Liu Gen, Du Faxin, Yao Zhangjun, Li Guangzhao, Kuang Wen, Zhu Chongyu, Liu Yi, Chen Honglin, Wang Fumei, Zhou Ce, Wei Xueli, Wang Wenyan, Han Rui
Key Laboratory of Materials and Surface Technology (Ministry of Education), School of Materials Science and Engineering, Xihua University, Chengdu 610039, China.
Engineering Research Center of Intelligent Air-Ground Integration Vehicle and Control (Xihua University), Ministry of Education, Chengdu 610039, China.
Molecules. 2024 Nov 22;29(23):5522. doi: 10.3390/molecules29235522.
Integrating rubber with superior low-temperature capabilities, such as ethylene propylene diene monomer (EPDM), is a strategic approach to bolster the low-temperature performance of fluoroelastomer (FKM). However, FKM and EPDM are thermodynamically incompatible. This work synthetized three EPDM-based polar macromolecular compatibilizers, epoxidized EPDM (EPDM-EP), 2,2-trifluoroethylamine-grafted epoxidized EPDM (EPDM-TF), and 2,4-difluorobenzylamine-grafted epoxidized EPDM (EPDM-DF), to enhance the compatibility between FKM and EPDM. These compatibilizers were subsequently incorporated into FKM/EPDM rubber blends. The results revealed that the glass transition temperature (T) of FKM/EPDM decreased by 1.3 °C, 2.68 °C, and 2.78 °C, respectively, upon the addition of 10 phr of EPDM-EP, EPDM-TF, or EPDM-DF. Moreover, the T of the two phases converged. The tensile strength, elongation at break, and tear strength of the FKM/EPDM rubber blends were also enhanced by the inclusion of these compatibilizers. Notably, EPDM-TF and EPDM-DF exhibited remarkable compatibilization effects due to an increase in polarity. This research not only sheds light on the potential for developing new compatibilizers but also paves the way for innovative applications of FKM and its derivatives.
将具有优异低温性能的橡胶(如三元乙丙橡胶(EPDM))与氟橡胶(FKM)相结合,是提高氟橡胶低温性能的一种策略。然而,FKM和EPDM在热力学上不相容。这项工作合成了三种基于EPDM的极性高分子增容剂,即环氧化EPDM(EPDM-EP)、2,2-三氟乙胺接枝环氧化EPDM(EPDM-TF)和2,4-二氟苄胺接枝环氧化EPDM(EPDM-DF),以增强FKM和EPDM之间的相容性。随后将这些增容剂加入到FKM/EPDM橡胶共混物中。结果表明,加入10份EPDM-EP、EPDM-TF或EPDM-DF后,FKM/EPDM的玻璃化转变温度(T)分别降低了1.3℃、2.68℃和2.78℃。此外,两相的T值趋于一致。加入这些增容剂后,FKM/EPDM橡胶共混物的拉伸强度、断裂伸长率和撕裂强度也得到了提高。值得注意的是,由于极性增加,EPDM-TF和EPDM-DF表现出显著的增容效果。这项研究不仅揭示了开发新型增容剂的潜力,也为FKM及其衍生物的创新应用铺平了道路。