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Physical Properties and Microstructure Study of Stainless Steel 316L Alloy Fabricated by Selective Laser Melting

机译:选择性激光熔炼不锈钢316L合金的物理性能和组织研究

摘要

Selective Laser Melting (SLM) demonstrates the 21st century’s manufacturing infrastructure in which powdered raw material is melted by a high energy focused laser, and built up layer-by-layer until it forms three-dimensional metal parts. SLM process involves a variation of process parameters which affects the final material properties. 316L stainless steel compacts through the manipulation of building orientation and powder layer thickness parameters were manufactured by SLM. The effect of the manipulated parameters on the relative density and dimensional accuracy of the 316L stainless steel compacts, which were in the as-build condition, were experimented and analysed. The relationship between the microstructures and the physical properties of fabricated 316L stainless steel compacts was investigated in this study. The results revealed that 90° building orientation has higher relative density and dimensional accuracy than 0° building orientation. Building orientation was found to give more significant effect in terms of dimensional accuracy, and relative density of SLM compacts compare to build layer thickness. Nevertheless, the existence of large number and sizes of pores greatly influences the low performances of the density.
机译:选择性激光熔化(SLM)展示了21世纪的制造基础设施,其中粉末状的原材料被高能聚焦的激光熔化,并逐层堆积直至形成三维金属零件。 SLM工艺涉及影响最终材料性能的工艺参数变化。 SLM制造了通过操纵建筑物方向和粉末层厚度参数而制成的316L不锈钢压块。实验和分析了操纵参数对在建状态下316L不锈钢压块的相对密度和尺寸精度的影响。在这项研究中,研究了所制造的316L不锈钢压块的微观结构与物理性能之间的关系。结果表明,与0°建筑方向相比,90°建筑方向具有更高的相对密度和尺寸精度。人们发现,建筑物的定向在尺寸精度方面会产生更显着的效果,并且SLM压块的相对密度与建筑物的层厚度相比。然而,大量和大尺寸的孔的存在极大地影响了密度的低性能。

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