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首页> 外文期刊>Journal of Tribology >On the Sensitivity of the Asperity Pressures and Temperatures to the Fluid Pressure Distribution in Mixed-Film Lubrication
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On the Sensitivity of the Asperity Pressures and Temperatures to the Fluid Pressure Distribution in Mixed-Film Lubrication

机译:混合膜润滑中粗糙压力和温度对流体压力分布的敏感性

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This paper studies the sensitivities of the asperity pressures and temperatures to the fluid pressure distribution in concentrated contacts operating in the regime of mixed-film lubrication. Two fluid pressure distributions are used in the study. One is a Hertz-like distribution that neglects micro-EHL responses of the lubricant, and the other models the micro-EHL effects with significant pressure rippling. The asperity pressures and temperatures are deterministically calculated in time by numerically solving the asperity-contact and the transient energy equations as the two surfaces move relative to each other. The contact is simulated for sufficient time duration until the samples of the calculated asperity variables reach a statistical equilibrium that reflects the random-process nature of the problem. Parametric analyses are carried out that cover a wide range of operating conditions of practical interest. The results obtained consistently suggest that the asperity pressures and temperatures are not sensitively related to the fluid pressure. This insensitivity supports the use of any fluid pressure distribution consistent with the underlying mixed-film problem, rather than determining it by numerically solving the Reynolds equation at every time step of the simulation process. The study lays a foundation on which to advance modeling of the mixed-film contacts with a proper balance among model robustness, computational efficiency and solution accuracy.
机译:本文研究了在混合膜润滑方式下工作的集中接触中,粗糙压力和温度对流体压力分布的敏感性。研究中使用了两种流体压力分布。一种是类似于赫兹的分布,它忽略了润滑剂的微观EHL响应,而另一种则以显着的压力波动模拟了微观EHL效应。通过数值求解当两个表面相对于彼此移动时的粗糙接触和瞬态能量方程,可以确定地及时计算粗糙压力和温度。对接触进行足够长的时间模拟,直到计算出的粗糙变量的样本达到反映问题的随机过程性质的统计平衡为止。进行的参数分析涵盖了许多实际有意义的操作条件。始终获得的结果表明,粗糙压力和温度与流体压力不敏感相关。这种不敏感性支持使用与潜在的混合膜问题一致的任何流体压力分布,而不是通过在模拟过程的每个时间步骤对雷诺方程进行数值求解来确定它。该研究为在模型鲁棒性,计算效率和求解精度之间取得适当平衡的基础上推进混合膜接触的建模奠定了基础。

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