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Dynamic simulation of a planetary gear set and estimation of fault growth on the sun gear

机译:行星齿轮组的动态仿真和太阳轮故障增长的估计

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Planetary gears are widely used in aeronautic and industrial applications because of the properties of compactness and high torque-to-weight ratios. Due to high service load, harsh operating conditions or simply fatigue, faults may develop in gears. If the faults cannot be detected early, the health condition will continue to degrade, even the consequence of big economic loss or catastrophic accident. In this study, the vibration properties of a planetary gear set for different crack levels in the sun gear are investigated through dynamic simulation. A simplified crack growth model is proposed for the sun gear and the time-varying mesh stiffness of a planetary gear set with the crack on the sun gear is analytically derived using the potential energy method. Through analyzing the simulated vibration signals, a new method is proposed to estimate the crack growth without requiring the comparison with the vibration signals when the gear box is running in the perfect conditions.
机译:由于紧凑性和高扭矩 - 重量比率的性质,行星齿轮广泛用于航空和工业应用中。由于高服务负荷,苛刻的操作条件或简单的疲劳,齿轮可能在齿轮中发育。如果早期无法检测到故障,则健康状况将继续降低,即使是大经济损失或灾难性事故的结果。在该研究中,通过动态模拟研究了太阳齿轮中不同裂缝水平的行星齿轮齿轮的振动特性。用电位能量法分析了用于太阳齿轮的太阳齿轮和带裂缝的行星齿轮组的时变网刚度的时变曲线刚度。通过分析模拟振动信号,提出了一种新方法来估计裂缝生长而不需要与齿轮箱在完美条件下运行时与振动信号进行比较。

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