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Delamination of organically modified montmorillonite for reducing the filler networking with carbon black in poly(1,4-cis-isoprene) based nanocomposites

机译:有机改性蒙脱土分层以减少基于聚(1,4-顺式异戊二烯)的纳米复合材料中炭黑的填料网络

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摘要

This work presents the correlation between the organization of an organically modified montmorillonite (OMt) and the dynamic-mechanical properties of polymer nanocomposites containing a hybrid filler system, based on carbon black (CB) and OMt. Clay polymer nanocomposites (CPN) were prepared by melt blending synthetic poly(1,4-cis-isoprene) (PI), carbon black (CB) and OMt Two types of OMt were used: with ammonium cations intercalated between the clay mineral layers (I-OMt) and delaminated (D-OMt). The latter was obtained via ball milling of I-OMt and presented a degree of delamination higher than 95%, as revealed by X-ray diffraction (XRD) analysis. The structure of CPN was studied with XRD and transmission electron microscopy (TEM) analyses. The mechanical behavior of uncrosslinked masterbatches and of nanocomposites crosslinked with sulfur based systems was assessed with dynamic shear experiments, by measuring the time needed to recover the initial modulus after a large strain perturbation and by obtaining master curves for the dependence of the storage modulus on frequency. I-OMt is shown to promote the filler networking phenomenon more easily than D-OMt: the storage modulus has a stronger reduction with the strain amplitude and a longer rubbery plateau is featured on the frequency scale. Modulus recovery measurements revealed that the structure of CPN can be restored after the application of large strain amplitudes. The extent of OMt delamination is presented as a key feature to control the dynamic-mechanical properties of CPN containing a filler, such as CB, suitable to establish an intimate interaction with OMt The partial substitution of CB with D-OMt allowed the preparation of crosslinked nanocomposites with lower Payne effect.
机译:这项工作提出了有机改性的蒙脱土(OMt)的组织与包含基于炭黑(CB)和OMt的混合填料体系的聚合物纳米复合材料的动态力学性能之间的相关性。通过熔融共混合成聚(1,4-顺式异戊二烯)(PI),炭黑(CB)和OMt制备粘土聚合物纳米复合材料(CPN),使用两种类型的OMt:铵阳离子插在粘土矿物层之间( I-OMt)和分层(D-OMt)。后者是通过I-OMt的球磨获得的,其分层度高于95%,如X射线衍射(XRD)分析所揭示。用XRD和透射电子显微镜(TEM)分析了CPN的结构。通过动态剪切实验评估未交联的母料和与基于硫的体系交联的纳米复合材料的机械性能,方法是测量在较大的应变扰动后恢复初始模量所需的时间,并获得储能模量对频率的依赖性的主曲线。 。与D-OMt相比,I-OMt可以更轻松地促进填充物联网现象:储能模量随着应变幅度的降低而降低,并且在频率范围内具有更长的橡胶平稳期。模量恢复测量表明,在施加较大的应变幅度后,CPN的结构可以恢复。 OMt分层的程度是控制含CB等填充剂的CPN的动态力学性能的关键特征,适合与OMt建立紧密的相互作用。用D-OMt部分取代CB可以制备交联纳米复合材料具有较低的佩恩效应。

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