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An Alternative Positional FEM Formulation for Geometrically Non-linear Analysis of Shells: Curved Triangular Isoparametric Elements

机译:壳体几何非线性分析的替代位置有限元公式:弯曲三角等参元素

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摘要

This work presents an alternative finite element shell formulation based on non-conventional nodal parameters. The considered parameters are nodal positions (not displacements) and generalized vector components that comprise both director cossines and shell thickness variation at the same time. Although any objective strain measure could be adopted to develop the proposed formulation, non-linear engineering strain is chosen in order to take advantage of well know linear engineering stress–strain relations and to complement the easy geometrical appeal of positional formulation. The resulting formulation presents six degrees of freedom by each node and considers constant thickness variation. Consequently, the formulation fulfills a three dimensional compatible mapping and requires a relaxed three-dimensional constitutive relation to avoid thickness locking. Curved triangular elements with cubic approximation are adopted following a very simple notation. Several numerical simulations illustrate and confirm the accuracy and applicability of the proposed formulation.
机译:这项工作提出了基于非常规节点参数的替代有限元壳公式。考虑的参数是节点位置(不是位移)和同时包含指向矢余弦和壳厚度变化的广义矢量分量。尽管可以采用任何客观应变测量方法来开发所提出的公式,但是为了利用众所周知的线性工程应力-应变关系并补充位置公式的简单几何吸引力,选择了非线性工程应变。所得公式表示每个节点有六个自由度,并考虑了恒定的厚度变化。因此,该配方实现了三维兼容的映射,并且需要松弛的三维本构关系以避免厚度锁定。遵循非常简单的表示法,采用三次近似的弯曲三角形元素。几个数值模拟说明并证实了所提出配方的准确性和适用性。

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  • 来源
    《Computational Mechanics》 |2007年第1期|185-200|共16页
  • 作者单位

    São Carlos School of Engineering University of São Paulo São Paulo Brazil;

    São Carlos School of Engineering University of São Paulo São Paulo Brazil;

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  • 正文语种 eng
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