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首页> 外文期刊>ACS Omega >Electrospinning Preparation of NC/GAP/Submicron-HNS Energetic Composite Fiber and its Properties
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Electrospinning Preparation of NC/GAP/Submicron-HNS Energetic Composite Fiber and its Properties

机译:NC / GAP /亚微米-HNS高能复合纤维的电纺制备及其性能

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In this work, novel three-dimensional nitrocellulose/glycidyl azide polymer/submicron-2,2′, 4,4′, 6,6′-hexanitro-stilbene (NC/GAP/submicron-HNS) composite fibers were prepared by the electrospinning method. As-prepared NC/GAP/submicron-HNS fibers were continuous and possessed a large specific surface area. The structure of fibers was characterized by energy-dispersive X-ray, X-ray photoelectron spectroscopy, X-ray diffraction, and Fourier transform infrared spectroscopy (IR). The results showed that HNS submicron particles were uniformly loaded on the surface of NC/GAP fibers and incorporated with it. Thermal analyses were performed. Such NC/GAP/submicron-HNS fibers showed a low activation energy of 204 kJ·mol–1 and large rate constant of 1.74 s–1, indicating high reactivity and fast reaction rate. The result of TG-IR analysis revealed that the main decomposition products of NC/GAP/submicron-HNS were CO2, CO, H2O, N2O, few NO, and fragments such as ?CH2O– and ?CH–, which were low-signature gases. An evaluation on the energy performance disclosed that the standard specific impulse (Isp) of NC/GAP/submicron-HNS fibers was 2032 N·s·kg–1, which was higher than 2014 N·s·kg–1 of NC/GAP. This meant the addition of HNS submicron particles to the NC/GAP fiber was favorable to the improvement of energy performance. Additionally, introduction of submicron-HNS made the energetic fibers becoming very insensitive to impact action. It was expected that as-prepared NC/GAP/submicron-HNS membranes were promising materials applied for solid rocket propellant.
机译:在这项工作中,通过电纺丝制备了新型三维硝化纤维素/缩水甘油叠氮化物聚合物/亚微米-2,2',4,4',6,6'-六硝基-((NC / GAP /亚微米HNS)复合纤维方法。所制备的NC / GAP /亚微米HNS纤维是连续的并且具有大的比表面积。纤维的结构通过能量色散X射线,X射线光电子能谱,X射线衍射和傅里叶变换红外光谱(IR)进行表征。结果表明,HNS亚微米颗粒均匀地负载在NC / GAP纤维的表面上并与之结合。进行热分析。这种NC / GAP /亚微米HNS纤维的活化能低,为204 kJ·mol-1,速率常数为1.74 s-1,表明反应活性高,反应速度快。 TG-IR分析的结果表明,NC / GAP /亚微米HNS的主要分解产物为CO2,CO,H2O,N2O,少量NO以及低签名的?CH2O–和?CH–碎片。气体。能量性能评估显示,NC / GAP /亚微米-HNS纤维的标准比冲(Isp)为2032 N·s·kg-1,高于2014 N·s·kg-1的NC / GAP 。这意味着向NC / GAP纤维中添加HNS亚微米颗粒有利于提高能量性能。另外,亚微米HNS的引入使高能纤维对冲击作用变得非常不敏感。预期制备的NC / GAP /亚微米HNS膜是用于固体火箭推进剂的有前途的材料。

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