Mixed-mode ply cracking in multidirectional continuous fiber composite laminates

被引:0
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作者
Zhang, Junqian [1 ]
Herrmann, K.P. [1 ]
Zeng, Xiangguo [1 ]
机构
[1] Chongqing Univ, Chongqing, China
关键词
Computational methods - Crack initiation - Crack propagation - Fiber reinforced materials - Shear deformation - Strain rate - Stresses;
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摘要
In this contribution the transverse cracking in general multidirectional composite laminates other than the cross-ply lay-ups is studied under a combined in-plane extension and shear loading. The formation of a new full-width ply crack is modeled by analyzing such a problem that the through-thickness-crack in the considered lamina initiating from the laminate edge propagates into the interior of the laminate, quickly reaching a steady state. In particular, included in the study is the evaluation of the energy release rate (ERR) that is considered as a driving force for the ply cracking. The total ERR and the mode-I and mode-II components are computed by utilizing the solutions for the ply stresses and displacements. The effect of the lay-up parameters on the ERR is examined, suggesting that the closest neighbor layer imposes a primary constraint on the lamina to prevent it from cracking, whereas the constraining influence of remote plies could be ignored.
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