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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Creeping control strategy for Direct Shift Gearbox based on the investigation of temperature variation of the wet multi-plate clutch
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Creeping control strategy for Direct Shift Gearbox based on the investigation of temperature variation of the wet multi-plate clutch

机译:基于湿式多板离合器温度变化调查的直移齿轮箱的爬行控制策略

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摘要

Proposing an appropriate control strategy is an effective and practical way to address the overheat problems of the wet multi-plate clutches in Direct Shift Gearbox under the long-time creeping condition. To do so, the temperature variation of the wet multi-plate clutch is investigated first by establishing a thermal resistance model for the gearbox cooling system. To calculate the generated heat flux and predict the clutch temperature precisely, the friction torque model is optimized by introducing an improved friction coefficient, which is related to the pressure, the relative speed and the temperature, before being demonstrated experimentally using a full scale powertrain test. After that, the verified heat transfer model and the reasonable friction torque model are employed by the vehicle powertrain model to construct a comprehensive co-simulation model for the Direct Shift Gearbox vehicle, capable of simulating the dynamic responses and predicting the temperature variations of two clutches. A creeping control strategy is then proposed and, to evaluate the vehicle performance, the safety temperature (250 degrees C) is particularly adopted as an important metric. From the variations in torque and speed obtained from the simulation results, the vehicle can track the desired speed (1.5 km/h) satisfactorily, with only 3% fluctuation, and have good longitudinal dynamic performance (8.5 m/s(3)). But above all, during the entire 174 s creeping process, the temperature of two clutches is always under the safety value (250 degrees C), which demonstrates the effectiveness of the proposed control strategy in avoiding the thermal failures of clutches.
机译:提出适当的控制策略是一种有效而实用的方法,可以在长时间蠕变条件下解决直移齿轮箱中湿多板离合器的过热问题。为此,首先通过建立齿轮箱冷却系统的热阻模型来研究湿多板离合器的温度变化。为了计算产生的热通量并准确地预测离合器温度,通过引入改进的摩擦系数来优化摩擦扭矩模型,该摩擦系数与压力,相对速度和温度有关,例如使用全级动力总成测试在实验证明之前。之后,车辆动力总成模型采用经过验证的传热模型和合理的摩擦扭矩模型,以构建用于直移齿轮箱车辆的综合共模仿真模型,能够模拟动态响应并预测两个离合器的温度变化。然后提出了一种爬行控制策略,并评估车辆性能,安全温度(250℃)尤其采用作为重要的公制。根据从仿真结果获得的扭矩和速度的变化,车辆可以令人满意地跟踪所需的速度(1.5 km / h),波动仅3%,具有良好的纵向动态性能(8.5 m / s(3))。但最重要的是,在整个174的爬行过程中,两个离合器的温度总是在安全值(250摄氏度)下,这表明了所提出的控制策略在避免离合器的热失效方面的有效性。

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