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A unified approach for shear-locking-free triangular and rectangular shell finite elements

机译:一种无剪切锁定的三角形和矩形壳有限元的统一方法

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A new concept for the construction of locking-free finite elements for bending of shear deformable plates and shells, called DSG (Discrete Shear Gap) method, is presented. The method is based on a pure displacement formulation and utilizes only the usual displacement and rotational degrees of freedom (dof) at the nodes, without additional internal parameters, bubble modes, edge rotations or whatever. One unique rule is derive which can be applied to both triangular and rectangular elements of arbitrary polynomial order. Due to the nature of the method, the order of numerical integration can be reduced, thus the elements are actually cheaper than displacement elements with respect to computation time. The resulting triangular elements prove to perform particularly well in comparison with existing elements. The rectangular elements have a certain relation to the Assumed Natural Strain (ANS) or MITC-elements, in the case of a bilinear interpolation, they are even identical.
机译:提出了一种用于剪切可变形板和壳弯曲的免锁定有限元构造的新概念,称为DSG(离散剪切间隙)方法。该方法基于纯位移公式,仅使用节点处的常规位移和旋转自由度(dof),而没有其他内部参数,气泡模式,边缘旋转或其他任何方法。得出一个唯一的规则,该规则可以应用于任意多项式的三角形和矩形元素。由于该方法的性质,可以减少数值积分的阶数,因此就计算时间而言,这些元素实际上比位移元素便宜。事实证明,所得的三角形元素与现有元素相比表现特别出色。矩形元素与假定自然应变(ANS)或MITC元素具有一定的关系,在双线性插值的情况下,它们甚至是相同的。

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