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A variational approach for predicting initiation of matrix cracking and induced delamination in symmetric composite laminates under in-plane loading

机译:预测面内载荷作用下对称复合材料层压板基体开裂和诱发分层的变分方法

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This paper discusses the formation of matrix cracking and induced delaminations in a [ ? m ( 2 ) / ψ n ( 1 ) ] s $[phi _m^{(2)}/psi _n^{(1)}]s$ laminate subject to arbitrary in-plane loading using a variational approach. To this end, the effects of delaminations coming from the tips of transverse cracks in the middle sublaminates are considered to specify the critical crack density points and finally understand which modes of damage are prospects for various lay-ups in the presence of transverse cracks as well as induced delamination. After deriving a very good approximation of the principle of minimum complementary energy by considering complex equations, the stress fields are provided. In this analysis, a unit cell in the ply level of a composite laminate containing both matrix cracking and delamination is considered. Then, the values of the admissible stresses and compliance of cracked laminate are employed to evaluate the energy release rate of each mentioned damage mode. Eventually, the graphs for different lay-ups in such symmetric laminate are drawn, which indicate important points for designers in practical applications. Afterwards, the effects of thickness on the dislocation of critical crack density points are checked. It can be emphasized that the current approach opens a new insight for perceiving the composites’ structural behavior in vulnerable positions.
机译:本文讨论了[?]中基体裂纹的形成和诱发的分层。 m(2)/ψn(1)] s $ [ phi _m ^ {(2)} / psi _n ^ {(1)}] s $层压板经受变型方法承受的任意面内载荷。为此,考虑从中亚层合物的横向裂缝尖端产生的分层效应来指定临界裂缝密度点,并最终了解在存在横向裂缝的情况下,各种损伤方式的前景也是哪种破坏方式作为诱导分层。通过考虑复杂的方程式,得出最小互补能量原理的很好的近似值后,提供了应力场。在该分析中,考虑了同时包含基体开裂和分层的复合层压板的层板水平的晶胞。然后,采用允许应力值和破裂层压材料的柔韧性来评估每种提到的破坏模式的能量释放率。最终,绘制了这种对称层压板中不同叠层的图形,这些图形为设计人员在实际应用中指明了重要的要点。然后,检查厚度对临界裂纹密度点错位的影响。可以强调的是,当前的方法为感知复合材料在易受伤害位置的结构行为开辟了新的见解。

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