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An improved dynamic model of defective bearings considering the three-dimensional geometric relationship between the rolling element and defect area

机译:考虑滚动元件与缺陷区域三维几何关系的缺陷轴承的改进动态模型

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The accuracy of the vibration response simulated by the dynamic model of the defective bearing depends on the precise expression of the interaction between the rolling elements and defect area in the model. An improved dynamic model considering the three-dimensional geometric relationship between the rolling element and the defect area is developed to investigate the abrupt change of contact force and the corresponding vibration response of the bearing system. The geometry parameters describing the defect area are extended to the radius and groove radius of the raceway, the maximum and minimum depths of the defect area, and the circumferential angular extents of defect area on the radial and axial cross-sections for the first time. During a rolling element passes through the defect area, the contact forms between the rolling element and the defect area are classified into different types depending on whether the rolling element is in contact with the top edges or the bottom surface of defect area. The influence of defect size on contact form was investigated, the changes in contact force of the rolling element under different types of contact forms were compared, and the relationship between defect size and vibration response of the bearing system was quantified. The analysis results indicate that the circumferential angular extent of defect area on the axial cross-section has significant influence on the contact force between the rolling element and defect area, as well as the impulse response of the bearing system. Double-impulse phenomenon appears in both the time domain and time-frequency distribution of the vibration response of bearing system, and the simulation results have a good agreement with the experiments. The comparison of the vibration responses at different defect sizes shows whether the double-impulse phenomenon can be clearly observed in the vibration response depending on the rotational speed of the bearing and the size of the defect area. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过缺陷轴承的动态模型模拟的振动响应的精度取决于模型中滚动元件与缺陷区域之间的相互作用的精确表达。考虑滚动元件与缺陷区域之间的三维几何关系的改进的动态模型是开发了研究轴承系统的突然变化和轴承系统的相应振动响应。描述缺陷区域的几何参数延伸到滚道的半径和凹槽半径,缺陷区域的最大和最小深度,以及第一次径向和轴向横截面上的缺陷区域的圆周角度范围。在滚动元件通过缺陷区域期间,根据滚动元件是否与缺陷区域的顶部边缘或底表面接触,将滚动元件和缺陷区域之间的接触形成分为不同的类型。研究了缺陷尺寸对接触形式的影响,比较了滚动元件在不同类型的接触形式下的接触力的变化,量化了轴承系统的缺陷尺寸和振动响应之间的关系。分析结果表明轴向横截面上的缺陷区域的圆周角度范围对滚动元件和缺陷区域之间的接触力以及轴承系统的脉冲响应具有显着影响。双脉冲现象出现在轴承系统的振动响应的时域和时频分布中,仿真结果与实验吻合良好。不同缺陷尺寸的振动响应的比较示出了根据轴承的旋转速度和缺陷区域的尺寸可以清楚地观察到双脉冲现象。 (c)2019 Elsevier Ltd.保留所有权利。

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