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Analytical Investigation on the Damping Performance of Atorque Converter in an Automotive Driveline Model

机译:Atorque转换器在汽车传动系统模型中的阻尼性能分析研究

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Torque converters are avital part of automatic transmission vehicles. In this paper the influence of a torque converter on the lowest mode of driveline vibrations (shuffle mode) is investigated. The automotive driveline is modelled by lumped parameter models, in which a steady-state torque converter model is inserted between the engine and the gearbox. A detailed mathematical model of a two-degree of freedom and a three-degree of freedom dynamic systemis given. The resulting nonlinear differential equations are linearized to obtain system transfer functions and to study damping characteristics of the torque converter.Additionally, a dynamic system model with nonlinear equations is developed in MATLAB/Simulink to verify the linearized system. The simulations show that the high frequency vibrations from the engine side are damped due to the torque converter and the linearized model predicts the system response accurately.
机译:扭矩转换器是自动传输车辆的Avital部分。在本文中,研究了扭矩转换器对最低驱动线振动模式(洗牌模式)的影响。汽车传动系通过集总参数模型建模,其中稳态转换器模型插入发动机和齿轮箱之间。给出了两自由度的详细数学模型和三维自由度动态系统。由此产生的非线性微分方程是线性化的,以获得系统传递函数,并研究变矩器的阻尼特性。加法,Matlab / Simulink中的具有非线性方程的动态系统模型以验证线性化系统。模拟表明,由于变矩器,从发动机侧的高频振动被抑制,并且线性化模型准确地预测系统响应。

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