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Driveline Torsional Analysis and Parametric Optimization for Reducing Driveline Rattle

机译:用于减少驱动线拨浪鼓的传动系统扭转分析和参数优化

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Gear rattle is an annoying noise phenomena of the automotive transmission, which is mainly induced by torsional fluctuation of engine. In this study, torsional vibration of 3 cylinder powertrain is analyzed and improved for reducing the gear rattle from transmission by using parametric optimization. One dimensional Multi-body mathematical model for the torsional vibrations of front wheel drive automotive drivetrain is developed and utilized for the optimization of sensitive parameters of the driveline. Second order differential equations of the mathematical model are solved by using MATLAB and the output response is validated with the test data. Parametric optimization is conducted by using design of experiment method. The updated model is further utilized for optimizing the flywheel inertia, driveshaft stiffness and clutch stiffness. Mathematical modelling and optimization process has helped to achieve NVH targets for driveline.
机译:齿轮拨浪鼓是汽车传输的令人讨厌的噪音现象,主要由发动机的扭转波动引起。在这项研究中,分析了3个气缸动力系的扭转振动并改善了通过使用参数优化从传输中减少齿轮拨动器。开发并利用了前轮驱动汽车传动系统的扭转振动的一维数学数学模型,用于优化传动系统的敏感参数。通过使用MATLAB来解决数学模型的二阶微分方程,并使用测试数据验证输出响应。通过使用实验方法的设计进行参数优化。更新的型号进一步用于优化飞轮惯性,驱动轴刚度和离合器刚度。数学建模和优化过程有助于实现传动系的NVH目标。

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