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Updated: May 9, 2025

Research and Development of High-performance Explosives
Published on: February 20, 2016
重新审视H-FOX的敏感性质:和氨酸功能的相互作用构建了一个不敏感的能量材料
Abhishek Kumar Yadav1, Vikas D Ghule2, Srinivas Dharavath1
1Energetic Materials Laboratory, Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur-208016, Uttar Pradesh, India. srinivasd@iitk.ac.in.
一种新型化合物, (2-乙烯-1,1-二) bis () 氨酸),以高产量合成. 这种高能量的材料显示出作为一种更安全的超高能燃料和用于先进的推进和能源应用的二次爆炸物的前景.
科学领域:
- 能量材料科学 能量材料科学
- 推进化学 推进化学 推进化学
背景情况:
- 目前的超高高的燃料和二次爆炸物带来了安全挑战.
- 需要具有更好的安全配置文件的先进能量材料.
研究的目的:
- 合成和表征 (2-亚乙烯-1,1-二) 双) (2).
- 为了评估其作为超高高的燃料和二次爆炸物的性能.
- 评估其与现有材料相比的安全特性.
主要方法:
- 单步合成 (2-亚乙烯-1,1-二) 双.
- 合成化合物的表征.
- 使用WFNA对高高球度的评估.
- 评估爆炸性质和灵敏度.
主要成果:
- 实现了 (2-亚乙烯-1,1-二) bis ((水) 的高产合成.
- 作为超高高的燃料和二次爆炸物的双重功能被证明.
- 它的分解温度为160°C,密度为1.60gcm−3,爆炸速度为8548m s−1,具体脉冲为220s.
- 对冲击和摩擦表现出极好的不敏感性.
结论:
- (2-甲-1,1-) bis ((水) 是一个有希望的更安全的替代H-FOX.
- 该化合物的特性使其适用于混合推进和高能材料应用.
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