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首页> 外文期刊>International Journal of Solids and Structures >Plane hybrid stress elements for 3D analysis of moderately thick solids subjected to loading symmetric to midsurface
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Plane hybrid stress elements for 3D analysis of moderately thick solids subjected to loading symmetric to midsurface

机译:用于3D分析的平面混合应激元件对对称的载入对称的适度厚固体

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摘要

Plane semi-analytical hybrid stress elements are formulated from the 3D Hellinger-Reissner principle for modelling moderately thick structural components with and without hollows subjected to loadings symmetric to the midsurface. These components possess symmetry in the thickness direction but could not be idealised as either plane stress or plane strain problems. 3D displacement and stress fields conforming to the exact plane stress solution are assumed and normal stresses on the surfaces parallel to the thickness direction are nullified. These 2D elements possess good convergence characteristics and simulate the 3D behaviour of solids whose stress free surfaces exhibit negligible out-of-plane distortion with good level of accuracy comparable to 3D analyses by ABAQUS. (c) 2006 Elsevier Ltd. All rights reserved.
机译:平面半分析混合应力元件由3D Hellinger-Reissner原理配制,用于使用对对称对称的负载量对称的负载的空腔进行模拟。 这些组件在厚度方向上具有对称性,但不能理想化为平面应力或平面应变问题。 3D位移和符合精确平面应力溶液的应力场被假定并且与厚度方向平行的表面上的正常应力被无效。 这些2D元件具有良好的收敛特性,并模拟固体的3D行为,其应力自由表面具有良好的平面间变形,其具有与Abaqus的3D分析相当的良好的精度。 (c)2006年elestvier有限公司保留所有权利。

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