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Effect of In-Situ Laser Remelting on the Microstructure of SS316L Fabricated by Micro Selective Laser Melting

机译:原位激光重熔对微选择性激光熔化制造的SS316L微观结构的影响

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Due to the increasing attention on additive manufacturing of micro components, an in-house micro-selective laser melting (SLM) system using a fine laser spot size and a small layer thickness with an ability to handle fine powders has been developed recently. In this research work, in-situ laser remelting effects on the part density and microstructure of the SS316L parts fabricated using micro SLM have been studied. After every layer of micro SLM, laser remelting was performed using the same laser source. Remelting effects have been investigated at different process conditions with varying laser power and scanning speeds. The effects of remelting on the part porosity and microstructure of the micro SLM parts have been studied. Experimental results revealed that in-situ laser remelting significantly influences the part density and microstructure of the 316L micro SLM parts. The study highlights that in addition to the purpose of improving the surface finish, laser remelting can be used to tailor the microstructure and hence mechanical properties of the micro SLM parts.
机译:由于对微量组分的添加剂制造的越来越高,最近开发了使用精细激光光斑尺寸的内部微选择性激光熔化(SLM)系统和具有处理细粉的能力的小层厚度。在本研究工作中,研究了对使用Micro SLM制造的SS316L部件的零件密度和微观结构的原位激光重熔效应。在每层微小SLM之后,使用相同的激光源进行激光重熔。已经在不同的过程条件下在不同的激光功率和扫描速度下进行了重熔效果。研究了重熔对微型SLM部件的孔隙率和微观结构的影响。实验结果表明,原位激光重熔显着影响了316L微型SLM部件的部件密度和微观结构。该研究突出显示,除了改善表面光洁度的目的之外,激光重熔可用于量体来定制微结构并因此用于微型SLM部件的机械性能。

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