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4-Node combined shell element with semi-EAS-ANS strain interpolations in 6-parameter shell theories with drilling degrees of freedom

机译:具有自由度的6参数壳理论中具有半EAS-ANS应变插值的4节点组合壳单元

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摘要

A 4-node C 0 shell element with drilling degrees of freedom is presented in this paper. The element is developed within the nonlinear 6-field shell theory. Kinematics of the shell is described by two independent fields: the vector field for translations and the proper orthogonal tensor field for rotations. Within the theoretical formulation no restriction is applied on magnitudes of displacements and rotations. To avoid locking phenomena the proposed element combines two interpolation schemes: the assumed natural strain (ANS) for transverse shear strains and the enhanced assumed strain (EAS). The latter interpolation is used with asymmetric (in-plane) membrane strains. The performance of the element is evaluated by example of benchmark problems with special emphasis on shell structures containing orthogonal intersections.
机译:本文提出了一个具有钻井自由度的四节点C 0 壳单元。该单元是在非线性六场壳理论中开发的。壳的运动学由两个独立的字段描述:用于平移的矢量字段和用于旋转的适当正交张量字段。在理论公式内,对位移和旋转的大小没有限制。为了避免出现锁定现象,建议的单元结合了两种插值方案:横向剪应变的假定自然应变(ANS)和增强的假定应变(EAS)。后一种插值用于不对称(面内)膜应变。通过基准问题示例评估元素的性能,其中特别强调包含正交相交的壳结构。

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