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On the Anisotropic Mechanical Properties of Selective Laser-Melted Stainless Steel

机译:选择性激光熔化不锈钢的各向异性力学性能

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摘要

The thorough description of the peculiarities of additively manufactured (AM) structures represents a current challenge for aspiring freeform fabrication methods, such as selective laser melting (SLM). These methods have an immense advantage in the fast fabrication (no special tooling or moulds required) of components, geometrical flexibility in their design, and efficiency when only small quantities are required. However, designs demand precise knowledge of the material properties, which in the case of additively manufactured structures are anisotropic and, under certain circumstances, inhomogeneous in nature. Furthermore, these characteristics are highly dependent on the fabrication settings. In this study, the anisotropic tensile properties of selective laser-melted stainless steel (1.4404, 316L) are investigated: the Young’s modulus ranged from 148 to 227 GPa, the ultimate tensile strength from 512 to 699 MPa, and the breaking elongation ranged, respectively, from 12% to 43%. The results were compared to related studies in order to classify the influence of the fabrication settings. Furthermore, the influence of the chosen raw material was addressed by comparing deviations on the directional dependencies reasoned from differing microstructural developments during manufacture. Stainless steel was found to possess its maximum strength at a 45° layer versus loading offset, which is precisely where AlSi10Mg was previously reported to be at its weakest.
机译:对增材制造(AM)结构的特殊性的详尽描述代表着对有抱负的自由形式制造方法(例如选择性激光熔化(SLM))的挑战。这些方法在快速制造零件(无需特殊工具或模具),设计几何上的灵活性以及仅需少量零件时的效率方面具有巨大优势。但是,设计需要精确了解材料特性,在增材制造的结构中,这些特性是各向异性的,并且在某些情况下本质上是不均匀的。此外,这些特性在很大程度上取决于制造设置。在这项研究中,研究了选择性激光熔融不锈钢(1.4404、316L)的各向异性拉伸性能:杨氏模量范围为148至227 GPa,极限拉伸强度范围为512至699 MPa,断裂伸长率范围分别为,从12%增至43%。将结果与相关研究进行比较,以便对制造设置的影响进行分类。此外,通过比较制造过程中不同微观结构发展所导致的方向依赖性偏差,可以解决所选原材料的影响。发现不锈钢在45°镀层上具有最大强度与载荷偏移的关系,这恰好是先前报道的AlSi10Mg最弱的地方。

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