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New nonlinear bushing model for general excitations using Bouc-Wen hysteretic model

机译:使用Bouc-Wen磁滞模型的新型通用激励非线性套管模型

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摘要

Because the characteristics of rubber bushing significantly affect the accuracy of vehicle dynamics simulations, they should be accurately modeled in the vehicle suspension model. In this paper, a new nonlinear bushing model for automotive bushing components is developed to improve the accuracy of vehicle dynamics analysis. Bushing components were first tested to capture the nonlinear and hysteretic behavior of typical elements by using a MTS 3-axis elastomer tester. A simple Bouc-Wen hysteretic differential model was modified to generate a more precise rubber bushing model. A sine wave, step input, and random excitations are imposed on the bushing. The ADAMS program is used to calculate sensitivity and the VisualDOC program is employed to find the optimal parameters for the bushing model. An error function is designed to find optimal parameters of the model. Parameter identification is carried out to satisfy the static and dynamic characteristics due to sine and step excitation inputs. It was proved that the proposed model could predict the bushing forces under sine, step, and random inputs well. The errors are within 10% in the overall range. To show the validity of the proposed model, a numerical example was also carried out. Because the bushing forces due to random excitation input show good agreement with experiments, the proposed bushing model is available in the vehicle dynamics simulation.
机译:由于橡胶衬套的特性会显着影响车辆动力学仿真的准确性,因此应在车辆悬架模型中对其进行准确建模。本文为汽车衬套组件开发了一种新的非线性衬套模型,以提高车辆动力学分析的准确性。首先使用MTS 3轴弹性体测试仪对衬套组件进行测试,以捕获典型元件的非线性和滞后行为。修改了简单的Bouc-Wen磁滞微分模型以生成更精确的橡胶衬套模型。正弦波,阶跃输入和随机激励被施加到套管上。 ADAMS程序用于计算灵敏度,而VisualDOC程序用于为套管模型找到最佳参数。设计误差函数以查找模型的最佳参数。进行参数识别是为了满足正弦和步进励磁输入的静态和动态特性。实践证明,该模型能够很好地预测正弦,阶跃和随机输入下的衬套力。误差在整个范围内不超过10%。为了证明所提出模型的有效性,还进行了数值算例。由于随机激励输入产生的衬套力与实验结果吻合良好,因此所提出的衬套模型可用于车辆动力学仿真。

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