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Manufacturing and Mechanical Properties of Graphene Coated Glass Fabric and Epoxy Composites

机译:石墨烯涂层玻璃织物和环氧复合材料的制造和力学性能

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摘要

The processing characteristics and mechanical properties of glass fabric reinforcements coated with graphene nanoparticles were investigated. Graphene was coated onto either one or both sides of a plain weave glass fabric. The coated fabrics were investigated to measure key process characterization parameters used for vacuum assisted resin transfer molding (VARTM) process which are, reinforcement compaction response, in-plane, and transverse permeability. It was found that graphene coated glass reinforcements were stiffer than the pure glass reinforcements which will have direct influence on final fiber volume fraction obtained during VARTM processing. The permeability measurement results show that the graphene coated reinforcements filled relatively slower compared with the pure glass samples. Composite samples were then tested for flexural and low velocity impact. The initial results show that the flexural modulus did not change as the wt % of graphene increases. However, a decrease in flexural strength with increasing wt % of graphene was observed. It was also observed that the coating of graphene on glass reinforcements caused delamination between plies and resisted localized damage under low velocity impact as compared to pure glass samples.
机译:研究了涂有石墨烯纳米粒子的玻璃织物增强件的加工特性和机械性能。将石墨烯涂覆在普通织物玻璃织物的一侧或两侧。研究了涂覆的织物以测量用于真空辅助树脂转移模塑(Vartm)方法的关键过程表征参数,其是加强压实响应,面内和横向渗透性。结果发现,石墨烯涂覆的玻璃增强液比纯玻璃增强液更硬,这将对在活性加工期间获得的最终纤维体积分数有直接影响。渗透性测量结果表明,与纯玻璃样品相比,石墨烯涂覆增强件填充相对较慢。然后测试复合样品以进行弯曲和低速撞击。初始结果表明,随着石墨烯的重量%增加,弯曲模量没有变化。然而,观察到随着弯曲强度的降低,随着越来越大的石墨烯。还观察到,与纯玻璃样品相比,石墨烯对玻璃增援上的石墨烯涂层在低速冲击下抵抗局部损坏。

著录项

  • 作者

    Rehan Umer;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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