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A multi-body dynamic study of vibration of a planetary gear train with the planetary bearing fault

机译:具有行星轴承故障的行星齿轮系振动的多体动力学研究

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摘要

Local faults including pits and spalls in any planet bearing can greatly affect the vibration of the planetary gear train, as well as the elastic support of the ring gear. However, the dynamic modelling methods in previous work can only formulate the local fault and the elastic support of the ring gear independently. To address this issue, a multi-body dynamic model for a planetary gear train with a local fault in the planet bearing and an elastic ring gear foundation are introduced to analyze the effect of local fault on the vibration. The local fault in the planet bearing is modelled as a rectangular one. Both the planet bearings including the radial clearance and ring gear with an elastic foundation are considered in the multi-body dynamic model. The contact stiffnesses and damping coefficients of gears and bearings are calculated by the methods reported in the literature. A Coulomb friction model is adopted to model the frictions between mating components of the system. In order to validate the proposed multi-body dynamic model, its simulation results are directly compared with those from theoretical methods as well as the experimental methods reported in the literature. Moreover, parameter studies are conducted to discuss the effects of local faults in the planet-bearing races, the sun gear speed, and the carrier moment on the vibration of the planetary gear train. The analyzing results of this study can provide some guidance for detection approaches of local faults in the planet bearings of planetary gear trains through vibration analysis.
机译:任何行星轴承中的局部故障(包括凹坑和剥落)都会极大地影响行星齿轮系的振动以及齿圈的弹性支撑。然而,先前工作中的动力学建模方法只能独立地表示齿圈的局部故障和弹性支撑。为了解决这个问题,引入了行星齿轮系的多体动力学模型,该行星齿轮系在行星轴承中具有局部故障,并且引入了弹性齿圈基础,以分析局部故障对振动的影响。行星轴承中的局部故障被建模为矩形。在多体动力学模型中考虑了包括径向游隙的行星轴承和具有弹性基础的齿圈。齿轮和轴承的接触刚度和阻尼系数通过文献报道的方法计算。采用库仑摩擦模型来建模系统配合组件之间的摩擦。为了验证所提出的多体动力学模型,将其仿真结果与理论方法以及文献报道的实验方法直接进行比较。此外,进行了参数研究,以讨论行星轴承座圈中的局部故障,太阳轮速度和行星架力矩对行星齿轮系振动的影响。这项研究的分析结果可以为通过振动分析的行星齿轮系行星轴承局部故障的检测方法提供一些指导。

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