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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Different Heat Treatments on the Microstructural Evolution and Mechanical Properties of Ni-Cr-Si Alloy Fabricated by Laser Additive Manufacturing
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Effect of Different Heat Treatments on the Microstructural Evolution and Mechanical Properties of Ni-Cr-Si Alloy Fabricated by Laser Additive Manufacturing

机译:不同热处理对激光添加剂制造制造的Ni-Cr-Si合金微观结构演化和力学性能的影响

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摘要

Ni-Cr-Si alloy samples were fabricated on mild steel via laser additive manufacturing technology. The microstructural evolution and mechanical properties of the samples were studied systematically in as-deposited conditions and under three different types of heat-treated conditions. The scanning electron microscopy, energy-dispersive x-ray spectroscopy and x-ray diffraction results showed that the structures of the as-deposited samples were mainly dendritic matrices of gamma(Ni, Fe), continuous interdendritic eutectics of gamma + Ni3B and discrete Cr-rich carbides and borides. After solid solution treatment, carbides (Cr7C3) and borides (CrB) precipitated on the boundary of the eutectic structure, distributing discretely in the matrix. In the solution plus aging heat-treated conditions, the interdendritic eutectics formed Ni3Fe intermetallic compounds with a layered distribution. After annealing, the grains were refined, and the hard phases (CrB) were uniformly dispersed along the grain boundary. Among the tested samples, the as-deposited specimens exhibited the highest microhardness and good wear ability at room temperature; however, the wear resistance of the as-deposited sample obviously decreased at 250 degrees C. The mechanical properties of the specimens were not greatly improved by solution treatment or solution plus aging treatment. The sample subjected to annealing treatment exhibited excellent wear resistance both at room temperature and at a service temperature of 250 degrees C.
机译:通过激光添加剂制造技术在低碳钢上制造了Ni-Cr-Si合金样品。在沉积的条件下系统地和三种不同类型的热处理条件系统地进行样品的微观结构演化和力学性能。扫描电子显微镜,能量分散性X射线光谱和X射线衍射结果表明,沉积的样品的结构主要是γ(Ni,Fe)的树突基质,连续的γ+ Ni3b和离散Cr - 碳化物和硼化物。在固溶处理后,碳化物(CR7C3)和硼化物(CRB)在共晶结构的边界上沉淀,在基质中离散地分布。在溶液加上老化的热处理条件下,宁氏霉属植物形成具有层状分布的Ni3Fe金属间化合物。退火后,精制晶粒,并将硬相(CRB)沿晶界均匀分散。在测试的样品中,沉积的样本在室温下表现出最高的微硬度和良好的磨损能力;然而,沉积的样品的耐磨性在250℃下明显降低。通过溶液处理或溶液加上老化处理不会大大提高标本的机械性能。经过退火处理的样品在室温下具有优异的耐磨性,并且在250℃的服务温度下表现出优异的耐磨性。

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