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首页> 外文期刊>MATEC Web of Conferences >Deformation Behavior and Processing Parameters of Cu-3Ag-0.6Zr Alloy during Compression at Elevated Temperatures
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Deformation Behavior and Processing Parameters of Cu-3Ag-0.6Zr Alloy during Compression at Elevated Temperatures

机译:Cu-3Ag-0.6Zr合金在高温压缩过程中的变形行为和加工参数

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Hot compression tests of the Cu–3Ag–0.6Zr (wt.%) alloy were carried out on a Gleeble-3800 testing machine at various strain rates and at different deformation temperatures. The stress–strain behavior of the alloy during the deformation process are analyzed. The results show that the hot deformation behavior of the Cu–3Ag–0.6Zr alloy is markedly affected by the interaction between the work hardening and the dynamic recrystallization at different strain rates and temperatures. The thermal deformation activation energy is calculated as 248.8384 kJ mol−1 and the hot compression constitutive equation has been established. The processing map of the alloy has also been established. According to the obtained processing map, the preferable domains for hot working are identified at a strain rate of 10-3 s-1 and at 900–940 K or temperatures higher than 1023 K.
机译:在Gleeble-3800试验机上以不同的应变速率和不同的变形温度对Cu-3Ag-0.6Zr(重量%)合金进行了热压缩试验。分析了合金在变形过程中的应力-应变行为。结果表明,在不同应变率和温度下,加工硬化和动态再结晶之间的相互作用显着影响了Cu–3Ag–0.6Zr合金的热变形行为。计算出热变形活化能为248.8384 kJ mol-1,并建立了热压缩本构方程。还建立了合金的加工图。根据获得的加工图,可以确定在10-3 s-1的应变速率,900-940 K或高于1023 K的温度下热加工的优选区域。

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