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A refined torsional-lateral-longitude coupled vehicular driveline model for driveline boom problems

机译:用于传动系轰隆问题的精制扭转横向耦合车辆传动系统模型

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摘要

A theoretical dynamic model of vehicular driveline is presented to reveal the mechanism of low frequency interior booms within a low engine speed range. Unlike existing models, this model manifests the torsional-lateral-longitude coupling effects of the propeller shafts together with the integral rear axle assembly. Based on rotor dynamics, translational rigid body vibrations of propeller shafts due to flexible support onto the trimmed body are complemented to traditional one-dimensional torsional model. Then the kinematic equation of the Hooke's joint is improved to illustrate the dynamic effects of the non-constant velocity coupling. In addition, pitching of the integral rear axle assembly coupled to torsional vibration through the main reducer is also considered. An application containing analyses of critical engine speed and dynamic response is performed to a rear-wheel-drive vehicle, which proves that this model shows the best balance of accuracy and efficiency compared with established models, and has a capacity to show the contributions of the Hooke's joints. Finally, a modal sensitivity analysis is conducted to find the authentic cause of the vehicle's boom and explain the reasons that the previous model is less accurate. At last, the sensitivity of peak value of force transmissibility is derived as a novel method to seek for optimized directions. It concludes that this model is suitable for investigation and optimizing of boom problems.
机译:提出了一种车辆传动系的理论动态模型,揭示了低发动机速度范围内低频内部臂的机制。与现有模型不同,该模型表现在整个后轴组件中螺旋桨轴的扭转横向长度耦合效应。基于转子动力学,由于柔性支撑在修剪主体上,螺旋桨轴的平移刚体振动与传统的一维扭转模型互补。然后改善了胡克接头的运动学方程以说明非恒定速度耦合的动态效应。另外,还考虑了通过主减速器连接到扭转振动的整体后轴组件的俯仰。对后轮驱动车辆执行了包含关键发动机速度和动态响应的分析的应用,这证明了与既定模型相比,该模型显示了准确性和效率的最佳平衡,并具有展示贡献的能力胡克的关节。最后,进行了模态敏感性分析,以找到车辆繁荣的真实原因,并解释了以前模型不太准确的原因。最后,推导出力传递率的峰值值的灵敏度作为寻求优化方向的新方法。得出结论,该模型适合调查和优化繁荣问题。

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