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The effect of fibre layering pattern in resisting bending loads of natural fibre-based hybrid composite materials

机译:纤维分层图案在抗自然纤维的杂交复合材料抗弯曲荷载中的影响

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摘要

The effect of fibre layering pattern and hybridization on the flexural properties of composite hybrid laminates between natural fibres of basalt, jute and flax with synthetic fibre of E-glass reinforced epoxy have been investigated experimentally. Results showed that the effect fibre layering pattern was highly significant on the flexural strength and modulus, which were strongly dependent on the hybrid configuration between sandwich-like (SL) and intercalation (IC) sequence of fibre layers. In addition, specific modulus based on the variation densities of the hybrid laminates was used to discover the best combination either basalt, jute or flax with E-glass exhibits superior properties concerning on the strength to weight-ratio. Generally, SL sequence of glass/basalt exhibited superior strength and stiffness compared with glass/jute and glass/flax in resisting bending loads. In terms of hybridization effect, glass/jute was found to be the best combination with E-glass compared to the rest of natural fibres investigated in the present study. Hence, the proper stacking sequences and material selection are among predominant factors that influence on mechanical properties and very crucial in designing composite hybrid system to meet the desired requirements.
机译:实验研究了纤维分层图案和杂交对玄武岩天然纤维,黄麻和亚麻的自然纤维之间的复合杂交层压物的弯曲性能的影响,并进行了实验研究了E-玻璃增强环氧树脂的合成纤维。结果表明,影响纤维分层图案是在弯曲强度和模量,这是强烈依赖于纤维层的夹层状(SL)和插层(IC)序列之间的混合配置高度显著。此外,使用基于混合层压材料的密度变化比模量来发现最佳组合要么玄武岩,黄麻或亚麻供给有关的强度重量比E玻璃表现出优异的性能。通常,与玻璃/黄麻和玻璃/亚麻在抵抗弯曲载荷的情况下,SL序列的SL序列显示出优异的强度和刚度。就杂交效果而言,与本研究中研究的其余天然纤维相比,发现玻璃/黄麻成为与电子玻璃的最佳组合。因此,适当的堆叠序列和材料选择是影响机械性能的主要因素,并且在设计复合杂交系统方面非常关键以满足所需要求。

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