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Comparison of the Nanostructure and Mechanical Performance of Highly Exfoliated Epoxy-Clay Nanocomposites Prepared by Three Different Protocols

机译:三种不同方案制备的高度剥落型环氧粘土纳米复合材料的纳米结构和力学性能的比较

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摘要

Three different protocols for the preparation of polymer layered silicate nanocomposites based upon a tri-functional epoxy resin, triglycidyl para-amino phenol (TGAP), have been compared in respect of the cure kinetics, the nanostructure and their mechanical properties. The three preparation procedures involve 2 wt% and 5 wt% of organically modified montmorillonite (MMT), and are: isothermal cure at selected temperatures; pre-conditioning of the resin-clay mixture before isothermal cure; incorporation of an initiator of cationic homopolymerisation, a boron tri-fluoride methyl amine complex, BF3·MEA, within the clay galleries. It was found that features of the cure kinetics and of the nanostructure correlate with the measured impact strength of the cured nanocomposites, which increases as the degree of exfoliation of the MMT is improved. The best protocol for toughening the TGAP/MMT nanocomposites is by the incorporation of 1 wt% BF3·MEA into the clay galleries of nanocomposites containing 2 wt% MMT.
机译:在固化动力学,纳米结构及其机械性能方面,已经比较了三种不同的制备基于三官能团环氧树脂的聚合物层状硅酸盐纳米复合材料的方法。这三种制备方法涉及2wt%和5 wt%的有机改性蒙脱土(MMT),并且是:在选定的温度下进行等温固化;等温固化前对树脂-粘土混合物进行预处理;在粘土通道中加入阳离子均聚引发剂三氟化硼甲胺络合物BF3·MEA。发现固化动力学和纳米结构的特征与固化的纳米复合材料的测得的冲击强度相关,其随着MMT的剥离程度的改善而增加。增韧TGAP / MMT纳米复合材料的最佳方案是将1 wt%的BF3·MEA掺入含有2 wt%的MMT的纳米复合材料的粘土画廊中。

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