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首页> 外文期刊>Tribology letters >A methodology for Raman characterisation of MoDTC tribofilms and its application in investigating the influence of surface chemistry on friction performance of MoDTC lubricants
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A methodology for Raman characterisation of MoDTC tribofilms and its application in investigating the influence of surface chemistry on friction performance of MoDTC lubricants

机译:MoDTC摩擦膜的拉曼表征方法及其在研究表面化学对MoDTC润滑剂摩擦性能的影响中的应用

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In this study, Raman spectroscopy has been employed to understand the influence of surface chemistry on friction in a tribocontact. Tribotests were conducted using molybdenum dialkyldithiocarbamate (MoDTC) lubricant in a steel/steel sliding contact. Firstly, surface chemistry in the high-friction regime, at the beginning of the test, and in the low-friction regime, after long test durations, is investigated. Secondly, the influence of temperature on the surface chemistry of the resulting wear scars was investigated. Results show that at the beginning of tribotests with MoDTC lubricant, iron oxides are formed at the tribocontact which result in high friction. At longer test durations, adsorbed MoDTC on the ferrous surface decomposes to form MoS2 and low friction is observed. Surface chemistry at the tribocontact has been found to vary depending on the test temperature. At high temperatures, MoS2 is formed which provides friction reduction, while at low temperatures, molybdenum oxide and amorphous sulphur-rich molybdenum (MoSx) compounds are formed which do not provide friction reduction. Furthermore, it has been shown that MoS2 formed within the tribocontact at high temperatures has a slightly disordered crystal structure as a result of tribological processes.
机译:在这项研究中,拉曼光谱已被用来了解摩擦摩擦中表面化学对摩擦的影响。在钢/钢滑动接触中使用二烷基二硫代氨基甲酸钼(MoDTC)润滑剂进行摩擦试验。首先,研究了在试验开始时在高摩擦状态下的表面化学以及在长时间试验后在低摩擦状态下的表面化学。其次,研究了温度对所得磨损痕迹表面化学的影响。结果表明,在使用MoDTC润滑剂进行摩擦试验的开始时,摩擦接触处会形成氧化铁,从而导致高摩擦。在更长的测试时间内,铁表面上吸附的MoDTC分解形成MoS2,观察到低摩擦。已经发现摩擦接触处的表面化学性质根据测试温度而变化。在高温下,形成的MoS2可以降低摩擦,而在低温下,可以形成氧化钼和无定形的富含硫的钼(MoSx)化合物,但不能降低摩擦。此外,已经表明,由于摩擦过程,在高温下在摩擦接触内形成的MoS 2具有稍微无序的晶体结构。

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