Prediction of Cavitation Failure in Crankpin Bearings

H. Karimaei
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Abstract

Cavitation failure is a common failure in bearing shells. Due to the generation and immediate collapse of small gas bubbles, causing high-pressure pulses, the bearing surface is being locally damaged. Cavitation failure is also observed in IC engines due to highly dynamic loading, oscillation of pins, the turbulence of oil flow, and other factors. In this paper, cavitation failure in the crankpin bearing of an IC engine is studied. In order to calculate the bearing lubrication characteristic such as oil fill ratio and maximum oil film pressure, the Elasto-Hydrodynamic Lubrication (EHL) method to consider the effect of stiffness of the bearing shell housing in the model is utilized that incorporates mass conserving algorithms. In order to investigate the effect of some design parameters, such as clearance height between shaft and bearing shell, oil supply temperature and pressure, and oil bore position, on the cavitation failure, a parametric study was also done. The results showed that the cavitation failure in crankpin bearing is not critical and it is slight.
曲轴轴承空化失效的预测
气蚀失效是轴承壳的一种常见失效。由于小气泡的产生和立即破裂,引起高压脉冲,轴承表面正在局部损坏。在内燃机中,由于高动载荷、销钉振荡、油流湍流等因素,也会出现空化失效。本文对内燃机曲轴轴承的空化失效进行了研究。为了计算轴承的充油比和最大油膜压力等润滑特性,采用了考虑轴承座刚度影响的弹流动力润滑(EHL)方法,并结合了质量守恒算法。为了研究轴与轴承壳间隙高度、供油温度和压力、油孔位置等设计参数对空化失效的影响,进行了参数化研究。结果表明,曲柄销轴承的空化破坏不是临界的,而且是轻微的。
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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