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Comparison of Stainless Steel 316L Parts Made by FDM- and SLM-Based Additive Manufacturing Processes

机译:基于FDM和SLM的添加剂制造工艺制备的不锈钢316L零件的比较

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摘要

The selective laser melting (SLM) process is of great interest for fabrication of metal parts, and a number of studies have been conducted to provide in-depth understanding of how stainless steel 316L parts can be fabricated using this powder-bed-fusion-based additive manufacturing (AM) process. In comparison with SLM stainless steel 316L, this paper introduces an innovative AM process for making austenitic stainless steel 316L parts using a metal-polymer composite filament (Ultrafuse 316LX). Stainless steel 316L metal specimens were printed using a material extrusion (FDM)-based three-dimensional (3D) printer loaded with Ultrafuse filament, followed by an industry-standard debinding and sintering process. Tests were performed to understand the material properties, such as hardness, tensile strength, and microstructural characteristics. Part shrinkage was also analyzed based on the features of the FDM stainless steel 316L component. A preliminary guideline on how to select among these two alternative AM processes for fabrication of metal parts is discussed.
机译:选择性激光熔化(SLM)工艺对于制造金属部件的兴趣非常令人兴趣,并且已经进行了许多研究,以便对使用这种粉末床融合的不锈钢316L零件如何制造不锈钢316L部件的深入了解添加剂制造(AM)过程。与SLM不锈钢316L相比,本文介绍了一种创新的AM方法,用于使用金属聚合物复合丝(Ultrafuse 316Lx)制备奥氏体不锈钢316L零件的方法。使用超薄灯丝的材料挤出(FDM)的材料挤出(FDM)打印不锈钢316L金属样品,随后是一个行业标准的脱丝和烧结过程。进行测试以了解材料性质,例如硬度,拉伸强度和微观结构特征。还基于FDM不锈钢316L组分的特征分析部分收缩。讨论了如何在这两个替代的AM制造金属部件制造过程中选择的初步准则。

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