Effects of trace calcium and strontium on microstructure and properties of Cu-Cr alloys

被引:5
|
作者
Muzhi Ma [1 ]
Zhu Xiao [1 ,2 ]
Xiangpeng Meng [3 ]
Zhou Li [1 ,4 ]
Shen Gong [1 ]
Jie Dai [1 ]
Hongyun Jiang [5 ]
Yanbin Jiang [1 ]
Qian Lei [4 ]
Haigen Wei [6 ]
机构
[1] School of Materials Science and Engineering, Central South University
[2] Key Laboratory of Non-ferrous Metal Materials Science and Engineering, Ministry of Education
[3] Ningbo Boway Alloy Material Co., Ltd.
[4] State Key Laboratory of Powder Metallurgy, Central South University
[5] Zhejiang Tianning Alloy Material Co., Ltd.
[6] Faculty of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology
基金
中国国家自然科学基金; 中央高校基本科研业务费专项资金资助;
关键词
D O I
暂无
中图分类号
TG146.11 [];
学科分类号
080502 ;
摘要
Cu-0.57Cr-0.01Ca and Cu-0.58Cr-0.01Sr(wt.%) alloys were fabricated and processed by thermo-mechanical treatment. Their mechanical and electrical properties and microstructure were investigated in detail and compared with those of a Cu-0.57Cr(wt.%) alloy. The results showed that the softening resistance of the Cu-Cr alloy was significantly improved by the additions of Ca and Sr elements. Compared with the Cu-Cr alloy, the deformation microstructure of the Cu-Cr-Ca and Cu-Cr-Sr alloys was more difficult to recrystallize at elevated temperatures, and the Cr precipitates in the Cu-Cr-Ca and Cu-Cr-Sr alloys were smaller in size and had an FCC structure at any given aging state. The high strengths of the Cu-Cr-Ca and Cu-Cr-Sr alloys were mainly attributed to the dislocation strengthening provided by high-density dislocations and the precipitate strengthening provided by fine Cr precipitates. First-principles calculation showed that the segregations of Ca and Sr atoms at interface between Cr precipitates and copper matrix were favorable in energetics. This segregation effectively hindered the growth of Cr precipitates and significantly enhanced the pinning effect on the motion of dislocations and subgrain boundaries, eventually leading to the improvement in the softening resistance of the Cu-Cr alloy.
引用
收藏
页码:11 / 23
页数:13
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