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Elastohydrodynamic lubrication study of hard rolling contact using boundary element method

机译:硬滚动接触的弹性流体动力润滑的边界元方法研究

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Presents a study on the application of boundary element method (BEM) to the solution of elastohydrodynamic lubricated hard rolling contacts in comparison with a solution using finite difference method (FDM). The developed program for the solution of Reynolds equation and the elasticity equation give results of pressure distribution and the lubricant film thickness for steady state, isothermal Newtonian lubricant behavior. Compares the BEM results and the computer effort with the solution using FDM. Uses an iterative Newton-Raphson method to solve the non-linearity of the problem. Discusses the effects of Hertzian pressure and rolling speeds on film thickness and pressure distribution. The numerical scheme of BEM has proved to have the advantage of being very effective and optimum in terms of accuracy, less computational effort and good constancy compared to other applied numerical techniques.
机译:与有限差分法(FDM)相比,提出了边界元方法(BEM)在弹性流体动力润滑硬滚动接触件解决方案中的应用研究。为解决雷诺方程和弹性方程而开发的程序给出了稳态,等温牛顿润滑油行为的压力分布和润滑油膜厚度的结果。使用FDM将BEM结果和计算机工作与解决方案进行比较。使用迭代的Newton-Raphson方法来解决问题的非线性问题。讨论赫兹压力和轧制速度对薄膜厚度和压力分布的影响。事实证明,与其他应用的数值技术相比,BEM的数值方案在准确性,更少的计算工作量和良好的恒定性方面具有非常有效和最佳的优势。

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