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Carbon nanotubes- A powerful nano-filler for enhancing the performance properties of polyetherketoneketone composites and adhesives

机译:碳纳米管 - 一种强大的纳米填料,用于增强聚醚酮酮酮复合材料和粘合剂的性能

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摘要

In the current study, the potential of MWCNTs (functionalized with hydroxyl group) was explored for enhancing the performance properties of a high-performance polymer matrix, i.e., polyetherketoneketone (PEKK). The dispersion and distribution of MWCNTs (0, 0.1, 0.3, 0.5, and 1 wt %) were ensured by rigorous probe-ultra sonication and confirmed with FESEM (Field Emission-Scanning Electron Microscopy). The nano-composites and their surfaces were characterized for physical, thermal, and mechanical properties, including tensile strength, micro-hardness (Scratch and Vickers's), lap shear strength (LSS), contact angle, surface free energy and friction. MWCNTs led to reduction in friction but enhancement in mechanical properties. It was concluded from the studies that the addition of MWCNTs at 0.3 wt % led to best combination of performance properties such as LSS, tensile strength and modulus, micro-hardness, etc. The current study concluded that among the three effects offered by MWCNTs in the adhesives on LSS viz. reinforcement (a positive one), increasing interfacial adhesion with the adherend (a positive one) and friction-reducing (a negative one), the first two overweighed the third one significantly and led to a net improvement in LSS. It was also concluded that PEKK proved to have highest LSS followed by PAEK (Polyaryletherketone) and then PEEK (polyetheretherketone). Their nanocomposites also showed the same trend.
机译:在目前的研究中,探索MWCNT(用羟基官能化)的电位以提高高性能聚合物基质,即聚醚酮酮(PEKK)的性能性能。通过严格的探针 - 超超声处理并用FESEM(场发射扫描电子显微镜)确认MWCNTs(0,0.1,0.3,0.5和1wt%)的分散和分布。纳米复合材料及其表面的特征在于物理,热和机械性能,包括拉伸强度,微硬度(划痕和维氏),搭接剪切强度(LSS),接触角,表面自由能和摩擦。 MWCNT导致摩擦降低,但在机械性能方面的增强。从研究中得出结论,加入0.3重量%的MWCNT,导致性能性能的最佳组合,如LSS,拉伸强度和模量,微硬度等。目前的研究结论是,MWCNT提供的三种效果LSS viz上的粘合剂。增强(阳性阳性),增加界面粘附与粘附(正面)和摩擦减少(阴性一),前两者显着超过第三,并导致LSS的净改善。还得出结论,PEKK证明具有最高的LSS,其次是PAEK(聚芳基酮),然后PEEK(聚醚醚酮)。他们的纳米复合材料也表现出相同的趋势。

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