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Experimental analysis and modeling of transmission torsional vibrations

机译:传动扭转振动的实验分析与建模

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In this article, the torsional vibrations of a transmission system installed on a test rig are investigated. The transmission system comprises a Dual Clutch Transmission (DCT) and a Manual Transmission (MT) interconnected via their output shafts. The excitation of the dynamic system is performed by two electric motors which ensure an accurate control of the speed or torque. The analysis includes the measurement of the external torques, applied by the two electric motors to the mechanical system, and the measurement of the system response in terms of angular speeds at different positions along the transmission line. The frequency response of the system is estimated from the experimental data and compared with the simulation results of a 4-DOF lumped parameter model, which proved adequate to describe the dynamic behavior of the system up to a frequency of 100Hz. A good match between simulation and experimental results is shown. Therefore, the model can be used to predict the torsional vibration of the transmission system under test when it behaves linearly.
机译:在本文中,研究了安装在试验台上的传动系统的扭转振动。传输系统包括双离合器传输(DCT)和通过其输出轴互连的手动变速器(MT)。动态系统的激励由两个电动机执行,其确保精确控制速度或扭矩。该分析包括由两个电动机施加到机械系统的外部扭矩的测量,以及在沿传输线的不同位置处的角速度方面测量系统响应。从实验数据估计系统的频率响应,并与4-DOF集总参数模型的仿真结果进行比较,这证明了将系统的动态行为达到100Hz的频率。显示了模拟和实验结果之间的良好匹配。因此,该模型可用于预测当它线性行为时被测传输系统的扭转振动。

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