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Toughened epoxy hybrid nanocomposites containing both an organophilic layered silicate filler and a compatibilized liquid rubber

机译:既含有亲有机层状硅酸盐填料又含有相容液体橡胶的增韧环氧杂化纳米复合材料

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摘要

Hexahydrophthalic acid anhydride-cured bisphenol A diglycidyl ether (BADGE) was used as matrix material for hybrid nanocomposites containing both inorganic nanofiller and compatibilized polyether liquid rubbers. Compatibility between organophilic fluorohectorite, modified by means of intergallery cation exchange with bis(2-hydroxyethyl)methyldodecylammonium, and the liquid rubber triol was achieved by partial transesterification of the polyether end groups with methyl stearate to incorporate stearate end groups. Thermal analysis, dynamic mechanical analysis, mechanical testing, wide-angle X-ray scattering, and transmission electron microscopy were used to measure thermal, mechanical, and morphological properties of the hybrid nanocomposites. Without compatibilization, the rubber does not phase separate and flexibilizes the epoxy resin. Toughness is enhanced at the expense of stiffness, strength, and glass temperature. The stearate compatibilizer is sufficient to achieve phase separation of the rubber. This compatibility matching represents the key to novel phase-separated nanocomposites with significantly improved toughness and only marginally lower stiffness. [References: 33]
机译:六氢邻苯二甲酸酐固化的双酚A二缩水甘油醚(BADGE)被用作混合纳米复合材料的基质材料,该复合纳米材料同时包含无机纳米填料和相容的聚醚液态橡胶。通过与双(2-羟乙基)甲基十二烷基铵间的阳离子间交换而改性的亲有机性氟锂蒙脱石与液态橡胶三醇之间的相容性是通过聚醚端基与硬脂酸甲酯的部分酯交换反应结合硬脂酸酯端基来实现的。热分析,动态力学分析,机械测试,广角X射线散射和透射电子显微镜用于测量杂化纳米复合材料的热,机械和形态学性质。没有相容性,橡胶就不会相分离并使环氧树脂增韧。韧性的提高是以硬度,强度和玻璃温度为代价的。硬脂酸酯相容剂足以实现橡胶的相分离。这种相容性匹配代表了新的相分离纳米复合材料的关键,该复合材料具有显着提高的韧性且仅略微降低了刚度。 [参考:33]

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