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Performance and Kinetics Study of Self-Repairing Hydroxyl-Terminated Polybutadiene Binders Based on the Diels–Alder Reaction

机译:基于狄尔斯-阿尔德反应的自修复羟基封端聚丁二烯粘合剂的性能和动力学研究

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Based on the Diels–Alder reaction and hydroxyl-terminated polybutadiene (HTPB) binders of solid propellants, two novel compounds—furfuryl-terminated polybutadiene (FTPB) and trifurfuryl propane (TFP)—were designed and synthesized, and their structures were characterized. A new kind of reversible Diels–Alder reaction system was formed by FTPB as main resin, N,N′-1,3-phenylenedimaleimide (PDMI) as curing agent and TFP as chain extender. The results showed that this system had good mechanical properties with a tensile strength of 1.76 MPa and a tensile strain of 284% after curing, and the repair efficiency of the crack was 88%. Therefore, it could be used as a novel binder of energetic materials such as solid propellant and PBX explosives to provide them with self-repairing characteristics and improve the reliability for application.
机译:基于狄尔斯-阿尔德反应和固体推进剂的羟基封端的聚丁二烯(HTPB)粘合剂,设计并合成了两种新型化合物,即糠基封端的聚丁二烯(FTPB)和三糠基丙烷(TFP),并对其结构进行了表征。以FTPB为主要树脂,N,N'-1,3-苯二酰亚胺(PDMI)为固化剂,TFP为扩链剂,形成了一种新的可逆Diels-Alder反应体系。结果表明,该体系具有良好的力学性能,固化后的拉伸强度为1.76 MPa,拉伸应变为284%,裂纹的修复效率为88%。因此,它可用作固体推进剂和PBX炸药等高能材料的新型粘结剂,使其具有自修复特性,并提高了应用的可靠性。

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