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Experimental observations and dynamic modeling of vibration characteristics of a cylindrical roller bearing with roller defects

机译:带有滚子缺陷的圆柱滚子轴承振动特性的实验观察和动态建模

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摘要

The better understanding of the vibration characteristics of a bearing with defects is crucial for the fault diagnosis of rolling element bearings (REBs). In the current paper, the vibration responses of a cylindrical roller bearing when a roller defect goes around outer and inner races are investigated. Firstly, an experiment was carried out and the experimental results are observed to discuss the multiple impulses which are generated when a roller defect goes around a race. Then a dynamic model is proposed for cylindrical roller bearings with roller defects. In the proposed dynamic model, the relative slippage, the finite size of a roller, and the change of contact force direction as a roller defect impacts with a race are all considered. Based on the proposed dynamic model, the vibration responses of the bearing when a roller defect goes around the outer and the inner races are investigated. The results show that, besides the impulses generated when the roller edges roll through the line connecting the roller and race centers, other impulses can also be generated due to the impact between the roller defect and the race. Furthermore, the roller defect impacts both with the outer race and the inner race as it rotates in the loaded zone, while the roller defect only impacts with the outer race in the unloaded zone for the radially loaded cylindrical roller bearing. In addition, the interaction time between the roller defect and the inner race is generally longer than that between the roller defect and the outer race.
机译:更好地了解带有缺陷的轴承的振动特性对于滚动轴承(REB)的故障诊断至关重要。在本文中,研究了圆柱滚子轴承在外圈和内圈周围滚动缺陷时的振动响应。首先,进行了一项实验,并观察了实验结果,以讨论在滚子缺陷绕行时产生的多个脉冲。然后提出了带有滚子缺陷的圆柱滚子轴承的动力学模型。在提出的动态模型中,考虑了相对滑动,辊的有限尺寸以及当辊缺陷与滚道碰撞时接触力方向的变化。基于所提出的动力学模型,研究了当滚子缺陷围绕外圈和内圈时轴承的振动响应。结果表明,除了在滚子边缘滚动通过连接滚子和座圈中心的线时产生的脉冲外,由于滚子缺陷和座圈之间的影响,还可能产生其他脉冲。此外,在径向加载的圆柱滚子轴承中,滚子缺陷会在外圈和内座圈中旋转,而滚子缺陷只会在未加载区域中在外圈中撞击外圈。另外,滚子缺陷与内圈之间的相互作用时间通常比滚子缺陷与外圈之间的相互作用时间长。

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