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A numerical bifurcation study of friction effects in a slip-controlled torque converter clutch

机译:滑差变矩器离合器中摩擦效应的数值分叉研究

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Friction plays a key role in the efficiency and stability of the slip-controlled torque converter clutches. The effects of friction on the dynamics and stability of a slip-controlled torque converter clutch system using a bifurcation-analysis-based approach is presented in this paper. A three degree-of-freedom nonlinear driveline model with integral feedback action to control the clutch slip speed has been utilized for this study. The clutch interface friction is dependent on the slip speed and is a function of the static friction constant, mu(0), the low velocity friction constant mu(1), and the low velocity exponential rate, gamma. Using one-parameter numerical continuation, local Hopf bifurcations of the subcritical type are observed as the friction parameters mu(1) and gamma were varied at low slip speeds. The continuation results are verified using simulations of the full nonlinear model. Stick-slip and undesirable oscillations of the model inertia elements are observed for certain parameter values. As the slip speed is increased, the bifurcation instability occurs at an increasingly higher value of mu(1) signifying an improved tolerance of negative friction gradient at higher slip speeds. Smaller exponential rates gamma are tolerated at higher slip speeds before the bifurcation instability occurs. For the range of parameter values considered, no bifurcations occur for a slip speeds higher than 3.4 and 4.5 rad/s with mu(1) and gamma as the continuation parameters, respectively. These values of slip speeds are much lower than the system's first mode of torsional vibration of 16 Hz (approximate to 100 rad/s).
机译:摩擦在滑差变矩器离合器的效率和稳定性中起着关键作用。本文提出了基于分叉分析的方法对摩擦控制的液力变矩器离合器系统的动力学和稳定性的影响。这项研究利用了三自由度非线性传动系统模型,该模型具有积分反馈作用来控制离合器打滑速度。离合器界面摩擦取决于滑移速度,并且是静摩擦常数mu(0),低速摩擦常数mu(1)和低速度指数率gamma的函数。使用一参数数值连续性,观察到亚临界类型的局部Hopf分叉,因为摩擦参数mu(1)和gamma在低滑移速度下变化。使用完全非线性模型的仿真验证了连续结果。对于某些参数值,可以观察到模型惯性元素的粘滑和不期望的振荡。随着滑移速度的增加,分叉不稳定性在mu(1)的值越来越高时发生,这表明在较高的滑移速度下负摩擦梯度的耐受性得到了改善。在出现分叉不稳定性之前,在较高的滑移速度下可以承受较小的指数伽马。对于所考虑的参数值范围,分别使用mu(1)和gamma作为连续参数,对于高于3.4和4.5 rad / s的滑移速度,不会发生分叉。这些滑移速度值远低于系统的16 Hz扭转振动的第一模式(约100 rad / s)。

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