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	<title>Project A 06 Archives - Additive Manufacturing in Construction (AMC) TRR277</title>
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		<title>Project A 06</title>
		<link>https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/</link>
		
		<dc:creator><![CDATA[Erasmus Stillner]]></dc:creator>
		<pubDate>Fri, 19 Nov 2021 15:21:32 +0000</pubDate>
				<category><![CDATA[2 spalten]]></category>
		<guid isPermaLink="false">http://amc-trr277.de/?post_type=projects&#038;p=3418</guid>

					<description><![CDATA[<p>The post <a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</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-TCPID3418" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4792-TCPID3418" data-viewnumber="4792-TCPID3418" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=4792-TCPID3418&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=4792-TCPID3418">

 
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		<div class="view-single-area thumbnail-m-sc-jakob-blankenhagen, m-sc-siegfried-bahr, dr-ing-christina-radlbeck, m-sc-dorina-siebert, julia-suchowerchov-m-sc-2, m-sc-david-l-wenzler, prof-dr-ing-michael-f-zaeh"><div class="project-icon"><p><img fetchpriority="high" decoding="async" src="https://amc-trr277.de/wp-content/uploads/2021/11/A06_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/A06-wpv_600x.jpg" width="600" height="" alt="" /><!-- Conditional Deafult image --></div>
	
	
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<a href='https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-2.png' title="Shape-optimized tensegrity node manufactured by PBF-LB/M (vibratory ground and polished)" data-rl_title="Shape-optimized tensegrity node manufactured by PBF-LB/M (vibratory ground and polished)" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="900" height="674" src="https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-2-900x674.png" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-2-900x674.png 900w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-2-768x575.png 768w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild3-2.png 945w" sizes="auto, (max-width: 900px) 100vw, 900px" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/Bild1A06.png' title="Shape-optimized tensegrity node manufactured by PBF-LB/M(as-built with support structure)" data-rl_title="Shape-optimized tensegrity node manufactured by PBF-LB/M(as-built with support structure)" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="892" height="900" src="https://amc-trr277.de/wp-content/uploads/2021/11/Bild1A06-892x900.png" class="attachment-thumbnail size-thumbnail" alt="" srcset="https://amc-trr277.de/wp-content/uploads/2021/11/Bild1A06-892x900.png 892w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild1A06-768x775.png 768w, https://amc-trr277.de/wp-content/uploads/2021/11/Bild1A06.png 937w" sizes="auto, (max-width: 892px) 100vw, 892px" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/Bild4-1.png' title="Typical microstructure of PBF-LB/M manufactured 316L" data-rl_title="Typical microstructure of PBF-LB/M manufactured 316L" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="641" height="431" src="https://amc-trr277.de/wp-content/uploads/2021/11/Bild4-1.png" class="attachment-thumbnail size-thumbnail" alt="" /></a>
<a href='https://amc-trr277.de/wp-content/uploads/2021/11/bild7.png' title="PBF-LB/M manufactured specimens on the build platform with thermography data" data-rl_title="PBF-LB/M manufactured specimens on the build platform with thermography data" class="rl-gallery-link" data-rl_caption="" data-rel="lightbox-gallery-1"><img loading="lazy" decoding="async" width="648" height="407" src="https://amc-trr277.de/wp-content/uploads/2021/11/bild7.png" class="attachment-thumbnail size-thumbnail" alt="" /></a>

<h3>Networking with other projects</h3>
<p><a href="https://amc-trr277.de/wp-content/uploads/2024/09/A06_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-7465" src="https://amc-trr277.de/wp-content/uploads/2024/09/A06_TRR277-Icons_Vernetzungen_2023-1500x294.png" alt="" width="1500" height="294" srcset="https://amc-trr277.de/wp-content/uploads/2024/09/A06_TRR277-Icons_Vernetzungen_2023-1500x294.png 1500w, https://amc-trr277.de/wp-content/uploads/2024/09/A06_TRR277-Icons_Vernetzungen_2023-900x176.png 900w, https://amc-trr277.de/wp-content/uploads/2024/09/A06_TRR277-Icons_Vernetzungen_2023-768x150.png 768w, https://amc-trr277.de/wp-content/uploads/2024/09/A06_TRR277-Icons_Vernetzungen_2023-1536x301.png 1536w, https://amc-trr277.de/wp-content/uploads/2024/09/A06_TRR277-Icons_Vernetzungen_2023-2048x401.png 2048w, https://amc-trr277.de/wp-content/uploads/2024/09/A06_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/2024/09/TRR277_A06_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_A06_Poster_1-DFG-Begutachtung<br/></a><a href="https://amc-trr277.de/wp-content/uploads/2024/09/TRR277_A06_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_A06_Poster_2-DFG-Begutachtung<br/></a></p>
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<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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<p>This project aims to explore and evaluate the factors influencing the manufacturing of safe and durable structural steel elements by Powder Bed Fusion of Metals using a Laser Beam (PBF-LB/M). Thereby, the PBF-LB/M process, the post-treatment, and the geometrical aspects in terms of microstructure and mechanical properties will be investigated and correlations determined. In the first funding period, it is focused on analyzing small-scale specimens and complex facade elements with multiaxial stress states. Based on the results, a first methodology for a qualified Additive Manufacturing (AM) design of safe and durable structural steel elements will be derived.</p>
<h3>Objective</h3>
<p>Until now, a precise prediction of defined mechanical properties of PBF-LB/M-manufactured steel elements is not possible. To establish the application of PBF-LB/M in the construction industry, civil engineering, and architecture, it is necessary to develop a methodology for the reliable production of durable structural steel elements by using PBF-LB/M.</p>
<h3>Approach</h3>
<p>Initially, the influence of the process parameters on the cooling rates during PBF-LB/M is analyzed using in-process thermography. Besides, the effects of geometric aspects and post-treatments on the mechanical and metallurgical properties of the components will be examined. In the further course of the project, shape-optimized structural steel elements and large-scale components will be designed using the determined interrelations. Subsequently, the elements will be manufactured and tested under real operating conditions. Finally, a methodology for the economic and process-safe use of PBF-LB/M in the construction industry will be derived.</p>
<h3>Networking with other projects</h3>
<ul>
<li><em>B01:</em> Exchange of experimental data for the validation of a mesoscale process simulation</li>
<li><em>A07:</em> Basic investigation of a welded connection of metal parts manufactured with different AM processes</li>
<li><em>C01:</em> Exchange of mechanical testing data for a numerical simulation</li>
<li><em>C02:</em> Intensive exchange to integrate the design restrictions of PBF-LB/M into the shape optimization process for structural steel elements and their support structure</li>
<li><em>C04:</em> Exchange of process characteristics to enhance the building information model</li>
<li><em>C07:</em> Intensive exchange about the process chain of PBF-LB/M</li>
</ul>

