Mechanical & tribological property of AlCrTiZr-based high-entropy nitride coatings
编号:52 访问权限:仅限参会人 更新:2024-10-13 21:51:40 浏览:180次 特邀报告

报告开始:2024年10月20日 10:15(Asia/Shanghai)

报告时间:20min

所在会场:[S2] Thin Film Technologies and Applications [S2B] Session 2B

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摘要
A multi-target co-deposition magnetron sputtering system was employed to prepare two sets of AlCrTiZr-based high-entropy nitride coatings in term of (AlCrTiZrNi)Nx and (AlCrTiZrMox)N. The chemical composition, microstructure, mechanical and tribological properties of the coatings were studied systematically. For (AlCrTiZrNi)Nx coatings with varying N content, the results show that with N2 flow rates from 0 to 16 sccm, the nitrogen content increases to 55.7 at.% and the phase structure changes from amorphous to FCC. The hardness increases obviously with the increase of nitrogen content. When the nitrogen flow rate is 12 sccm, the coating has the highest hardness of 31.77 GPa and the lowest wear rate of 1.23×10-5 mm3/(N·m). The wear resistance results show that all the hardness and toughness contribute to the coatings wear resistance. For (AlCrTiZrMox)N coatings with varying Mo content, the results reveal that the Mo content significantly affects the microstructure, hardness, toughness, and tribological behavior of the coatings. With the addition of Mo, the crystallinity increases and the preferred orientation of the coating changes from (111) to (200). Hard yet tough high-entropy ceramics coatings (TiZrAlCrMox)N can be obtained with a hardness of 30.24 GPa, and good toughness (no obvious cracks). The coatings with Mo show excellent tribological properties compared to those without Mo: the friction coefficient reduces to 1/3 (from 0.72 to 0.26) and the wear rate reduces to 1/10 (from 3.39×10-5 mm3/(N·m) to 3.15×10-5 mm3/(N·m)). The low friction coefficient results from the formation of layered MoO2 which reduces the shear force, and the low wear rate results from both the high hardness and toughness.
 
关键词
High-entropy nitride coatings, Magnetron sputtering, Mechanical properties, Tribological properties
报告人
Deen Sun
Professor Southwest University, China

稿件作者
德恩 孙 西南大学
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重要日期
  • 会议日期

    10月18日

    2024

    10月20日

    2024

  • 10月17日 2024

    报告提交截止日期

  • 10月20日 2024

    注册截止日期

  • 11月18日 2024

    初稿截稿日期

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中国机械工程学会表面工程分会
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大连理工大学
山东理工大学
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