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Effects of thermo-mechanical treatment on microstructure and properties of Cu-Cr-Zr alloys

机译:热处理对Cu-Cr-Zr合金组织和性能的影响

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摘要

CuCrZr alloys are attractive metallic materials for applications on trolley wire of electric locomotive, integrated circuit and fusion reactor. The solid solution CuCrZr alloys were thermo-mechanically treated by heating up to various temperatures from 100℃ to 300℃ for aging treatment. Different tension elongations were exerted on the samples to accelerate the introduction of high density dislocations. The results showed that the combination of aging treatment and the simultaneous tension deformation can increase the hardness of the sample while decrease their electric conductivity. The high temperature of 300 ℃ resulted less reduction of electric conductivity than the low treated temperature of 100 ℃. The disperse precipitation of the secondary phase were observed from the XRD and optical observations. The tension deformation leaded to the preferred orientation in the sample. The combination of aging treatment and the simultaneous tension deformation could reduce the aging temperature of CuCrZr alloys.
机译:CuCrZr合金是有吸引力的金属材料,可用于电力机车,集成电路和聚变反应堆的架空线上。通过将固溶CuCrZr合金加热到100℃至300℃的各种温度进行热机械处理,以进行时效处理。在样品上施加不同的张力伸长,以加速高密度位错的引入。结果表明,时效处理和同时拉伸变形的结合可以提高样品的硬度,同时降低其电导率。 300℃的高温导致的电导率降低低于100℃的低处理温度。从XRD和光学观察观察到第二相的分散沉淀。张力变形导致样品中的优选取向。时效处理和同时的拉伸变形相结合可以降低CuCrZr合金的时效温度。

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