简介概要

Characterization of the Hot Deformation Behavior of Cu–Cr–Zr Alloy by Processing Maps

来源期刊:Acta Metallurgica Sinica2016年第5期

论文作者:Yi Zhang Hui-Li Sun Alex A.Volinsky Bao-Hong Tian Zhe Chai Ping Liu Yong Liu

文章页码:422 - 430

摘    要:Hot deformation behavior of the Cu–Cr–Zr alloy was investigated using hot compressive tests in the temperature range of 650–850 °C and strain rate range of 0.001–10 s-1. The constitutive equation of the alloy based on the hyperbolic-sine equation was established to characterize the flow stress as a function of strain rate and deformation temperature. The critical conditions for the occurrence of dynamic recrystallization were determined based on the alloy strain hardening rate curves. Based on the dynamic material model, the processing maps at the strains of 0.3, 0.4 and 0.5were obtained. When the true strain was 0.5, greater power dissipation efficiency was observed at 800–850 °C and under0.001–0.1 s-1, with the peak efficiency of 47%. The evolution of DRX microstructure strongly depends on the deformation temperature and the strain rate. Based on the processing maps and microstructure evolution, the optimal hot working conditions for the Cu–Cr–Zr alloy are in the temperature range of 800–850 °C and the strain rate range of 0.001–0.1 s-1.

详情信息展示

Characterization of the Hot Deformation Behavior of Cu–Cr–Zr Alloy by Processing Maps

Yi Zhang1,2,3,Hui-Li Sun1,3,Alex A.Volinsky2,Bao-Hong Tian1,3,Zhe Chai1,4,Ping Liu4,Yong Liu1,3

1. School of Materials Science and Engineering, Henan University of Science and Technology2. Department of Mechanical Engineering, University of South Florida4. School of Materials Science and Engineering, University of Shanghai for Science and Technology

摘 要:Hot deformation behavior of the Cu–Cr–Zr alloy was investigated using hot compressive tests in the temperature range of 650–850 °C and strain rate range of 0.001–10 s-1. The constitutive equation of the alloy based on the hyperbolic-sine equation was established to characterize the flow stress as a function of strain rate and deformation temperature. The critical conditions for the occurrence of dynamic recrystallization were determined based on the alloy strain hardening rate curves. Based on the dynamic material model, the processing maps at the strains of 0.3, 0.4 and 0.5were obtained. When the true strain was 0.5, greater power dissipation efficiency was observed at 800–850 °C and under0.001–0.1 s-1, with the peak efficiency of 47%. The evolution of DRX microstructure strongly depends on the deformation temperature and the strain rate. Based on the processing maps and microstructure evolution, the optimal hot working conditions for the Cu–Cr–Zr alloy are in the temperature range of 800–850 °C and the strain rate range of 0.001–0.1 s-1.

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