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首页> 外文期刊>Tribology Online >In Situ Raman Observation of the Graphitization Process of Tetrahedral Amorphous Carbon Diamond-Like Carbon under Boundary Lubrication in Poly-Alpha-Olefin with an Organic Friction Modifier
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In Situ Raman Observation of the Graphitization Process of Tetrahedral Amorphous Carbon Diamond-Like Carbon under Boundary Lubrication in Poly-Alpha-Olefin with an Organic Friction Modifier

机译:有机摩擦改性剂在多α-烯烃边界润滑下四面体无定形碳类金刚石碳的石墨化过程的原位拉曼观察

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The graphitization process of a tetrahedral amorphous carbon (ta-C) film under lubrication was investigated using a laboratory-built in situ Raman tribometer. The coating was lubricated with poly-alpha-olefin (PAO), PAO with an added friction modifier (FM), glycerol mono-oleate (GMO). Friction tests were carried out using a ball-on-disk setup, in which a 19-mm diameter ta-C-coated ball was loaded and rubbed against a steel disk that was immersed in a lubricant solution. In situ optical microscopy and Raman spectroscopy were used to monitor the graphitization process and wear tracks of the ta-C-coated ball. Raman analysis was conducted on the rubbed surface of the rotating ta-C-coated ball when it was located under an objective lens every three minutes during sliding. In this study, the degree of graphitization of the ta-C surface was estimated by calculating the intensity ratio of the D-peak and G-peak (I D/I G) in the Raman spectra of the ta-C film during friction tests with different lubricants. All our results suggest that the friction modifier inhibits the progression of graphitization of DLC films by reducing friction, in other words, reducing the contact temperature, and the wear progression of DLC films under boundary lubrication can be induced by graphitization of DLC surfaces at the sliding contact.
机译:使用实验室制造的原位拉曼摩擦计研究了润滑下的四面体无定形碳(ta-C)膜的石墨化过程。涂层用聚α-烯烃(PAO),添加了摩擦改进剂(FM)的PAO,甘油单油酸酯(GMO)润滑。使用圆盘安装装置进行摩擦测试,在该装置中,装入直径为19毫米的ta-C涂层的球,并与浸入润滑剂溶液中的钢盘摩擦。原位光学显微镜和拉曼光谱法用于监测石墨化过程和ta-C涂层球的磨损轨迹。当在滑动过程中每三分钟将旋转的ta-C涂层球置于物镜下方时,对它的摩擦表面进行拉曼分析。在这项研究中,通过计算ta-C拉曼光谱中D峰和G峰的强度比(iID / iIG)来估计ta-C表面的石墨化程度使用不同的润滑剂进行摩擦测试时会产生油膜。我们所有的结果表明,摩擦改进剂通过减少摩擦来抑制DLC膜的石墨化进程,换句话说,降低接触温度,并且在滑动状态下通过DLC表面的石墨化可以诱导边界润滑条件下DLC膜的磨损进程。联系。

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