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Effects of manufacturing parameters and mechanical post-processing on stainless steel 316L processed by laser powder bed fusion

机译:激光粉床融合加工制造参数和机械后处理的影响

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摘要

Stainless steel 316L is a frequently used metal in additive manufacturing owing to its favorable strength-ductility synergy and corrosion resistance, and laser powder bed fusion (L-PBF) is the most commonly applied additive manufacturing method for processing 316L. Manufacturing components from stainless steel 316L via L-PBF benefits the geometrical accuracy of the process and properties of the material simultaneously. Although alloy 316L has been used in additive manufacturing for a long time, its strengthening mechanisms and microstructure have yet to be fully understood. Thus, this study aimed to perform a comprehensive investigation of the microstructural features and mechanical properties of this alloy. A thorough review of other studies on stainless steel 316L processed via L-PBF is provided, along with experimental results, to elucidate the mechanisms controlling and influencing the properties of this material. Microstructural analysis, hardness measurements, and tensile, fatigue, and Charpy tests were performed. The results showed that stainless steel 316L processed by L-PBF could satisfactorily replace its conventionally manufactured counterparts for service under static, cyclic, and impact loads. However, under cyclic loading, the fatigue performance of the additively manufactured material may require enhancement by machining or mechanical post-processing.
机译:由于其良好的强度 - 延展性协同和耐腐蚀性,不锈钢316L是一种常用的金属,在添加剂制造中,由于其激光粉末融合(L-PBF)是加工316L的最常用的添加剂制造方法。来自不锈钢316L的制造部件通过L-PBF同时利用该材料的工程和性质的几何精度。尽管合金316L已经用于添加剂制造长期以来,但其强化机制和微观结构尚未得到完全理解。因此,本研究旨在综合研究该合金的微观结构特征和机械性能。提供了通过L-PBF处理的不锈钢316L的其他研究的彻底审查,以及实验结果,以阐明控制和影响该材料性能的机制。进行微观结构分析,硬度测量和拉伸,疲劳和夏比测试。结果表明,L-PBF处理的不锈钢316L可以在静态,环状和冲击载荷下令人满意地更换其常规制造的对应物。然而,在循环负载下,加粘连的材料的疲劳性能可能需要通过加工或机械后处理来增强。

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