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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-CPID3418" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3558-CPID3418" data-viewnumber="3558-CPID3418" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=3558-CPID3418&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=3558-CPID3418">

	
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		<a class="person-modal" href="#modal-container-dr-ing-christina-radlbeck" data-lity="">Dr.-Ing. Christina Radlbeck</a> 
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  <h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/dr-ing-christina-radlbeck/">See profile</a></h3>
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   <h2 class="modal-person-name modal-project-leader"><a href="https://amc-trr277.de/trr277-people/dr-ing-christina-radlbeck/">Radlbeck, Christina Dr.-Ing.</a></h2>
<p>leads scientific teams for AM, fatigue and fracture and aluminium at MB and is responsible for the MB Laboratory. She supervises experiments and provides assistance in analysis and interpre- tation of results</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-project-summary"><p>Laser Powder-Bed Fusion (LPBF) of Steel Elements for Construction – Basics of Design and Mechanical Resilience.</p>
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		<a class="person-modal" href="#modal-container-prof-dr-ing-michael-f-zaeh" data-lity="">Prof. Dr.-Ing. Michael F. Zäh</a> 
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  <h3 class="modal-person-link"><a href="https://amc-trr277.de/trr277-people/prof-dr-ing-michael-f-zaeh/">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-michael-f-zaeh/">Zäh, Michael F. Prof. Dr.-Ing.</a></h2>
<p>guides the scientific staff in the execution of the LPBF experiments.He provides guidance in methods for analysing the main mechanisms of action and the correlation of the results for the whole process chain. Head of iwb and supports the academic staff regarding additive manufacturing, alignment and execution of numerical heat transport simulations, questions during validation and process development.</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<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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		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-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><div id="wp_views-3" class="widget widget_wp_views clearfix"><h3 class="widget-title">Contributors</h3>

 
<div id="wpv-view-layout-3738-CPID3418" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3738-CPID3418" data-viewnumber="3738-CPID3418" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=3738-CPID3418&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=3738-CPID3418">

	
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		<a class="person-modal" href="#modal-container-m-sc-jakob-blankenhagen" data-lity="">M. Sc. Jakob Blankenhagen</a> 
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  <a href="https://amc-trr277.de/trr277-people/m-sc-jakob-blankenhagen/"><img decoding="async" class="attachment-600x size-600x" src="https://amc-trr277.de/wp-content/uploads/2024/02/Blankenhagen_Jakob-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-jakob-blankenhagen/">See profile</a></h3>
 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-jakob-blankenhagen/">Blankenhagen, Jakob M. Sc.</a></h2>
<p>is a doctoral researcher: Conducts scientific studies for the duration of the research project. Performs mechanical testing, fatigue testing, fracture mechanics testing, metallurgical analysis, and investigates the influence of geometry on structural performance. Analyzes all data and prepares reports, presentations, and publications.</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-project-summary"><p>Laser Powder-Bed Fusion (LPBF) of Steel Elements for Construction – Basics of Design and Mechanical Resilience.</p>
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		<a class="person-modal" href="#modal-container-m-sc-dorina-siebert" data-lity="">M. Sc. Dorina Siebert</a> 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-dorina-siebert/">Siebert, Dorina M. Sc.</a></h2>
<p>Doctoral researcher: carrying out scientific studies. She will play a decisive role in planning and conducting fatigue and fracture testing. The evaluation and interpretation of test results is also one of her tasks. Finally she undertakes statistical considerations, which are intended to serve as a basis for the development of design guidelines.”</p>

   

 
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<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-project-summary"><p>Laser Powder-Bed Fusion (LPBF) of Steel Elements for Construction – Basics of Design and Mechanical Resilience.</p>
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		<a class="person-modal" href="#modal-container-julia-suchowerchov-m-sc-2" data-lity="">M. Sc. Julia Suchowerchov</a> 
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    <h2 class="modal-person-name"><a href="https://amc-trr277.de/trr277-people/m-sc-julia-suchowerchov/">Suchowerchov, Julia M. Sc</a></h2>
<p>is a research associate in the working group of Prof. Dr.-Ing. Michael F. Zäh. As an expert in powder bed fusion of metals using a laser beam (PBF-LB/M), she is responsible for the manufacturing process. Her research focuses on process parameter and process monitoring studies to improve material characterization. In addition, she conducts scientific investigations on the manufacturability of compl&#8230;</p>

   

 
<div id="wpv-view-layout-3566-CPID7843" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID7843" data-viewnumber="3566-CPID7843" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=3566-CPID7843&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=3566-CPID7843">

	
<h3 class="widget-title">Project(s)</h3>
	
	
		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-project-summary"><p>Laser Powder-Bed Fusion (LPBF) of Steel Elements for Construction – Basics of Design and Mechanical Resilience.</p>
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<h3 class="widget-title">Related Publications</h3>
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		<a class="publication-modal" href="#modal-container-mechanical-properties-and-microstructure-of-hybrid-manufactured-316-l-using-pbf-lb-m-and-ded-arc-m" data-lity="">Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</a> 

