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首页> 外文期刊>Journal of Hazardous Materials >Comparison of the structural and physical properties of nitrocellulose plasticized by N-butyl-N-(2-nitroxy-ethyl) nitramine and nitroglycerin: Computational simulation and experimental studies
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Comparison of the structural and physical properties of nitrocellulose plasticized by N-butyl-N-(2-nitroxy-ethyl) nitramine and nitroglycerin: Computational simulation and experimental studies

机译:N-丁基-N-(2-硝基氧乙基)硝胺和硝化甘油增塑的硝化纤维素的结构和物理性质比较:计算模拟和实验研究

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摘要

We performed experimental studies on the effects of N-butyl-N-(2-nitroxy-ethyl) nitramine (Bu-NENA) and nitroglycerin (NG) on the plasticization of nitrocellulose (NC). The tensile strength and elongation at break of NC/Bu-NENA measured at -40 degrees C show increments of about 23% and 33% respectively, compared with those of NC/NG, suggesting that Bu-NENA has a higher plasticizing efficiency than NG. Scanning electron microscope (SEM) observation reveals that NC shows better miscibility with Bu-NENA than NG, which was further evidenced by the mesoscopic morphologies derived from mesodynamics simulations. Furthermore, molecular dynamic simulations were conducted to explore the mechanical strengthening mechanism of plasticizers. The simulation results such as free volume (Vfree), binding energy (Ebind) and radial distribution function (RDF) were obtained. NC/Bu-NENA shows a 28% improvement in Vfree compared to NC/NG, suggesting that Bu-NENA molecules demonstrate higher mobility in NC matrix. The larger Ebind of NC/Bu-NENA than NC/NG indicates the stronger interaction between NC and Bu-NENA. Furthermore, g(r) values correlated to the atom pair interaction determined from RDF curves reveal that NC/Bu-NENA shows higher intensities of both hydrogen bond and van der waal force than those of NC/NG blend. These computational and experimental studies reveal great potential in design and fabricating low vulnerable insensitive propellants.
机译:我们进行了有关N-丁基-N-(2-硝基氧乙基)硝胺(Bu-NENA)和硝化甘油(NG)对硝化纤维素(NC)塑化的影响的实验研究。与NC / NG相比,在-40℃下测得的NC / Bu-NENA的拉伸强度和断裂伸长率分别增加了约23%和33%,这表明Bu-NENA的增塑效率高于NG。 。扫描电子显微镜(SEM)观察表明,NC与Bu-NENA的混溶性比NG好,这由介观动力学模拟得出的介观形态进一步证明。此外,进行分子动力学模拟以探索增塑剂的机械增强机理。获得了自由体积(Vfree),结合能(Ebind)和径向分布函数(RDF)等仿真结果。与NC / NG相比,NC / Bu-NENA的Vfree改善了28%,这表明Bu-NENA分子在NC基质中表现出更高的迁移率。 NC / Bu-NENA的结合大于NC / NG,表明NC与Bu-NENA之间的相互作用更强。此外,与由RDF曲线确定的原子对相互作用相关的g(r)值表明,NC / Bu-NENA的氢键强度和范德华力均比NC / NG混合物高。这些计算和实验研究表明,在设计和制造低脆弱性不敏感推进剂方面具有巨大潜力。

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