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Thermal elastohydrodynamic lubrication of line contacts

机译:线接触的热弹性流体动力润滑

摘要

A numerical solution to the problem of thermal elastohydrodynamic lubrication of line contacts was obtained by using a finite difference formulation. The solution procedure consists of simultaneous solution of the thermal Reynolds equation, the elasticity equation, and the energy equation subject to appropriate boundary conditions. Pressure distribution, film shape, and temperature distribution were obtained for fully flooded conjunctions, a paraffinic lubricant, and various dimensionless speed parameters while the dimensionless load and materials parameters were held constant. Reduction in the minimum film thickness due to thermal effects (as a ratio of thermal to isothermal minimum film thickness) is given by a simple formula as a function of the thermal loading parameter Q: H(min)/H(min,I) = 10/10+ Q(0.4). Plots of pressure distribution, film shape, temperature distribution, and flow are shown for some representative cases.
机译:通过使用有限差分公式,获得了线接触点热弹性流体动力润滑问题的数值解决方案。求解过程包括同时求解热雷诺方程,弹性方程和能量方程的边界条件。获得了全溢流接头,石蜡润滑剂和各种无量纲速度参数的压力分布,膜形状和温度分布,而无量纲载荷和材料参数保持不变。由于热效应而导致的最小薄膜厚度的减少(作为最小热与等温薄膜的比率)由一个简单的公式作为热负荷参数Q的函数给出:H(min)/ H(min,I)= 10/10 + Q(0.4)。对于一些代表性的情况,显示了压力分布,薄膜形状,温度分布和流量的图。

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  • 作者

    Ghosh M. K.; Hamrock B. J.;

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  • 年度 1983
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