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Influence of clay modification on the properties of aramid-layered silicate nanocomposites

机译:粘土改性对芳纶层状硅酸盐纳米复合材料性能的影响

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Nanocomposites from organoclay and aromatic polyamide were prepared using solution intercalation method. Aramid chains were synthesised by reacting 4-aminophenylsulfone with isophthaloyl chloride in dimethy-lacetamide. Dodecylamine was used as a modifier to change the hydrophilic nature of montmorillonite into organophilic. Suitable quantities of organoclay were mixed in the aramid solution with high-speed stirring for homogeneous dispersion of the clay. Thin films cast from these materials after evaporating the solvent were characterised. The morphology of nanocomposites was determined by X-ray diffraction and TEM. Results revealed the formation of delaminated and disordered intercalated clay platelets in the aramid matrix. Mechanical data indicated improvement in the tensile strength and modulus with clay loading up to 6 wt.%. The glass transition temperature increased up to 20 wt.% organoclay, suggesting better cohesion between the two phases and thermal stability augmented with increasing clay loading. The water uptake reduced gradually as a function of organoclay showing decreased permeability.
机译:采用溶液插层法制备了由有机粘土和芳香族聚酰胺制成的纳米复合材料。通过使4-氨基苯砜与间苯二甲酰氯在二甲基-乙乙酰胺中反应合成芳族聚酰胺链。十二烷基胺用作改性剂,以将蒙脱石的亲水性改变为亲有机物。在高速搅拌下将适量的有机粘土混合在芳族聚酰胺溶液中,以使粘土均匀分散。表征了在蒸发溶剂之后由这些材料流延的薄膜。通过X射线衍射和TEM确定纳米复合材料的形态。结果显示在芳族聚酰胺基质中形成分层和无序的插层粘土血小板。力学数据表明,当粘土含量高达6 wt。%时,抗张强度和模量有所提高。玻璃化转变温度增加至高达20 wt。%的有机粘土,表明两相之间的内聚力更好,并且热稳定性随粘土含量的增加而增强。吸水率随着有机粘土的作用而逐渐降低,表现出渗透率降低。

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