材料科学
电接点
弧(几何)
复合材料
电弧
石墨烯
挤压
接触电阻
腐蚀
电阻和电导
电阻率和电导率
冶金
接触面积
不稳定性
基质(化学分析)
热稳定性
作者
Zhengyang Ye,Rui Bao,Jianhong Yi,Caiju Li,Zhiyi Ru,Xin Ying Kong,Xiaofeng Chen,Liang Liu
标识
DOI:10.1016/j.jmrt.2026.01.160
摘要
To solve the problems of W-phase agglomeration and arc instability of Cu–W contacts during electrical contact, Gr@Cu30W composites were prepared via in-situ growth and powder metallurgy. The arc erosion resistance mechanism of the composites was investigated through electrical contact testing. Results indicated that a typical "Cu–W-Gr" sandwich structure had formed via the hot extrusion and the in-situ Gr incorporation processes. This structure effectively pinned the Cu–W interface, improved electrical conductivity, and promoted arc transfer and extinction, thereby enhancd arc erosion resistance. Furthermore, Gr on the contact surface acted as a protective layer, mitigated the arc erosion damage to the matrix and improved stability during arc generation and extinction.
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