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Titlebook: Industrializing Additive Manufacturing - Proceedings of Additive Manufacturing in Products and Appli; Mirko Meboldt,Christoph Klahn Confer

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Finite Element Modeling of Ceramic Deposition by LBM(SLM) Additive Manufacturinges of the Marangoni coefficient. Its influence on the temperature distribution, the shape of melt pool and thus the shape of solidified track is presented. The role of Marangoni convection on the stability of melt pool and the surface quality of the final track are also discussed.
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Macroscopic Finite Element Thermal Modelling of Selective Laser Melting for IN718 Real Part Geometriack the interface between the constructed workpiece and non-melted powder, and interface between the gas domain and the successive powder bed layers In order to reach the simulation in macroscopic scale of real part geometries in a reasonable simulation time, the energy input and the formation of th
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Additive Manufacturing of Semiconductor Silicon on Silicon Using Direct Laser Meltingl number of materials can be processed by AM, either in a powder bed approach or in a direct energy deposition approach..We propose to extend AM to a new class of materials: semiconductors. We process silicon powders by direct laser melting (DLM), and we present the experimental setup in details..AM
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Additive Manufacturing of Complex Ceramic Architecturesconsists in the fact that components can be designed for their function and no longer for their manufacturability. This is already a reality for plastic and metallic components where new disruptive designs have been already produced at competitive costs..Following the AM hype, the ceramic industry i
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An Advanced STEP-NC Platform for Additive Manufacturingoducts with a wide range of materials. These processes can considerably change the process chain organization and therefore are growing interest in both academics and industrials. Despite these developments in this field, many problems remain on current digital chain that uses old format such as STL
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