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A Study on High-Quality RDX-Based Flexible Explosives with High Energy and Low Vulnerability

机译:A Study on High-Quality RDX-Based Flexible Explosives with High Energy and Low Vulnerability

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摘要

A new type of flexible explosive(HFE) with high energy and low vulnerability based on H-RDX(High-quality RDX) was proposed. Fundamental characterizationes of H-RDX, including infrared testing and particle size measurement, were carried out. The technological parameters of the process were researched. Mechanical sensitivities were characterized by impact sensitivity tester and friction sensitivity tester on the base of the explosion probability method. Energetic properties containing densities, initiation properties, and detonation velocities were investigated. For comparison, normal RDX was introduced. It is concluded that HFE with great flexibility was obtained under the sulfuration condition of 80°C, 10d. The surface of H-RDX is smoother with fewer defects and a smaller specific surface, leading to the better safety performance of HFE. The impact and friction sensitivities of HFE were 50% and 22% less than those of RDX-based flexible explosive, respectively. Moreover, higher densities and a 6~19% rise in detonation velocities indicate that HFE(6700~7500 m·s~(-1)) has better energy performance. The precise incision was realized as the dosage of HFE rose(thickness, from 3 mm to 5 mm). The waterproofness of HFE was also tested by the detonation of the sample(submerged in 1 m water for 24 h) with the optimum proportion of the formula(explosive/rubber/functional agents = 92/6/2). An excellent application prospect of the flexible explosive was observed in this work.
机译:一种新型挠性炸药(HFE)高能源和低脆弱性的基础上提出了H-RDX(高质量的RDX)。H-RDX的表征,包括红外线测试和粒度测量,执行。过程研究。特点是影响灵敏度测试仪灵敏度和摩擦试验机的基础上爆炸概率方法。属性包含密度、初始化属性和爆轰速度调查。介绍了。灵活性得到了硫化下80°C条件,10 d。用更少的缺陷和一个更小的平滑比表面,导致更好的安全HFE的性能。敏感的HFE小于50%和22%那些RDX-based灵活的炸药,分别。在爆轰速度表明,6 ~ 19%上升HFE (6700 ~ 7500 m·s ~(1))具有更好的能量表演的用量HFE(从3毫米厚度,上升到5毫米)。样品的爆轰(淹没在1 m水24 h)的最佳比例公式(炸药/橡胶/功能代理=92/6/2)。挠性炸药在这项工作。

著录项

  • 来源
    《Chemistry Select》 |2022年第39期|共5页
  • 作者单位

    School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, PR China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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