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Improvements in the crushing behaviour of glass fibre-epoxy composite tubes by the addition of hollow glass particles

机译:通过添加空心玻璃颗粒来改善玻璃纤维-环氧复合材料管的破碎性能

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摘要

For crashworthiness applications, hollow composite tubes have been proposed and studied as impact-bearing members in earlier studies to replace metal tubes and beams which resisted impact by bending. This study focusses on the effect of the addition of hollow glass microballoons (GMB) in composite tubes for compressive loading. Epoxy containing 0 to 0.3 volume fraction of GMB is used with woven glass fabrics to fabricate the specimens. The mean load and energy absorbed while progressively crushing the tubes are experimentally obtained. The variation of these properties with the addition of GMB is analyzed. It is found that the compression properties improve with the addition of hollow glass particles. To explain the different modes of energy dissipation, the basic mechanical properties of the GMB-filled composites are obtained by various mechanical tests. These results are also used in an energy-based model to predict the properties of the tubes under compression.
机译:对于耐撞性应用,已经提出并在较早的研究中将中空复合管作为抗冲击构件进行研究,以代替能抵抗弯曲冲击的金属管和梁。这项研究的重点是在复合管中添加中空玻璃微气球(GMB)进行压缩载荷的效果。含0至0.3体积分数的GMB的环氧树脂与机织玻璃织物一起使用来制造样品。通过实验获得了逐渐破碎管子时吸收的平均负荷和能量。分析了添加GMB后这些特性的变化。发现添加中空玻璃颗粒可改善压缩性能。为了解释不同的能量耗散模式,通过各种机械测试获得了GMB填充复合材料的基本机械性能。这些结果还用于基于能量的模型中,以预测压缩状态下管的性能。

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