Lou Gaobo, Li Qing, Jin Qian, Rao Qingqing, Fu Shenyuan, Dai Jinfeng
School of Chemistry and Materials Engineering, Zhejiang A&F University Hangzhou 311300 China
RSC Adv. 2022 Jun 6;12(26):16615-16623. doi: 10.1039/d2ra01302a. eCollection 2022 Jun 1.
Solid epoxy resin is highly desired in adhesives, electronic materials and coatings due to the attractive characteristics of solvent-free, highly efficient utilization and convenient storage and transportation. However, the challenges remain in fabricating high-toughness solid epoxy resin through a facile and efficient way. Here, a high-performance environment-friendly solid epoxy resin was fabricated by employing maleic anhydride grafted ethylene-vinyl acetate copolymer (EVA--MAH) as the flexibilizer one-step banburying method. The results showed that the modified epoxy resin maintained a high glass transition temperature ( ) and thermal stability, while its impact strength, tensile toughness and flexural toughness were significantly increased compared with the neat epoxy resin. The impact strength, tensile toughness and flexural toughness of R-EM10 are improved 138%, 195% and 149%, respectively. The EVA--MAH was introduced in the epoxy matrix as a separate phase to increase toughness transfer stress and dissipated energy. The attractive properties of this facile fabrication process and the high-toughness, as well as the environment-friendly performance make this solid epoxy highly promising for large-scale industrial application.
由于具有无溶剂、高效利用以及储存和运输方便等吸引人的特性,固体环氧树脂在粘合剂、电子材料和涂料领域备受青睐。然而,通过简便高效的方法制备高韧性固体环氧树脂仍面临挑战。在此,采用马来酸酐接枝乙烯-醋酸乙烯酯共聚物(EVA-MAH)作为增韧剂,通过一步密炼法制备了一种高性能环保型固体环氧树脂。结果表明,改性环氧树脂保持了较高的玻璃化转变温度( )和热稳定性,同时与纯环氧树脂相比,其冲击强度、拉伸韧性和弯曲韧性显著提高。R-EM10的冲击强度、拉伸韧性和弯曲韧性分别提高了138%、195%和149%。EVA-MAH以独立相的形式引入到环氧基体中,以增加韧性、传递应力和耗散能量。这种简便制备工艺的吸引人的性能、高韧性以及环保性能使得这种固体环氧树脂在大规模工业应用中极具前景。