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GAP pre-polymer, as an energetic binder and high performance additive for propellants and explosives: A review

机译:GAP预聚物,作为高能粘合剂和高性能添加剂,用于推进剂和炸药:综述

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In preparation of energetic composite formulations, functionally terminated pre-polymers have been used as binder. After physically mixing the pre-polymers with oxidizing components, metallic fuel, burning rate modifier and other minor ingredients, they are cured with a suitable curing agent to provide physical and chemical stability. These pre-polymers could be functionalized with carboxyl, epoxide or hydroxyl groups at varying average chain functionalities. For carboxyl-terminated pre-polymers, an epoxy functional curing agents could be used. If the pre-polymer possesses hydroxyl groups, isocyanate functional curing agents are the most suitable curing agents in terms of easy and efficient processing. Glycidyl azide polymer (GAP) is one of the well-known low-molecular weight energetic liquid pre-polymer, which was developed to use as energetic binder, high performance additive and gas generator for high performance smokeless composite propellant and explosive formulations. Linear or branched GAP can be synthesized by nucleophilic substitution reaction of corresponding poly(epichlorohydrin) (PECH) with sodium azide through replacement of chloromethyl groups of PECH with pendant energetic azido-methyl groups on the polyether main chain. Positive heat of formation (+957 kJ/kg) enables exothermic and rapid decomposition of GAP producing fuel rich gases. Its polyether main chain provides GAP with relatively low glass transition temperature (Tg= - 48 oC) and presence of hydroxyl functional groups allows it to have easy processing in curing with isocyanate curing agents to form covalently crosslinked polyurethane structure. These outstanding properties of GAP enable it to be used as energetic polymeric binder and high performance additive in preparation of energetic materials and low vulnerable explosives.
机译:在制备高能复合制剂时,已将官能封端的预聚物用作粘合剂。将预聚物与氧化成分,金属燃料,燃烧速率改性剂和其他次要成分进行物理混合后,将其与合适的固化剂固化,以提供物理和化学稳定性。这些预聚物可以在不同的平均链官能度下被羧基,环氧化物或羟基官能化。对于羧基封端的预聚物,可以使用环氧官能的固化剂。如果预聚物具有羟基,就容易和有效的加工而言,异氰酸酯官能的固化剂是最合适的固化剂。缩水甘油叠氮化物聚合物(GAP)是众所周知的低分子量含能液体预聚物之一,被开发用作含能粘合剂,高性能添加剂和气体发生器,用于高性能无烟复合推进剂和炸药配方。线性或支化的GAP可以通过相应的聚表氯醇(PECH)与叠氮化钠的亲核取代反应来合成,方法是用聚醚主链上的侧基高能叠氮基甲基取代PECH的氯甲基。地层的正热(+957 kJ / kg)使得放热和快速分解GAP产生富含燃料的气体。它的聚醚主链为GAP提供了相对较低的玻璃化转变温度(Tg =-48 oC),并且羟基官能团的存在使其在用异氰酸酯固化剂固化形成共价交联聚氨酯结构时易于加工。 GAP的这些出色性能使其可以用作高能聚合物粘合剂和高性能添加剂,用于制备高能材料和易爆炸药。

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