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A Study on the Triazole Crosslinked Polymeric Binder Based on Glycidyl Azide Polymer and Dipolarophile Curing Agents

机译:基于缩水甘油基叠氮化物聚合物和双亲性固化剂的三唑交联聚合物粘合剂的研究

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摘要

Instead of using urethane curing systems, which have long been used as solid propellants, a triazole curing system has been introduced into a new binder recipe in which azide groups in the polymer react with triple bonds of a dipolarophile curing agent. Commercially available glycidyl azide polymers (GAP) were used and an aliphatic curing agent, bispropargyl succinate (BPS), as well as an aromatic curing agent, 1,4-bis(1-hydroxypropargyl)benzene (BHPB), were synthesized as dipolarophile curing agent. Together with networks prepared under the triazole curing system, the networks under dual curing systems, which consist of an isocyanate curing agent and a dipolarophile curing agent, were prepared. Through swelling experiments, solubility parameters and crosslinking densities ofthe triazole crosslinked networks were determined by using Gee's theory and Flory-Rhener theory. The mechanical properties of the triazole crosslinked networks were also investigated with different contents of the dipolarophile curing agent, along with the type of dipolarophile curing agent. The networks prepared under the triazole curing system did not show good mechanical properties. However, GAP-based networks prepared under a dual curing system showed excellent mechanical properties with only a small amount of dipolarophile curing agent used. The effects of BPS and BHPB on the mechanical properties of the networks were much more distinguishable in networks prepared under a dual curing system rather than a single curing system.
机译:代替使用长期用作固体推进剂的氨基甲酸酯固化系统,将三唑固化系统引入了新的粘合剂配方中,在该配方中,聚合物中的叠氮化物基团与亲双极性固化剂的三键反应。使用可商购的缩水甘油基叠氮化物聚合物(GAP),并合成了脂族固化剂双炔丙基琥珀酸酯(BPS)以及芳香族固化剂1,4-双(1-羟基炔丙基)苯(BHPB)作为双极性亲和剂固化剂代理商。连同在三唑固化体系下制备的网络一起,制备了在双固化体系下的网络,该体系由异氰酸酯固化剂和亲双亲性固化剂组成。通过溶胀实验,采用吉氏理论和弗洛里-雷纳理论确定了三唑交联网络的溶解度参数和交联密度。还研究了三唑交联网络的机械性能,以及不同含量的双亲亲油固化剂的种类以及双亲亲油固化剂的类型。在三唑固化体系下制备的网络没有显示出良好的机械性能。然而,在双重固化体系下制备的基于GAP的网络显示出优异的机械性能,仅使用少量的双极性亲和剂固化剂。在双固化系统而非单固化系统下制备的网络中,BPS和BHPB对网络机械性能的影响要明显得多。

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