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Development of nonlinear elastic leaf spring model for multibody vehicle systems

机译:多体车辆系统非线性弹性板簧模型的开发

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In this investigation, a nonlinear elastic model of leaf springs is developed for use in the computer simulation of multibody vehicle systems. In the leaf spring model developed in this investigation, the distributed inertia and stiffness of the leaves of the spring are modeled using the finite element floating frame of reference formulation that accounts for the effect of the nonlinear dynamic coupling between the finite rotations and the leaf deformation. The leaf spring geometry and deformations are modeled using nodal degrees of freedom defined with respect to the spring body coordinate system. By assuming that the leaf deformation can be large but the leaf deformed shape remains simple, component mode synthesis techniques can be used to significantly reduce the number of deformation coordinates. The nonlinear stiffness matrix is first developed for the finite element of each leaf and is used to determine the overall leaf spring stiffness matrix. The pre-stresses, the contact and friction that characterize the nonlinear behavior of leaf springs are discussed. Using the nonlinear leaf spring formulation presented in this study, a detailed multibody model for a sport utility vehicle is developed. It is shown that the proposed leaf spring model that accounts for the effect of windup, contact and friction between the spring leaves can be effectively used for assessing the dynamic stability of sports utility vehicles.
机译:在这项研究中,开发了板簧的非线性弹性模型,用于多体车辆系统的计算机仿真。在此研究中开发的板簧模型中,使用参考公式的有限元浮动框架对弹簧的叶片的分布惯性和刚度进行建模,该框架考虑了有限旋转和叶片变形之间的非线性动力耦合效应。 。使用相对于弹簧体坐标系定义的节点自由度对板簧的几何形状和变形进行建模。通过假设叶片变形可以很大而叶片变形的形状保持简单,可以使用分量模式合成技术显着减少变形坐标的数量。首先为每片叶子的有限元建立非线性刚度矩阵,然后使用该非线性刚度矩阵来确定整个片簧刚度矩阵。讨论了表征板簧非线性行为的预应力,接触力和摩擦力。使用本研究中提出的非线性板簧公式,开发了一种多功能运动车的详细多体模型。结果表明,所提出的考虑弹簧缠绕,接触和摩擦影响的板簧模型可以有效地用于评估运动型多用途车的动态稳定性。

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