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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Tuning the mechanical properties in model nanocomposites: Influence of the polymer-filler interfacial interactions
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Tuning the mechanical properties in model nanocomposites: Influence of the polymer-filler interfacial interactions

机译:调整模型纳米复合材料的机械性能:聚合物-填料界面相互作用的影响

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摘要

This article presents a study of the polymer-filler interfacial effects on filler dispersion and mechanical reinforcement in Polystyrene (PS)/silica nanocomposites by direct comparison of two model systems: ungrafted and PS-grafted silica dispersed in PS matrix. The structure of nanoparticles has been investigated by combining small angle neutron scattering measurements and transmission electronic microscopic images. The mechanical properties were studied over a wide range of deformation by plate-plate rheology and uni-axial stretching. At low silica volume fraction, the particles arrange, for both systems, in small finite size nonconnected aggregates and the materials exhibit a solid-like behavior independent of the local polymer-fillers interactions suggesting that reinforcement is dominated by additional long range effects. At high silica volume fraction, a continuous connected network is created leading to a fast increase of reinforcement whose amplitude is then directly dependent on the strength of the local particle-particle interactions and lower with grafting likely due to deformation of grafted polymer.
机译:本文通过直接比较两种模型系统:未接枝的和PS接枝的二氧化硅分散在PS基质中,研究了聚合物-填料界面对聚苯乙烯(PS)/二氧化硅纳米复合材料中填料分散和机械增强的影响。通过结合小角度中子散射测量和透射电子显微图像,研究了纳米颗粒的结构。通过板-板流变学和单轴拉伸在广泛的变形范围内研究了机械性能。在低的二氧化硅体积分数下,对于两个系统,颗粒都排列成小的有限尺寸的非连接聚集体,并且材料表现出类似于固体的行为,而与局部聚合物-填料的相互作用无关,这表明增强作用主要受附加的长程效应影响。在高二氧化硅体积分数下,会形成一个连续的连接网络,从而导致增强材料的快速增加,其强度随后直接取决于局部颗粒-颗粒相互作用的强度,并且由于接枝聚合物的变形而具有较低的接枝率。

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