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Enhancement of mechanical reinforcement due to hybrid filler networking promoted by an organoclay in hydrocarbon-based nanocomposites

机译:由于烃基纳米复合材料中有机粘土促进了杂化填料网络的形成,增强了机械增强

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This work investigated the ability of a nano-filler, such as an organically modified montmorillonite (OMt) to create filler networks in a hydrocarbon polymer matrix, both when OMt was the only filler and when it was in the presence of a suitable amount of a nanostructured filler such as carbon black (CB). Montmorillonite (Mt) was modified with di(hydrogenated tallow)-dimethylammonium as the organophilic cation and poly-(1,4-cis-isoprene) was used as the polymer matrix. The study of the morphology, as well as the static and dynamic mechanical behaviour of the nanocomposites, was performed. The OMt was found, through X-ray analysis, to be prevailingly delaminated with a minor presence of stacks, without polymer chains intercalated between two consecutive layers. Moreover, in transmission electron microscopy pictures, OMt was observed to form a filler network when it was the only filler and to take part to a hybrid filler network in the presence of CB. The OMt concentration required for the formation of OMt based filler networks was investigated by determining the material initial modulus and the dependence of both shear storage and loss moduli on strain amplitude. OMt was found to form a filler network at a much lower content (about 6 parts per hundred parts of the polymer) with respect to a traditional nanostructured filler. The affinity between OMt and CB led to a clear enhancement of filler networking, with the formation of a hybrid OMt /CB filler network at a lower OMt content with respect to non-hybrid filler systems. Two regimes were observed for the dependence of the excess of initial modulus on OMt content, below and above a critical OMt concentration. Moreover, OMt was found to promote a higher reinforcement of the nanocomposite material when it was in the presence of CB. This work demonstrates that an OMt and CB are able to develop a cooperative interaction, beneficial for the enhancement of mechanical properties of a hydrocarbon material and proposes the filler networking promoted by the nano-filler as the key for the rationalization of the experimental findings.
机译:这项工作研究了纳米填料(例如有机改性的蒙脱土(OMt))在碳氢化合物聚合物基质中形成填料网络的能力,无论是OMt是唯一的填料还是当存在适量的碳纳米管时。纳米结构填料,例如炭黑(CB)。用二(氢化牛脂)-二甲基铵作为亲有机阳离子对蒙脱石(Mt)进行改性,并使用聚-(1,4-顺-异戊二烯)作为聚合物基质。进行了纳米复合材料的形态以及静态和动态力学行为的研究。通过X射线分析发现OMt普遍脱层,并带有少量堆叠,而聚合物链没有插入两个连续层之间。此外,在透射电子显微镜照片中,观察到OMt是唯一的填料时会形成填料网络,并在存在CB的情况下参与混合填料网络。通过确定材料的初始模量以及剪切储量和损耗模量对应变幅度的依赖性,研究了形成基于OMt的填料网络所需的OMt浓度。发现相对于传统的纳米结构填料,OMt以低得多的含量(每100份聚合物约6份)形成填料网络。 OMt和CB之间的亲和力导致填料网络的明显增强,相对于非混合填料系统,以较低的OMt含量形成了OMt / CB混合填料网络。对于初始模量的过量对OMt含量的依赖性,在临界OMt浓度以下和以上,观察到两种方案。而且,发现当存在CB时,OMt促进纳米复合材料的更高的增强。这项工作表明OMt和CB能够发展出一种相互作用,有利于增强烃类材料的机械性能,并提出了纳米填料促进的填料网络化是合理化实验结果的关键。

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