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首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >Low-Velocity Impact Behavior of Carbon/Basalt Fiber-Reinforced Intra-ply Hybrid Composites
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Low-Velocity Impact Behavior of Carbon/Basalt Fiber-Reinforced Intra-ply Hybrid Composites

机译:碳/玄武岩纤维增强型吡啶混合复合材料的低速冲击性能

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摘要

The effect of hybridization on the low-velocity impact behavior of woven carbon/basalt fiber-reinforced intra-ply hybrid composites was investigated experimentally. Three types of basalt- and carbon-based homogeneous with 60% volume fraction of neat fiber (basalt fiber and carbon fiber) and twill intra-ply hybrid composite laminates with 30wt% carbon and 30wt% basalt fiber contents were fabricated by vacuum-assisted resin infusion molding method. Improvement in the impact toughness and reduction in the cost of carbon fiber-reinforced polymer (CFRP) composites were the main purposes of using this type of hybrid composites. Energy profile method was used to determine the impact penetration threshold. In this regard, drop weight tests are carried out in 20, 50, 60 and 80J energy magnitudes and force-deflection and absorbed energy-time diagrams are plotted. The effect of intra-ply hybridization on maximum contact force, absorbed energy, maximum deflection and duration time of carbon/basalt-based composites was investigated. According to the scanning electron microscopy results, various failure modes occurred during low-velocity impact test such as micro-cracks, debonding, delamination in interface, fiber pull out and fiber breakage. The results indicate that the impact performance of homogenous composites is improved by hybridization, i.e., the maximum force and absorbed impact energy of CFRPs are increased 62.3 and 186% by the addition of basalt fibers as a complementary element to the structure of composites.
机译:实验研究了杂交对编织碳/玄武岩纤维增强型吡喃杂交复合材料的低速冲击性的影响。用真空辅助树脂制造具有30wt%碳和30wt%玄武岩纤维内容的三种玄武岩和碳基均匀均匀的玄武岩和碳基均匀均匀均匀纤维输液成型方法。碳纤维增强聚合物(CFRP)复合材料成本的影响韧性和降低的改善是使用这种类型的杂化复合材料的主要目的。能量分布方法用于确定冲击渗透阈值。在这方面,绘制在20,50,60和80J能量幅度和力偏转和吸收的节能图中进行下降重试。研究了层内杂交对最大接触力,吸收能量,最大偏转和碳/玄武岩复合材料的最大偏转和持续时间的影响。根据扫描电子显微镜结果,在低速冲击试验期间发生了各种故障模式,例如微裂纹,剥离,界面,纤维拔出和纤维破裂。结果表明,通过杂交,即CFRP的最大力和吸收的冲击能量通过加入玄武岩纤维作为互补元件而增加了62.3和186%的增强了均匀复合材料的影响。

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