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Titlebook: Industrializing Additive Manufacturing; Proceedings of AMPA2 Christoph Klahn,Mirko Meboldt,Julian Ferchow Conference proceedings 2024 The E

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Joakim Larsson,Per Lindström,Christer Korin,Jens Ekengren,Patrik Karlsson tion, and reasoning on information and knowledge, and their manipulation in the systems, in addition to understanding and designing the functions of the systems. The conceptualization process 978-3-540-44277-6978-3-540-45816-6Series ISSN 0302-9743 Series E-ISSN 1611-3349
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Comparative Evaluation of Optimization Algorithms for Automatic Build Orientation for Powder Bed Fuser, supporting, etc.) are required. In the current state of the art digital process chains, these steps are done manually by an engineer, utilizing specialized AM preparation software, e.g., Autodesk Netfabb or Materialise Magics. Especially the part orientation has a significant impact on part qual
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Designing Variable Thickness Sheets for Additive Manufacturing Using Topology Optimization with Greyility, e.g. by material extrusion-based AM (MEX) or Laser-Beam Powder-Bed-Fusion of Metals (PBF-LB/M), a minimum structure thickness has often to be maintained. In this paper, a simple interpolation scheme for penalizing grey-scale densities in topology optimization is applied. It locally reduces th
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Sustainability-Oriented Topology Optimization Towards a More Holistic Design for Additive Manufacturrint and possibly more. In balancing the latter, results of design changes are frequently counterintuitive, and this happens especially when it comes to sustainability-related qualities. The latter are commonly modeled by a Life-Cycle Assessment (LCA) of the fabrication and use-phase. However, it is
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Integration of the Whole Digital Chain in a Unique File for PBF-LB/M: Practical Implementation Withier beam of Metals (PBF-LB/M) reached a level of high performance in terms of process stability and material spectrum. However, the digital process chain, starting from CAD via CAM and plant-specific compilation of the manufacturing file exhibits media disruptions. The consequence is a loss of metada
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Approach to an Automated Method for Load-Optimized Design of Multimaterial Joints for Additive Manufso bring new challenges such as creating a sufficiently strong bond between materials and ensuring their continued recyclability. This paper presents a method for designing structures for joining different materials based on the use of experimentally determined values and artificial intelligence..Th
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