826">https://doi.org/10.1002/cepa.2826</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" data-lity="">Effect of Grain Size and Layer Thickness on Hardened State Properties in Selective Cement Activation</a> 

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<div class="view-Project A 01"><p><strong>2023 | </strong>F. Herding, I. Mai, D. Lowke: <strong>Effect of Grain Size and Layer Thickness on Hardened State Properties in Selective Cement Activation.</strong> In: ibausil 2023<br />
<a href="https://doi.org/10.1002/cepa.2816">https://doi.org/10.1002/cepa.2816</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" data-lity="">Particle-bed 3D printing by selective cement activation – Influence of process parameters on particle-bed density</a> 

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<div class="view-Project A 01"><p><strong>2023 | </strong><span lang="EN-US">D. Talke, B. Saile, N. Meier, F. Herding, I. Mai, H. Zetzener, A. Kwade, D. Lowke: <strong>Particle-bed 3D printing by selective cement activation – Influence of process parameters on particle-bed density.</strong> In: <em>Cement and Concrete Research</em>, 168. (2023)<br />
<a href="https://doi.org/10.1016/j.cemconres.2023.107140">https://doi.org/10.1016/j.cemconres.2023.107140</a></span></p>
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		<a class="publication-modal" href="#modal-container-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" data-lity="">Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements</a> 

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<div class="view-Project A 01"><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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		<a class="publication-modal" href="#modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2-2-3" data-lity="">Effect of Curing in Selective Cement Activation</a> 

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<div class="view-Project A 01"><p><strong>2022 |</strong> Herding, F., Mai, I., Lowke, D.: <strong>Effect of Curing in Selective Cement Activation.</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_42">https://doi.org/10.1007/978-3-031-06116-5_42</a></p>
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		<a class="publication-modal" href="#modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2-2-2" data-lity="">Fluid intrusion in powder beds for selective cement activation – an experimental and analytical study</a> 

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<div class="view-Project A 01"><p><strong>2022 |</strong> Mai, I.; Lowke, D.; Perrot, A.: <strong>Fluid intrusion in powder beds for selective cement activation – an experimental and analytical study.</strong> In: Cement and Concrete Research, CCR 156 (106771), 2022<br />
<a href="https://doi.org/10.1016/j.cemconres.2022.106771">https://doi.org/10.1016/j.cemconres.2022.106771</a></p>
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		<a class="publication-modal" href="#modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2-2" data-lity="">Material-process interactions in particle bed 3D printing and the underlying physics</a> 

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<div class="view-Project A 01"><p><strong>2022 |</strong> Lowke, D.; Mai, I.; Keita, E.; Perrot, A.; Weger, D.; Gehlen, C.; Herding, F.; Zuo, Wenqiang; Roussel, N.: <strong>Material-process interactions in particle bed 3D printing and the underlying physics.</strong> In: Cement and Concrete Research, CCR 156 (106748), 2022<br />
<a href="https://doi.org/10.1016/j.cemconres.2022.106748">https://doi.org/10.1016/j.cemconres.2022.106748</a></p>
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		<a class="publication-modal" href="#modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2-2-2-2-2-2" data-lity="">Evaluating the Effect of Methyl Cellulose on Hardened State Properties in Selective Cement Activation</a> 

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<div class="view-Project A 01"><p><strong>2022 |</strong> Mai, I., Herding, F., Lowke, D.: <strong>Evaluating the Effect of Methyl Cellulose on Hardened State Properties in Selective Cement Activation.</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_43">https://doi.org/10.1007/978-3-031-06116-5_43</a></p>
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		<a class="publication-modal" href="#modal-container-material-process-interactions-in-particle-bed-3d-printing-and-the-underlying-physics" data-lity="">Material-process interactions in particle bed 3D printing and the underlying physics</a> 

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<div class="view-Project A 01"><p><strong>2022 |</strong>Lowke, D.; Mai, I.; Keita, E.; Perrot, A.; Weger, D,; Gehlen, C.; Herding, F.; Zuo, W.; Roussel, N.: <strong>Material-process interactions in particle bed 3D printing and the underlying physics,</strong> In: Cement and Concrete Research, Volume 156, June 2022, 106748, DOI: http//:doi.org/<a href="https://www.sciencedirect.com/science/article/abs/pii/S0008884622000394">10.1016/j.cemconres.2022.106748</a></p>
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		<a class="publication-modal" href="#modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study" data-lity="">Fluid intrusion in powder beds for selective cement activation – An experimental and analytical study</a> 

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<div class="view-Project A 01"><p><strong>2022 |</strong>Lowke, D.; Mai, I.; Perrot, A.: <strong>Fluid intrusion in powder beds for selective cement activation – An experimental and analytical study,</strong> In: Cement and Concrete Research, Volume 156, June 2022, 106748, DOI: <a href="https://www.sciencedirect.com/science/article/abs/pii/S000888462200062X">http//:doi.org/10.1016/j.cemconres.2022.106771</a></p>
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		<a class="publication-modal" href="#modal-container-particle-bed-3d-printing-by-selective-cement-activation-applications-material-and-process-technology" data-lity="">Particle bed 3D printing by selective cement activation – Applications, material and process technology</a> 

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<div class="view-Project A 01"><p><strong>2020 | </strong>Lowke, D.; Talke, D.; Dreßler, I.; Weger, D.; Gehlen, C.; Ostertag, C.; Rael, R.: Particle bed 3D printing by selective cement activation – Applications, material and process technology. In: Cement and Concrete Research 134,2020. &#8211; DOI: <a href="https://doi.org/10.1016/j.cemconres.2020.106077">https://doi.org/10.1016/j.cemconres.2020.106077</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-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-a04">
<a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a04/">Project A 04</a>
  <div class="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 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-a01/">Project A 01</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. Evelien Dorresteijn</title>
		<link>https://amc-trr277.de/trr277-people/m-sc-evelien-dorresteijn/</link>
		
		<dc:creator><![CDATA[Alessa Zinn]]></dc:creator>
		<pubDate>Thu, 11 May 2023 15:30:46 +0000</pubDate>
				<category><![CDATA[AMC Researchers]]></category>
		<guid isPermaLink="false">https://amc-trr277.de/?post_type=trr277-people&#038;p=6614</guid>

					<description><![CDATA[<p>is a researcher at Institute of Building Materials, Concrete Construction and Fire Safety and works for the project A01.</p>
<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-evelien-dorresteijn/">M. Sc. Evelien Dorresteijn</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<h1 class="single-thumbnail">M. Sc. Evelien Dorresteijn</h1>
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  <!-- Location --><div class="single-location">Current location: TU Braunschweig</div>
  <!-- Institute --><div class="single-institute">Institute: Institut für Baustoffe, Massivbau und Brandschutz</div>
 <!-- OrciD --><div class="single-orcid">OrcidiD: 0009-0005-6992-6885</div>
  <div class="single-person"><p>e.dorresteijn@ibmb.tu-bs.de</p>
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</div> <p>Evelien Dorresteijn is supported with an AMC &#8216;bridging research fellowship&#8217; in order to start her work as doctoral researchers in 2024. She conducted preliminary research for proposed projects A04 and A10 and are expected to continue as doctoral students in the 2<sup>nd</sup> funding period.</p>
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		<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>
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<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-evelien-dorresteijn/">M. Sc. Evelien Dorresteijn</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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