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Effect of Sliding History on Super-Low Friction of Diamond-Like Carbon Coating in Water Lubrication

机译:滑动史对水润滑碳镀碳超低摩擦的影响

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摘要

Water lubrication using diamond-like carbon (DLC) coatings is regarded as being a promising eco-friendly technology. However, it has been reported that delamination of DLC coatings occurs in water. The authors clarified that the application of friction in ambient air prior to self-mating DLC water lubrication, in addition to the suppression of DLC delamination, caused the friction coefficient to decrease more than when no processing is performed in the boundary lubrication region. When compared to the case when there was no pre-sliding, in terms of the wear scar, in this case, a much more hydrophilic and smoother surface was formed. Therefore, the friction-reducing process in water due to the presence of a sliding history (pre-sliding in ambient air) was clarified by an analysis of the DLC geometry, structure, chemical state and an in situ analysis that can measure the friction properties and the chemical state of DLC. We clarified that the process in which the oxidation and structural changes of the DLC proceed at the time of pre-sliding in ambient air using in situ Fourier transform infrared spectroscopy-at-tenuated total reflection. It was also revealed that the OH termination subsequently accelerated rapidly due to the friction in water after pre-sliding process. In addition, a time-of-flight secondary ion mass spectrometry analysis revealed that this OH group was derived from the lubricating water and unlike the case in which there was no pre-sliding in ambient air, the rate at which OH terminates increased considerably.
机译:使用金刚石碳(DLC)涂层的水润滑被认为是一种有前途的环保技术。然而,据报道,DLC涂层的分层发生在水中。作者澄清说,除了抑制DLC分层之外,除了抑制DLC分层之外,还阐明了摩擦在自交配DLC水润滑之前的应用,这导致摩擦系数比在边界润滑区域中不进行处理时减少更多。与在没有预先滑动的情况相比时,就磨损瘢痕而言,在这种情况下,形成更亲水和更平滑的表面。因此,通过分析DLC几何形状,结构,化学状态和原位分析,阐明了由于存在的滑动历史(在环境空气中预先滑动)而导致的摩擦降低过程。可以测量摩擦性能和DLC的化学状态。我们澄清了DLC的氧化和结构变化的过程在使用原位傅里叶变换红外光谱 - 寿命的全反射时,在环境空气中预先滑动时进行。还揭示了OH终止随后由于水在预滑过程中水中的摩擦而迅速加速。此外,飞行时间二次离子质谱分析显示,该OH基团来自润滑水,与在环境空气中没有预先滑动的情况不同,OH终止的速率显着增加。

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