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首页> 外文期刊>Composite Structures >Fast and accurate elastic analysis of laminated composite plates via isogeometric collocation and an equilibrium-based stress recovery approach
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Fast and accurate elastic analysis of laminated composite plates via isogeometric collocation and an equilibrium-based stress recovery approach

机译:通过异诊断和基于平衡的应力恢复方法快速准确地弹性分析层压复合板和平衡的应力恢复方法

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摘要

A novel approach which combines isogeometric collocation and an equilibrium-based stress recovery technique is applied to analyze laminated composite plates. Isogeometric collocation is an appealing strong form alternative to standard Galerkin approaches, able to achieve high order convergence rates coupled with a significantly reduced computational cost. Laminated composite plates are herein conveniently modeled considering only one element through the thickness with homogenized material properties. This guarantees accurate results in terms of displacements and in-plane stress components. To recover an accurate out-of-plane stress state, equilibrium is imposed in strong form as a post-processing correction step, which requires the shape functions to be highly continuous. This continuity demand is fully granted by isogeometric analysis properties, and excellent results are obtained using a minimal number of collocation points per direction, particularly for increasing values of length-to-thickness plate ratio and number of layers.
机译:一种新的方法,其结合了异诊断和平衡基应力恢复技术的分析层压复合板。 Isogeometric搭配是一种吸引力的强大形式替代标准的Galerkin方法,能够实现高阶收敛速率,其耦合具有显着降低的计算成本。在本文中,层压复合板在本文中,通过厚度的厚度考虑一个元素,通过均匀化材料特性进行了建模。这保证了在位移和面内应力组件方面准确的结果。为了恢复精确的平面压力状态,平衡以强形式施加为后处理后的校正步骤,这需要形状函数高度连续。这种连续性需求完全通过异步测定分析性能授予,并且使用每个方向的最小搭配点获得优异的结果,特别是用于增加长度到厚度板比值和层数的值。

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