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首页> 外文期刊>Tribology International >The mutual interaction between tribochemistry and lubrication: Interfacial mechanics of tribofilm
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The mutual interaction between tribochemistry and lubrication: Interfacial mechanics of tribofilm

机译:培养与润滑的相互相互作用:呋喃杂草的界面力学

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摘要

A new mechanism for the action of antiwear tribofilms is proposed. The antiwear action of ZDDP additive is believed to be mainly due to the formation of tribofilms that reduce wear by chemical action. In this study, a mixed lubrication model is developed and tribofilm growth integrated into this model to simulate the effects of tribofilms on lubrication. The dynamic evolution of the contacting surfaces due to plastic deformation, wear and tribofilm growth continuously change the lubrication characteristics inside the contact. It is observed that the growth of tribofilm roughens the contact and increase contact severity. It was found that this roughness increase also helps to entrain more lubricant, resulting in thicker lubricant films. Therefore, the plot of the evolution of film thickness ratio (h(central)(t)/R-q(t)) shows that the lubrication regime is improved by the presence of tribofilm. Therefore, not only the chemical presence but the physical presence of the tribofilm on the surfaces also helps to improve contact performance by retaining more lubricant and improving the lubrication regime.
机译:提出了一种抗衣草呋喃酚的作用的新机制。据信ZDDP添加剂的抗磨作用主要是由于呋喃酚的形成,以通过化学作用减少磨损。在这项研究中,开发了混合润滑模型,并集成了该模型中的呋喃酚生长,以模拟呋喃玻璃对润滑的影响。由于塑性变形,磨损和呋喃酚生长引起的接触表面的动态演变在接触内连续改变润滑特性。观察到呋喃十分的生长使接触并增加接触严重程度。发现这种粗糙度增加也有助于纳入更多的润滑剂,导致润滑剂薄膜较厚。因此,膜厚度比(H(中央)(T)/ R-Q(T)的演变的图表明润滑制度通过呋喃吡喃的存在而得到改善。因此,不仅是化学存在,而且呋喃甲在表面上的物理存在还通过保留更多润滑剂并改善润滑制度来帮助改善接触性能。

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