Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics

Spinodoid metamaterials are artificial, architected materials that offer unique properties superior to the corresponding bulk material. This type of structure enables tailored properties to create new opportunities for applications in, e.g., the mobility, health, and energy sectors. Spinodoid metal...

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Main Authors: Florian Lehmann, Juliane Troschitz, Maik Gude
Format: Article
Language:English
Published: MDPI AG 2025-05-01
Series:Engineering Proceedings
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Online Access:https://www.mdpi.com/2673-4591/90/1/113
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author Florian Lehmann
Juliane Troschitz
Maik Gude
author_facet Florian Lehmann
Juliane Troschitz
Maik Gude
author_sort Florian Lehmann
collection DOAJ
description Spinodoid metamaterials are artificial, architected materials that offer unique properties superior to the corresponding bulk material. This type of structure enables tailored properties to create new opportunities for applications in, e.g., the mobility, health, and energy sectors. Spinodoid metal structures only can be manufactured by advanced additive manufacturing technologies such as the laser powder bed fusion (LPBF) process. For various application scenarios of metamaterials, it may be necessary to bond or coat them with thermoplastics. The surface quality of the additively manufactured structure is particularly relevant for the adhesion of the metallic to the thermoplastic structure, as the mechanical adhesion, for example, depends on the roughness and surface properties. Therefore, this paper focuses on the investigation of the surface properties of additively manufactured stainless steel components with dependence on the parameters of the LPBF process with regard to subsequent adhesion with thermoplastics.
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spelling doaj-art-ebe223f07c43464ca2c3e5526a5b840a2025-08-20T02:20:57ZengMDPI AGEngineering Proceedings2673-45912025-05-0190111310.3390/engproc2025090113Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with ThermoplasticsFlorian Lehmann0Juliane Troschitz1Maik Gude2Institute of Lightweight Engineering and Polymer Technology, Dresden University of Technology, 01307 Dresden, GermanyInstitute of Lightweight Engineering and Polymer Technology, Dresden University of Technology, 01307 Dresden, GermanyInstitute of Lightweight Engineering and Polymer Technology, Dresden University of Technology, 01307 Dresden, GermanySpinodoid metamaterials are artificial, architected materials that offer unique properties superior to the corresponding bulk material. This type of structure enables tailored properties to create new opportunities for applications in, e.g., the mobility, health, and energy sectors. Spinodoid metal structures only can be manufactured by advanced additive manufacturing technologies such as the laser powder bed fusion (LPBF) process. For various application scenarios of metamaterials, it may be necessary to bond or coat them with thermoplastics. The surface quality of the additively manufactured structure is particularly relevant for the adhesion of the metallic to the thermoplastic structure, as the mechanical adhesion, for example, depends on the roughness and surface properties. Therefore, this paper focuses on the investigation of the surface properties of additively manufactured stainless steel components with dependence on the parameters of the LPBF process with regard to subsequent adhesion with thermoplastics.https://www.mdpi.com/2673-4591/90/1/113additive manufacturinglaser powder bed fusionstainless steelroughnessremelting
spellingShingle Florian Lehmann
Juliane Troschitz
Maik Gude
Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics
Engineering Proceedings
additive manufacturing
laser powder bed fusion
stainless steel
roughness
remelting
title Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics
title_full Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics
title_fullStr Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics
title_full_unstemmed Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics
title_short Influence of LPBF Process Parameters on the Surface Quality of Stainless Steel on the Adhesion Properties with Thermoplastics
title_sort influence of lpbf process parameters on the surface quality of stainless steel on the adhesion properties with thermoplastics
topic additive manufacturing
laser powder bed fusion
stainless steel
roughness
remelting
url https://www.mdpi.com/2673-4591/90/1/113
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AT maikgude influenceoflpbfprocessparametersonthesurfacequalityofstainlesssteelontheadhesionpropertieswiththermoplastics