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Multi-Body Dynamic Analysis of Driveline Torsional Vibration for an RWD Vehicle

机译:RWD车辆传动系扭转振动的多体动态分析

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The paper analyzes the characteristics of driveline torsional vibration of a RWD vehicle and provides the control methods of transmission rattle noise caused by the system torsional resonances. A driveline dynamic model of the RWD vehicle is established by multi-body dynamic method. The natural frequencies and modal shapes are calculated for each gear position and torsional vibration responses are predicted by forced vibration analysis. The system sensitivity and DOE are analyzed based on the parameterized stiffness, inertia and damping. The 2nd and 3rd order modal results show that the transmission shaft possesses the maximum amplitudes and its corresponding modal frequencies vary with different gear position. The sensitivity analysis results show that the system torsional vibration is significantly reduced by reducing clutch stiffness, increasing propeller shaft stiffness, raising half shaft stiffness, increasing the input shaft inertia and increasing the clutch damping. The DOE analysis results show that the clutch stiffness, propeller shaft stiffness, and the inertia of axle pinion shaft and transmission input shaft play an important role in reducing torsional vibration of the transmission gear shafts. A clutch with small stiffness and large torsional angle is tested and the transmission gear rattle noise is greatly reduced. The analysis results show excellent consistency with the test results.
机译:本文分析了RWD车辆的传动系扭转振动的特点,并提供了系统扭转谐振引起的传动响噪声控制方法。 RWD车辆的动态模型由多体动态方法建立。针对每个档位,通过强制振动分析来计算自然频率和模态形状,并且通过强制振动分析预测扭转振动响应。基于参数化刚度,惯性和阻尼分析系统敏感性和DOE。第2和第3阶模态结果表明,传动轴具有最大幅度,其相应的模态频率随不同的档位而变化。灵敏度分析结果表明,通过减少离合器刚度,增加螺旋桨轴刚度,提高半轴刚度,增加输入轴惯性并增加离合器阻尼,显着降低了系统扭转振动。 DOE分析结果表明,离合器刚度,螺旋桨轴刚度和轴小齿轮轴和变速器输入轴的惯性在减少传动齿轮轴的扭转振动中起着重要作用。测试具有小刚度和大扭转角度的离合器,传动齿轮响噪声大大降低。分析结果显示出与测试结果的良好一致。

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