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Novel Experimental Approach To Evaluate Filler-Elastomer Interactions

机译:评价填料-弹性体相互作用的新颖实验方法

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摘要

Novel information on filler-elastomer interactions is obtained by combining solid-state 1H low-field NMR spectroscopy and equilibrium swelling experiments. Multiple-quantum (MQ) NMR experiments provide detailed quantitative molecular information on the cross-link density of the elastomer matrix in a variety of filled systems, indicating generally weak filler effects on the overall cross-link density and on the network homogeneity. Swelling experiments, as well as mechanical data, are additionally influenced by the matrix-filler and filler-filler interactions. Our approach is based on comparing crosslink densities fromNMRand (Flory-Rehner) swelling experiments, for which a masterline is always found in unfilled elastomers. In filled elastomers two different scenarios are observed. If there are no interactions between the polymer chains and the filler surface, no deviations from the masterline are detected because the swelling capacity of the composite is governed by the bulk polymer. Deviations from the masterline (reduced swelling) are exhibited by those composites that have strong rubber-filler interactions. In these cases, some fraction of the polymer is connected to the filler surface, which thus behaves like a giant cross-link, and the overall degree of swelling is thus reduced as compared to the bulk polymer. The novel experimental approach was used to evaluate filler-elastomer interactions in different composites and nanocomposites.
机译:通过结合固态1H低场NMR光谱和平衡溶胀实验获得有关填料-弹性体相互作用的新信息。多量子(MQ)NMR实验提供了有关各种填充系统中弹性体基质交联密度的详细定量分子信息,表明填料对总体交联密度和网络均匀性的影响通常较弱。溶胀实验以及机械数据还受基质-填料和填料-填料相互作用的影响。我们的方法是基于对NMR和(Flory-Rehner)溶胀实验的交联密度进行比较的,为此,在未填充的弹性体中总能找到一个母线。在填充的弹性体中,观察到两种不同的情况。如果在聚合物链和填料表面之间没有相互作用,则不会检测到与母线的偏差,因为复合材料的溶胀能力由本体聚合物决定。具有强烈的橡胶-填料相互作用的那些复合材料表现出与母线的偏离(减少的溶胀)。在这些情况下,聚合物的某些部分连接到填料表面,因此表现得像巨大的交联,因此与本体聚合物相比,总溶胀度降低了。新颖的实验方法用于评估不同复合材料和纳米复合材料中填料-弹性体的相互作用。

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