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Improved formulation for the stabilized enhanced strain solid-shell element (SHB8PS): geometric linear and nonlinear applications

机译:稳定的增强型应变固体壳单元(SHB8PS)的改进配方:几何线性和非线性应用

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摘要

In this study, the formulation of the SHB8PS solid-shell element is reviewed in order to eliminate some persistent membrane and shear locking phenomena. The resulting physically stabilized and locking-free finite element consists in a continuum mechanics shell element based on a purely three-dimensional formulation. In fact, this is a hexahedral element with eight nodes as well as five integration points, all distributed along the “thickness” direction. Consequently, it can be used for the modelling of thin structures, while providing an accurate description of the various through-thickness phenomena. The reduced integration has been used in order to prevent some locking phenomena and to increase computational efficiency. The spurious zero-energy deformation modes due to the reduced integration are efficiently stabilized, whereas the strain components corresponding to locking modes are eliminated with a projection technique following the Enhanced Assumed Strain (EAS) method.
机译:在这项研究中,SHB8PS固体成分的配方进行了审查,以消除一些持久的膜和剪切锁定现象。所得的物理稳定且无锁的有限元包含在基于纯三维公式的连续力学壳单元中。实际上,这是一个六面体元素,具有八个节点以及五个积分点,所有这些点均沿“厚度”方向分布。因此,它可以用于薄结构的建模,同时提供各种厚度贯穿现象的准确描述。为了防止某些锁定现象并提高计算效率,已使用了减少的积分。归因于减小的积分,虚假的零能量变形模式被有效地稳定,而与锁定模式相对应的应变分量通过遵循增强假定应变(EAS)方法的投影技术得以消除。

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