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Explicit modeling of matrix cracking and delamination in laminated composites with discontinuous solid-shell elements

机译:不连续实体单元的层状复合材料中基体开裂和分层的显式建模

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摘要

Composite structural failure usually entails complicated interactions between intralaminar and interlaminar damage. In this paper, a novel discontinuous solid-shell finite element combined with a 3D enriched cohesive element is formulated for the analysis of matrix cracking and delamination in multilayered composites. The proposed formulations are computationally attractive in modeling thin shell structures while retaining the advantages of solid elements. The bending performance was improved by using the enhanced assumed strain method and the assumed natural strain method, which alleviates potential locking problems. A linear elastic orthotropic law was used for layered shells and cracks therein were modeled with a cohesive zone model. A discrete crack method with floating nodes enriching the developed elements enables a mesh-independent description of ply cracks and their interaction with interface cracks. The applicability of the current formulation was verified with numerical examples including large deformations of thin shell problems and delamination growth in post-buckled laminates. Finally, the explicit and totally discrete modeling of matrix and delamination cracks in low velocity impact of cross-ply and angle-ply laminates was demonstrated. Numerical predictions of structural responses and damage patterns agree well with experimental results. (C) 2019 Elsevier B.V. All rights reserved.
机译:复合结构破坏通常需要层间和层间破坏之间复杂的相互作用。在本文中,提出了一种新颖的不连续固-壳有限元与3D富集的粘聚元素相结合的方法,用于分析多层复合材料中的基体开裂和分层。所提出的公式在建模薄壳结构时具有计算吸引力,同时保留了实体元素的优点。通过使用增强的假定应变方法和假定的自然应变方法可以改善弯曲性能,从而减轻了潜在的锁定问题。将线性弹性正交各向异性定律用于层状壳,并使用内聚区模型对其中的裂纹进行建模。具有浮动节点的离散裂纹方法可以丰富已开发的元素,从而可以对层状裂纹及其与界面裂纹的相互作用进行独立于网格的描述。通过数值示例验证了当前配方的适用性,这些示例包括薄壳问题的大变形以及后屈曲层压板的分层增长。最后,展示了在交叉层和角层层合板低速冲击下基体和分层裂纹的显式和完全离散建模。结构响应和损伤模式的数值预测与实验结果吻合良好。 (C)2019 Elsevier B.V.保留所有权利。

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