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The Effect of a Rapid Heating Rate Mechanical Vibration and Surfactant Chemistry on the Structure–Property Relationships of Epoxy/Clay Nanocomposites

机译:快速加热速率机械振动和表面活性剂化学对环氧树脂/粘土纳米复合材料结构-性能关系的影响

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摘要

The role of processing conditions and intercalant chemistry in montmorillonite clays on the dispersion, morphology and mechanical properties of two epoxy/clay nanocomposite systems was investigated in this paper. This work highlights the importance of employing complementary techniques (X-ray diffraction, small angle X-ray scattering, optical microscopy and transmission electron microscopy) to correlate nanomorphology to macroscale properties. Materials were prepared using an out of autoclave manufacturing process equipped to generate rapid heating rates and mechanical vibration. The results suggested that the quaternary ammonium surfactant on C30B clay reacted with the epoxy during cure, while the primary ammonium surfactant (I.30E) catalysed the polymerisation reaction. These effects led to important differences in nanocomposite clay morphologies. The use of mechanical vibration at 4 Hz prior to matrix gelation was found to facilitate clay dispersion and to reduce the area fraction of I.30E clay agglomerates in addition to increasing flexural strength by over 40%.
机译:本文研究了蒙脱土中的加工条件和插层化学对两种环氧/粘土纳米复合体系的分散性,形态和力学性能的影响。这项工作突出了采用互补技术(X射线衍射,小角度X射线散射,光学显微镜和透射电子显微镜)将纳米形态学与宏观性质相关联的重要性。材料的制备采用了高压釜外制造工艺,该工艺可产生快速的加热速率和机械振动。结果表明,C30B粘土上的季铵表面活性剂在固化过程中与环氧反应,而伯铵表面活性剂(I.30E)催化了聚合反应。这些影响导致纳米复合粘土形态的重要差异。发现在基质胶凝之前使用4 Hz的机械振动有助于粘土分散,并降低I.30E粘土团聚体的面积分数,此外还将抗弯强度提高40%以上。

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