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首页> 外文期刊>Journal of natural fibers >Energy Absorption Capability of Cotton Fiber/Epoxy Composite Square and Rectangular Tubes
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Energy Absorption Capability of Cotton Fiber/Epoxy Composite Square and Rectangular Tubes

机译:棉纤维/环氧复合方管和矩形管的能量吸收能力

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摘要

This paper investigates the energy-absorption capability of natural fiber cotton fabric/epoxy square tubes. The cross-sectional aspect ratio was varied randomly from 0.50 to 2.57. Quasi-static crushing tests in axial and lateral directions were performed. Experimental results showed that the axially loaded rectangular tubes have higher load carrying capacity and energy absorption capability compared to the laterally loaded tubes. However, laterally crushed tubes have stable crush force efficiency; which means they are safer and more stable energy absorber devices. The experiment also showed that the cross-sectional aspect ratio significantly affects the load carrying and energy absorption capability. The buckling failure mode has been identified as the primary failure mode for the rectangular tubes under the different loading conditions. Tubes with cross-sectional aspect ratio of 2.0 have the best load carrying capacity.
机译:本文研究了天然纤维棉织物/环氧方管的能量吸收能力。横截面纵横比在0.50至2.57之间随机变化。进行了轴向和横向的准静态破碎测试。实验结果表明,与横向加载的矩形管相比,轴向加载的矩形管具有更高的承载能力和能量吸收能力。然而,横向破碎的管具有稳定的破碎力效率。这意味着它们是更安全,更稳定的能量吸收器设备。实验还表明,横截面纵横比会显着影响载荷和能量吸收能力。屈曲失效模式已被确定为矩形管在不同载荷条件下的主要失效模式。横截面纵横比为2.0的管具有最佳的承载能力。

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