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<div class="view-Project A 06"><p><strong>2025 | </strong>D. L. Wenzler, H. Jahns, J. Mueller, K. U. Beuerlein, F. Riegger, J. Diller, J. Unglaub, C. Radlbeck, J. Hensel, M. Mensinger, K. Thiele, M. F. Zaeh: <strong data-start="150" data-end="252">Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</strong> <em data-start="254" data-end="318">The International Journal of Advanced Manufacturing Technology</em>, 2025, pp. 1–12, <a class="" href="https://doi.org/10.1007/s00170-025-15317-0" target="_new" rel="noopener" data-start="336" data-end="378">https://doi.org/10.1007/s00170-025-15317-0</a>.</p>
<p><strong>Data | </strong>Zenodo, 2025, https://doi.org/10.5281/zenodo.14754610.</p>
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		<a class="publication-modal" href="#modal-container-material-characterization-of-cn-austenitic-stainless-steel-manufactured-by-laser-powder-bed-fusion" data-lity="">Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</a> 

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<div class="view-Project A 06"><p><strong>2025 | </strong>J. Blankenhagen, J. Diller, D.Siebert, P. Hegele, C. Radlbeck, M. Mensinger: <strong>Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</strong> Metals 15, no. 2: 134, <a href="https://doi.org/10.3390/met15020134">https://doi.org/10.3390/met15020134</a></p>
<p><strong>Data |</strong> Zenodo, 2025, <a href="https://doi.org/10.5281/zenodo.15222195">https://doi.org/10.5281/zenodo.15222195</a>.</p>
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		<a class="publication-modal" href="#modal-container-ream250-an-open-source-research-platform-for-process-monitoring-and-control-in-powder-bed-fusion-of-metals-using-a-laser-beam" data-lity="">reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using a laser beam</a> 

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<div class="view-Project A 06"><p><strong>2024 | </strong>D. L. Wenzler, D. Rauner, H. Panzer, T. Mair, L. Kutscherauer, A. Wimmer, D. Wolf, S. Baehr, M. F. Zaeh: <strong>reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using a laser beam</strong> Procedia of 13th CIRP Conference on Photonic Technologies, 2024, <a href="https://doi.org/10.1016/j.procir.2024.08.121">https://doi.org/10.1016/j.procir.2024.08.121</a>.</p>
<p><strong>Data | </strong>An open-source research PBF-LB/M platform, GitHub, 2024, <a href="https://davidwenzler.github.io/reAM250/">https://davidwenzler.github.io/reAM250/</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-25" data-lity="">An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-25" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 06"><p><strong>2024 | </strong>J. Diller, L. Siebert, M. Winkler, D. Siebert, J. Blankenhagen, D. Wenzler, C. Radlbeck, M. Mensinger: <strong>An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</strong>, Fatigue Fract Eng Mater Struct., 2024, 1-16, <a target="_new" rel="noreferrer noopener">https://doi.org/10.1111/ffe.14375</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-24" data-lity="">Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-24" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 06"><p><strong>2024 | </strong>J. Diller, J. Blankenhagen, D. Siebert, C. Radlbeck, M. Mensinger: <strong>Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</strong>, International Journal of Fatigue, Volume 178, 2024, 108025, ISSN 0142-1123, <a href="https://doi.org/10.1016/j.ijfatigue.2023.108025">https://doi.org/10.1016/j.ijfatigue.2023.108025</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-6" data-lity="">Overheating detection in the powder bed fusion of metals using a laser beam through local thermal resistance analysis</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-6" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 06"><p><strong>2023 | </strong>D. L. Wenzler, K. Beuerlein, D. Goetz, F. Zaeh: <strong>Overheating detection in the powder bed fusion of metals using a laser beam through local thermal </strong><strong>resistance analysis.</strong> In: 17th CIRP Conference on Intelligent Computation in Manufacturing Engineering, 2023, submitted and accepted for publication in Procedia CIRP</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" data-lity="">Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process</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" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 06"><p><strong>2023 | </strong>J. Diller, C. Radlbeck, D. Siebert, J. Blankenhagen, D. Gubetini, F. Oberhaidinger, M. Mensinger: <strong>Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process.</strong> In: Engineering proceedings, 2023.<br />
<a href="https://doi.org/10.3390/engproc2023043010">https://doi.org/10.3390/engproc2023043010</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" data-lity="">Node-Based Shape Optimization and Mechanical Test Validation of Complex Metal Components and Support Structures, Manufactured by Laser Powder Bed Fusion</a> 

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<div class="view-Project A 06, Project C 02"><p><strong>2023 | </strong>A. Ghantasala, J. Diller, A. Geiser, D. Wenzler, D. Siebert, C. Radlbeck, R. Wüchner, M. Mensinger, K.U. Bletzinger: <strong>Node-Based Shape Optimization and Mechanical Test Validation of Complex Metal Components and Support Structures, Manufactured by Laser Powder Bed Fusion.</strong> In: Trzcielinski, S., Mrugalska, B., Karwowski, W., Rossi, E., Di Nicolantonio, M. (eds) Advances in Manufacturing, Production Management and Process Control. AHFE 2021. Lecture Notes in Networks and Systems, vol 274. Springer, Cham.<br />
<a href="https://doi.org/10.1007/978-3-030-80462-6_2">https://doi.org/10.1007/978-3-030-80462-6_2</a></p>
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		<a class="publication-modal" href="#modal-container-a-novel-methodology-for-the-thermographic-cooling-rate-measurement-during-powder-bed-fusion-of-metals-using-a-laser-beam" data-lity="">A Novel Methodology for the Thermographic Cooling Rate Measurement during Powder Bed Fusion of Metals Using a Laser Beam.</a> 

