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首页> 外文期刊>Journal of Composite Materials >Delaminations buckling and growth phenomena in stiffened composite panels under compression. Part II:a numerical study
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Delaminations buckling and growth phenomena in stiffened composite panels under compression. Part II:a numerical study

机译:加筋复合板在受压下出现分层屈曲和生长现象。第二部分:数值研究

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摘要

A numerical study has been carried out on stiffened composite panels under compression, focusing on the delaminationrelated phenomena. A robust numerical finite elements model has been introduced to simulate the compression behavior of the panel, including the delamination buckling and growth, and to provide reasonable predictions of the strain measurements in the delaminated area. The robustness of the novel approach, which adopts an improved (mesh and time step independent) virtual crack closure technique for the simulation of the delamination propagation, has been demonstrated by comparisons with standard commercial FEM (Finite Element Method) codes results and experimental data. Indeed, the numerical results, in terms of strains and delamination size as a function of the applied load, have been compared to experimental strain gauges readings, embedded optical fibers measurements, and thermography images of the delamination taken at different load steps. Actually, the performed numerical activity contributed to improve the knowledge on delamination-related phenomena in stiffened composite panels, focusing on delamination growth initiation and delamination growth stability, by providing reasonable justifications and interpretations of experimental strain measurements and thermography images.
机译:已经对受压的加劲复合板进行了数值研究,重点是与分层相关的现象。引入了鲁棒的数值有限元模型来模拟面板的压缩行为,包括分层屈曲和增长,并为分层区域的应变测量提供合理的预测。通过与标准商业FEM(有限元方法)代码结果和实验数据进行比较,证明了该新方法的鲁棒性,该方法采用了改进的(独立于网格和时间步长的方法)虚拟裂纹闭合技术来模拟分层传播。实际上,已将根据应变和分层大小(作为所施加载荷的函数)的数值结果与实验应变计读数,嵌入式光纤测量以及在不同载荷步长下获得的分层的热成像图像进行了比较。实际上,通过提供合理的理由和实验应变测量和热成像图像的解释,进行的数值活动有助于提高对加硬复合板中与分层相关的现象的了解,重点是分层生长的开始和分层生长的稳定性。

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