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Process parameter optimization and mechanical properties for additively manufactured stainless steel 316L parts by selective electron beam melting

机译:通过选择性电子束熔化对增材制造的316L不锈钢零件进行工艺参数优化和力学性能

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This work presents an experimental study of process optimization of the pair of critical parameters (speed function (SF) and focus offset (FO)) for stainless steel 316 L (SS316L) parts additively manufactured by selective electron beam melting (SEBM). Here, there are two sets of optimized SF-FO parameters that could build SS316L parts with high relative densities (99%) and well-melted top build surfaces. Tensile test results show that most of the SEBM-built SS316L samples exhibit higher tensile strengths than the conventional cast and wrought counterparts, whereas their ductility is lower. In addition, strong anisotropic tensile properties are observed for the SEBM-built SS316L samples, e.g. they generally have better tensile properties when loaded parallel to the build direction as compared to the horizontal direction. However, a large number of sigma phase was found to precipitate at grain boundaries in the SS316L samples fabricated under lower SF and larger FO with a higher build temperature, which evidently deteriorates their tensile properties particularly for the horizontal direction. It is suggested that SEBM process parameters for SS316L must be optimized to avoid s phase precipitation at elevated temperatures apart from a well-melted top build surface and a high relative density. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作是通过选择性电子束熔化(SEBM)增材制造的316 L不锈钢(SS316L)零件的一对关键参数(速度函数(SF)和聚焦偏移(FO))的工艺优化过程的实验研究。此处,有两组优化的SF-FO参数,它们可以构建具有较高相对密度(> 99%)的SS316L零件并具有良好的顶部熔化表面。拉伸试验结果表明,大多数SEBM制造的SS316L样品均比传统的铸造和锻造样品具有更高的拉伸强度,而延性较低。另外,对于SEBM制成的SS316L样品,例如在316℃,观察到了很强的各向异性拉伸性能。与水平方向平行时,它们通常具有更好的拉伸性能。然而,在较低的SF和较大的FO和较高的构建温度下制造的SS316L样品中,发现大量的σ相沉淀在晶界上,这明显降低了其拉伸性能,特别是在水平方向上。建议对SS316L的SEBM工艺参数进行优化,以免在高温下出现s相沉淀,除了顶部熔融表面融化和相对密度高外。 (C)2018 Elsevier Ltd.保留所有权利。

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