ANSYS simulation and experimental analysis of an RDX/Al/NC composite explosive prepared via an electrostatic spraying method

IF 4.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
RSC Advances Pub Date : 2025-03-25 DOI:10.1039/D5RA00142K
Wei Ji, Yilong Duan, Jun Dong, Lingxin Wang, Xi He and Xiulong Li
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Abstract

In order to explore the effect of aluminum (Al) on the performance of 1,3,5-trimethylene trinitramine (RDX), the process of RDX/Al/NC composite explosives prepared via an electrostatic spraying method was simulated using ANSYS software, and the simulation data such as the velocity profile and particle size distribution were obtained. RDX/Al/NC composite explosives with different ratios were experimentally prepared, and the morphology, structure, thermal properties, combustion properties and impact sensitivity of the samples were measured. The simulated particle sizes of the RDX/Al/NC composite explosives with 15%, 35% and 55% Al contents were concentrated at 1427 nm, 3250 nm and 5428 nm, respectively. Experimental results showed that the experimentally prepared particles were slightly smaller than their simulated counterparts, yet both datasets revealed the same trend. The physical recombination of RDX, Al and NC was observed in composite explosives. Compared with the raw material RDX, the activation energy of the RDX/Al/NC composite explosives decreased, the critical temperature of thermal explosion increased, the impact sensitivity decreased, and the combustion performance improved. The activation energies of the RDX/Al/NC composite explosives with 15%, 35% and 55% Al contents reduced by 45 kJ mol−1, 48 kJ mol−1, and 67 kJ mol−1, respectively, and the critical temperature of thermal explosion of the RDX/Al/NC composite explosives with 15%, 35% and 55% Al contents improved by 9 K, 3 K and 4 K, respectively.

Abstract Image

对静电喷涂法制备的RDX/Al/NC复合炸药进行了ANSYS仿真与实验分析
为了探索铝(Al)对 1,3,5-三亚甲基三硝胺(RDX)性能的影响,利用 ANSYS 软件模拟了静电喷射法制备 RDX/Al/NC 复合炸药的过程,并获得了速度曲线和粒度分布等模拟数据。实验制备了不同比例的 RDX/Al/NC 复合炸药,并测量了样品的形态、结构、热性能、燃烧性能和冲击敏感性。铝含量为 15%、35% 和 55% 的 RDX/Al/NC 复合炸药的模拟粒径分别集中在 1427 nm、3250 nm 和 5428 nm。实验结果表明,实验制备的颗粒比模拟颗粒略小,但两个数据集显示的趋势相同。在复合炸药中观察到了 RDX、Al 和 NC 的物理重组。与原料 RDX 相比,RDX/Al/NC 复合炸药的活化能降低,热爆临界温度升高,冲击敏感性降低,燃烧性能改善。铝含量为 15%、35% 和 55% 的 RDX/Al/NC 复合炸药的活化能分别降低了 45 kJ mol-1、48 kJ mol-1 和 67 kJ mol-1,铝含量为 15%、35% 和 55% 的 RDX/Al/NC 复合炸药的热爆炸临界温度分别提高了 9 K、3 K 和 4 K。
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来源期刊
RSC Advances
RSC Advances chemical sciences-
CiteScore
7.50
自引率
2.60%
发文量
3116
审稿时长
1.6 months
期刊介绍: An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.
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