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Enhanced dry and current-carrying friction properties of cold-sprayed Ti2AlC reinforced CuCrZr coating

  • Kang Yang
  • , Xiankun Wu
  • , Zitao Jiang
  • , Wei Zhou
  • , Gobinda Gyawali
  • , Shihong Zhang
  • , Wenya Li
  • Anhui University of Technology

科研成果: 期刊稿件文章同行评审

2 引用 (Scopus)

摘要

This study developed CuCrZr-Ti2AlC composite coatings via cold spraying to enhance the performance of copper alloy guide rails. The cold spray process was specifically selected to prevent the oxidation and decomposition of the MAX phase Ti2AlC. Composite powders with different Ti2AlC contents were prepared by mechanical alloying. The results indicate that the coating with 20 wt .%Ti2AlC achieves an optimal balance of a hardness of 173.40 HV0.5 and high electrical conductivity (6.62 μΩ·cm). Its specific wear rate under dry sliding was 1.30 × 10–4 mm3/(N·m), which is 86.4 % lower than that of the pure CuCrZr coating (9.59 × 10–4 mm3/(N·m)). Furthermore, under current loading, the wear rate of the 20 wt .%Ti2AlC coating (1.63 × 10–4 mm3/(N·m)) was significantly lower than that of the 30 wt .%Ti2AlC coating (3.51 × 10–4 mm3/(N·m)). The CuCrZr-20 wt .%Ti2AlC composite coating is thus a promising material for applications requiring simultaneous wear resistance and conductivity.

源语言英语
文章编号102626
期刊Materialia
45
DOI
出版状态已出版 - 3月 2026

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