Xia Min, Zhang Yanjie, Na Qing, Guo Tao, Zhang Minghao, Qi Zhenyu, Liu Ningning, Yang Fanzhi, Luo Yunjun, Yang Wei
School of Materials Science and Engineering, Beijing Institute of Technology Beijing 100081 China
Key Laboratory of High Energy Density Materials, Ministry of Education Beijing 100081 China.
RSC Adv. 2021 Sep 30;11(51):32369-32375. doi: 10.1039/d1ra04732a. eCollection 2021 Sep 27.
Cracks generated in energetic composites will affect their mechanical properties and increase the risk of explosion when they are exposed to external stimuli. Therefore, self-healing properties of energetic composites have always been at the forefront of research in the field of high-performance energetic composites. Hydroxyl-terminated polybutadiene (HTPB) is a kind of binder widely used in propellants. A novel furan-terminated polybutadiene (FTPB) was synthesized by the reaction of NCO-terminated polybutadiene (IPDI-HTPB-IPDI) with furfuryl amine, and then self-healing binder films were obtained based on the DA adduct (FTPB-DA) through the reaction of furan with bismaleimide. The results show that FTPB-DA will transform into FTPB and BMI at 120 °C and recrosslinked at 60 °C to form FTPB-DA again, which gives it self-healing properties and the healing efficiency can reach 92.3%. Then, by adjusting the ratio of -NCO/-OH during the preparation process, we prepared self-healing binders with different DA adduct contents, and further studied the influence of DA adduct content on the mechanical properties and self-healing performance.
含能复合材料中产生的裂纹会影响其力学性能,并在受到外部刺激时增加爆炸风险。因此,含能复合材料的自修复性能一直是高性能含能复合材料领域研究的前沿。端羟基聚丁二烯(HTPB)是一种广泛用于推进剂的粘合剂。通过异氰酸酯封端的聚丁二烯(IPDI-HTPB-IPDI)与糠胺反应合成了一种新型的呋喃封端聚丁二烯(FTPB),然后通过呋喃与双马来酰亚胺反应,基于DA加合物(FTPB-DA)获得了自修复粘合剂薄膜。结果表明,FTPB-DA在120℃时会转变为FTPB和BMI,并在60℃时重新交联再次形成FTPB-DA,这赋予了它自修复性能,修复效率可达92.3%。然后,通过在制备过程中调整-NCO/-OH的比例,制备了具有不同DA加合物含量的自修复粘合剂,并进一步研究了DA加合物含量对力学性能和自修复性能的影响。