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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological performance of amorphous carbon films prepared on steel substrates with carbon implantation pre-treatment
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Tribological performance of amorphous carbon films prepared on steel substrates with carbon implantation pre-treatment

机译:碳注入预处理在钢基底上制备的非晶碳膜的摩擦学性能

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The paper discusses the tribological performance of amorphous carbon films deposited on steel substrates with the pre-treatment of carbon ion implantation. Prior to deposition, the steel substrates were implanted with a metal vapour vacuum arc (MEVVA) ion source in order to create a carbon composition gradient layer on the surface. Subsequently, non-hydrogenated amorphous carbon films were prepared by a closed field unbalanced magnetron sputtering ion plating (CFUBMSIP) technique. The tribological tests using a conventional ball-on-disk tribometry showed that the films exhibited excellent performance during dry sliding. Low friction coefficients (<0.1) and almost zero wear rates were observed at a normal load of 70 N over 30,000 rotation cycles of unlubricated sliding against WC balls. In multi-pass reciprocating wear test under severe conditions (90 N load), the films on the implanted substrates could endure 16,000 passes; whereas the films with CCr{sub}x or Cr interlayers failed at the very beginning of the sliding.
机译:本文讨论了碳离子注入预处理对沉积在钢基底上的非晶碳膜的摩擦学性能。在沉积之前,将金属蒸气真空电弧(MEVVA)离子源注入钢基材中,以在表面上形成碳成分梯度层。随后,通过闭场不平衡磁控溅射离子镀(CFUBMSIP)技术制备非氢化非晶碳膜。使用常规的圆盘摩擦计的摩擦学测试表明,薄膜在干滑过程中表现出出色的性能。在70 N的正常载荷下,在30,000个未润滑的WC球滑动循环中,观察到低摩擦系数(<0.1)和几乎零磨损率。在严酷条件下(90 N负载)进行的多次通过往复磨损测试中,植入基板上的薄膜可以承受16,000次通过;而带有CCr {sub} x或Cr中间层的薄膜在滑动开始时就失效了。

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