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Workpiece-scale numerical simulations of SLM molten pool dynamic behavior of 316L stainless steel

机译:316L不锈钢的SLM熔池动力学行为的工件级别数值模拟

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316L stainless steel is currently one of the most critical stainless-steel materials due to its excellent corrosion resistance and comprehensive mechanical properties. Selective laser melting (SLM), as an additive manufacturing technology for directly forming complex metal parts, has been applied in the production of 316L stainless steel components. By introducing reasonable and comprehensive equivalent processing models (e.g., gasification pressure, gasification heat dissipation, and equivalent physical parameters), a predictive model of the dynamic behavior of the molten pool on the workpiece scale (two-phase flow model) was established for the SLM process of 316L stainless steel. The related equivalent processing models were customized by secondary development means based on the commercial software Fluent. By comparing and analyzing the different calculation schemes, it was found that surface tension stabilizes the liquid metal surface, while the Marangoni effect and the gasification recoil force cause the liquid metal surface to appear concave. The tangential movement of the liquid metal surface, caused by the Marangoni effect, causes the molten metal to accumulate around the central region, forming a liquid surface morphology resembling a crater. The influence of different processing parameters (scanning speed and laser power) on the SLM process of 316L stainless steel was analyzed. The simulated and experimentally obtained solidified track sizes were in good agreement. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于其优异的耐腐蚀性和综合机械性能,316L不锈钢目前是最关键的不锈钢材料之一。选择性激光熔化(SLM),作为直接形成复杂金属部件的添加剂制造技术,已应用于316L不锈钢组分的生产。通过引入合理和全面的等效处理模型(例如,气化压力,气化散热和等同物理参数),建立了工件秤(两相流模型)上熔池的动态行为的预测模型316L不锈钢的SLM工艺。相关等效处理模型由基于商业软件流利的二次开发装置定制。通过比较和分析不同的计算方案,发现表面张力稳定液态金属表面,而Marangoni效应和气化反冲力导致液态金属表面出现凹陷。由Marangoni效应引起的液态金属表面的切向移动使熔融金属积聚在中心区域周围,形成类似于火山口的液体表面形态。分析了不同加工参数(扫描速度和激光功率)对316L不锈钢SLM过程的影响。模拟和实验获得的凝固轨道尺寸很好。 (c)2020 elestvier有限公司保留所有权利。

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