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<div id="modal-container-a-novel-methodology-for-the-thermographic-cooling-rate-measurement-during-powder-bed-fusion-of-metals-using-a-laser-beam" class="lity-hide inline overlay-box noscroll inline-content-height">
<div class="inline-content publications-overlay">
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<div class="view-Project A 06"><p><strong>2023 | </strong><span class="markedcontent"><span lang="EN-US">Wenzler, D.L., Bergmeier, K., Baehr, S., Diller, J., Zaeh, M.F.</span></span>:<strong> <span class="markedcontent"><span lang="EN-US"> A Novel Methodology for the Thermographic Cooling Rate Measurement during Powder Bed Fusion of Metals Using a Laser Beam. </span></span><i></i></strong>In: <span class="markedcontent"> Integrating Materials and Manufacturing Innovation.</span> (2023) <a href="https://doi.org/10.1007/s40192-023-00291-w">https://doi.org/10.1007/s40192-023-00291-w</a></p>
</div>
</div>
</div>

	
		<a class="publication-modal" href="#modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-3-2" data-lity="">PBF-LB/M/316L vs. hot-rolled 316L – comparison of cyclic plastic material behavior</a> 

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<div id="modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-3-2" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 06"><p><strong>2022 |</strong> lautet Diller, J.; Siebert, D.; Radlbeck, C.; Mensinger, M: <strong>PBF-LB/M/316L vs. hot-rolled 316L – comparison of cyclic plastic material behavior.</strong> In: Procedia Structual Integrity 2022</p>
</div>
</div>
</div>

	
		<a class="publication-modal" href="#modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2" data-lity="">Methodology to Determine Melt Pool Anomalies in Powder Bed Fusion of Metals Using a Laser Beam by Means of Process Monitoring and Sensor Data Fusion.</a> 

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<div id="modal-container-fluid-intrusion-in-powder-beds-for-selective-cement-activation-an-experimental-and-analytical-study-3-2-2" class="lity-hide inline overlay-box noscroll inline-content-height">
<div class="inline-content publications-overlay">
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<div class="view-Project A 06"><p><strong>2022 |</strong> Harbig, J.; Wenzler, D.L.; Baehr, S.; Kick, M.K.; Merschroth, H.; Wimmer, A.; Weigold, M.; Zaeh, M.F.:<strong> Methodology to Determine Melt Pool Anomalies in Powder Bed Fusion of Metals Using a Laser Beam by Means of Process Monitoring and Sensor Data Fusion.</strong> In: Materials, 2022, 15, 1265. <a href="https://doi.org/10.3390/ma15031265">https://doi.org/10.3390/ma15031265</a></p>
</div>
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</div>

	
		<a class="publication-modal" href="#modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-4" data-lity="">Cyclic plastic material behavior of 316L manufactured by laser powder bed fusion (PBF-LB/M).</a> 

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<div id="modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-4" class="lity-hide inline overlay-box noscroll inline-content-height">
<div class="inline-content publications-overlay">
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<div class="view-Project A 06"><p><strong>2022 |</strong> Diller, J.; Rier, L.; Siebert, D.; Radlbeck, C.; Krafft, F.; Mensinger, M.:<strong> Cyclic plastic material behavior of 316L manufactured by laser powder bed fusion (PBF-LB/M). ,</strong> In: Materials Characterization, Volume 191, 2022, 112153, ISSN 1044-5803, <a href="https://doi.org/10.1016/j.matchar.2022.112153">https://doi.org/10.1016/j.matchar.2022.112153</a>.</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
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		<a class="publication-modal" href="#modal-container-node-based-shape-optimization-and-mechanical-test-validation-of-complex-metal-components-and-support-structures-manufactured-by-laser-powder-bed-fusion" data-lity="">Node-Based Shape Optimization and Mechanical Test Validation of Complex Metal Components and Support Structures, Manufactured by Laser Powder Bed Fusion</a> 

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<div id="modal-container-node-based-shape-optimization-and-mechanical-test-validation-of-complex-metal-components-and-support-structures-manufactured-by-laser-powder-bed-fusion" class="lity-hide inline overlay-box noscroll inline-content-height">
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<div class="view-Project A 06, Project C 02"><p><strong>2021 | </strong>Ghantasala, A.; Diller, J.; Geiser, A.; Wenzler, D.; Siebert, D.; Radlbeck, C.; Wüchner, R.;  Mensinger, M.; Bletzinger, K.U.: Node-Based Shape Optimization and Mechanical Test Validation of Complex Metal Components and Support Structures, Manufactured by Laser Powder Bed Fusion. In: <em>Advances in Manufacturing</em>, Production Management and Process Control. AHFE 2021; Lecture Notes in Networks and Systems, vol 274. Springer, Cham. &#8211; DOI: <a href="https://doi.org/10.1007/978-3-030-80462-6_2" target="_blank" rel="noopener noreferrer">https://doi.org/10.1007/978-3-030-80462-6_2</a>.</p>
</div>
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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" data-lity="">Einfluss der Abkühlrate auf das Korngefüge von Bauteilen aus austenitischem Edelstahl, hergestellt durch pulverbettbasiertes Laserstrahlschmelzen</a> 

<!-- CModal Overlay -->
<div id="modal-container-cyclic-plastic-material-behavior-of-316l-manufactured-by-laser-powder-bed-fusion-pbf-lb-m-3" class="lity-hide inline overlay-box noscroll inline-content-height">
<div class="inline-content publications-overlay">
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<div class="view-Project A 06"><p><strong>2020 |</strong> Diller, J.; Radlbeck, C.; Mensinger, M: <strong>Einfluss der Abkühlrate auf das Korngefüge von Bauteilen aus austenitischem Edelstahl, hergestellt durch pulverbettbasiertes Laserstrahlschmelzen (LPBF)</strong> In: DASt-Kolloqium 2020</p>
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<div id="wpv-view-layout-3781-TCPID3418" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3781-TCPID3418" data-viewnumber="3781-TCPID3418" data-pagination="{&quot;id&quot;:&quot;3781&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;&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;:0,&quot;max_pages&quot;:0,&quot;page&quot;:1,&quot;base_permalink&quot;:&quot;/focus-area-project/focus-area-a06/feed/?wpv_view_count=3781-TCPID3418&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=3781-TCPID3418">


