油脂润滑:配方对摩擦学性能的影响

T. Cousseau
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引用次数: 3

摘要

润滑脂润滑性能预测具有挑战性。直到最近,人们才开发了经验方程,以预测在低、中、高速条件下,考虑增稠剂性能和含量的全满油润滑下的普遍轧制条件下的油膜厚度。在缺乏润滑的情况下,虽然已经发表了关于控制膜形成的供给和损耗机制的新见解,但接触补充以及因此产生的长期运行的膜厚度预测仍然不可用。元件效率的预测需要薄膜厚度值和特性,包括薄膜的分子结构,这使得它更具挑战性。当涉及到普遍滑动条件时,文献是稀缺的,并且大多数为普遍滚动条件开发的知识是不适用的。在接触体滑动过程中,存在边界润滑和混合润滑。在这种情况下,摩擦学响应主要是由润滑脂增稠剂和添加剂与表面的物理化学相互作用决定的。这种复杂性导致许多研究人员寻求润滑脂配方和性能之间更简单的关系。本文综述了润滑脂润滑的研究现状,并对其中的一些关系进行了更新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grease Lubrication: Formulation Effects on Tribological Performance
Grease lubrication performance prediction is challenging. Only recently that empirical equations to predict grease film thickness for prevailing rolling conditions under fully flooded lubrication taking into account thickener properties and content for low, moderate, and high speeds were developed. At starved lubrication, although new insights about the supply and loss mechanisms that govern film formation have been published, contact replenishment and, consequently, film thickness predictions for long-term operation are still not available. Prediction of components efficiency requires film thickness values and properties, including film’s molecular structure, which makes it even more challenging. When it comes to prevailing sliding conditions, the literature is scarce and most of the knowledge developed for prevailing rolling conditions is not applicable. During the sliding of the contacting bodies, boundary and mixed lubrication regimes are expected. In this situation, the tribological response is primarily defined by grease thickener and additives physicochemical interaction with the surface. This complexity leads many researchers to seek simpler relationships between grease formulation and properties with its performance. This review aims to present the state-of-art on grease lubrication and update some of these relationships.
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