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On The Energy Absorption of Natural Woven Silk/Epoxy Composite Tube

机译:天然编织丝/环氧复合管的能量吸收

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In this study the energy absorption response and load carrying capability of Bombyx mori (B. mori) natural silk fibre/Epoxy composite cylindrical tubes under an axial quasi-static compression was investigated. The composite tubes were prepared using mandrel assisted hand lay-up technique. The tube was fabricated using 24 layers of B. mori natural silk fibre, fully wetted with epoxy matrix. The tube was then cut into varied lengths of 50 mm, 80 mm, and 120 mm, respectively. Three specimens were tested in each category. The experimental results were analysed by measuring maximum peak load (Pmax), specific absorbed energy (SAE), and total energy absorption (TE) as a function of tube length. Findings show results being varied according to tube length in unpredictable manners. Failure fragmentation of the tubes was analysed from photographs obtained during the test using high resolution camera, which showed micro cracks induced by compression load as the predominant source of failure.
机译:在这项研究中,研究了家蚕(B. mori)天然丝纤维/环氧树脂复合圆柱管在轴向准静态压缩下的能量吸收响应和承载能力。使用心轴辅助手糊技术制备复合管。该管是使用24层B. mori天然丝纤维制成的,并用环氧基质完全润湿。然后将管切成分别为50mm,80mm和120mm的各种长度。在每个类别中测试了三个样本。通过测量最大峰值载荷(Pmax),比吸收能量(SAE)和总能量吸收(TE)作为管长度的函数来分析实验结果。结果显示结果以不可预测的方式根据管长而变化。使用高分辨率相机从测试过程中获得的照片分析管子的破裂碎片,这些照片显示出压缩载荷引起的微裂纹是主要的破裂源。

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