Bernal-Ortega Pilar, Bernal M Mar, Blume Anke, González-Jiménez Antonio, Posadas Pilar, Navarro Rodrigo, Valentín Juan L
Instituto de Ciencia y Tecnología de Polímeros (CSIC), C/Juan de la Cierva 3, 28006 Madrid, Spain.
Department of Elastomer Technology and Engineering, University of Twente, Driener-Iolaan 5, 7522 NB Enschede, The Netherlands.
Polymers (Basel). 2021 Mar 7;13(5):821. doi: 10.3390/polym13050821.
The outstanding properties of carbon nanotubes (CNTs) present some limitations when introduced into rubber matrices, especially when these nano-particles are applied in high-performance tire tread compounds. Their tendency to agglomerate into bundles due to van der Waals interactions, the strong influence of CNT on the vulcanization process, and the adsorptive nature of filler-rubber interactions contribute to increase the energy dissipation phenomena on rubber-CNT compounds. Consequently, their expected performance in terms of rolling resistance is limited. To overcome these three important issues, the CNT have been surface-modified with oxygen-bearing groups and sulfur, resulting in an improvement in the key properties of these rubber compounds for their use in tire tread applications. A deep characterization of these new materials using functionalized CNT as filler was carried out by using a combination of mechanical, equilibrium swelling and low-field NMR experiments. The outcome of this research revealed that the formation of covalent bonds between the rubber matrix and the nano-particles by the introduction of sulfur at the CNT surface has positive effects on the viscoelastic behavior and the network structure of the rubber compounds, by a decrease of both the loss factor at 60 °C (rolling resistance) and the non-elastic defects, while increasing the crosslink density of the new compounds.
当碳纳米管(CNTs)被引入橡胶基体时,其优异的性能存在一些局限性,尤其是当这些纳米颗粒应用于高性能轮胎胎面胶料时。由于范德华相互作用,它们倾向于团聚成束,碳纳米管对硫化过程的强烈影响以及填料 - 橡胶相互作用的吸附性质导致橡胶 - 碳纳米管复合材料的能量耗散现象增加。因此,它们在滚动阻力方面的预期性能受到限制。为了克服这三个重要问题,碳纳米管已用含氧基团和硫进行了表面改性,从而改善了这些橡胶复合材料在轮胎胎面应用中的关键性能。通过机械、平衡溶胀和低场核磁共振实验相结合的方法,对以功能化碳纳米管为填料的这些新材料进行了深入表征。这项研究的结果表明,通过在碳纳米管表面引入硫,橡胶基体与纳米颗粒之间形成共价键,对橡胶复合材料的粘弹性行为和网络结构产生积极影响,降低了60℃时的损耗因子(滚动阻力)和非弹性缺陷,同时提高了新复合材料的交联密度。