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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Process Parameters on the Mechanical Properties of Hastelloy X Alloy Fabricated by Selective Laser Melting
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Effect of Process Parameters on the Mechanical Properties of Hastelloy X Alloy Fabricated by Selective Laser Melting

机译:工艺参数对选择性激光熔化制造的握性X合金机械性能的影响

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Mechanical properties of Hastelloy X alloys fabricated by selective laser melting were investigated and compared with the wrought counterpart. Nano-inclusions (Mo-rich carbides) distributed at the sub-grain boundaries in the selective laser-melted (SLMed) Hastelloy X alloy, whereas micron-scale precipitations existed in the wrought counterpart. The molten pool boundaries widely existed in the SLMed substrate, which acted as an initial site for crack and led to poor plasticity. However, the ultimate tensile strength values of the SLMed Hastelloy X alloys were around 910 MPa and much higher than the wrought counterpart (similar to 750 MPa), which was mainly ascribed to the high-density dislocations enriched at the sub-grain boundaries. Process parameter effects on the mechanical properties were also delineated in this work, and the volumetric energy density for the best mechanical properties of the SLMed Hastelloy X alloy was in the range from 140 to 170 J/mm(3).
机译:采用选择性激光熔化制造的哈氏合金X合金的机械性能,并与锻造对手进行比较。 在选择性激光熔化(SLMED)HASTELLOY X合金中分布在亚粒边界处的纳米夹层(富含MO的碳化物),而锻造对应物中存在微米级沉淀。 SLMED基板中广泛存在的熔池边界,其作为裂缝的初始位点,并导致可塑性差。 然而,SLMED HASTELLY X合金的最终拉伸强度值约为910MPa,远高于锻体(类似于750MPa),其主要归因于富含亚粒边界的高密度位错。 在该工作中也描绘了对机械性能的工艺参数效应,并且SLMED HASTELLY X合金的最佳机械性能的体积能密度为140至170J / mm(3)。

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