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Structural analysis of multicomponent nanoclay-containing polymer blends through simple model systems

机译:通过简单的模型系统对含多组分纳米粘土的聚合物共混物进行结构分析

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摘要

A systematic approach was adopted to study multicomponent clay-containing nanocomposites using compatibilized and non-compatibilized blends of polyamide 6 (PA6)/acrylonitrile-butadiene-styrene ter-polymer (ABS) and their organoclay (OMMT) nanocomposites. For this purpose PA6/styrene-acrylonitrile copolymer (SAN) based blends and nanocomposites were selected as simple model systems. In this way the role of each component of the systems, especially the clay, compatibilizer, and polybutadiene fraction on the formation of intercalated or exfoliated OMMT structures as well as resulting dynamic mechanical properties (DMA) could be elucidated. Structural analysis of the model systems using theoretical approach, and X-ray diffraction, transmission electron microscopy, scanning electron microscopy, and DMA revealed that the most crucial factor in controlling the morphology and achieving different levels of dispersion is the extent of interaction between clay and the polymer matrix. Morphological analysis revealed that the OMMT layers were dispersed and exfoliated largely in the PA6 phase but, some were also accumulated at the rubber particle surface which remained non-intercalated. The effect of a compatibilizer on the dispersion of OMMT was not completely clear. The SAN based nanocomposites containing PA6 showed fully exfoliated OMMT structures, whereas the ABS based nanocomposites, having an additional rubber fraction, showed a mixed exfoliated and also partly non-intercalated morphology. The OMMT did not change the general occurrence of the co-continuous structures but refined the structures and led to mechanical stiffening as indicated by the DMA results. A correlation was established between the changes in the morphological states and the DMA properties.
机译:采用了一种系统化的方法来研究含多组分粘土的纳米复合材料,其中使用了聚酰胺6(PA6)/丙烯腈-丁二烯-苯乙烯三元共聚物(ABS)与它们的有机粘土(OMMT)纳米复合材料的相容和非相容混合物。为此,选择了基于PA6 /苯乙烯-丙烯腈共聚物(SAN)的共混物和纳米复合材料作为简单模型系统。通过这种方式,可以阐明系统的每个组件(尤其是粘土,增容剂和聚丁二烯馏分)在嵌入或剥落的OMMT结构形成以及最终产生的动态力学性能(DMA)方面的作用。使用理论方法,X射线衍射,透射电子显微镜,扫描电子显微镜和DMA对模型系统进行结构分析,结果表明,控制形态和实现不同分散水平的最关键因素是粘土与水泥之间的相互作用程度。聚合物基质。形态学分析表明,OMMT层在PA6相中大部分分散和剥落,但有些也聚集在橡胶颗粒表面,没有插入。增容剂对OMMT分散的影响尚不完全清楚。含有PA6的基于SAN的纳米复合材料显示出完全剥落的OMMT结构,而具有额外橡胶级分的基于ABS的纳米复合材料则显示出混合的剥落形态和部分非插入形态。 OMMT不会改变共连续结构的普遍发生,但会改善结构并导致机械刚度,如DMA结果所示。在形态状态的变化与DMA特性之间建立了相关性。

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