<div class="sidebar-focus-area-a">
  <h3>More projects of <br>Focus Area A</h3>
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		<div class="view-focus-area container-focus-area-a01">
<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-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>
</div>
</div>

	
		<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>
</div>
</div>

	
		<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>
</div>
</div>

	
		<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>
</div>
</div>

	
		<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-a06/">Project A 06</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. Jakob Blankenhagen</title>
		<link>https://amc-trr277.de/trr277-people/m-sc-jakob-blankenhagen/</link>
		
		<dc:creator><![CDATA[Meike Bährens]]></dc:creator>
		<pubDate>Wed, 07 Feb 2024 14:33:06 +0000</pubDate>
				<category><![CDATA[AMC Researchers]]></category>
		<guid isPermaLink="false">https://amc-trr277.de/?post_type=trr277-people&#038;p=7094</guid>

					<description><![CDATA[<p>is a doctoral researcher: Conducts scientific studies for the duration of the research project. Performs mechanical testing, fatigue testing, fracture mechanics testing, metallurgical analysis, and investigates the influence of geometry on structural performance. Analyzes all data and prepares reports, presentations, and publications.</p>
<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-jakob-blankenhagen/">M. Sc. Jakob Blankenhagen</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-4786-TCPID7094" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4786-TCPID7094" data-viewnumber="4786-TCPID7094" data-pagination="{&quot;id&quot;:&quot;4786&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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=4786-TCPID7094&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=4786-TCPID7094">


<div class="masonry-grid">

	
		<h1 class="single-thumbnail">M. Sc. Jakob Blankenhagen</h1>
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  <!-- Location --><div class="single-location">Current location: TU München</div>
  <!-- Institute --><div class="single-institute">Institute: Chair of Metal Structures</div>
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  <div class="single-person"><p><a class="email" title="E-Mail" href="mailto:jakob.blankenhagen@tum.de">jakob.blankenhagen@tum.de</a></p>
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</div>


</div> <p>is a doctoral researcher: Conducts scientific studies for the duration of the research project. Performs mechanical testing, fatigue testing, fracture mechanics testing, metallurgical analysis, and investigates the influence of geometry on structural performance. Analyzes all data and prepares reports, presentations, and publications.</p>
</div>
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<div id="wpv-view-layout-3566-CPID7094" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3566-CPID7094" data-viewnumber="3566-CPID7094" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=3566-CPID7094&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=3566-CPID7094">

	
<h3 class="widget-title">Project(s)</h3>
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		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-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 id="wpv-view-layout-3812-TCPID7094" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-3812-TCPID7094" data-viewnumber="3812-TCPID7094" data-pagination="{&quot;id&quot;:&quot;3812&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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=3812-TCPID7094&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=3812-TCPID7094">

 

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		<div class="sidebar-m-sc-jakob-blankenhagen publications-sidebar">
  <!-- Conditional Info: Publications --><h3 class="widget-title publications-title">Publications</h3><!-- End Conditional Info: Publications -->
 

  
<div id="wpv-view-layout-4214-CPID7094" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4214-CPID7094" data-viewnumber="4214-CPID7094" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=4214-CPID7094&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=4214-CPID7094">

	
	
	
		<div class="view-publication-single"><p><strong>2025 | </strong>J. Blankenhagen, J. Diller, D.Siebert, P. Hegele, C. Radlbeck, M. Mensinger: <strong>Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</strong> Metals 15, no. 2: 134, <a href="https://doi.org/10.3390/met15020134">https://doi.org/10.3390/met15020134</a></p>
<p><strong>Data |</strong> Zenodo, 2025, <a href="https://doi.org/10.5281/zenodo.15222195">https://doi.org/10.5281/zenodo.15222195</a>.</p>
</div>
	
		<div class="view-publication-single"><p><strong>2024 | </strong>J. Diller, L. Siebert, M. Winkler, D. Siebert, J. Blankenhagen, D. Wenzler, C. Radlbeck, M. Mensinger: <strong>An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</strong>, Fatigue Fract Eng Mater Struct., 2024, 1-16, <a target="_new" rel="noreferrer noopener">https://doi.org/10.1111/ffe.14375</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2024 | </strong>J. Diller, J. Blankenhagen, D. Siebert, C. Radlbeck, M. Mensinger: <strong>Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</strong>, International Journal of Fatigue, Volume 178, 2024, 108025, ISSN 0142-1123, <a href="https://doi.org/10.1016/j.ijfatigue.2023.108025">https://doi.org/10.1016/j.ijfatigue.2023.108025</a></p>
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<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-jakob-blankenhagen/">M. Sc. Jakob Blankenhagen</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. Johannes Diller</title>
		<link>https://amc-trr277.de/trr277-people/m-sc-johannes-diller/</link>
		
		<dc:creator><![CDATA[Erasmus Stillner]]></dc:creator>
		<pubDate>Thu, 25 Nov 2021 16:42:31 +0000</pubDate>
				<category><![CDATA[Alumni]]></category>
		<category><![CDATA[associates]]></category>
		<guid isPermaLink="false">http://amc-trr277.de/?post_type=trr277-people&#038;p=3637</guid>

					<description><![CDATA[<p>Doctoral researcher: for the duration of the research project carrying out the scientific studies. He will execute heat treatment, mechanical testing, and metallurgical analysis, the investigation of geometry influence on structural performance and finally the analysis of results in view of first AM design guidelines.</p>
<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-johannes-diller/">M. Sc. Johannes Diller</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-4786-TCPID3637" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4786-TCPID3637" data-viewnumber="4786-TCPID3637" data-pagination="{&quot;id&quot;:&quot;4786&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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=4786-TCPID3637&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=4786-TCPID3637">


