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Effect of external shearing force on exfoliation structure and properties of high-performance epoxy/clay nanocomposites
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作者 鹿海军 张宝艳 陈祥宝 《中国有色金属学会会刊:英文版》 CSCD 2005年第2期211-216,共6页
To further investigate the influence of organic modifiers (primary amine with catalytic hydrogen and quaternary alkylammonium salt) on exfoliation behavior of clay tactoids, high-speed emulsifying and homogeneous mi... To further investigate the influence of organic modifiers (primary amine with catalytic hydrogen and quaternary alkylammonium salt) on exfoliation behavior of clay tactoids, high-speed emulsifying and homogeneous mixing(HEHM) and ball milling were used to exert external shearing force on two organic clay tactoids (termed as ((MMT)DDA) and ((MMT)DBDA), respectively), which were organically modified with DoDecyl Amine(DDA) and Dodecyl Benzyl Dimethyl Ammonium chloride(DBDA),respectively. The effects of external shearing force on microstructure and properties of both resultant nanocomposites were investigated by X-ray diffractometry(XRD), transmission electron microscopy(TEM) and thermogravimetric analysis(TGA). The results show that whether the clay tactoids are organically modified with catalytic primary amine or quaternary alkylammonium salt, the large agglomerates will not be finely dispersed or exfoliated by conventional mixing (magnetic stirring). After being vigorously sheared by (HEHM) or ball milling, the dispersion and exfoliation of clay tactoids are increasingly promoted for both ((MMT)DDA) and ((MMT)DBDA), and the mechanical properties of the high-performance epoxy/clay nanocomposites are enhanced. For epoxy/((MMT)DDA) nanocomposites, impact strength can be increased up to 44.5 kJ/m2 from 32.1 kJ/m2, which is about 39% higher than that of pristine matrix, and the flexural strength is enhanced by about 4%. A similar enhancement for epoxy/((MMT)DBDA) nanocomposites has also been achieved. Improvement on thermal stability of epoxy/clay nanocomposites is dependent on the exfoliation of clay layers and molecular structure of the modifiers. The onset temperature is increased with the clay loading decreasing from 5% or higher content to 3%(mass fraction), and the DBDA modifier with the heat-resistant benzyl may also improve the stability of epoxy/((MMT)DBDA) nanocomposites. 展开更多
关键词 剪切力 纳米复合材料 有机调节物 粘土 高速乳化
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外力辅助分散作用下环氧树脂粘土纳米复合材料中粘土的微观结构与解离机理研究 被引量:10
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作者 鹿海军 梁国正 +2 位作者 马晓燕 张宝艳 陈祥宝 《高分子学报》 SCIE CAS CSCD 北大核心 2005年第5期714-719,共6页
采用不同分散方法(机械搅拌、高速均质搅拌和球磨分散)制备环氧树脂粘土纳米复合材料,研究了分散方法对不同有机粘土解离结构和纳米复合材料力学性能的影响,并在此基础上探讨了粘土的解离机理.结果表明,普通机械搅拌只能使小粒径粘土或... 采用不同分散方法(机械搅拌、高速均质搅拌和球磨分散)制备环氧树脂粘土纳米复合材料,研究了分散方法对不同有机粘土解离结构和纳米复合材料力学性能的影响,并在此基础上探讨了粘土的解离机理.结果表明,普通机械搅拌只能使小粒径粘土或大粒径粘土团聚体的外部片层解离;施加一定的外力(如高速均质搅拌)促进粘土团聚体分散,有利于粘土片层的解离;利用剪切摩擦作用较强的球磨法分散粘土,不同处理剂改性粘土的内外片层都可以充分解离,而有机改性剂中酸性质子的催化作用对粘土片层解离的影响不大,只要粒径足够小,片层解离的驱动力(基体弹性力、反应性等)能够克服其所受阻力(片层引力、层外基体粘性阻力、层内粘性引力等),粘土内外各片层将会同时向外迁移而解离.纳米复合材料的力学性能大大改善,冲击强度和弯曲强度分别提高近50%和8%; 展开更多
关键词 环氧树脂 粘土纳米复合材料 微观结构 解离机理 外力辅助分散作用 冲击强度 弯曲强度
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