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Effect of selective laser melting (SLM) process parameters on microstructure and mechanical properties of 316L austenitic stainless steel

机译:选择性激光熔化(SLM)工艺参数对316L奥氏体不锈钢组织和力学性能的影响

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Metal components produced via selective laser melting (SLM) additive manufacturing (AM) can offer comparable and sometimes superior mechanical properties to those of bulk materials. Selection of the appropriate process parameters (e.g. laser power, build direction, scan hatch spacing) plays a fundamental role in determining final properties. For this reason, microstructure, defect formation and mechanical properties of AISI 316L components are investigated in this paper according to the process parameters used for their fabrication. A first experimental campaign establishes process parameters guaranteeing a density greater than 98%. Samples for microstructural and mechanical characterization are then produced based on these results, varying laser power from 100 W to 150 W, hatch space from 0.05 nun to 0.07 mm and orientation from 45 degrees to 90 degrees. A MYSINT100 SLM machine with laser power up to 150 W and spot diameter of 50 mu m is employed for all experiments. The presented results establish a correlation between the process parameters and the resulting microstructure and mechanical properties of SLM 316L specimens.
机译:通过选择性激光熔化(SLM)添加剂制造生产(AM)生产的金属部件可提供可比且有时优越的机械性能与散装材料的相当优异的机械性能。选择适当的过程参数(例如激光功率,构建方向,扫描舱口间距)在确定最终属性时起着基本作用。因此,根据用于其制造的工艺参数,在本文中研究了AISI 316L组分的微观结构,缺陷形成和机械性能。第一个实验活动建立了保证密度大于98%的过程参数。然后基于这些结果产生微观结构和机械表征的样品,从100W到150W的激光功率,舱口空间从0.05 nun的舱口空间不同至0.07mm,从45度到90度。所有实验都采用了高达150W的MySint100 SLM机器,最高可达150W的斑点直径为50μm。所呈现的结果在PRM 316L样品的过程参数和所得的微观结构和机械性能之间建立相关性。

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