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Nonlinear numerical and experimental study on the second-order torsional and lateral vibration of driveline system connected by cardan joint

机译:载体关节连接牵引系统二阶扭转振动的非线性数值和实验研究

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摘要

In this article, a nonlinear dynamic model with five degrees-of-freedom for a four-wheel-drive vehicle driveline connected by a cardan joint, including dynamic intersection angle, nonconstant velocity, and additional moment caused by the cardan joint, is established by using the Lagrange method to analyze the driveline coupling vibration in both torsional and lateral directions. High-order Runge-Kutta algorithm is applied to solve the differential equations and to calculate transient responses of the driveline rotors under acceleration condition. The color maps and second-order vibration of the driveline are acquired by frequency spectrum analysis and order tracking analysis, respectively. The second-order vibration and noise of the driveline and vehicle interior caused by the cardan joint is validated by vehicle experimental results and reduced effectively by decreasing intersection angle of the cardan joint under the operational condition. Moreover, application of a flexible coupling instead of the cardan joint significantly reduces the second-order vibration but simultaneously generates low-level third-order vibration.
机译:在本文中,由载体关节连接的四轮驱动车辆传动系具有五个自由度的非线性动态模型,包括动态交叉角,不合适速度和由载体关节引起的额外时刻。使用拉格朗日方法分析扭转和横向方向的驱动线耦合振动。应用高阶漫游kutta算法来解决差分方程,并在加速条件下计算传动系转子的瞬态响应。通过频谱分析和顺序跟踪分析来获取传动系的颜色图和二阶振动。由载体接头引起的驱动线和车辆内部的二阶振动和噪音由车辆实验结果验证,并通过在运营条件下降低载体关节的交叉角度有效地减少。此外,应用柔性耦合而不是载体关节的应用显着降低了二阶振动,而是同时产生低级三阶振动。

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