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A 4-Node Co-Rotational Quadrilateral Composite Shell Element

机译:一种4节点同向旋转四边形复合壳单元

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摘要

A 4-node co-rotational quadrilateral composite shell element is presented. The local coordinate system of the element is a co-rotational framework defined by the two bisectors of the diagonal vectors generated from the four corner nodes and their cross product. Thus, the element rigid-body rotations are excluded in calculating the local nodal variables from the global nodal variables. Compared with other existing co-rotational finite-element formulations, the present element has two features: (i) The two smallest components of the mid-surface normal vector at each node are defined as the rotational variables, leading to the desired additive property for all nodal variables in a nonlinear incremental solution procedure; (ii) both element tangent stiffness matrices in the local and global coordinate systems are symmetric owing to the commutativity of the nodal variables in calculating the second derivatives of strain energy with respect to the local nodal variables and, through chain differentiation with respect to the global nodal variables. In the modeling of composite structures, the first-order shear deformable laminated plate theory is adopted in the local element formulation, where both the thickness deformation and the normal stress in the direction of the shell thickness are ignored, and an assumed strain method is employed to alleviate the membrane and shear locking phenomena. Several examples involving composite plates and shells with large displacements and large rotations are presented to testify to the reliability and convergence of the present formulation.
机译:提出了一个四节点同向旋转四边形复合壳单元。元素的局部坐标系是由四个角节点及其叉积生成的对角矢量的两个等分线定义的同旋转框架。因此,从整体节点变量中计算局部节点变量时,不包括单元刚体旋转。与其他现有的同向旋转有限元公式相比,本单元具有两个特征:(i)将每个节点的中表面法向矢量的两个最小分量定义为旋转变量,从而为非线性增量解过程中的所有节点变量; (ii)由于在计算应变能相对于局部节点变量的二阶导数时以及通过相对于整体节点的链微分计算时节点变量的可交换性,局部和全局坐标系中的两个单元的切线刚度矩阵都是对称的节点变量。在复合结构的建模中,局部单元公式采用一阶剪切变形叠层板理论,忽略了壳壁厚度方向的厚度变形和法向应力,并采用了假定的应变方法。减轻膜和剪切锁定现象。提出了一些涉及具有大位移和大旋转的复合板和壳体的例子,以证明本发明配方的可靠性和收敛性。

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