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Sensitivity Analysis of Helical Gears with Tooth Surface Modification to Applied Torque and Gear Misalignment

机译:螺旋齿轮齿面改造对施加扭矩和齿轮未对准的敏感性分析

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摘要

The numerical calculation model of time-varying mesh stiffness, static transmission error and composite mesh error of modified helical gears is developed based on loaded tooth contact analysis (LTCA) model. To minimize the fluctuation of vibration excitation force, the optimal modification parameters of three modification methods under designed applied torque and ideal tooth contact condition are determined, and the effects of three modification methods on time-varying mesh stiffness, static transmission error and composite mesh error are analyzed. In order to analyze the sensitivity of the three modification methods to applied torque and gear misalignment, the effects of applied torque in wide range and gear misalignment on vibration excitation force and dynamic transmission error are investigated. The results show that the difference of time-varying mesh stiffness, static transmission error, composite mesh error of helical gears with different modifications methods are obvious. However, the fluctuation of vibration excitation force of helical gears is reduced significantly. When the applied torque is higher than the designed applied torque, the three modification methods show a great reduction of system vibration. When the applied torque is too low, the vibration of modified helical gears is larger than unmodified ones. Meanwhile, the resonance speed of the helical gears is slightly lower. With the increase of gear misalignment, the resonance speed becomes lower correspondingly and the effect of the three modification methods on the reduction of vibration excitation force is not obvious any more. The results can provide effective reference for establishing robust optimization method for tooth surface modification.
机译:改进螺旋齿轮的时变网刚度,静态传输误差和复合网状误差的数值计算模型是基于加载的齿接触分析(LTCA)模型。为了最小化振动激励力的波动,确定了设计施加的扭矩和理想牙齿接触条件下的三种修改方法的最佳修改参数,以及三种修改方法对时变网刚度,静态传输误差和复合网格误差的影响分析了。为了分析三种改进方法的灵敏度来施加扭矩和齿轮未对准,研究了施加扭矩在宽范围内施加扭矩和齿轮未对准对振动激励力和动态传输误差的影响。结果表明,时变网刚度,静态传输误差,具有不同修改方法的螺旋齿轮的复合网格误差的差异是显而易见的。然而,螺旋齿轮的振动激励力的波动显着减小。当施加的扭矩高于设计的施加的扭矩时,三种修改方法显示出系统振动的大大降低。当施加的扭矩太低时,改性螺旋齿轮的振动大于未修饰的螺旋齿轮。同时,螺旋齿轮的共振速度略低。随着齿轮未对准的增加,共振速度相应地变低,三种改性方法对振动激发力的减少的影响不再是明显的。结果可以为建立牙齿表面改性的鲁棒优化方法提供有效参考。

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