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Preparation and property evaluation of nanocomposites based on polyurethane-modified epoxy/montmorillonite systems

机译:基于聚氨酯改性环氧树脂/蒙脱土体系的纳米复合材料的制备与性能评价

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摘要

Montmorillonite nanoclay and polyurethanes obtained from polyethylene glycol (PUR 400) and polyoxypropylene diol (PUR 1002) were used to enhance the mechanical properties of an epoxy resin. Maximum impact strength impovement was obtained with composition containing 2% nanoclay and 10%% PUR 400 as well as that with 1% nanoclay and 15% PUR 400, corresponding to 110% and 75%, respectively, in relation to the unmodified epoxy resin. Moreover, a 10-fold increase was observed with respect to the flexural strain at break for the composition containing 15% PUR 1002 and 2% nanoclay. SEM micrographs have indicated that the mechanism of mechanical property enhancement is associated with increased yield of the epoxy matrix. Moreover, FTIR results showed that some chemical reactions have taken place between the hydroxyl groups of epoxy resin and the isocyanate groups of polyurethane, explaining partly the improvement in the mechanical properties of the polymer matrix.
机译:由聚乙二醇(PUR 400)和聚氧化丙烯二醇(PUR 1002)获得的蒙脱土纳米粘土和聚氨酯可用于增强环氧树脂的机械性能。用含有2%的纳米粘土和10%的PUR 400以及含有1%的纳米粘土和15%的PUR 400的组合物获得最大冲击强度改进,相对于未改性的环氧树脂,分别对应于110%和75%。此外,对于包含15%PUR 1002和2%纳米粘土的组合物,观察到相对于断裂挠曲应变增加了10倍。 SEM显微照片表明,机械性能增强的机理与环氧基质的产率增加有关。此外,FTIR结果表明环氧树脂的羟基与聚氨酯的异氰酸酯基之间发生了一些化学反应,部分解释了聚合物基质的机械性能的改善。

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