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A comparison of material models for the simulation of selective beam melting processes

机译:选择光束熔化过程模拟材料模型的比较

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The focus of this contribution lies on the comparison of different material models for the thermo-mechanical simulation of selective laser melting (SLM) processes. A Finite Element (FE) framework for the analysis of residual stresses and distortions in laser beam melting processes is introduced. The FE solver for the thermo-mechanical problem uses a staggered algorithm, is based on the open source finite element library deal.ii and makes use of heavy parallelization. The most important aspects to be investigated here are the mechanical material behavior and stress relaxation in the range of the melting temperature. Material models, which reset certain variables as stress and plastic strain to zero at a critical temperature are compared to a thermo-viscoplastic constitutive law. Simulations, related to the SLM process of Ti-6Al-4V, are performed to compare the residual stresses and plastic strains predicted by different models after melting and cooling. Furthermore, the validity of geometrically linearized material model is analyzed.
机译:该贡献的重点在于对不同材料模型进行选择性激光熔化(SLM)工艺的热电机模拟的比较。介绍了用于分析激光束熔化过程中残余应力和扭曲的有限元素(FE)框架。用于热机械问题的FE求解器采用交错算法,基于开源有限元库交易.II并利用较重的并行化。这里的最重要的方面是在熔化温度范围内的机械材料行为和应力松弛。将物料模型重置为临界温度在临界温度下将某些变量作为应力和塑性应变进行零,与热粘胶构成型定律进行比较。进行与Ti-6AL-4V的SLM过程相关的模拟,以比较熔化和冷却后不同模型预测的残余应力和塑料菌株。此外,分析了几何线性化材料模型的有效性。

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