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The use of the strain approach to develop a new consistent triangular thin flat shell finite element with drilling rotation

机译:使用应变方法开发具有钻孔旋转的新的一致的三角形薄扁壳有限元

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In the present paper, we offer a new flat shell finite element. It is the result of the combination of a membrane element and a bending element, both based on the strain-based formulation. It is known that C degrees plane membrane elements provide poor deflection and stress for problems where bending is dominant. In addition, they encounter continuity and compliance problems when they connect to C1 class plate elements. The reach of the present work is to surmount these problems when a membrane element is coupled with a thin plate element in order to construct a shell element. The membrane element used is a triangular element with four nodes, three nodes at the vertices of the triangle and the fourth one at its barycenter. Each node has three degrees of freedom, two translations and one rotation around the normal. The coefficients related to the degrees of freedom at the internal node are subsequently removed from the element stiffness matrix by using the static condensation technique. The interpolation functions of strain, displacements and stresses fields are developed from equilibrium conditions. The plate element used for the construction of the present shell element is a triangular four-node thin plate element based on Kirchhoff plate theory, the strain approach, the four fictitious node, the static condensation and the analytic integration. The shell element result of this combination is robust, competitive and efficient.
机译:在本文中,我们提供了一种新的扁平壳有限元。这是膜元件和弯曲元件相结合的结果,两者均基于基于应变的公式。众所周知,C度平面膜元件对于弯曲占主导的问题提供了较差的挠曲和应力。此外,它们在连接到C1级板元件时会遇到连续性和合规性问题。当膜元件与薄板元件联接以构造壳体元件时,本发明的工作是克服这些问题。所使用的膜单元是一个三角形单元,具有四个节点,三个节点在三角形的顶点,第四个节点在其重心。每个节点具有三个自由度,两个平移和围绕法线的一个旋转。随后,通过使用静态凝聚技术,将与内部节点处的自由度相关的系数从单元刚度矩阵中删除。应变,位移和应力场的插值函数是根据平衡条件开发的。用于构造本壳体元件的板元件是基于基尔霍夫板理论,应变方法,四个虚拟节点,静凝结和解析积分的三角形四节点薄板元件。这种组合的壳元素结果是坚固,具有竞争力和效率的。

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