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首页> 外文期刊>Journal of Materials Processing Technology >Selective laser melting 316L/CuSn10 multi-materials: Processing optimization, interfacial characterization and mechanical property
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Selective laser melting 316L/CuSn10 multi-materials: Processing optimization, interfacial characterization and mechanical property

机译:选择性激光熔化316L / CUSN10多材料:加工优化,界面表征和机械性能

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Adopting selective laser melting (SLM), a typical technology of additive manufacturing (AM), to form multimaterial metallic composites is a challenging and promising field. In this study, SLM 316 L/CuSn10 mull-material composites was an innovative attempt to develop functional and structural materials with excellent properties of steel and copper alloys. Dense 316 L/CuSn10 specimens with no interfacial macrocracks were successfully fabricated. Results showed that the Vickers microhardness gradually decreased from 329.5 +/- 12.5 HV in 316 L region to 172.8HV +/- 7.4 in CuSn10 region. The ultimate tensile strength and flexural strength of 316 L/CuSn10 specimen were between 316 L and CuSn10. The shear stress of 316 L/CuSn10 sample was 210 MPa, which was higher than the steel/copper alloys fabricated by other methods. It indicated an ideal interfacial bonding condition of 316 L/CuSn10 multi-material, which was benefited from sufficient agitation of the molten pools and elements diffusion in the term of continuous distribution of elements and the enrichment of the heterogeneous alloy phases. Also, the grain refinement by re-melting and recrystallization upgraded the bonding performance at the interface. Finally, the 316 L/CuSn10 lattice structure was formed by SLM, hinting at the prospects for industrial applications of steel/copper multi-material by SLM in future.
机译:采用选择性激光熔化(SLM),添加制造(AM)的一个典型的技术,以形成多材料的金属复合物是一个具有挑战性有为字段。在这项研究中,SLM 316 L / CuSn10糊的材料的复合材料是开发与钢和铜合金的优异的性能的功能和结构材料的创新尝试。密316 L / CuSn10标本与没有界面宏观裂纹被成功地制成。结果表明,显微硬度逐渐从329.5 +/- 12.5 HV在CuSn10区域减少在316 -1区域到172.8HV +/- 7.4。极限拉伸强度和316 L / CuSn10试样的弯曲强度分别为316 L和CuSn10之间。 316 L / CuSn10样品的剪切应力为210兆帕,比钢/铜合金制造的其它方法更高。它指出的316 L / CuSn10多材料,将其从熔融池和元素扩散的充分搅拌受益中元素的连续分布和异构合金相的富集的术语的理想界面结合条件。此外,通过再熔化和再结晶的晶粒细化升级在界面处的粘合性能。最后,316 L / CuSn10晶格结构由SLM形成,在用于通过SLM在未来钢/铜多层材料的工业应用前景暗示。

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