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Rheology, Flexure and Thermomechanical Characterization of Epoxy/ CNF Nanocomposites: Effect of Dispersion Techniques

机译:环氧树脂/ CNF纳米复合材料的流变学,挠曲和热力学表征:分散技术的影响

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摘要

The aim of this study is to investigate the optimum technique to disperse vapour grown carbon nanofibres (VGCNFs) in SC-1 epoxy uniformly and to evaluate their effect on the performance of SC-1 epoxy. In this study, ultrasonication and Thinky mixing methods were used either in isolation or in combination with 3-roll shear mixing. To achieve better dispersion, VGCNF was tested either by mixing with SC-1 resin directly or premixed with a solvent and then mixed with SC-1 resin after evaporating the solvent. Hexural tests were performed to evaluate mechanical performances, and the results exhibited 25.60% and 8.88% improvement of flexural strength and modulus, respectively over neat epoxy with only 0.2 wt.% loading. Dynamic Mechanical Analysis (DMA), Differential Scanning Calorimetry (DSC), Thermogravimetric Analysis (TGA) indicated improvement in storage modulus, T , inflection temperature and residue content respectively over neat SC-1 epoxy. The high viscosity found by rheological analysis prevents their ubiquitous use in fibre reinforced composites. Thermal and mechanical properties at higher loading conditions were seen either to reduce or not significantly improve. These results indicate that the methods used for dispersion are suitable for low weight percent loading only.
机译:本研究的目的是研究将气相生长的碳纳米纤维(VGCNFs)均匀分散在SC-1环氧树脂中的最佳技术,并评估其对SC-1环氧树脂性能的影响。在这项研究中,超声分离和Thinky混合方法被单独使用或与3辊剪切混合结合使用。为了获得更好的分散性,通过与SC-1树脂直接混合或与溶剂预混合,然后在蒸发溶剂后与SC-1树脂混合来测试VGCNF。进行了六角测试以评估机械性能,结果表明抗弯强度和模量分别比仅以0.2wt。%的纯环氧树脂提高了25.60%和8.88%。动态机械分析(DMA),差示扫描量热法(DSC),热重分析(TGA)表明,与纯净的SC-1环氧树脂相比,储能模量,T,拐点温度和残留物含量分别有所改善。流变分析发现的高粘度阻止了它们在纤维增强复合材料中的普遍应用。在较高的负载条件下,热性能和机械性能会降低或不会显着提高。这些结果表明,用于分散的方法仅适用于低重量百分比的负载。

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