首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Effect of water absorption and stacking sequences on the properties of hybrid sisal/glass fibre reinforced polyester composite
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Effect of water absorption and stacking sequences on the properties of hybrid sisal/glass fibre reinforced polyester composite

机译:吸水和堆积顺序对剑麻/玻璃纤维增​​强聚酯复合材料性能的影响

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摘要

In this work, the effect of water absorption and stacking sequences on the mechanical properties (i.e. impact, tensile and flexural) of hybrid sisal/glass polyester composites has been studied. Each composite laminate is prepared by the hand lay-up technique followed by static compression using about 20 wt% of fibre content. Different stacking sequences are obtained by changing the position and number of glass layers keeping a total of eight plies in each composite. Water absorption behaviour is investigated by soaking the composite specimens in the distilled water until saturation and its characteristics such as sorption, diffusion and permeability coefficient are measured. The obtained results suggested that the mechanical and water resistance properties of sisal composites are considerably enhanced by the incorporation of glass fibre. There is 23%, 29% and 46% improvement in tensile strength, flexural strength and impact strength respectively in hybrid composites than that of sisal composite. However, the effect of water absorption showed a significant reduction in the mechanical performance of all the composites. Morphological analysis by scanning electron microscope has been also performed to support the statement as weakening of fibre-matrix interfacial bonding by water absorption.
机译:在这项工作中,已经研究了吸水和堆积顺序对剑麻/玻璃聚酯杂化复合材料机械性能(即冲击,拉伸和弯曲)的影响。每个复合层压板均通过手工铺层技术制备,然后使用约20 wt%的纤维含量进行静态压缩。通过改变玻璃层的位置和数量来获得不同的堆叠顺序,每个复合物中总共保留八层玻璃。通过将复合材料试样浸泡在蒸馏水中直至饱和,研究其吸水行为,并测量其吸水,扩散和渗透系数等特性。获得的结果表明,剑麻复合材料的机械性能和耐水性通过加入玻璃纤维得到了显着提高。与剑麻复合材料相比,混合复合材料的拉伸强度,弯曲强度和冲击强度分别提高了23%,29%和46%。但是,吸水率的结果表明所有复合材料的机械性能均显着降低。还通过扫描电子显微镜进行了形态分析,以支持这种说法,即由于吸水而使纤维-基质界面结合减弱。

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