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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Analytical and experimental analysis of axial force generated by a drive shaft system
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Analytical and experimental analysis of axial force generated by a drive shaft system

机译:驱动轴系统产生的轴向力的分析与实验分析

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The drive shaft system with a tripod joint is known to cause lateral vibration in a vehicle due to the axial force generated by various contact pairs of the tripod joint. The magnitude of the generated axial force, however, is related to various operating factors of the drive shaft system in a complex manner. The generated axial force due to a drive shaft system with a tripod joint and a ball joint was experimentally characterized considering ranges of operational factors, namely, the input toque, the shaft rotational speed, the articulation angle, and the friction. The data were analyzed to establish an understanding of the operational factors on the generated axial force. Owing to the observed significant effects of all the factors, a multibody dynamic model of the drive shaft system was formulated for predicting generated axial force under different operating conditions. The model integrated the roller-track contact model and the velocity-based friction model. Based on a quasi-static finite element model, a new methodology was proposed for identifying the roller-track contact model parameters, namely, the contact stiffness and force index. To further enhance the calculation accuracy of the multibody dynamic model, a new methodology for identifying the friction model parameters and the force index was proposed by using the measured data. The validity of the model was demonstrated by comparing the model-predicted and measured magnitudes of generated axial force for the ranges of operating factors considered. The results showed that the generated axial force of the drive shaft system can be calculated more accurately and effectively by using the identified friction and contact parameters in the paper.
机译:已知具有三脚架接头的驱动轴系统由于三脚架接头的各种接触对产生的轴向力而导致车辆中的横向振动。然而,产生的轴向力的大小与以复杂的方式有关驱动轴系统的各种操作因子。由于具有三脚架接头和球接头的驱动轴系统而产生的轴向力实验表征考虑运行因子的范围,即输入扭矩,轴转速,铰接角和摩擦。分析数据以建立对所产生的轴向力的操作因素的理解。由于观察到所有因素的显着效果,配制了驱动轴系统的多体动态模型,用于在不同的操作条件下预测产生的轴向力。模型集成了滚子轨道接触型号和基于速度的摩擦模型。基于准静态有限元模型,提出了一种用于识别滚子轨道接触模型参数的新方法,即接触刚度和力指数。为了进一步提高多体动态模型的计算精度,通过使用测量的数据提出了一种用于识别摩擦模型参数和力指数的新方法。通过比较所考虑的操作因子范围的模型预测和测量的轴向力的模型预测和测量的幅度来证明模型的有效性。结果表明,通过使用纸张中所识别的摩擦和接触参数,可以更精确且有效地计算驱动轴系统的轴向力。

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