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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >ANCF Tire Assembly Model for Multibody System Applications
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ANCF Tire Assembly Model for Multibody System Applications

机译:用于多体系统应用的ANCF轮胎装配模型

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The aim of this paper is to propose a new numerical approach for modeling tires in multibody system (MBS) applications. In this approach, the tires, including the rigid rim, are modeled using one mesh developed using the finite element (FE) absolute nodal co-ordinate formulation (ANCF). The FE tire mesh, which allows for high spinning speed, has a constant inertia matrix and zero Coriolis and centrifugal forces. The connectivity conditions between the tire tread and rim are imposed at a preprocessing stage using linear constraint equations, thereby allowing for the elimination of dependent variables before the start of the simulation. The concept of the rim node is introduced in this paper to allow for the tire/axle assembly in MBS vehicle simulations. The rim node, which is not associated with a particular FE, is used to define the inertia of the rim, treated in this investigation as a rigid body. The procedure for evaluating the inertia coefficients associated with the rim node gradients is described. It is shown how fully parameterized ANCF beam and plate elements can be used to develop new tire geometry that captures details that cannot be captured using existing tire models. The concept of mixed ANCF FEs can also be used with both higher order fully parameterized and gradient deficient ANCF FEs to obtain a better distribution of the tire contact forces.
机译:本文的目的是提出一种用于多体系统(MBS)应用中的轮胎建模的新数值方法。在这种方法中,轮胎(包括刚性轮辋)通过使用有限元(FE)绝对节点坐标公式(ANCF)开发的一个网格进行建模。允许高速旋转的FE轮胎网具有恒定的惯性矩阵,零的科氏力和离心力。轮胎胎面和轮辋之间的连接条件是在预处理阶段使用线性约束方程式施加的,从而可以在模拟开始之前消除因变量。本文介绍了轮辋节点的概念,以允许在MBS车辆仿真中进行轮胎/车轴组件的装配。与特定FE不相关的轮辋节点用于定义轮辋的惯性,在本研究中将其视为刚体。描述了评估与边缘节点梯度相关的惯性系数的过程。它显示了如何使用完全参数化的ANCF梁和板单元来开发新的轮胎几何形状,以捕获现有轮胎模型无法捕获的细节。混合ANCF FE的概念也可以与高阶完全参数化和坡度不足的ANCF FE一起使用,以获得轮胎接触力的更好分布。

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