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Dynamic delamination buckling in composite laminates under impact loading: Computational simulation

机译:冲击载荷下复合材料层压板的动态分层屈曲:计算模拟

摘要

A unique dynamic delamination buckling and delamination propagation analysis capability has been developed and incorporated into a finite element computer program. This capability consists of the following: (1) a modification of the direct time integration solution sequence which provides a new analysis algorithm that can be used to predict delamination buckling in a laminate subjected to dynamic loading, and (2) a new method of modeling the composite laminate using plate bending elements and multipoint constraints. This computer program is used to predict both impact induced buckling in composite laminates with initial delaminations and the strain energy release rate due to extension of the delamination. It is shown that delaminations near the outer surface of a laminate are susceptible to local buckling and buckling-induced delamination propagation when the laminate is subjected to transverse impact loading. The capability now exists to predict the time at which the onset of dynamic delamination buckling occurs, the dynamic buckling mode shape, and the dynamic delamination strain energy release rate.
机译:已经开发了独特的动态分层屈曲和分层传播分析功能,并将其合并到有限元计算机程序中。此功能包括以下内容:(1)对直接时间积分解决方案序列的修改,提供了一种新的分析算法,该算法可用于预测承受动态载荷的层压板中的分层屈曲,以及(2)一种新的建模方法复合材料层压板使用板弯曲元素和多点约束。该计算机程序用于预测具有初始分层的复合材料层压板中的冲击诱导屈曲以及由于分层的扩展而导致的应变能释放率。结果表明,当层压板承受横向冲击载荷时,层压板外表面附近的分层容易受到局部屈曲和屈曲诱发的分层传播的影响。现在具有预测动态分层屈曲发生的时间,动态屈曲模式形状以及动态分层应变能释放速率的能力。

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