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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Characterization of 1,2,3-triazole crosslinked polymers based on azide chain-ends prepolymers and a dipolarophile curing agent as propellant binders: The effect of a plasticizer
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Characterization of 1,2,3-triazole crosslinked polymers based on azide chain-ends prepolymers and a dipolarophile curing agent as propellant binders: The effect of a plasticizer

机译:基于叠氮化物链端预聚物和亲双极性固化剂作为推进剂粘合剂的1,2,3-三唑交联聚合物的表征:增塑剂的作用

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摘要

The 1,2,3-triazole crosslinked polymers with potential use as a binder system in solid rocket propellants were prepared by mixing of an azide chain-ends diazide prepolymer, a dipolarophile curing agent, which act as a crosslinker, and a plasticizer at C C/N-3 ratio of 1.1. A wide range of the plasticizer ratios were investigated: 0-300 wt% for the polycaprolactone (PCP) and polycaprolactone ether (PCE) prepolymer based binders, and 0-500 wt% for the polyethylene glycol (PEG) prepolymer based binder. Even at high amounts of plasticizer, sufficient initial reactivity and good conversion were obtained, however the increase of viscosity was considerably delayed. Crystalline domains of in the 1,2,3-triazole crosslinked polymers were effectively eliminated by the plasticizer. The tensile strength and modulus (100% and 300%, respectively) decreased with increasing of the amount of plasticizer whereas the elongation at the break was only modestly affected. PCP showed excellent elongation at the break compared to PEG at the same levels of plasticizer as well as good tensile strength. In contrast, the binder network prepared from the PCE prepolymer collapsed due to its low degree of crosslinking. (C) 2014 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:1,2,3-三唑交联聚合物(可能用作固体火箭推进剂的粘合剂体系)是通过将叠氮化物链端二叠氮化物预聚物,充当交联剂的偶极亲和剂和增塑剂在CC处混合制备的。 / N-3比为1.1。研究了多种增塑剂比率:基于聚己内酯(PCP)和聚己内酯醚(PCE)预聚物的粘合剂为0-300 wt%,基于聚乙二醇(PEG)预聚物的粘合剂为0-500 wt%。即使在大量的增塑剂下,也可以获得足够的初始反应性和良好的转化率,但是粘度的增加被大大延迟了。 1,2,3-三唑交联聚合物中的结晶域被增塑剂有效消除。拉伸强度和模量(分别为100%和300%)随增塑剂用量的增加而降低,而断裂伸长率仅受到中等程度的影响。与PEG相比,在相同的增塑剂含量下,PCP的断裂伸长率极佳,并且具有良好的拉伸强度。相反,由PCE预聚物制备的粘合剂网络由于其低的交联度而崩溃。 (C)2014台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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