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Oxidation-mediated high-temperature lubricating and anti-wear properties in composition-graded Cr5/2–5xTi3/2+xMo4xAlC3 o-MAXs

  • Yaqing Xue
  • , Linze Fan
  • , Hongliang Liu
  • , Wenbo Wu
  • , Haochen Wang
  • , Long Wang
  • , Hong Yu
  • , Cheng Feng Du
  • Northwestern Polytechnical University Xian
  • Queen Mary University of London

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

Recently, a multi-elemental Cr5/2–5 x Ti3/2+ x Mo4 x AlC3 ( x = 1/3, 1/4, 1/6) MAX phase ceramics with an out-of-plane chemical ordering have open a new space for acquiring the robust mechanical properties. However, as a potential solid-lubricant of MAX phase family, the dependent of their self-lubrication performance on the elemental composition is still unrevealed. Herein, the tribological properties of these MAXs against the Si3N4 balls are carefully examined in air at temperatures as high as 800 °C. The high Cr content contributes to a high hardness/elastic modulus ( H / E ) ratio, which improves the low-temperature wear resistance. Meanwhile, high Mo content helps on building the oxide film and thus achieving low friction at 600 ºC and above. At 800 °C, a composite oxide film approximately 0.5 μm thick was formed on the surface of the Cr0.83Ti1.83Mo1.33AlC3. This oxide film significantly improved its tribological properties, stabilizing the average friction coefficient (COF) at 0.22 and reducing the wear rate to 1.51 × 10−7 mm3 N−1 m−1.

源语言英语
期刊论文编号111733
期刊Tribology International
218
DOI
出版状态已出版 - 6月 2026

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