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Microstructure and Mechanical Properties of Copper Clad Aluminum Wire by Drawing at Room Temperature

机译:室温拉伸铜包铝线的组织和力学性能

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The microstructure and mechanical properties of pure copper clad Aluminum wires in different diameters by drawing at room temperature were studied in this paper. The results show that the microstructure of the cladding wire by drawing at room temperature is vimineous grain as fibril shape from prime equiaxed grain. The fibril diameter is in inverse proportion to deformation and the fibril length is in direct proportion to square of deformation approximately. The ultimate tensile strength of the cladding wire by drawing at room temperature increases in direct proportion to square root of deformation, and the elongation decreases and fluctuates. Basis of the ultimate tensile strength of prime pure copper and aluminum alloy, the ultimate tensile strength of the cladding wires in different diameters can be doped out by mixed principle of composite material.
机译:研究了室温下不同直径的纯铜包铝线材的组织和力学性能。结果表明,在室温下拉伸的包层线材的微观结构是由原始等轴晶晶粒形成的原纤维状的次生晶粒。原纤维直径与变形成反比,而原纤维长度与变形平方成正比。包层线在室温下拉伸的极限抗拉强度与变形的平方根成正比,而伸长率则降低并波动。根据纯铜和铝合金的极限抗拉强度,可以通过复合材料的混合原理来掺杂不同直径的包层线的极限抗拉强度。

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