Wear fault diagnosis of an emulsion pump crank bearing

HAN Xiao-ming , DU Chang-long , ZHANG Yong-zhong , TIE Zhan-xu
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引用次数: 6

Abstract

The total load on a crank bearing was calculated by performing a load analysis of the crank connecting rod mechanism. The Reynolds equation for hydrodynamic lubrication of the crank bearing was established at the Reynolds boundary condition and was then solved using the Holland method. From this the regular track of the bearing axis was obtained. As the crank bearing gradually wears the eccentricity ratio corresponding to the minimum oil film thickness increases gradually. The oil-bound film eventually breaks down, which allows friction and collision between the metal surfaces of the crank pin and the bearing. The rigid impact leads to excitation of high frequency vibrations at the natural frequencies of the connecting rod. The experiments show that the wear condition of the crank bearing can be identified correctly through the vibration signature at the natural frequencies of the connecting rod. The degree of wear can be predicted accurately through the energy content of the high frequency bands.

乳化液泵曲柄轴承磨损故障诊断
通过对曲柄连杆机构进行载荷分析,计算了曲柄轴承的总载荷。在雷诺边界条件下建立了曲柄轴承流体动力润滑的雷诺方程,并用Holland法求解。由此得到了轴承轴的规则轨迹。随着曲柄轴承的逐渐磨损,最小油膜厚度所对应的偏心比逐渐增大。油结合膜最终破裂,这使得曲柄销和轴承的金属表面之间的摩擦和碰撞。刚性冲击会激发连杆固有频率处的高频振动。实验表明,通过连杆固有频率处的振动特征可以正确识别曲柄轴承的磨损状况。通过高频段的能量含量可以准确预测磨损程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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