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Delamination growth in composite plates under compressive fatigue loads

机译:复合板在压缩疲劳载荷下的分层增长

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摘要

A composite laminated plate containing an internal delamination and subject to compressive loads is considered. The plate is modelled as the union of two sublaminates partly bonded together by an elastic interface, in turn, represented by a continuous distribution of linear elastic springs acting in both the normal and tangential directions with respect to the interface plane. Based on a complete explicit solution, already presented in previous works by the authors, the expressions for the I and II (opening and sliding) modal contributions to the potential energy release rate, G, and the mode-mixity angle, ip, are determined. In the present paper, the model is further developed to describe the mechanical response of delaminated plates under fatigue loads. To this aim, we apply a mode-dependent fatigue growth law, which accounts for the simultaneous presence of both opening and sliding crack propagation modes. The results can be used to easily predict the number of cycles needed for a delamination to extend to a given length or for complete failure, for any values of the minimum and maximum applied loads.
机译:考虑包含内部分层并承受压缩载荷的复合层压板。将该板建模为两个子层压板的结合,该两个子层压板通过弹性界面部分粘合在一起,而弹性界面又由相对于界面平面在法向和切线方向上作用的线性弹性弹簧的连续分布表示。基于作者先前工作中已经提出的完整的显式解决方案,确定了I和II(打开和滑动)模态对势能释放速率G和模混合角ip的贡献的表达式。 。在本文中,该模型得到了进一步发展,以描述分层板在疲劳载荷下的机械响应。为此,我们应用了依赖于模式的疲劳增长定律,该定律说明了同时存在开裂和滑动裂纹扩展模式。对于最小和最大施加载荷的任何值,结果可用于轻松预测分层扩展到给定长度或完全失效所需的循环次数。

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