Enhanced electrical conductivity and mechanical properties in thermally stable fine-grained copper wire

Qingzhong Mao, Yusheng Zhang, Yazhou Guo, Yonghao Zhao

科研成果: 期刊稿件文章同行评审

88 引用 (Scopus)

摘要

The rapid development of high-speed rail requires copper contact wire that simultaneously possesses excellent electrical conductivity, thermal stability and mechanical properties. Unfortunately, these are generally mutually exclusive properties. Here, we demonstrate directional optimization of microstructure and overcome the strength-conductivity tradeoff in copper wire. We use rotary swaging to prepare copper wire with a fiber texture and long ultrafine grains aligned along the wire axis. The wire exhibits a high electrical conductivity of 97% of the international annealed copper standard (IACS), a yield strength of over 450 MPa, high impact and wear resistances, and thermal stability of up to 573 K for 1 h. Subsequent annealing enhances the conductivity to 103 % of IACS while maintaining a yield strength above 380 MPa. The long grains provide a channel for free electrons, while the low-angle grain boundaries between ultrafine grains block dislocation slip and crack propagation, and lower the ability for boundary migration.

源语言英语
文章编号46
期刊Communications Materials
2
1
DOI
出版状态已出版 - 12月 2021

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