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Experimental study on the tribo-chemical smoothening process between self-mated silicon carbide in a water-lubricated surface-contact reciprocating test

机译:自润滑碳化硅在水润滑表面接触往复试验中摩擦化学平滑过程的实验研究

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Silicon carbide (SiC) can be tribo-chemically smoothened during a self-mated sliding procedure in the aqueous environment. As well reported in the point-contact tests, this smoothening process works well due to the abundant water as oxidant. After this smoothening process, the tribo-surface is well polished, a closely mated tribo-gap naturally forms, and an ultra-low friction state is built. However, water in the tribo-gap could be insufficient in industrial applications, e.g., the seal gap in mechanical seals. In this study, the tribo-chemical smoothening behavior in such environment was researched. A surface-contact reciprocating test was used to simulate the aqueous environment where water was insufficient. After tests, compared to the published results from the point-contact tests, the same ultra-low friction state was achieved. A part of the tribo-surface was tribo-chemically smoothened. The obtained smoothened surface microstructure was consistent with the published information. Meanwhile, severe abrasive wear occurred. A porous oxygen-rich layer was found existing beneath the abrasion-induced grooves, in which numerous smashed wear debris adhered on the worn surfaces. We concluded that the shortage of water initiated the severe abrasion, meanwhile the generated wear debris aggravated the wear condition. This understanding is instructive for developing new methods to avoid the severe abrasion in the same water insufficient environment.
机译:碳化硅(SiC)可以在水性环境中的自配合滑动过程中进行摩擦化学抛光。正如点接触测试中所报道的那样,由于有大量的水作为氧化剂,因此这种平滑处理效果很好。经过该平滑处理后,摩擦表面被很好地抛光,自然形成了紧密配合的摩擦间隙,并建立了超低摩擦状态。但是,摩擦间隙中的水在工业应用中可能不够用,例如机械密封中的密封间隙。在这项研究中,研究了在这种环境下的摩擦化学平滑行为。使用表面接触往复试验来模拟水不足的水性环境。经过测试,与点接触测试的公开结果相比,获得了相同的超低摩擦状态。摩擦表面的一部分被摩擦化学平滑。获得的平滑表面微观结构与公开的信息一致。同时,发生严重的磨料磨损。发现在磨损引起的凹槽下方存在多孔的富氧层,其中许多粉碎的磨损碎片粘附在磨损的表面上。我们的结论是,缺水引发了严重的磨损,同时产生的磨损碎屑加剧了磨损状况。这种理解对于开发新的方法具有指导意义,以避免在相同的缺水环境中严重磨损。

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