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  4. Automated tool-path generation for rapid manufacturing and numerical simulation of additive manufacturing LMD geometries
 
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2019
Conference Paper
Title

Automated tool-path generation for rapid manufacturing and numerical simulation of additive manufacturing LMD geometries

Abstract
In additive manufacturing (AM) Laser Metal Deposition (LMD), parts are built by welding layers of powder feedstock onto a substrate. Applications for steel powders include forging tools and structural components for various industries. For large parts, the choice of tool-paths influences the build-rate, the part performance and the distortions in a highly geometry-dependent manner. With weld-path lengths in the range of hundreds of meters, a reliable, automated tool path generation is essential for the usability of LMD processes. In this contribution, automated tool-path generation approaches are shown and their results are discussed for arbitrary geometries. The investigated path strategies are the classical approaches: ""Zig-zag-"" and ""contour-parallel-strategies"". After generation, the tool-paths are automatically formatted into g-code for experimental build-up and ASCII for a numerical simulation model. Finally, the tool paths are discussed in regards to volume-fill, microstructure and porosity for the experimental samples. This work presents a part of the IGF project 18737N ""Welding distortion simulation"" (FOSTA P1140)
Author(s)
Biegler, Max  
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Wang, Jiahan
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Graf, Benjamin
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Rethmeier, Michael  
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Mainwork
METEC & 4th ESTAD 2019, European Steel Technology and Application Days  
Project(s)
FOSTA
Funder
Bundesministerium für Wirtschaft und Energie  
Conference
International Metallurgical Trade Fair with Congresses (METEC) 2019  
European Steel Technology and Application Days (ESTAD) 2019  
File(s)
Download (951.37 KB)
Rights
Use according to copyright law
DOI
10.24406/publica-fhg-406460
Language
English
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
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