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Investigation of Self Excited Torsional Vibrations of Different Configurations of Automatic Transmission Systems during Engagement

机译:啮合过程中自动变速系统不同配置的自激扭转振动研究

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摘要

The vehicle drive line system is subjected to torsional vibration from different sources of the system such as, engine fluctuating torque, Hook's joint and the final drive. However, the essential source is the friction torque induced in the friction elements, during their engagement. In the automatic transmission system, the planetary gear set includes several friction elements such as; clutch, band brakes, and one way clutch. During the engagement, severe torsional vibration is induced by friction which is noticeable by the passengers in the form of what so called vehicle shunt. In present paper, a torsional vibration model for Drive Line (DL) system includes three different configurations of automatic transmission is constructed. A computer program using MATLAB subroutines is implemented to obtain the system response. Effect of system parameters on the dynamic behavior and stability has been investigated. The system damping and the trend of the friction coefficient have an essential effect on the dynamic behavior and stability of the system. The system response is now predictable with change of the system parameters which opens up the opportunity in future to control the vibration level.
机译:车辆传动系统受到来自系统不同来源的扭转振动,例如发动机波动扭矩,胡克关节和终传动。然而,主要来源是在摩擦元件接合期间在摩擦元件中引起的摩擦转矩。在自动变速器系统中,行星齿轮组包括多个摩擦元件,例如;离合器,带式制动器和单向离合器。在接合过程中,摩擦会引起严重的扭转振动,这种摩擦在乘客中很明显,即所谓的车辆分流器形式。在本文中,构造了包括三种不同配置的自动变速器的动力传动系统(DL)系统的扭转振动模型。实现了使用MATLAB子例程的计算机程序以获得系统响应。研究了系统参数对动态行为和稳定性的影响。系统的阻尼和摩擦系数的趋势对系统的动态性能和稳定性具有至关重要的影响。现在,随着系统参数的变化,系统响应是可预测的,这为将来控制振动水平提供了机会。

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