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Axial impact compressive behaviors of a novel 3-D integrated multilayer fabric reinforced composite tubular structures

机译:新型3-D集成多层织物增强复合材料管状结构的轴向冲击压缩行为

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摘要

Axial impact compression often leads to delamination in laminated composite tubes. A novel 3D fully integrated multilayer tubular fabric invented by authors can eliminate the delamination. This fabric is in tubular form with several layers of crimp-free in-layer yarns oriented at prescribed orientations, fully interlocked by a set of through-layers yarns, which often are made of the same type of fibers as the in-layer yarns. We investigated axial impact compressive behaviors of carbon/epoxy composite circular tubes with reinforcement of the 3D integrated multilayer tubular fabrics. Four different levels of impact energies, i.e., 20 J, 30 J, 40 J and 50 J, were set in tests. The load-displacement curves have been obtained and the damage morphologies have been photographed. The tested results were compared with those in finite element analyses (FEA) with a microstructure model. The tubes were in bulging deformation, resin crack and yarn breakage. We found that the selection of winding yarn is more important to improve axial compressive strength. For the tube designing, the high strength polymer fibers such as polyester fibers could be used for the winding yarns. While high stiffness and strength fibers, such as carbon fibers, must be used for the axial yarns.
机译:轴向冲击压缩通常会导致层压复合管中的分层。作者发明的新型3D完全集成多层管状管状织物可以消除分层。该织物为管状形式,其具有以规定的取向定向的几层无卷曲的层内纱线,并由一组贯穿层的纱线完全互锁,所述贯穿层的纱线通常由与层内纱线相同类型的纤维制成。我们研究了碳/环氧复合圆管在3D集成多层管状织物的增强作用下的轴向冲击压缩行为。在测试中设置了四个不同级别的冲击能量,即20 J,30 J,40 J和50J。获得了载荷-位移曲线,并对损伤形态进行了拍照。将测试结果与采用微结构模型的有限元分析(FEA)进行了比较。试管处于鼓胀变形,树脂破裂和断纱的状态。我们发现缠绕纱的选择对于提高轴向抗压强度更为重要。对于管子设计,高强度聚合物纤维(例如聚酯纤维)可用于缠绕纱线。轴向纱线必须使用高刚度和强度的纤维,例如碳纤维。

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