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Rotation-free finite element for the non-linear analysis of beams and axisymmetric shells

机译:梁和轴对称壳非线性分析的无旋转有限元

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In this paper a finite element for the non-linear analysis of two-dimensional beams and axisymmetric shells is presented. The element uses classical thin shell assumptions (no transverse shear strains). The main feature of the element is that it has no rotational degrees of freedom. Curvatures are computed using geometrical information from the patch of three elements formed by the main element and the two neighbor (adjacent) elements. Special attention is devoted to non-smooth geometries and branching shells. An elastic-plastic material law is considered. Large strains are treated using a logarithmic strain measure and a through-the-thickness numerical integration of the constitutive equations. Several examples are presented including linear problems to study convergence properties, and non-linear problems for both elastic and elastic-plastic materials and large strains.
机译:本文提出了一种用于二维梁和轴对称壳非线性分析的有限元。该单元使用经典的薄壳假设(无横向剪切应变)。该元件的主要特征是它没有旋转自由度。使用几何信息从主要元素和两个相邻(相邻)元素形成的三个元素的面片中计算出曲率。特别注意的是非光滑的几何形状和分支壳。考虑了弹塑性材料定律。使用对数应变测量和本构方程的整个厚度数值积分来处理大应变。给出了几个示例,包括研究收敛特性的线性问题,以及弹性和弹塑性材料以及大应变的非线性问题。

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