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Torsional Vibration Analysis of Six Speed MT Transmission and Driveline from Road to Lab

机译:六速MT传输与牵引路程的扭转振动分析

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When a manual transmission (MT) powertrain is subjected to high speeds and high torques, the vehicle driveshaft, and other components experience an increase in stored potential energy. When the engine and driveshaft are decoupled during an up or down shift, the potential energy is released causing clunk during the shift event. The customer desires a smooth shift thus reduction of clunk will improve experience and satisfaction. In this study, a six-speed MT, rear-wheel-drive (RWD) passenger vehicle was used to experimentally capture acoustic and vibration data during the clunk event. To replicate the in-situ results, additional data was collected and analyzed for powertrain component roll and pitch. A lumped parameter model of key powertrain components was created to replicate the clunk event and correlate with test data. The lumped parameter model was used to modify clutch tip-out parameters, which resulted in reduced prop shaft oscillations. By reducing the prop shaft oscillations the clunk phenomena can be reduced and customer satisfaction increased.
机译:当手动传输(MT)动力系经受高速和高扭矩时,车辆驱动轴和其他组件经历储存潜在能量的增加。当发动机和驱动轴在向上或向下移动期间解耦时,潜在的能量在换档事件期间释放导致堵塞。客户希望顺利转移,从而减少克扣将提高经验和满足。在该研究中,六速MT,后轮驱动(RWD)乘用车用于在跨碰交事件期间通过实验捕获声学和振动数据。要复制原位结果,请收集和分析额外数据,用于动力总成分量卷和间距。创建了一个密钥动力总成组件的集总参数模型以复制跨碰交事件并与测试数据相关。集总参数模型用于修改离合器尖端参数,从而导致支撑轴振荡减少。通过减少支撑轴振荡,可以减少截线现象,并且客户满意度增加。

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