首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Derivation of road noise improvement factor within a suspension system using the inverse substructuring method
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Derivation of road noise improvement factor within a suspension system using the inverse substructuring method

机译:使用逆子结构法在悬架系统内的道路噪声改善因子的推导

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This research aims to develop a method to efficiently reduce the body input force from the chassis due to road-induced excitation. To this end, the frequency response function-based substructuring method is employed to model the vehicle cross member and coupling points. Using this model, the dynamic stiffness modification factor of elastic bushing at the effective path is predicted for reducing road noise. Because of the difficulties in directly obtaining dynamic properties of body mount bushings pressured into the sub-frame, the frequency response function-based substructuring model and inverse formulation method are used to indirectly estimate the bushing's dynamic properties. Therefore, the primary focus of this study is to validate the feasibility of using the inverse formulation method for deriving road noise improvement factor on a simple cross member application. In this feasibility validation, road excitation is simply substituted with a shaker excitation in vertical direction. The previously developed suspension rig that enables a direct measurement of the body input force at the coupling points and the specially developed cross member jig are used for the validation test.
机译:该研究旨在通过道路引起的激发,开发一种有效地降低底盘的体内输入力的方法。为此,采用基于频率响应功能的子结构化方法来模拟车辆横梁和耦合点。使用该模型,预测有效路径处弹性衬套的动态刚度修改因子用于降低道路噪声。由于直接获得压力到子帧的身体安装衬套的动态特性的困难,基于频率响应函数的子结构模型和逆配制方法用于间接估计衬套的动态属性。因此,本研究的主要焦点是验证使用逆配制方法的可行性,用于在简单的横帧应用程序上导出道路噪声改善因子。在这种可行性验证中,道路励磁仅在垂直方向上用振动筛激发替换。先前开发的悬架装置,使得能够直接测量耦合点处的主体输入力,并且专门开发的横向构件夹具用于验证测试。

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