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A rigid-flexible coupled model for a planetary gearbox with tooth crack and its dynamic response analyses

机译:带有齿裂纹的行星齿轮箱的刚柔耦合模型及其动力响应分析

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A planetary gearbox is widely used in many areas. Considering that it has complicated structures and relative motions, its dynamic responses are much more complex. It is difficult to analyze its internal and real situation when there exist faults on its surface. Many dynamic models have been established to study its dynamic responses when having a crack on one of teeth. However, most of models are built based on the assumption that the crack propagation path is simplified as a straight line, and it results in obvious deviation on the dynamic responses. In this paper, a rigid-flexible coupled model is established for a one-stage planetary gearbox. In this model, the sun is set as a flexible body and the whole planetary gearbox is a rigid object. The tooth crack propagations are simulated along both the tooth width and the crack depth that can be respectively described as two parabolas. Different crack sizes on one gear tooth are simulated in ADAMS and the dynamic responses are then generated. Based on these, five commonly used statistical indicators, i.e. peak-to-peak, mean, root mean square (RMS), kurtosis, and energy are used to investigate the relationship between the different crack sizes and the response. The results show that RMS and energy are more sensitive to the growth of tooth crack for propagation whatever along the tooth width and the crack length. The frequency spectra also indicate that sidebands caused by the tooth crack obviously change with the crack growing. It provides a reference for studying the dynamic response and crack assessment of the planetary gearbox.
机译:行星齿轮箱广泛应用于许多领域。考虑到它具有复杂的结构和相对运动,它的动态响应要复杂得多。当表面存在故障时,很难分析其内部和实际情况。已经建立了许多动力学模型来研究当牙齿之一上有裂纹时的动力学响应。但是,大多数模型是基于裂纹扩展路径简化为直线的假设而建立的,这会导致动态响应出现明显偏差。在本文中,建立了一个单级行星齿轮箱的刚柔耦合模型。在此模型中,太阳被设置为柔性体,整个行星齿轮箱为刚性物体。沿着齿宽和裂纹深度都模拟了牙齿的裂纹扩展,可以分别描述为两个抛物线。在ADAMS中模拟了一个齿轮齿上的不同裂纹尺寸,然后生成了动态响应。基于这些,五个常用的统计指标,即峰峰值,均值,均方根(RMS),峰度和能量被用于研究不同裂纹尺寸与响应之间的关系。结果表明,RMS和能量对沿牙齿宽度和裂纹长度的裂纹扩展更敏感。频谱还表明,由牙齿裂纹引起的边带随裂纹的增长而明显变化。它为研究行星齿轮箱的动力响应和裂纹评估提供了参考。

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