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Quadrilateral scaled boundary spectral shell elements with assumed natural strains

机译:具有假定自然应变的四边形缩放边界光谱壳单元

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摘要

This paper presents new variable-order shell elements that require only the shell mid-surface to be discretized, contain no rotational degree of freedom and adopt the full three-dimensional constitutive relationship. In the formulation, a shell element is treated as a three-dimensional continuum undergoing small deformations and its middle surface is represented by a quadrilateral spectral element. Along the thickness direction, the shell geometry is described by scaling the middle surface and the displacements are expressed approximately by interpolating the displacements on the top, middle and bottom surfaces with quadratic Lagrange shape functions. The assumed natural strain method is applied to eliminate transverse shear locking, membrane locking and curvature thickness locking while the volumetric locking is alleviated by elevating the element order. Numerical examples demonstrate that the developed shell elements are superior in applicability, accuracy and efficiency. (c) 2021 Elsevier Ltd. All rights reserved.
机译:该文提出了一种新的变阶壳单元,该单元仅要求壳中表面离散化,不包含旋转自由度,并采用全三维本构关系。在公式中,壳单元被视为经历小变形的三维连续体,其中间表面由四边形光谱单元表示。沿厚度方向,通过缩放中间表面来描述壳的几何形状,并通过使用二次拉格朗日形状函数插值顶面、中面和底面上的位移来近似表示位移。采用假定的自然应变法来消除横向剪切锁定、膜锁定和曲率厚度锁定,同时通过提高单元阶数来缓解体积锁定。数值算例表明,所研制的壳体单元在适用性、精度和效率方面均具有优越性。(c) 2021 爱思唯尔有限公司保留所有权利。

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