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A fully coupled method for solving the Newtonian, steady state, isothermal elastohydrodynamic point contact problem

机译:解决牛顿稳态等温弹性流体动力点接触问题的全耦合方法

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This paper describes a computational model for the analysis of steady state, point contact, elastohydrodynamic lubrication (EIIL) problems assuming Newtonian lubricant behavior. A fully coupled technique combined with a differential deflection technique has been developed for solving the oil film thickness and hydrodynamic (Reynolds's) equation using a finite difference model. The solution technique is extremely robust and converged solutions are obtained rapidly. No relaxation is necessary and the solution starts from the dry Hertz pressure distribution with a corresponding oil film thickness. The solutions generated have good agreement with known results. Solutions can be obtained for heavily loaded contact that is well beyond the capability of previous techniques.
机译:本文介绍了一种计算模型,用于分析假设牛顿润滑剂行为的稳态,点接触,弹性流体动力润滑(EIIL)问题。已开发出一种完全耦合的技术与微分偏转技术相结合的方法,用于使用有限差分模型求解油膜厚度和流体动力学(雷诺兹)方程。该解决方案技术非常强大,并且可以快速获得收敛的解决方案。无需松弛,解决方案从具有相应油膜厚度的干燥赫兹压力分布开始。生成的解决方案与已知结果具有良好的一致性。可以获得重载接触的解决方案,这远远超出了先前技术的能力。

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