Liang Jiahao, Nie Jianxin, Zhang Haijun, Guo Xueyong, Yan Shi, Han Ming
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.
Xi'an Modern Control Technology Research Institute, Xi'an 710065, China.
Polymers (Basel). 2023 May 28;15(11):2485. doi: 10.3390/polym15112485.
To examine the interactions between two binder systems-hydroxyl-terminated polybutadiene (HTPB) and hydroxyl-terminated block copolyether prepolymer (HTPE)-as well as between these binders and ammonium perchlorate (AP) at various temperatures for their susceptibility to varying degrees of thermal damage treatment, the thermal characteristics and combustion interactions of the HTPB and HTPE binder systems, HTPB/AP and HTPE/AP mixtures, and HTPB/AP/Al and HTPE/AP/Al propellants were studied. The results showed that the first and second weight loss decomposition peak temperatures of the HTPB binder were, respectively, 85.34 and 55.74 °C higher than the HTPE binder. The HTPE binder decomposed more easily than the HTPB binder. The microstructure showed that the HTPB binder became brittle and cracked when heated, while the HTPE binder liquefied when heated. The combustion characteristic index, , and the difference between calculated and experimental mass damage, ΔW, indicated that the components interacted. The original index of the HTPB/AP mixture was 3.34 × 10; first decreased and then increased to 4.24 × 10 with the sampling temperature. Its combustion was initially mild, then intensified. The original index of the HTPE/AP mixture was 3.78 × 10; increased and then decreased to 2.78 × 10 with the increasing sampling temperature. Its combustion was initially rapid, then slowed. Under high-temperature conditions, the HTPB/AP/Al propellants combusted more intensely than the HTPE/AP/Al propellants, and its components interacted more strongly. A heated HTPE/AP mixture acted as a barrier, reducing the responsiveness of solid propellants.
为了研究两种粘合剂体系——端羟基聚丁二烯(HTPB)和端羟基嵌段共聚醚预聚物(HTPE)——之间以及这些粘合剂与高氯酸铵(AP)在不同温度下对不同程度热损伤处理的敏感性之间的相互作用,研究了HTPB和HTPE粘合剂体系、HTPB/AP和HTPE/AP混合物以及HTPB/AP/Al和HTPE/AP/Al推进剂的热特性和燃烧相互作用。结果表明,HTPB粘合剂的第一和第二失重分解峰值温度分别比HTPE粘合剂高85.34和55.74℃。HTPE粘合剂比HTPB粘合剂更容易分解。微观结构表明,HTPB粘合剂加热时变脆并开裂,而HTPE粘合剂加热时液化。燃烧特性指数以及计算质量损伤与实验质量损伤之间的差值ΔW表明各组分之间存在相互作用。HTPB/AP混合物的原始指数为3.34×10;随着采样温度的升高,先降低后升高至4.24×10。其燃烧起初较为温和,然后加剧。HTPE/AP混合物的原始指数为3.78×10;随着采样温度的升高,先升高后降低至2.78×10。其燃烧起初迅速,然后减缓。在高温条件下,HTPB/AP/Al推进剂比HTPE/AP/Al推进剂燃烧更剧烈,且其各组分之间的相互作用更强。加热后的HTPE/AP混合物起到了屏障作用,降低了固体推进剂的反应性。