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Elucidating the interactions between carbon nanotubes and carbon black with styrene butadiene rubber

机译:阐明碳纳米管与炭黑与丁苯橡胶的相互作用

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摘要

The reinforcement mechanism of carbon nanotubes (CNT) on styrene butadiene rubber is studied through dynamic and swelling tests. Compounds containing carbon black (CB) and an unfilled one were prepared for comparison purposes. The dynamic properties are interpreted through the Maier-Goritz model to distinguish the contributions of stable and unstable crosslinks to the storage modulus, finding that the unstable ones become more relevant in samples containing a CNT concentration higher than 5 phr. In addition, the crosslinks density estimated by swelling and the stable contribution obtained with dynamical properties present the same tendency with the CNT amount. The former presents lower values, which can be explained considering that only stable crosslinks remain in the equilibrium-swollen state, while in the second one both stable and unstable are considered. In addition, differences in the filler-polymer interaction mechanisms are observed according to the morphology and aspect ratio of CNT in contrast to CB.
机译:通过动态和溶胀试验研究了碳纳米管(CNT)在丁苯橡胶上的增强机理。制备含有炭黑(CB)的化合物和未填充的化合物以进行比较。通过Maier-Goritz模型解释动力学性质,以区分稳定和不稳定交联对储能模量的贡献,发现不稳定交联在碳纳米管浓度高于5 phr的样品中变得更加相关。此外,通过溶胀估计的交联密度和通过动力学特性获得的稳定贡献与CNT量呈现出相同的趋势。前者呈现较低的值,这可以解释为只有稳定的交联保持在平衡膨胀状态,而在第二个交联中同时考虑稳定和不稳定。此外,与CB相比,根据CNT的形貌和长径比,观察到填料-聚合物相互作用机制的差异。

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