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Improvement of mechanical properties of carbon/glass fiber reinforced polymer composites through inter-ply arrangement

机译:碳/玻璃纤维增​​强聚合物复合材料的机械性能改善通过晶间布置

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Fibrous reinforced polymer composites are used in automobiles,aerospace,railway,marines,construction and mega structures like airport infrastructure and Olympics.Carbon fiber reinforced polymer composites (CRPC) are stronger than glass fiber reinforced polymer composites (GRPC).However,the cost of carbon fiber is around four times than glass fiber.Therefore,there is a need to evaluate the mechanical properties of glass/carbon hybrid composites to meet the design requirements and reduce the cost.In this article the effect of glass/carbon fiber ply sequence on mechanical properties were investigated experimentally.Two types of hybrid composites were considered;i.e [G3C2]S & [C2G3]S and mechanical properties were evaluated.The composites were fabricated by hand-layup method.The results revealed that the tensile strength has been improved in [G3C2]s hybrid composite by 11.5% as compared to [C2G3]S composites.The fracture toughness and flexural strength of [C2G3]S has been improved by 52.4% and 22.9% respectively as compared to [G3C2]s composites.Hence,the mechanical properties are sensitive to inter-ply sequence even if the weight fraction of each fiber types is constant.
机译:纤维增强聚合物复合材料用于汽车,航空航天,铁路,海军陆战队,建筑和兆架结构,如机场基础设施和奥林匹克料。碳纤维增强聚合物复合材料(CRPC)比玻璃纤维增​​强聚合物复合材料(GRPC)更强。然而,成本碳纤维比玻璃纤维大约四次。因此,需要评估玻璃/碳混合复合材料的机械性能,以满足设计要求,降低成本。本文玻璃/碳纤维序列序列的影响实验研究了机械性能。考虑了杂交复合材料的类型;即[G3C2] S&[C2G3] S和机械性能。通过手持方法制造复合材料。结果显示拉伸强度已经提高与[G3C2] S杂交复合材料相比,与[C2G3]的复合材料相比,[C2G3] S的裂缝韧性和抗弯强度得到提高52.4%与[G3C2] S复合材料相比,分别为22.9%。即使每个纤维类型的重量分数恒定,机械性能也敏感于帘布层序列。

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