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Multibody dynamics analysis of the driveshaft coupling of the ball and tripod types of constant velocity joints

机译:球和三脚架等速万向节传动轴联轴器的多体动力学分析

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The paper proposes a multibody dynamic simulation to numerically evaluate the generated axial force (GAF) and plunging resistant force (PRF) practically related to the shudder and idling vibration of an automobile. A numerical analysis of the drive shaft coupling of a ball joint (BJ) and two plunging type joints, a tripod joint (TJ), and a very low axial force tripod joint (VTJ), are conducted using the commercial program DAFUL. User-defined subroutines of a friction model illustrating the contacted parts of the outboard and inboard joint are subsequently developed to overcome the numerical instability and improve the solution performance. The Coulomb friction effect is applied to describe the contact models of the lubricated parts in the rolling and sliding mechanisms. The numerical results, in accordance with the joint articulation angle variation, are validated with experimentation. The offset between spider and housing is demonstrated to be the critical role in producing the third order component of the axial force that potentially causes the noise and vibration in the vehicle. The VTJ shows an excellent behavior for the shudder when compared with the TJ. In addition, a flexible nonlinear contact analysis coupled with multibody dynamics is also performed to show the dynamic strength characteristics of the rollers, housing, and spider.
机译:本文提出了一种多体动力学仿真方法,以数值方式评估与汽车颤抖和空转振动实际相关的轴向产生力(GAF)和抗滑入力(PRF)。使用商业程序DAFUL对球形接头(BJ)和两个插入式接头,三脚架接头(TJ)和极低轴向力三脚架接头(VTJ)的驱动轴联轴器进行了数值分析。随后开发了摩擦模型的用户定义子例程,以说明外侧和内侧接头的接触部分,以克服数值不稳定性并提高求解性能。库仑摩擦效应用于描述滚动和滑动机构中润滑部件的接触模型。数值结果,根据关节关节角度变化,通过实验验证。已证明,星形轮和外壳之间的偏移是产生轴向力的三阶分量的关键作用,该分量可能会导致车辆产生噪音和振动。与TJ相比,VTJ在颤抖方面表现出出色的性能。此外,还进行了灵活的非线性接触分析以及多体动力学,以显示滚子,轴承座和星形轮的动态强度特性。

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