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		<h1 class="single-thumbnail">M. Sc. Johannes Diller</h1>
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  <!-- Location --><div class="single-location">Current location: TU München</div>
  <!-- Institute --><div class="single-institute">Institute: Chair of Metal Structures</div>
 <!-- OrciD --><div class="single-orcid">OrcidiD: 0000-0002-0059-0544</div>
  <div class="single-person"><p><a href="mailto:johannes.diller@tum.de">johannes.diller@tum.de</a></p>
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</div> <p>Doctoral researcher: for the duration of the research project carrying out the scientific studies. He will execute heat treatment, mechanical testing, and metallurgical analysis, the investigation of geometry influence on structural performance and finally the analysis of results in view of first AM design guidelines.</p>
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<h3 class="widget-title">Project(s)</h3>
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		<div class="view-focus-area-a06"><a href="https://amc-trr277.de/projects/project-area-a/focus-area-project-a06/">Project A 06</a></div>
<div class="publication-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="sidebar-m-sc-johannes-diller publications-sidebar">
  <!-- Conditional Info: Publications --><h3 class="widget-title publications-title">Publications</h3><!-- End Conditional Info: Publications -->
 

  
<div id="wpv-view-layout-4214-CPID3637" class="js-wpv-view-layout js-wpv-layout-responsive js-wpv-view-layout-4214-CPID3637" data-viewnumber="4214-CPID3637" 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;/focus-area-project/focus-area-a06/feed/?wpv_view_count=4214-CPID3637&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="/focus-area-project/focus-area-a06/feed/?wpv_view_count=4214-CPID3637">

	
	
	
		<div class="view-publication-single"><p><strong>2025 | </strong>D. L. Wenzler, H. Jahns, J. Mueller, K. U. Beuerlein, F. Riegger, J. Diller, J. Unglaub, C. Radlbeck, J. Hensel, M. Mensinger, K. Thiele, M. F. Zaeh: <strong data-start="150" data-end="252">Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</strong> <em data-start="254" data-end="318">The International Journal of Advanced Manufacturing Technology</em>, 2025, pp. 1–12, <a class="" href="https://doi.org/10.1007/s00170-025-15317-0" target="_new" rel="noopener" data-start="336" data-end="378">https://doi.org/10.1007/s00170-025-15317-0</a>.</p>
<p><strong>Data | </strong>Zenodo, 2025, https://doi.org/10.5281/zenodo.14754610.</p>
</div>
	
		<div class="view-publication-single"><p><strong>2025 | </strong>J. Blankenhagen, J. Diller, D.Siebert, P. Hegele, C. Radlbeck, M. Mensinger: <strong>Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</strong> Metals 15, no. 2: 134, <a href="https://doi.org/10.3390/met15020134">https://doi.org/10.3390/met15020134</a></p>
<p><strong>Data |</strong> Zenodo, 2025, <a href="https://doi.org/10.5281/zenodo.15222195">https://doi.org/10.5281/zenodo.15222195</a>.</p>
</div>
	
		<div class="view-publication-single"><p><strong>2024 | </strong>J. Diller, L. Siebert, M. Winkler, D. Siebert, J. Blankenhagen, D. Wenzler, C. Radlbeck, M. Mensinger: <strong>An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</strong>, Fatigue Fract Eng Mater Struct., 2024, 1-16, <a target="_new" rel="noreferrer noopener">https://doi.org/10.1111/ffe.14375</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2024 | </strong>J. Diller, J. Blankenhagen, D. Siebert, C. Radlbeck, M. Mensinger: <strong>Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</strong>, International Journal of Fatigue, Volume 178, 2024, 108025, ISSN 0142-1123, <a href="https://doi.org/10.1016/j.ijfatigue.2023.108025">https://doi.org/10.1016/j.ijfatigue.2023.108025</a></p>
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		<div class="view-publication-single"><p><strong>2023 | </strong>J. Diller, C. Radlbeck, D. Siebert, J. Blankenhagen, D. Gubetini, F. Oberhaidinger, M. Mensinger: <strong>Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process.</strong> In: Engineering proceedings, 2023.<br />
<a href="https://doi.org/10.3390/engproc2023043010">https://doi.org/10.3390/engproc2023043010</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2023 | </strong>A. Ghantasala, J. Diller, A. Geiser, D. Wenzler, D. Siebert, C. Radlbeck, R. Wüchner, M. Mensinger, K.U. Bletzinger: <strong>Node-Based Shape Optimization and Mechanical Test Validation of Complex Metal Components and Support Structures, Manufactured by Laser Powder Bed Fusion.</strong> In: Trzcielinski, S., Mrugalska, B., Karwowski, W., Rossi, E., Di Nicolantonio, M. (eds) Advances in Manufacturing, Production Management and Process Control. AHFE 2021. Lecture Notes in Networks and Systems, vol 274. Springer, Cham.<br />
<a href="https://doi.org/10.1007/978-3-030-80462-6_2">https://doi.org/10.1007/978-3-030-80462-6_2</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2023 | </strong><span class="markedcontent"><span lang="EN-US">Wenzler, D.L., Bergmeier, K., Baehr, S., Diller, J., Zaeh, M.F.</span></span>:<strong> <span class="markedcontent"><span lang="EN-US"> A Novel Methodology for the Thermographic Cooling Rate Measurement during Powder Bed Fusion of Metals Using a Laser Beam. </span></span><i></i></strong>In: <span class="markedcontent"> Integrating Materials and Manufacturing Innovation.</span> (2023) <a href="https://doi.org/10.1007/s40192-023-00291-w">https://doi.org/10.1007/s40192-023-00291-w</a></p>
</div>
	
