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Topology of Three-Dimensionally Braided Fabrics Using Pultruded Rods as Axial Reinforcements

机译:使用拉挤棒作为轴向增强材料的三维编织织物的拓扑

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摘要

This paper examines the topology of two-step braided fabrics incorporating rigid rods in the axial direction. Fabricated by pultrusion, the 1-mm diameter rods are composed of unidirectional Kevlar fibers and vinylester resin. A modified two-step braiding set-up designed to incorporate the rods is developed. In comparison with conventional three-dimensional fabric composites, using the rods can significantly reduce the level of crimp in both axial and braiding yarns. Crimp-induced problems such as irregular fabric patterns can be effectively improved. The resulting composite geometry parameters are experimentally characterized. According to the micrographs, rods that are placed in an orderly way greatly improve yarn compactness. The braiding yarn paths are modeled by the minimum length criterion. Using this criterion, the braiding processes are simulated, taking into account yarn jamming conditions. The interlacing pattern and the length of the fabric convergence cone are examined. The topology is described in terms of physically measurable parameters, and the effects of yarn size, rod spacing, and pitch length on the resulting fabric geometry are analyzed.
机译:本文研究了在轴向结合刚性杆的两步编织织物的拓扑结构。直径1毫米的杆通过拉挤成型制造,由单向凯夫拉纤维和乙烯基酯树脂组成。开发了一种改进的两步编织装置,设计成可合并杆。与传统的三维织物复合材料相比,使用杆可以显着降低轴向和编织纱线的卷曲程度。卷曲引起的问题,例如不规则的织物图案可以得到有效改善。所得复合材料几何参数通过实验表征。根据显微照片,有条不紊地放置棒可大大提高纱线的紧密度。编织纱道通过最小长度标准建模。使用该标准,可以考虑到纱线堵塞情况来模拟编织过程。检查交错图案和织物会聚锥的长度。根据物理上可测量的参数描述拓扑,并分析了纱线尺寸,杆距和节距长度对所得织物几何形状的影响。

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