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首页> 外文期刊>Composite Structures >Accurate equilibrium-based interlaminar stress recovery for isogeometric laminated composite Kirchhoff plates
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Accurate equilibrium-based interlaminar stress recovery for isogeometric laminated composite Kirchhoff plates

机译:用于异诊室叠层复合柯彻夫板的精确平衡基于平衡的Interlaminar应激恢复

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摘要

Despite the accelerated deployment of laminated composites in a wide variety of markets due to their peculiar engineering features, the design of those materials is often restrained by the lack of cost-efficient modeling techniques. In fact, the existing strategies allowing for cheap simulations usually fail to directly capture out of-plane through-the-thickness stresses, which prove to be typically responsible of delamination failure modes. In this paper, we introduce a fast and accurate stress recovery strategy to model the out-of-plane behavior of Kirchhoff laminated plates. The proposed technique can be regarded as a two-step approach: First, the classical composite plates theory, providing the lowest computational cost among known literature strategies, is applied to obtain a coarse displacement solution; afterwards, this solution is used to compute the necessary in-plane derivatives to recover the out-of-plane stresses directly imposing equilibrium in strong form. Since this a posteriori step relies on high-order in-plane continuity requirements, isogeometric analysis (IGA) represents a natural simulation framework given its accuracy and higher continuity properties. Both isogeometric Galerkin and collocation formulations are herein considered. The effectiveness of the proposed approach is proven by extensive numerical tests.
机译:尽管由于其特殊的工程特征,在各种市场中施加了层压复合材料的叠层复合材料,但这些材料的设计通常受到缺乏成本效益的建模技术的抑制。实际上,允许廉价模拟的现有策略通常不能直接捕获外平面贯穿厚度的应力,这证明通常负责分层失效模式。在本文中,我们介绍了一种快速准确的应力恢复策略,以模拟Kirchhoff层压板的平面外行为。所提出的技术可以被认为是一种两步方法:首先,经典复合板理论,施加了在已知文献策略中提供最低的计算成本,以获得粗置的溶液;然后,该解决方案用于计算必要的面内衍生物以恢复直接施加强度的平衡的平面应力。由于该后验步骤依赖于高阶面内连续性要求,因此ISOGeometric分析(IGA)表示其准确性和更高的连续性性能的自然仿真框架。在此考虑异良术寄生管和搭配配方。通过广泛的数值测试证明了所提出的方法的有效性。

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