		<div class="view-publication-single"><p><strong>2022 |</strong> lautet Diller, J.; Siebert, D.; Radlbeck, C.; Mensinger, M: <strong>PBF-LB/M/316L vs. hot-rolled 316L – comparison of cyclic plastic material behavior.</strong> In: Procedia Structual Integrity 2022</p>
</div>
	
		<div class="view-publication-single"><p><strong>2022 |</strong> Diller, J.; Rier, L.; Siebert, D.; Radlbeck, C.; Krafft, F.; Mensinger, M.:<strong> Cyclic plastic material behavior of 316L manufactured by laser powder bed fusion (PBF-LB/M). ,</strong> In: Materials Characterization, Volume 191, 2022, 112153, ISSN 1044-5803, <a href="https://doi.org/10.1016/j.matchar.2022.112153">https://doi.org/10.1016/j.matchar.2022.112153</a>.</p>
<p>&nbsp;</p>
<p>&nbsp;</p>
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		<div class="view-publication-single"><p><strong>2021 | </strong>Ghantasala, A.; Diller, J.; Geiser, A.; Wenzler, D.; Siebert, D.; Radlbeck, C.; Wüchner, R.;  Mensinger, M.; Bletzinger, K.U.: Node-Based Shape Optimization and Mechanical Test Validation of Complex Metal Components and Support Structures, Manufactured by Laser Powder Bed Fusion. In: <em>Advances in Manufacturing</em>, Production Management and Process Control. AHFE 2021; Lecture Notes in Networks and Systems, vol 274. Springer, Cham. &#8211; DOI: <a href="https://doi.org/10.1007/978-3-030-80462-6_2" target="_blank" rel="noopener noreferrer">https://doi.org/10.1007/978-3-030-80462-6_2</a>.</p>
</div>
	
		<div class="view-publication-single"><p><strong>2020 |</strong> Diller, J.; Radlbeck, C.; Mensinger, M: <strong>Einfluss der Abkühlrate auf das Korngefüge von Bauteilen aus austenitischem Edelstahl, hergestellt durch pulverbettbasiertes Laserstrahlschmelzen (LPBF)</strong> In: DASt-Kolloqium 2020</p>
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<p>The post <a href="https://amc-trr277.de/trr277-people/m-sc-johannes-diller/">M. Sc. Johannes Diller</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</title>
		<link>https://amc-trr277.de/amc-publikation/mechanical-properties-and-microstructure-of-hybrid-manufactured-316-l-using-pbf-lb-m-and-ded-arc-m/</link>
		
		<dc:creator><![CDATA[Ida Mantey]]></dc:creator>
		<pubDate>Mon, 31 Mar 2025 13:54:36 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7822</guid>

					<description><![CDATA[<p>2025 &#124; D. L. Wenzler, H. Jahns, J. Mueller, K. U. Beuerlein, F. Riegger, J. Diller, J. Unglaub, C. Radlbeck, J. Hensel, M. Mensinger, K. Thiele, M. F. Zaeh: Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and...</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/mechanical-properties-and-microstructure-of-hybrid-manufactured-316-l-using-pbf-lb-m-and-ded-arc-m/">Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p><strong>2025 | </strong>D. L. Wenzler, H. Jahns, J. Mueller, K. U. Beuerlein, F. Riegger, J. Diller, J. Unglaub, C. Radlbeck, J. Hensel, M. Mensinger, K. Thiele, M. F. Zaeh: <strong data-start="150" data-end="252">Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</strong> <em data-start="254" data-end="318">The International Journal of Advanced Manufacturing Technology</em>, 2025, pp. 1–12, <a class="" href="https://doi.org/10.1007/s00170-025-15317-0" target="_new" rel="noopener" data-start="336" data-end="378">https://doi.org/10.1007/s00170-025-15317-0</a>.</p>
<p><strong>Data | </strong>Zenodo, 2025, https://doi.org/10.5281/zenodo.14754610.</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/mechanical-properties-and-microstructure-of-hybrid-manufactured-316-l-using-pbf-lb-m-and-ded-arc-m/">Mechanical properties and microstructure of hybrid-manufactured 316 L using PBF-LB/M and DED-Arc/M</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</title>
		<link>https://amc-trr277.de/amc-publikation/material-characterization-of-cn-austenitic-stainless-steel-manufactured-by-laser-powder-bed-fusion/</link>
		
		<dc:creator><![CDATA[Ida Mantey]]></dc:creator>
		<pubDate>Thu, 30 Jan 2025 08:56:20 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7721</guid>

					<description><![CDATA[<p>2025 &#124; J. Blankenhagen, J. Diller, D.Siebert, P. Hegele, C. Radlbeck, M. Mensinger: Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion Metals 15, no. 2: 134, https://doi.org/10.3390/met15020134 Data &#124; Zenodo, 2025, https://doi.org/10.5281/zenodo.15222195.</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/material-characterization-of-cn-austenitic-stainless-steel-manufactured-by-laser-powder-bed-fusion/">Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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										<content:encoded><![CDATA[<p><strong>2025 | </strong>J. Blankenhagen, J. Diller, D.Siebert, P. Hegele, C. Radlbeck, M. Mensinger: <strong>Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</strong> Metals 15, no. 2: 134, <a href="https://doi.org/10.3390/met15020134">https://doi.org/10.3390/met15020134</a></p>
<p><strong>Data |</strong> Zenodo, 2025, <a href="https://doi.org/10.5281/zenodo.15222195">https://doi.org/10.5281/zenodo.15222195</a>.</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/material-characterization-of-cn-austenitic-stainless-steel-manufactured-by-laser-powder-bed-fusion/">Material Characterization of (CN) Austenitic Stainless Steel Manufactured by Laser Powder Bed Fusion</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using a laser beam</title>
		<link>https://amc-trr277.de/amc-publikation/ream250-an-open-source-research-platform-for-process-monitoring-and-control-in-powder-bed-fusion-of-metals-using-a-laser-beam/</link>
		
