Azizli Mohammad Javad, Rezaeinia Sheida, Rezaeeparto Katayoon, Mokhtary Masoud, Askari Fahimeh
Department of Chemistry and Chemical Engineering, Rasht Branch, Islamic Azad University Rasht Iran
Zolal Gostar Rooz, Technical Inspection and Consulting Engineers CO P.O. Box: 14139-74513 Tehran Iran.
RSC Adv. 2020 Mar 23;10(20):11777-11790. doi: 10.1039/d0ra00517g. eCollection 2020 Mar 19.
Elastomeric nanocomposites were prepared from carboxylated acrylonitrile butadiene rubber/chloroprene rubber (XNBR/CR), graphene and a glycidyl methacrylate (GMA)-grafted XNBR (XNBR--GMA) compatibilizer by using a two-roll mill. The effect of graphene and XNBR--GMA compatibilizer on curing characteristics, rheological and mechanical properties and morphology of the nanocomposites was investigated. The curing properties and the morphology of the nanocomposites were studied by rheometry, SEM and TEM, respectively. The results of rheometry showed that by adding the XNBR--GMA compatibilizer and increasing the graphene content, the scorch time and optimum curing time decreased, but the torque increased, while the curing time increased with increasing CR percentage in the blend. Also, the results of DMTA tests showed that by adding the XNBR--GMA compatibilizer, there was compatibility between CR and XNBR and the dispersion of graphene in the XNBR/CR matrix was improved. This phenomenon was confirmed by direct observation of exfoliated graphene nanosheets by TEM. Also, the addition of XNBR--GMA and the increase of graphene content in the XNBR/CR matrix caused the fracture surface of the samples to be roughened and the size of dispersed phase (CR) in the XNBR matrix becomes smaller. The results of mechanical properties showed that the addition of the XNBR--GMA and increasing the graphene content resulted in increased hardness, fatigue strength, tensile strength, modulus and elongation-at-break.
采用双辊炼胶机制备了羧基丁腈橡胶/氯丁橡胶(XNBR/CR)、石墨烯和甲基丙烯酸缩水甘油酯(GMA)接枝XNBR(XNBR - GMA)增容剂的弹性体纳米复合材料。研究了石墨烯和XNBR - GMA增容剂对纳米复合材料的硫化特性、流变性能、力学性能及形态的影响。分别通过流变仪、扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了纳米复合材料的硫化性能和形态。流变仪测试结果表明,添加XNBR - GMA增容剂并增加石墨烯含量,焦烧时间和最佳硫化时间缩短,但扭矩增大,而硫化时间随共混物中CR比例的增加而增加。此外,动态热机械分析(DMTA)测试结果表明,添加XNBR - GMA增容剂后,CR与XNBR之间具有相容性,且石墨烯在XNBR/CR基体中的分散性得到改善。通过TEM直接观察剥离的石墨烯纳米片证实了这一现象。而且,在XNBR/CR基体中添加XNBR - GMA并增加石墨烯含量,导致样品的断裂表面变得粗糙,XNBR基体中分散相(CR)的尺寸变小。力学性能测试结果表明,添加XNBR - GMA并增加石墨烯含量可提高硬度、疲劳强度、拉伸强度、模量和断裂伸长率。