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A 9-node mixed shell element based on the Hu-Washizu principle

机译:基于胡-鹫津原理的9节点混合壳单元

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This paper proposes a new 9-node degenerated shell element based on a nonlinear mixed formulation. To avoid locking phenomena, we present a mixed formulation based on a three-field Hu-Washizu principle in which displacements, the Green strain tensors, and the second Piola-Kirchhoff stress tensors are independently assumed. In approximating strain and stress fields, covariant components of the strains and stresses measured in the element curvilinear coordinate system are interpolated by the common polynomial functions over an element. Parameter vectors of stress and strain interpolants are elementwise eliminated so that we may obtain an element stiffness matrix similar to that of the displacement model. This formulation is mathematically clear in the variational context, and can include geometrical and material nonlinearities without spoiling such clearness. Numerical results based on our approach are illustrated with satisfactory behavior of the element observed.
机译:该文提出了一种基于非线性混合公式的新型9节点简并壳单元。为了避免锁定现象,我们提出了一个基于三场胡-鹫津原理的混合公式,其中位移、格林应变张量和第二皮奥拉-基尔霍夫应力张量是独立假设的。在近似应变和应力场中,在单元曲线坐标系中测量的应变和应力的协变分量由单元上的公多项式函数进行插值。应力和应变插值的参数向量被逐单元消除,因此我们可以得到一个类似于位移模型的单元刚度矩阵。该公式在变分上下文中在数学上是明确的,并且可以包括几何和材料非线性,而不会破坏这种清晰度。基于我们方法的数值结果用观察到的元素的令人满意的行为来说明。

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