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首页> 外文期刊>ACS Omega >Characterization and Properties of F2602/GAP/CL-20 Energetic Fibers with High Energy and Low Sensitivity Prepared by the Electrospinning Method
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Characterization and Properties of F2602/GAP/CL-20 Energetic Fibers with High Energy and Low Sensitivity Prepared by the Electrospinning Method

机译:静电纺丝法制备高能量和低灵敏度F2602 /间隙/ CL-20能量纤维的表征及性能

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摘要

In this work, three samples of fluoroelastomers/glycidyl azide polymer/hexanitrohexaazaisowurtzitane (F_(2602)/GAP/CL-20) energetic fibers with F_(2602)/GAP:CL-20 ratios of 1:9, 2:8, and 3:7 were prepared by the electrospinning method. The morphologies and structures of the samples were characterized by scanning electron microscopy, energy dispersive spectroscopy, X-ray diffraction, and Fourier transform infrared spectroscopy. The results revealed that F_(2602)/GAP/CL-20 energetic fibers showed a three-dimensional network structure, and four elements C, N, O, and F were observed on the surface. The surface of the fiber F_(2602)/GAP:CL-20 = 1:9 was uniform and smooth. Differential scanning calorimetry was used to analyze the thermal decomposition properties of the samples. The apparent activation energy of the F_(2602)/GAP/CL-20 energetic fiber was 399.86 kJ/mol, indicating high thermal stability. TG-MS analysis results show that the thermal decomposition products of F_(2602)/GAP/CL-20 are mainly C_(2)H_(6), H_(2)O, N_(2,) and CO_(2). The results of the energy performance evaluation showed that the standard specific impulse (I _(sp)) of F_(2602)/GAP/CL-20 was 2668.1 N s kg~(–1), which was remarkably higher than I _(sp) of the state-of-the-art AP/HTPB/Al propellant. In addition, compared to that of CL-20, the friction sensitivity of one F_(2602)/GAP/CL-20 sample decreased by 38%, and the sensitivities of the other two F_(2602)/GAP/CL-20 samples were even less than zero. F_(2602)/GAP/CL-20 fibers also exhibited a higher feature height. Therefore, these kinds of CL-20-based fibers are high-energy materials with very low sensitivity.
机译:在这项工作中,三种含氟弹性体/丙啶氧化乙酰基聚合物/己酸甲基己唑(F_(2602)/间隙/ CL-20)具有F_(2602)/间隙的能量纤维:CL-20比率为1:9,2:8和3:7通过静电纺丝方法制备。通过扫描电子显微镜,能量分散光谱,X射线衍射和傅里叶变换红外光谱,表征样品的形态和结构。结果表明,F_(2602)/间隙/ CL-20能量纤维显示了三维网络结构,并且在表面上观察到四个元素C,N,O和F.纤维F_(2602)/间隙的表面:Cl-20 = 1:9是均匀和光滑的。用于分析样品的热分解特性的差分扫描量热法。 F_(2602)/间隙/ CL-20能量纤维的表观激活能量为399.86 kJ / mol,表示高热稳定性。 TG-MS分析结果表明,F_(2602)/间隙/ CL-20的热分解产物主要是C_(2)H_(6),H_(2)O,N_(2,)和CO_(2)。能量性能评估的结果表明,F_(2602)/间隙/ CL-20的标准特定脉冲( I _(SP))为2668.1 n s kg〜(-1),其显着高于 I _(SP)的最先进的AP / HTPB / AL推进剂。另外,与CL-20的相比,一个F_(2602)/间隙/ CL-20样品的摩擦敏感性降低了38%,以及其他两个F_(2602)/间隙/ CL-20样品的敏感性甚至小于零。 F_(2602)/间隙/ CL-20纤维也表现出更高的特征高度。因此,这些基于CL-20的纤维是高能量材料,灵敏度非常低。

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