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Improving the fracture resistance of sandwich composite T-joints by z-pinning

机译:用z-钉扎提高夹层复合T形接头的抗断裂性能

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摘要

This paper presents an experimental and analytical study into the strengthening and toughening of sandwich composite joints by z-pinning. Cleats connecting the vertical stiffener and horizontal base panel to T-shaped sandwich joints were reinforced in the through-thickness direction with pins. Tensile (stiffener pull-off) tests revealed that pinning increased the ultimate fracture load and fracture energy by resisting crack growth along the cleat-skin and skin-core interfaces, which were the weakest points in the unpinned joint. The peak fracture load and fracture energy increased with the volume content of z-pins. The strengthening and toughening effect of the pins was analysed using multiple pin pull-out tests performed on the sandwich composite material. It is shown that elastic deformation, debonding and pull-out of the pins from the face skins to the sandwich composite is the primary toughening mechanism of the pinned T-joints. The pin pull-out process, which is the cause for the high strengthening and toughening of the T-joints, is analysed using bridging traction modelling.
机译:本文通过z钉扎法对夹心复合材料接头的强化和增韧进行了实验和分析研究。将垂直加强筋和水平底板连接到T形夹层接头的防滑钉在整个厚度方向上用销钉加固。拉伸试验(加强筋拉断试验)显示,钉扎通过阻止沿夹板-皮肤和皮芯界面的裂纹扩展而增加了最终的断裂载荷和断裂能,这是未钉扎接头中最薄弱的点。峰值断裂载荷和断裂能随Z销的含量而增加。使用对夹芯复合材料进行的多次销钉拉拔测试,分析了销钉的强化和增韧效果。结果表明,销钉从表皮到三明治复合材料的弹性变形,脱胶和拔出是销钉T型接头的主要增韧机理。使用桥接牵引模型分析了销拔出过程,这是T形接头高度强化和增韧的原因。

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