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A 27-node hybrid brick and a 21-node hybrid wedge element for structural analysis

机译:用于结构分析的27节点混合砖和21节点混合楔形单元

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摘要

This paper presents a 27-node hybrid hexahedral and a 21-node hybrid wedge element for structural analysis. The motivation behind developing these elements is that, in many situations, it is convenient to use elements that involve only displacement degrees of freedom as in a standard displacement-based brick element, but, in order that computational costs are not prohibitively high, such elements should perform well irrespective of whether they are used to model three-dimensional or plate/shell geometries, whether the material is compressible or almost incompressible and so on. In other words, it is desirable to develop elements that are simple to use, but at the same time extremely versatile in modeling a wide range of geometries, material behavior, etc. The formulation of the proposed elements is based on a two-field mixed variational principle. The higher-order terms in the stress interpolation are identified based on the zero-energy modes that can occur in cubical and wedge-shaped elements, respectively. The resulting elements are "optimal" in the sense that they have the minimum number of assumed stress terms to ensure correct stiffness rank. Numerical examples are presented to show the excellent performance of the proposed elements under demanding situations such as when the elements are used to model plate/shell geometries, when the material is almost incompressible, the meshes are distorted, etc.
机译:本文提出了一种用于结构分析的27节点混合六面体和21节点混合楔形单元。开发这些元素的动机是,在许多情况下,使用仅包含位移自由度的元素(如在基于位移的标准砖元素中)很方便,但是,为了避免计算成本过高,此类元素无论它们是用于建模三维模型还是板/壳几何模型,无论材料是可压缩的还是几乎不可压缩的,等等,都应该表现良好。换句话说,希望开发出易于使用的元素,但同时在建模各种几何形状,材料行为等方面极其通用。提议的元素的公式化基于两场混合变分原理。应力插值中的高阶项基于分别在立方和楔形元素中可能出现的零能量模式进行标识。所得元素在具有最小数量的假定应力项的意义上是“最佳”的,以确保正确的刚度等级。数值示例表明了所提出的元件在苛刻情况下的出色性能,例如,当这些元件用于建模板/壳的几何形状,材料几乎不可压缩时,网格变形等。

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