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Effect of Ni/Si Mass Ratio and Thermomechanical Treatment on the Microstructure and Properties of Cu-Ni-Si Alloys

机译:Ni / Si质量比和热处理对Cu-Ni-Si合金组织和性能的影响

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摘要

The effect of the Ni/Si mass ratio and combined thermomechanical treatment on the microstructure and properties of ternary Cu-Ni-Si alloys is discussed systematically. The Cu-Ni-Si alloy with a Ni/Si mass ratio of 4–5 showed good comprehensive properties. Precipitates with disc-like shapes were confirmed as the Ni2Si phase with orthorhombic structure through transmission electron microscopy, high-resolution transmission electron microscopy, and 3D atom probe characterization. After the appropriate thermomechanical treatment, the studied alloy with a Ni/Si mass ratio of 4.2 exhibited excellent mechanical properties: a hardness of 290 HV, tensile strength of 855 MPa, yield strength of 782 MPa, and elongation of 4.5%. Compared with other approaches, the thermomechanical treatment increased the hardness and strength without sacrificing electrical conductivity. Theoretical calculations indicated that the high strength was primarily attributed to the Orowan precipitation strengthening and secondarily ascribed to the work hardening, which were highly consistent with the experimental results. The appropriate Ni/Si mass ratio with a low content of Ni and Si atoms shows high strength and excellent electrical conductivity through combined thermomechanical treatment. This work provides a guideline for the design and preparation of multicomponent Cu-Ni-Si-X alloys with ultrahigh strength and excellent electrical conductivity.
机译:系统地讨论了Ni / Si质量比和热机械联合处理对Cu-Ni-Si三元合金组织和性能的影响。 Ni / Si质量比为4-5的Cu-Ni-Si合金具有良好的综合性能。通过透射电子显微镜,高分辨率透射电子显微镜和3D原子探针表征,确认具有盘状形状的沉淀物为具有正交晶结构的Ni2Si相。经过适当的热机械处理,所研究的Ni / Si质量比为4.2的合金具有优异的机械性能:硬度为290 HV,抗拉强度为855 MPa,屈服强度为782 MPa,伸长率为4.5%。与其他方法相比,热机械处理在不牺牲导电性的情况下增加了硬度和强度。理论计算表明,高强度主要归因于Orowan降水的加强,其次归因于加工硬化,与实验结果高度吻合。通过组合的热机械处理,具有低含量的Ni和Si原子的适当的Ni / Si质量比显示出高强度和出色的导电性。这项工作为设计和制备具有超高强度和出色导电性的多组分Cu-Ni-Si-X合金提供了指导。

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