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Progressive Failure Analysis of Laminates with Embedded Wrinkle Defects Based on an Elastoplastic Damage Model

机译:基于弹塑性损伤模型的预埋皱纹层压板渐进破坏分析

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摘要

Out-of-plane wrinkling has a significant influence on the mechanical performance of composite laminates. Numerical simulations were conducted to investigate the progressive failure behavior of fiber-reinforced composite laminates with out-of-plane wrinkle defects subjected to axial compression. To describe the material degradation, a three-dimensional elastoplastic damage model with four damage modes (i.e., fiber tensile failure, matrix failure, fiber kinking/splitting, and delamination) was developed based on the LaRC05 criterion. To improve the computational efficiency in searching for the fracture angle in the matrix failure analysis, a high-efficiency and robust modified algorithm that combines the golden section search method with an inverse interpolation based on an existing study is proposed. The elastoplastic damage model was implemented in the finite-element code Abaqus using a user-defined material subroutine in Abaqus/Explicit. The model was applied to the progressive failure analysis of IM7/8552 composite laminates with out-of-plane wrinkles subjected to axial compressive loading. The numerical results showed that the compressive strength prediction obtained by the elastoplastic damage model is more accurate than that derived with an elastic damage model. The present model can describe the nonlinearity of the laminate during the damage evolution and determine the correct damage locations, which are in good agreement with experimental observations. Furthermore, it was discovered that the plasticity effects should not be neglected in laminates with low wrinkle levels.
机译:面外起皱对复合材料层压板的机械性能有重大影响。进行了数值模拟,以研究具有平面压皱缺陷的纤维增强复合材料层压板的轴向破坏的渐进破坏行为。为了描述材料的降解,基于LaRC05准则开发了具有四种破坏模式(即纤维拉伸破坏,基体破坏,纤维扭结/分裂和分层)的三维弹塑性破坏模型。为了提高矩阵失效分析中寻找断裂角的计算效率,在现有研究的基础上,提出了一种将黄金分割搜索方法与逆插值相结合的高效鲁棒的改进算法。弹塑性破坏模型是使用用户定义的Abaqus / Explicit中的材料子例程在有限元代码Abaqus中实现的。该模型被用于IM7 / 8552复合材料层合板的渐进式失效分析,该复合材料具有面外皱纹并承受轴向压缩载荷。数值结果表明,弹塑性损伤模型获得的抗压强度预测比弹性损伤模型获得的抗压强度预测更准确。本模型可以描述损伤演化过程中层压板的非线性,并确定正确的损伤位置,这与实验观察非常吻合。此外,已发现在低皱纹水平的层压制品中不应忽略塑性效应。

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