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Metal particle fusion analysis for additive manufacturing using the stabilized optimal transportation meshfree method

机译:使用稳定的最优传输无网格方法进行增材制造的金属粒子融合分析

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Selective Laser Melting (SLM) is an Additive Manufacturing (AM) process where a powder bed is locally melted. Layer by layer, complex three dimensional geometries including overhangs can be produced. Non-melted powder thereby acts as support structure. The process is held under an inert gas atmosphere to prevent oxidation. The principal machine parameters in SLM processes are the laser power, the scan rate and the laser spot radius. The powder bed is characterized by the material, the packing density and the particle size distribution. These factors define the structure of SLM finished parts. Up to date, the material and process development of SLM mainly relies on experimental studies that are time intensive and costly. Simulation tools offer the potential to gain a deeper understanding of the process-structure-property interaction. This can help to find optimal process parameters and to individualize AM manufactured parts.
机译:选择性激光熔化(SLM)是将粉末床局部熔化的增材制造(AM)工艺。可以逐层生成复杂的三维几何图形,包括悬垂线。因此,未熔化的粉末用作支撑结构。该过程保持在惰性气体气氛下以防止氧化。 SLM过程中的主要机器参数是激光功率,扫描速率和激光光斑半径。粉末床的特征在于材料,堆积密度和粒度分布。这些因素定义了SLM成品零件的结构。迄今为止,SLM的材料和工艺开发主要依靠时间密集且成本高昂的实验研究。仿真工具为深入了解过程-结构-属性交互提供了潜力。这有助于找到最佳工艺参数并个性化AM制造零件。

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