首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Vibration response analysis of high-speed cylindrical roller bearings using response surface method
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Vibration response analysis of high-speed cylindrical roller bearings using response surface method

机译:响应面法的高速圆柱滚子轴承的振动响应分析

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摘要

The operating clearance in a bearing influences friction, load zone size and fatigue life of a bearing. Hence, an effort is made to investigate the effect of radial internal clearance on the dynamical behavior of a cylindrical roller bearing system with an unbalance present in the system. The differential equations representing the dynamics of the cylindrical roller bearings have been derived using Lagrange's equations and solved numerically using the fourth-order Runge-Kutta iterative method. The nonlinear vibration signature has been analyzed due to the clearance and the same is represented by various tools like Acceleration-time plots, Poincare plots and FFT plots. The approximation method is used to calculate the load distribution and deformation of the individual rollers located at a different position in the load zone, for a preloading/interference fit and positive internal clearance. A response surface method is used to analyze the severity involved in the system due to the combined effect of independent variables like rotor speed, radial load, and radial internal clearance. The observations presented here are not only useful to diagnose the bearing health condition with respect to parametric effects but also exhibit their interactive effects on bearing performance.
机译:轴承的工作间隙影响轴承的摩擦,负载区尺寸和疲劳寿命。因此,努力研究径向内部间隙对系统中存在不平衡的圆柱形滚子轴承系统的动力学行为的影响。代表圆柱形滚子轴承动态的微分方程已经使用拉格朗日的方程导出并使用四阶runge-Kutta迭代方法数值求解。由于间隙而分析了非线性振动签名,并且通过各种工具,如加速时间图,庞的地块和FFT图所示。近似方法用于计算位于负载区中不同位置的单个辊的负载分布和变形,用于预载/干扰配合和正内部间隙。由于转子速度,径向载荷和径向内部间隙等独立变量的组合效果,响应表面方法用于分析系统中涉及的严重程度。此处提出的观察结果不仅有用诊断轴承健康状况以及参数效应,而且还表现出它们对轴承性能的互动影响。

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