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Low velocity impact and delamination buckling behavior of composite laminates with embedded optical fibers

机译:嵌入光纤的复合层板的低速冲击和分层屈曲行为

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摘要

A drop-weight impact test and delamination buckling test were performed to investigate the development of impact damage and post-impact compression behavior of cross-ply composite laminates with optical fibers embedded in the interface of two different angle plies. It was found that the presence of optical fibers had little or marginal effect on the shape and size of damage area of the laminate when the optical fibers were embedded parallel to the host reinforcing fibers. Non-parallel optical fibers promoted unstable crack growth through the formation of resin rich regions, which in turn increased slightly the impact damage area. It was also shown that a large number of parallel optical fibers may have an ameliorating effect on delamination buckling strength as they promote the waviness of the delamination fracture surface.
机译:进行了落锤冲击试验和分层屈曲试验,以研究在两个不同角度的层板界面中嵌入光纤的交叉层复合层压板的冲击损伤和冲击后压缩行为的发展。已经发现,当光纤平行于主体增强纤维包埋时,光纤的存在对层压板的损伤区域的形状和尺寸几乎没有影响。非平行光纤通过形成富含树脂的区域而促进了不稳定的裂纹扩展,从而反而略微增加了冲击破坏面积。还显示出大量平行光纤可改善分层屈曲强度,因为它们可促进分层断裂表面的波纹度。

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