Xie Meina, Jia Daikun, Hu Jin, He Jiyu, Li Xiangmei, Yang Rongjie
School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, China.
Polymers (Basel). 2021 Jul 21;13(15):2388. doi: 10.3390/polym13152388.
In this study, the aromatic acetylene compound 4-(phenylethynyl) di(ethylene glycol) phthalate (PEPE) was used as a chain extender, partially replacing 1,4-butanediol. To synthesize an intrinsic flame-retardant thermoplastic polyurethane elastomer (TPU) with an aromatic acetylene structure, PEPE was synthesized by a two-step polymerization. The flame retardancy, thermal stability, and mechanical properties of TPU were studied. The microstructure of TPU char was investigated by scanning electron microscopy to analyze the flame-retardant mechanism. The tensile strength of TPU containing 1.35 wt% PEPE was 39.2 MPa, which was almost twice as much as neat TPU, showed a dramatic decrease in the peak heat release rate and total heat release, and declined by 46.2% and 24.5%, respectively. After the flame-retardant TPU burned, a cross-linked network foaming char structure was formed. The results showed that PEPE improved the mechanical properties of TPU and conferred good stability that promoted the formation of charcoal and reduced heat release during the combustion of TPU.
在本研究中,芳族乙炔化合物4-(苯乙炔基)二乙二醇邻苯二甲酸酯(PEPE)被用作扩链剂,部分替代1,4-丁二醇。为了合成具有芳族乙炔结构的本征阻燃热塑性聚氨酯弹性体(TPU),通过两步聚合反应合成了PEPE。研究了TPU的阻燃性、热稳定性和力学性能。通过扫描电子显微镜研究了TPU炭的微观结构,以分析其阻燃机理。含1.35 wt% PEPE的TPU的拉伸强度为39.2 MPa,几乎是纯TPU的两倍,其峰值热释放速率和总热释放量显著降低,分别下降了46.2%和24.5%。阻燃TPU燃烧后,形成了交联网络泡沫炭结构。结果表明,PEPE改善了TPU的力学性能,并赋予了良好的稳定性,促进了炭的形成,减少了TPU燃烧过程中的热释放。