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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Mesh stiffness modelling and dynamic simulation of helical gears with tooth crack propagation
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Mesh stiffness modelling and dynamic simulation of helical gears with tooth crack propagation

机译:齿裂化繁殖螺旋齿轮的网格刚度建模与动态模拟

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摘要

In order to identify gear crack failure, modelling the mesh stiffness of a cracked tooth is crucial. In this study, an analytical model of the mesh stiffness for cracked helical gears considering the axial mesh stiffness components and the deflection of the gear body has been proposed. Based on the analytical model, the comparison of the mesh stiffness with and without the axial mesh stiffness components or the deflection of the gear body was carried out. Mesh stiffness of three crack propagation scenarios with different crack sizes has been investigated. Simultaneously, a method to detect the crack length has been deduced based on the time period of the mesh stiffness. Simulation has been conducted using a six-degrees-of-freedom helical gear dynamic model in order to study the effect of tooth crack propagation on the dynamic response. Statistical indicators extracted in the time domain and frequency domain were adopted to evaluate the crack propagation level. The results indicated that the analytical model that has been proposed is able to provide a relatively accurate mesh stiffness, taking into consideration the axial mesh stiffness components and the deflection of the gear body. Mesh stiffness reduced with the propagation of the crack size in either the direction of the crack depth or the crack length. Through analysis of the time period of the residual signal from the dynamic transmission error, the crack length was able to be accurately identified. The shape factor in the selected statistical indicators is most sensitive to the tooth crack propagation in the frequency domain.
机译:为了识别齿轮裂纹破裂,建模裂纹牙齿的网状刚度至关重要。在本研究中,提出了考虑轴向网刚度分量和齿轮体的偏转的裂纹螺旋齿轮的网状刚度的分析模型。基于分析模型,进行了与轴向网刚度分量的网状刚度或齿轮主体的偏转的比较。研究了三种裂缝传播场景的网格刚度,具有不同裂缝尺寸的曲线。同时,基于网格刚度的时间段推导出检测裂缝长度的方法。使用六度自由螺旋齿轮动态模型进行了模拟,以研究齿裂化传播对动态响应的影响。采用在时域和频域中提取的统计指标来评估裂缝繁殖水平。结果表明,已经提出的分析模型能够提供相对准确的网格刚度,考虑轴向网刚度分量和齿轮体的偏转。网格刚度随着裂缝尺寸的传播而减小裂缝深度的方向或裂缝长度。通过分析来自动态传输误差的残余信号的时间段,能够精确识别裂缝长度。所选统计指标中的形状因子对频域中的齿裂化传播最敏感。

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