首页> 外文期刊>Materials >Key Role of Transfer Layer in Load Dependence of Friction on Hydrogenated Diamond-Like Carbon Films in Humid Air and Vacuum
【24h】

Key Role of Transfer Layer in Load Dependence of Friction on Hydrogenated Diamond-Like Carbon Films in Humid Air and Vacuum

机译:湿空气和真空中转移层在加氢类金刚石薄膜上的摩擦载荷相关性中的关键作用

获取原文
           

摘要

The friction of hydrogenated diamond-like carbon (H-DLC) films was evaluated under the controlled environments of humid air and vacuum by varying the applied load. In humid air, there is a threshold applied load below which no obvious friction drop occurs and above which the friction decreases to a relatively low level following the running-in process. By contrast, superlubricity can be realized at low applied loads but easily fails at high applied loads under vacuum conditions. Further analysis indicates that the graphitization of the sliding H-DLC surface has a negligible contribution to the sharp drop of friction during the running-in process under both humid air and vacuum conditions. The low friction in humid air and the superlow friction in vacuum are mainly attributed to the formation and stability of the transfer layer on the counterface, which depend on the load and surrounding environment. These results can help us understand the low-friction mechanism of H-DLC film and define optimized working conditions in practical applications, in which the transfer layer can be maintained for a long time under low applied load conditions in vacuum, whereas a high load can benefit the formation of the transfer layer in humid air.
机译:通过控制施加的载荷,在潮湿空气和真空的受控环境下评估了氢化类金刚石碳(H-DLC)膜的摩擦力。在潮湿的空气中,有一个阈值施加的载荷,在该阈值以下,不会出现明显的摩擦下降,在该阈值之上,在磨合过程中,摩擦减小到相对较低的水平。相比之下,在低施加载荷下可以实现超润滑性,但在真空条件下在高施加载荷下容易失效。进一步的分析表明,在潮湿空气和真空条件下,磨合过程中滑动的H-DLC表面的石墨化对磨合过程中摩擦力的急剧下降的贡献可忽略不计。潮湿空气中的低摩擦力和真空中的超低摩擦力主要归因于相对面上传输层的形成和稳定性,取决于负载和周围环境。这些结果可以帮助我们了解H-DLC膜的低摩擦机理,并在实际应用中定义最佳的工作条件,在该条件下,可以在真空中的低施加负载条件下长时间保持转印层,而高负载可以有利于在潮湿空气中形成转移层。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号