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国家自然科学基金(51175282)

作品数:2 被引量:2H指数:1
相关作者:田煜孟永钢张向军更多>>
相关机构:清华大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:理学更多>>

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A dynamic rheological model for thin-film lubrication
2013年
In this study, the effects of the non-Newtonian rheological properties of the lubricant in a thin-film lubrication regime between smooth surfaces were investigated. The thin-film lubrication regime typically appears in Stribeck curves with a clearly observable minimum coefficient of friction (COF) and a low-COF region, which is desired for its lower energy dissipation. A dynamic rheology of the lubricant from the hydrodynamic lubrication regime to the thin-film lubrication regime was proposed based on the convected Maxwell constitutive equation. This rheology model includes the increased relaxation time and the yield stress of the confined lubricant thin film, as well as their dependences on the lubricant film thickness. The Deborah number (De number) was adopted to describe the liquid-solid transition of the confined lubricant thin film under shearing. Then a series of Stribeck curves were calculated based on Tichy's extended lubrication equations with a perturbation of the De number. The results show that the minimum COF points in the Stribeck curve correspond to a critical De number of 1.0, indicating a liquid-to-solid transition of the confined lubricant film. Furthermore, the two proposed parameters in the dynamic rheological model, namely negative slipping length b (indicating the lubricant interfacial effect) and the characteristic relaxation time λ 0 , were found to determine the minimum COF and the width of the low-COF region, both of which were required to optimize the shape of the Stribeck curve. The developed dynamic rheological model interprets the correlation between the rheological and interfacial properties of lubricant and its lubrication behavior in the thin-film regime.
张向军黄颖郭岩宝田煜孟永钢
关键词:薄膜润滑STRIBECK曲线MAXWELL润滑状态流体动压润滑
计入固液界面作用的润滑热力学模型与分析被引量:2
2015年
摩擦与润滑过程是典型的能量耗散过程,在机理上与非平衡热力学中的熵增、耗散结构等理论颇有相似之处.通过热力学分析可以对一些典型的摩擦磨损过程做出合理的机理揭示与推测.本文利用热力学理论对典型的润滑过程进行了建模分析.采用分离压模型表征和计入了微尺度下的固液界面作用,揭示分析了润滑热力学模型与润滑状态Stribeck曲线的联系.从分析计算结果来看,润滑Stribeck曲线的摩擦系数最低点与系统热力学上的熵增率最低点具有相当好的对应关系,而润滑状态从弹流润滑向薄膜润滑的转变过程,可以用耗散结构理论加以机理解释.文中的热力学模型和方法能够有效地体现出润滑过程中多物理要素跨尺度非线性耦合的作用,对实际工程与实验有着重要的指导作用.
经昊达张向军田煜孟永钢
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