Bartosik Dominik, Szadkowski Bolesław, Kuśmierek Małgorzata, Rybiński Przemysław, Mirkhodzhaev Ulugbek, Marzec Anna
Institute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, Stefanowskiego 16, 90-537 Lodz, Poland.
Institute of Chemistry, The Jan Kochanowski University, Uniwersytecka 7, 25-369 Kielce, Poland.
Polymers (Basel). 2022 Mar 29;14(7):1383. doi: 10.3390/polym14071383.
We studied the effects of silicon carbide (SiC) and SiC hybrid systems with different conventional fillers (silica, carbon black, graphene, hydrotalcite, halloysite) on the rheometric measurements, crosslink density, mechanical performance, aging stability, morphology, thermal behaviour, and flammability of ethylene-propylene-diene (EPDM) rubber composites. The hybrid filler systems showed technically promising synergetic effects on the performance of the EPDM composites. A pronounced reinforcing effect in EPDM composites filled with hybrid SiC filler systems was noted. Tensile strength increased in the systems with carbon black, silica, and graphene nanoplatelets, by 21%, 37%, and 68%, respectively, compared to the neat EPDM. Dynamic-mechanical analysis (DMA) revealed a shift of the glass transition temperature (Tg) of EPDM composites towards higher values following the incorporation of hybrid SiC fillers, indicating that the mobility of the macromolecule chains was restricted by the presence of filler particles. Importantly, the application of SiC as a filler in EPDM rubber composites contributed to a considerable reduction in flammability, as demonstrated by microscale combustion calorimetry (MCC). The most promising results were obtained for HAL/SiC and LDH/SiC hybrid systems, which produced final composites with high flame retardancy and good mechanical performance. The study highlights the significant potential of SiC and SiC hybrid systems as effective fillers improving the properties of elastomer composites.
我们研究了碳化硅(SiC)以及含有不同传统填料(二氧化硅、炭黑、石墨烯、水滑石、埃洛石)的SiC杂化体系对乙丙三元橡胶(EPDM)复合材料的流变学测量、交联密度、力学性能、老化稳定性、形态、热行为和可燃性的影响。杂化填料体系对EPDM复合材料的性能显示出在技术上很有前景的协同效应。在填充有杂化SiC填料体系的EPDM复合材料中观察到了显著的增强效果。与纯EPDM相比,在含有炭黑、二氧化硅和石墨烯纳米片的体系中,拉伸强度分别提高了21%、37%和68%。动态力学分析(DMA)表明,加入杂化SiC填料后,EPDM复合材料的玻璃化转变温度(Tg)向更高值移动,这表明大分子链的流动性受到填料颗粒的限制。重要的是,如微尺度燃烧量热法(MCC)所示,在EPDM橡胶复合材料中使用SiC作为填料有助于显著降低可燃性。对于HAL/SiC和LDH/SiC杂化体系,获得了最有前景的结果,它们制备出了具有高阻燃性和良好力学性能的最终复合材料。该研究突出了SiC和SiC杂化体系作为有效填料改善弹性体复合材料性能的巨大潜力。