首页> 外文会议>Proceedings of 11th International Bhurban Conference on Applied Sciences amp; Technology >Mechanical characterization of glass/epoxy polymer composites sprayed with vapor grown carbon nano fibers
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Mechanical characterization of glass/epoxy polymer composites sprayed with vapor grown carbon nano fibers

机译:气相生长碳纳米纤维喷涂的玻璃/环氧聚合物复合材料的机械特性

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Vapor grown carbon nano fibers (VGCNF) have been considered as promising means for enhancing mechanical properties of advanced composites including high strength, stiffness, and improved toughness. This paper reports the processing of a glass fiber reinforced epoxy composite with carbon nano fibers integration through spraying methodology and examines the reinforcement potential on tensile and compression strength. Spraying the glass fiber weave with carbon nano fibers before infusion and processing modification led to enhancement of the interface properties. A maximum of 26% increase in tensile strength and 11% in compressive strength over control samples was observed on several wt% additions of carbon nano fibers i.e dispersing the CNF solution on glass fabric, and evaporating the solvent such that only nano fibers remain on pre-form followed by VARTM. SEM of fractured surfaces revealed improved primary fiber-matrix adhesion and indications of CNF-induced matrix toughening due to the presence of CNFs. It also revealed relatively less damage in the tested fracture surfaces of the nano phased composites in terms of matrix failure, fiber breakage and matrix-fiber de-bonding, compared to the neat system.
机译:气相生长的碳纳米纤维(VGCNF)被认为是增强高级复合材料机械性能(包括高强度,刚度和改进的韧性)的有前途的手段。本文通过喷涂方法报告了碳纳米纤维集成的玻璃纤维增​​强环氧复合材料的加工过程,并研究了增强材料在拉伸和压缩强度方面的潜力。在注入和加工改性之前,用碳纳米纤维喷涂玻璃纤维编织物可增强界面性能。在碳纳米纤维的几个wt%的添加下(即将CNF溶液分散在玻璃织物上,并蒸发溶剂,使得仅纳米纤维保留在预成型纤维上),与对照样品相比,拉伸强度比对照样品最多增加了26%,抗压强度增加了11%。 -form后跟VARTM。断裂表面的SEM显示,由于存在CNF,改善了主要纤维基质的粘合性,并显示出CNF诱导的基质增韧。与纯净的系统相比,它还显示出在纳米相复合材料的测试断裂表面上,就基体破坏,纤维断裂和基体-纤维剥离而言,损伤相对较小。

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