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One point quadrature shell elements: a study on convergence and patch tests

机译:一点正交壳单元:关于收敛和补丁测试的研究

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One point quadrature shell elements are being widely used in the numerical simulation of shell structures, including sheet forming, because essentially of their computational efficiency. Nowadays, the purpose of using one point quadrature shell elements is not only related to computational efficiency but also because these elements have shown to be simultaneously robust and accurate in the simulation of complex sheet metal forming processes. The main objective of this work is to study the convergence behavior of different one-point quadrature shell elements and their ability to pass the membrane and bending patch tests. For comparison purposes, two new elements include a new formulation for the membrane strain field in order to further improve the membrane behavior of the element developed in previous work of (in Cardoso et al. Comput Meth Appl Mech Eng 191:5177, 2002). The original convective membrane strains of Cardoso et al. (Comput Meth Appl Mech Eng 191:5177, 2002) (in the stabilization matrices only) are thus replaced by new membrane strains, constructed directly at the co-rotational coordinate system (located at the element’s center). It is thus proved that with this new membrane formulation the elements pass now all the patch tests but, for warped (or curved) element geometries, their accuracy is not as good as the original element of (Cardoso et al. in Comput Meth Appl Mech Eng 191:5177, 2002) based on the convective coordinate system. In the numerical results presented in this paper, comprehensive comparison and discussion of these formulations are made for well known linear benchmark examples.
机译:一点正交壳单元已被广泛用于壳结构的数值模拟中,包括片材成形,这主要是因为它们的计算效率。如今,使用一点正交壳单元的目的不仅与计算效率有关,而且还因为这些单元在复杂的钣金成形过程的仿真中已显示出强大而精确的功能。这项工作的主要目的是研究不同的单点正交壳单元的收敛行为以及它们通过膜和弯曲补丁测试的能力。为了比较目的,两个新元素包括用于膜应变场的新配方,以进一步改善在以前的工作中开发的元素的膜行为(在Cardoso等人,Comput Meth Appl Mech Eng 191:5177,2002)。 Cardoso等人的原始对流膜菌株。 (Comput Meth Appl Mech Eng 191:5177,2002)(仅在稳定矩阵中)被新的膜应变所代替,该膜应变直接在同向旋转坐标系(位于元素中心)处构造。因此证明,采用这种新的膜配方,这些元件现在可以通过所有补丁测试,但是对于翘曲(或弯曲)的元件几何形状,其精度不如(Cardoso等人在Comput Meth Appl Mech。 Eng 191:5177,2002)基于对流坐标系。在本文提供的数值结果中,对众所周知的线性基准示例进行了这些公式的全面比较和讨论。

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