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NONLINEAR ANALYSIS OF SELF-EXCITED VIBRATION IN WHEELED TRACTOR VEHICLE'S DRIVELINE

机译:轮式牵引车动力传动系统自激振动的非线性分析

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摘要

A nonlinear analysis of torsional self-excited vibration in the driveline system for wheeled towing tractors was presented, with a 2-DOF mathematical model. The vibration system was described as a second-order ordinary differential equation. An analytical approach was proposed to the solution of the second-order ODE. The mathematical neighborhood concept was used to construct the interior boundary and the exterior boundary. The ODE was proved to have a limit cycle by using Poincare-Bendixson Annulus Theorem when two inequalities were satisfied. Because the two inequalities are easily satisfied, the self-excited vibration is inevitable and even the initial slip rate is little. However, the amplitude will be almost zero when the third inequality is satisfied. Only in a few working modes of the towing tractor the third inequality is not satisfied. It is shown by experiments that the torsional self-excited vibration in the driveline of the vehicle is obvious.
机译:利用2-DOF数学模型,对轮式牵引拖拉机传动系统中的扭转自激振动进行了非线性分析。振动系统被描述为二阶常微分方程。提出了一种解决二阶ODE问题的分析方法。数学邻域概念用于构造内部边界和外部边界。当满足两个不等式时,通过使用Poincare-Bendixson环定理证明ODE具有极限环。因为容易满足两个不等式,所以自激振动是不可避免的,甚至初始滑移率也很小。但是,当满足第三不等式时,振幅将几乎为零。仅在牵引拖拉机的一些工作模式中,第三不等式才得到满足。实验表明,车辆传动系统中的扭转自激振动是明显的。

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