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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Simplified transfer function approach for modeling frequency dependency of damping characteristics of rubber bushings
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Simplified transfer function approach for modeling frequency dependency of damping characteristics of rubber bushings

机译:简化转移功能方法,用于橡胶衬套阻尼特性频率依赖性

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摘要

Physical systems that consist of parts and vibration isolators such as rubber bushings are usually modeled in multibody simulations, where parts are represented as rigid bodies with their mass and inertia properties and rubber bushings are modeled with Voigt models to represent their stiffness and damping characteristics. Employment of Voigt models in multi-degree-of-freedom systems, however, may result in lower accuracy due to limitations in representing frequency-dependent dynamic characteristics of vibration isolators. To overcome this challenge, in this study, we develop and present a simplified frequency-dependent transfer function model by generating their frequency-dependent complex stiffness and damping from vehicle-level measurements. The damping characteristics of rubber bushings as a function of frequency is represented by a second-order transfer function. Three parameters of the transfer function are determined by solving an optimization problem to minimize the integral of absolute error between the measurement and simplified model's predictions. Sequential Quadratic Programming, a gradient descent-based algorithm, is selected as the optimization algorithm for this purpose. The proposed methodology is demonstrated on a heavy commercial truck. Truck cabin is represented as a rigid body connected to four rubber bushings, which are modeled to show the frequency dependency of the damping as a simple transfer function. Simulation results are well correlated with the measurements obtained from prototype vehicle tests on various road profiles showing capability improvement over Voigt modeling approach due to a more representative damping characteristic of rubber bushings as a function of frequency. Integration of the proposed method into multibody simulation software is also demonstrated with cosimulation between MSC.ADAMS and MATLAB software.
机译:由诸如橡胶衬套的零件和振动隔离器组成的物理系统通常在多体模拟中建模,其中部件表示为刚性体,其质量和惯性性质和橡胶衬套用VoIGT模型建模以表示它们的刚度和阻尼特性。然而,在多自由度系统中的voigt模型的就业可能导致由于表示振动隔离器的频率相关的动态特性而导致的准确性较低。为了克服这项挑战,在这项研究中,我们通过从车辆级测量产生频率相关的复杂刚度并阻尼来开发和呈现简化的频率相关的传递函数模型。作为频率函数的橡胶衬套的阻尼特性由二阶传递函数表示。通过解决优化问题来确定传递函数的三个参数,以最小化测量和简化模型预测之间的绝对误差的积分。顺序二次编程,基于梯度下降的算法选择作为此目的的优化算法。在重型商业卡车上证明了所提出的方法。卡车舱表示为连接到四个橡胶衬套的刚体,其被建模以显示阻尼作为简单传递函数的频率依赖性。仿真结果与在各种道路型材上的原型车辆测试中获得的测量结果良好相关,示出了由于橡胶衬套的更代表性阻尼特性作为频率的函数而改善voIGT建模方法的能力。建议方法集成到多体仿真软件中也被MSC.ADAMS和MATLAB软件之间的暗化进行了展示。

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