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Transmission Error Analysis and Disturbance Optimization of Two-Stage Spur Gear Space Driven Mechanism with Large Inertia Load

机译:大型惯性负荷的两阶段正齿轮空间驱动机构的传输误差分析与扰动优化

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摘要

For the nonlinear disturbance actual issues of the model space drive mechanism two-stage spur gear system, a nonlinear dynamic model of 14-DOF (degree of freedom) two-stage spur gear with time-varying stiffness and damping was established. This model has been developed previously by the authors to access the large inertia on the dynamic response of spur gear space driving mechanism, and its effectiveness was proved by a motion simulation experiment. In this paper, the profile error (PE) and the index error (IE) were enhanced in the dynamic model. The effects of profile error, index error, and variable load torque on transmission error (TE) were analyzed, while the optimization was proposed according to the analyzed result. The peak-to-peak value of the optimized load transmission error (LTE) was reduced by 60.7%, which improved the transmission accuracy and reduced the phenomenon of disturbance. The research of nonlinear dynamical model of two-stage spur gear and the TE of the large inertia load were enriched, which provided an important reference for the actual design of the gear system.
机译:对于模型空间驱动机构的非线性干扰实际问题,建立了具有时变刚度和阻尼的14-DOF(自由度)的非线性动态模型,具有时变刚度和阻尼的自由度。此模型以前由作者开发,以进入大型惯性对正轮空间驱动机构的动态响应,其有效性由运动仿真实验证明。在本文中,在动态模型中增强了配置文件错误(PE)和索引误差(IE)。分析了轮廓误差,索引误差和可变负载扭矩对传输错误(TE)的影响,同时根据分析结果提出了优化。优化的负载传输误差(LTE)的峰值峰值减少了60.7%,这提高了传输精度并降低了干扰现象。富集了两阶段正齿轮的非线性动力学模型的研究和大型惯性载荷的TE,为齿轮系统的实际设计提供了重要的参考。

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