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首页> 外文期刊>Materials Science and Engineering >Influence of the radial-shear rolling (RSR) process on the microstructure, electrical conductivity and mechanical properties of a Cu-Ni-Cr-Si alloy
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Influence of the radial-shear rolling (RSR) process on the microstructure, electrical conductivity and mechanical properties of a Cu-Ni-Cr-Si alloy

机译:径向剪切轧制(RSR)工艺对Cu-Ni-Cr-Si合金微观结构,电导率和力学性能的影响

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摘要

The article describes a method for producing semi-finished products from a copper alloy of the Cu-Ni-Cr-Si system for electrical purposes through the radial-shear rolling (RSR). From the Cu-Ni-Cr-Si alloy by hot deformation, rods with a diameter of 20 mm were obtained, which were then heat treated with quenching and aging. A detailed analysis of the microstructure and properties (mechanical and electrical) of the obtained samples was carried out after RSR and after heat treatment (HT). After RSR, material hardening occurs due to shear deformations forming a gradient structure with grain sizes varying from 8.22 μm to 15.95 μm between the surface and the center of the rod. The microstructure and mechanical property analysis showed that after heat treatment, the alloy is thermally hardened due to the precipitation of Ni_2Si and Cr_3Si particles uniformly distributed in the sample volume in the form of fine inclusions with an average size of 0.56-0.65 μm. After heat treatment, the alloy enhanced its mechanical properties (ultimate tensile strength (UTS) ~700-750 MPa, yield strength (YS) ~ 557-606 MPa, and elongation between 17 and 22%) and its electrical conductivity of 45.17% IACS from the 30.52% LACS of the RSR material. The improved mechanical properties of the heat-treated material are due to the different strength contributions mainly coming from dislocations and precipitates. The electrical conductivity improvement after the heat treatment is related to the dislocation density reduction and the increase in grain boundary misorientation due to the recrystallization phenomenon giving rise to a lower number of boundaries but with a twinning character. Thus, the RSR method offers a new industrial alternative for the production of semi-finished products from a Cu-Ni-Cr-Si alloy in the form of rods with diameters ranging from 10 to 55 mm.
机译:本文介绍了一种通过径向剪切轧制(RSR)从Cu-Ni-CR-Si系统的铜合金产生半成品的方法。从Cu-Ni-Cr-Si合金通过热变形,获得直径为20mm的棒,然后用淬火和老化进行热处理。在RSR和热处理后,进行了对所得样品的微观结构和性质(机械和电气)的详细分析(HT)。在RSR之后,由于剪切变形而发生材料硬化,形成梯度结构的粒径,在杆的表面和中心之间的8.22μm至15.95μm之间变化。微观结构和力学性质分析表明,在热处理后,由于均匀夹杂物的样品体积均匀地分布在样品体积中,合金热硬化,平均尺寸为0.56-0.65μm。热处理后,合金增强其机械性能(极限拉伸强度(UTS)〜700-750MPa,屈服强度(ys)〜557-606MPa,伸长率为17至22%)及其电导率为45.17%IACS从RSR材料的30.52%Lacs。改进的热处理材料的机械性能是由于脱位和沉淀物的不同强度贡献。热处理后的导电性改善与位错密度降低和晶界误报增加导致的重结晶现象导致较少的边界,但具有孪晶性质。因此,RSR方法提供了一种新的工业替代工业替代品,用于生产来自Cu-Ni-Cr-Si合金的半成品,其杆的直径为10至55毫米。

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  • 来源
    《Materials Science and Engineering》 |2021年第3期|141676.1-141676.14|共14页
  • 作者单位

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia Instituto de Fisica Rosario Consejo National de Investigaciones Cientificas y Tecnicas-CONICET Universidad National de Rosario Ocampo y Esmeralda 2000 Rosario Argentina;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

    National University of Science and Technology «MISIS» 4 Leninsky pr Moscow 119049 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Copper alloys; Radial-shear rolling; Plastic deformation; Electroconductivity;

    机译:铜合金;径向剪切轧制;塑性变形;导电性;

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