首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference 2007 >COMPARISON OF THREE-DIMENSIONAL FLEXIBLE THIN PLATE ELEMENTS FOR MULTIBODY DYNAMIC ANALYSIS: FINITE ELEMENT FORMULATION AND ABSOLUTE NODAL COORDINATE FORMULATION
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COMPARISON OF THREE-DIMENSIONAL FLEXIBLE THIN PLATE ELEMENTS FOR MULTIBODY DYNAMIC ANALYSIS: FINITE ELEMENT FORMULATION AND ABSOLUTE NODAL COORDINATE FORMULATION

机译:多体动力分析的三维柔性薄板元件的比较:有限元公式和绝对节点坐标公式

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摘要

Three formulations for a flexible 3-D thin plate element for dynamic analysis within a multibody dynamics environment are compared: a classical Discrete Kirchhoff Triangle (DKT) with large displacements and large rotations, a fully parametrized rectangular element according to the absolute nodal coordinate formulation (ANCF) and a rectangular element according to the ANCF with an elastic midplane approach. The comparison is made by means of a small deformation static test and extensive eigenfrequency analyses on a stylized problem. It is shown that the DKT element can describe arbitrary rigid body motions and that both the DKT element and the thin plate ANCF element show good convergence to analytic solutions by increasing number of elements, and suppress shear locking which is present in the fully parametrized ANCF element.
机译:比较了在多体动力学环境中进行动态分析的柔性3-D薄板单元的三种公式:经典的离散Kirchhoff三角形(DKT),大位移和大旋转,根据绝对节点坐标公式完全参数化的矩形单元( ANCF)和根据ANCF的矩形单元,采用弹性中平面方法。通过小变形静态测试和对特征化问题的广泛特征频率分析进行比较。结果表明,DKT元素可以描述任意刚体运动,并且DKT元素和薄板ANCF元素通过增加元素数量显示出对解析解的良好收敛性,并抑制了完全参数化ANCF元素中存在的剪切锁定。

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