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The effect of wire drawing and aging on mechanical and electrical properties of Cu-Cr-Zr alloy

机译:钢丝拉伸与老化对Cu-Cr-Zr合金机械和电性能的影响

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The aim of the present study is to investigate changes of the mechanical and electrical properties in the Cu-Cr-Zr alloy depending on the thermomechanical treatment history (TMT). The nine cases of the experiments were conducted depending on the combination of the wire drawing and aging. The Cu-Cr-Zr alloy was solution-treated at 980°C for 1h, and then water quenched. The wire drawing with 20% area reduction per each pass was carried out up to two passes ( ε = 0.45 ) and four passes (ε = 0.89), respectively. Aging at 480°C for lh was applied. The mechanical and electrical properties were measured by the tension, Vickers micro-hardness tests and a four-point probe method at room temperature. According to the measurement data, the mechanical strength of the specimens was increased by the wire drawing and it was increased with higher strain of the specimen with or without the aging. However, the ductility and electrical conductivity were decreased after the wire drawing. On the other hand, both mechanical and electrical properties of the specimens were increased after the aging. This increment was due to the generation of the precipitates during the aging. The mechanical and electrical properties of the alloy were changed depending on the order of the cold working and aging. The wire drawing before aging was advantageous in terms of the ductility and electrical conductivity, but the wire drawing after aging was advantageous for the increase in the strength. It can be construed from the current investigation that the mechanical and electrical properties of the Cu-Cr-Zr alloy could be improved by the combination of the cold working and aging, and both properties are dependent on the TMT history.
机译:本研究的目的是根据热机械处理历史(TMT)来研究Cu-Cr-Zr合金中机械和电性能的变化。根据电线拉伸和老化的组合进行了九个实验情况。将Cu-Cr-Zr合金在980℃下溶液处理1小时,然后水淬灭。每次通过的20%面积减小的线材绘制直到两个通过(ε= 0.45),分别四次通过(ε= 0.89)。应用在480℃下老化LH。通过张力,维氏微型硬度试验和室温下的四点探针方法测量机械和电性能。根据测量数据,通过线材拉伸增加了样品的机械强度,并且随着或没有老化的情况而升高标本的菌株。然而,在线图之后,延展性和导电性降低。另一方面,老化后试样的机械和电性能均增加。这种增量是由于在老化期间产生沉淀物。根据冷加工和老化的顺序,合金的机械和电性能改变。在延展性和导电性之前,老化前的丝图是有利的,但是老化后的线材拉伸对于强度的增加是有利的。可以解释电流调查,即Cu-Cr-Zr合金的机械和电性能可以通过冷加工和老化的组合来改善,并且两个性质都取决于TMT历史。

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