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首页> 外文期刊>American Journal of Applied Mathematics >Numerical Solution of Elastohydrodynamic Lubrication for Sliding/Rolling Bearing for Non-newtonian Lubricant
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Numerical Solution of Elastohydrodynamic Lubrication for Sliding/Rolling Bearing for Non-newtonian Lubricant

机译:非牛顿润滑剂滑动/滚动轴承弹性流动润滑的数值溶液

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There is always a demand in the industry sector to increase the efficiency of machine components to reduce wear and tear. This paper presents the numerical solution to the study of Elastohydrodynamic lubrication point contact for sliding/rolling bearing where the viscosity of the lubricant is non-Newtonian. The assumption that a lubricant is Newtonian reduces validation of the model hence the Reynolds-Eyring model in this research will incorporate the non-Newtonian nature of the lubricant of the bearing. The mathematical model comprises of Reynold-Eyring equation, film thickness, load balance, lubricant viscosity and lubricant density equations together with their boundary conditions. The Reynolds-Eyring equation governing the flow is non-linear hence the finite difference method numerical technique is used to discretize it together with the other two dimensional equations. These equations are solved simultaneously and Matlab software is used simulate the results. The film thickness and pressure profiles with various loads and speeds are presented. The findings note that an increase in load lowers the pressure and film thickness while an increase in the speed results to a direct increase in pressure and film thickness. A pressure spike is also noted at the exit of the bearing.
机译:行业部门总有一个需求,以提高机器组件的效率,以减少磨损和撕裂。本文介绍了用于滑动/滚动轴承的弹性流体动力学润滑点接触的数值解决方案,其中润滑剂的粘度是非牛顿的粘度。假设润滑剂是牛顿的验证降低了模型的验证,因此该研究中的雷诺 - 眼镜模型将纳入轴承润滑剂的非牛顿性质。数学模型包括雷诺嘴唇方程,膜厚度,负载平衡,润滑剂粘度和润滑剂密度方程以及其边界条件。控制流程的雷诺 - 眼镜方程是非线性,因此使用有限差分方法数值技术用于将其与其他二维方程一起离散。同时解决这些方程,使用MATLAB软件模拟结果。提出了具有各种负载和速度的膜厚度和压力曲线。研究结果注意,负载的增加降低了压力和膜厚度,而速度的增加导致压力和膜厚度的直接增加。在轴承的出口处还注意到压力尖峰。

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