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Development a refined numerical model for evaluating the matrix cracking and induced delamination formation in cross-ply composite laminates

机译:开发改进的数值模型以评估交叉复合复合材料中的基体开裂和诱发的分层形成

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摘要

In this study, at first the dominant micro scale failure modes including fiber-matrix debonding and matrix cracking are studied in 2D RVEs extracted from the layer 90 degrees in different cross-ply laminates. To model the debonding and matrix cracking formation in RVEs, cohesive zone model (CZM) and Extended finite element method (XFEM) are applied. Then to investigate induced delamination formation originates from the tips of matrix cracking as a secondary damage mode, the cohesive surfaces are embedded at the interfaces of different plies in considered lay-ups. Generally, a parametric study is done on different cross-ply laminates with various thickness of layer 90 degrees to obtain the in-situ strength due to matrix cracking and induced delamination by a numerical tool for the first time. The verification of results with the available analytical models shows an acceptable agreement. Then, by considering the long unit cells, the sequences of different damage modes formation are investigated numerically and some physical phenomena including the formation of new matrix cracking in the random locations between the previous cracks, matrix cracking saturation, symmetric and staggered pattern of matrix cracking formation and the axial stress redistribution due to each damage formation are represented in different [0/90(n)](s) and [90(n)/0](s) for the first time.
机译:在这项研究中,首先,在不同交叉铺层层压板中,从90度层中提取的二维RVE中研究了主要的微观尺度破坏模式,包括纤维-基体剥离和基体开裂。为了建模RVE中的脱胶和基体裂纹形成,应用了粘聚区模型(CZM)和扩展有限元方法(XFEM)。然后,为了研究诱导脱层的形成是源于基体裂纹的尖端,将其作为第二种破坏模式,在考虑的铺层中,将粘性表面嵌入不同层的界面。通常,参数研究是在具有90度不同厚度的不同交叉层状层压板上进行的,以首次获得由于基质开裂和使用数字工具引起的分层而产生的原位强度。使用可用的分析模型对结果进行验证表明可以接受。然后,通过考虑长单元格,对不同损伤模式形成的顺序进行了数值研究,并发现了一些物理现象,包括在先前裂纹之间的随机位置处形成新的矩阵裂纹,矩阵裂纹饱和,矩阵裂纹的对称和交错模式。首次由不同的[0/90(n)](s)和[90(n)/ 0](s)表示由于每个损伤形成而形成的轴向应力分布和轴向应力重新分布。

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