		<dc:creator><![CDATA[Alessa Zinn]]></dc:creator>
		<pubDate>Tue, 19 Nov 2024 17:29:48 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7654</guid>

					<description><![CDATA[<p>2024 &#124; D. L. Wenzler, D. Rauner, H. Panzer, T. Mair, L. Kutscherauer, A. Wimmer, D. Wolf, S. Baehr, M. F. Zaeh: reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using...</p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/ream250-an-open-source-research-platform-for-process-monitoring-and-control-in-powder-bed-fusion-of-metals-using-a-laser-beam/">reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using a laser beam</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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										<content:encoded><![CDATA[<p><strong>2024 | </strong>D. L. Wenzler, D. Rauner, H. Panzer, T. Mair, L. Kutscherauer, A. Wimmer, D. Wolf, S. Baehr, M. F. Zaeh: <strong>reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using a laser beam</strong> Procedia of 13th CIRP Conference on Photonic Technologies, 2024, <a href="https://doi.org/10.1016/j.procir.2024.08.121">https://doi.org/10.1016/j.procir.2024.08.121</a>.</p>
<p><strong>Data | </strong>An open-source research PBF-LB/M platform, GitHub, 2024, <a href="https://davidwenzler.github.io/reAM250/">https://davidwenzler.github.io/reAM250/</a></p>
<p>The post <a href="https://amc-trr277.de/amc-publikation/ream250-an-open-source-research-platform-for-process-monitoring-and-control-in-powder-bed-fusion-of-metals-using-a-laser-beam/">reAM250 — An open-source research platform for process monitoring and control in Powder Bed Fusion of Metals using a laser beam</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-25/</link>
		
		<dc:creator><![CDATA[Ida Mantey]]></dc:creator>
		<pubDate>Wed, 03 Jul 2024 09:20:28 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7349</guid>

					<description><![CDATA[<p>2024 &#124; J. Diller, L. Siebert, M. Winkler, D. Siebert, J. Blankenhagen, D. Wenzler, C. Radlbeck, M. Mensinger: An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals...</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-25/">An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</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>J. Diller, L. Siebert, M. Winkler, D. Siebert, J. Blankenhagen, D. Wenzler, C. Radlbeck, M. Mensinger: <strong>An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</strong>, Fatigue Fract Eng Mater Struct., 2024, 1-16, <a target="_new" rel="noreferrer noopener">https://doi.org/10.1111/ffe.14375</a></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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-25/">An integrated approach for detecting and classifying pores and surface topology for fatigue assessment 316L manufactured by powder bed fusion of metals using a laser beam using CT and machine learning algorithms</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-24/</link>
		
		<dc:creator><![CDATA[Ida Mantey]]></dc:creator>
		<pubDate>Wed, 03 Jul 2024 09:02:14 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=7348</guid>

					<description><![CDATA[<p>2024 &#124; J. Diller, J. Blankenhagen, D. Siebert, C. Radlbeck, M. Mensinger: Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M), International Journal of...</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-24/">Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</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>J. Diller, J. Blankenhagen, D. Siebert, C. Radlbeck, M. Mensinger: <strong>Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</strong>, International Journal of Fatigue, Volume 178, 2024, 108025, ISSN 0142-1123, <a href="https://doi.org/10.1016/j.ijfatigue.2023.108025">https://doi.org/10.1016/j.ijfatigue.2023.108025</a></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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-24/">Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M)</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Overheating detection in the powder bed fusion of metals using a laser beam through local thermal resistance analysis</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-6/</link>
		
		<dc:creator><![CDATA[Lea Schulze]]></dc:creator>
		<pubDate>Tue, 14 Nov 2023 10:15:18 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=6911</guid>

					<description><![CDATA[<p>2023 &#124; D. L. Wenzler, K. Beuerlein, D. Goetz, F. Zaeh: Overheating detection in the powder bed fusion of metals using a laser beam through local thermal resistance analysis. In: 17th CIRP Conference on Intelligent Computation in Manufacturing Engineering, 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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-6/">Overheating detection in the powder bed fusion of metals using a laser beam through local thermal resistance analysis</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. L. Wenzler, K. Beuerlein, D. Goetz, F. Zaeh: <strong>Overheating detection in the powder bed fusion of metals using a laser beam through local thermal </strong><strong>resistance analysis.</strong> In: 17th CIRP Conference on Intelligent Computation in Manufacturing Engineering, 2023, submitted and accepted for publication in Procedia CIRP</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-6/">Overheating detection in the powder bed fusion of metals using a laser beam through local thermal resistance analysis</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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		<title>Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/</link>
		
		<dc:creator><![CDATA[Lea Schulze]]></dc:creator>
		<pubDate>Thu, 05 Oct 2023 14:28:22 +0000</pubDate>
				<guid isPermaLink="false">https://amc-trr277.de/?post_type=amc-publikation&#038;p=6804</guid>

					<description><![CDATA[<p>2023 &#124; J. Diller, C. Radlbeck, D. Siebert, J. Blankenhagen, D. Gubetini, F. Oberhaidinger, M. Mensinger: Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process. In: Engineering...</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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/">Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process</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>J. Diller, C. Radlbeck, D. Siebert, J. Blankenhagen, D. Gubetini, F. Oberhaidinger, M. Mensinger: <strong>Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process.</strong> In: Engineering proceedings, 2023.<br />
<a href="https://doi.org/10.3390/engproc2023043010">https://doi.org/10.3390/engproc2023043010</a></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-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2-2/">Additive Manufacturing in Construction &#8211; Implementing Powder-Bed Fusion of Metals Using a Laser ({PBF}-{LB}/M) and Shape Optimization in the Construction Design Process</a> appeared first on <a href="https://amc-trr277.de">Additive Manufacturing in Construction (AMC) TRR277</a>.</p>
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