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Transmission and Reflection Terahertz Spectroscopy of Insensitive Melt-Cast High-Explosive Materials

机译:不敏感的熔铸高爆炸材料的透射和反射太赫兹光谱

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摘要

Currently, artillery shells and grenades that are introduced into the market are based on melt-castable insensitive high explosives (IHEs), which do not explode while they run a risk of impact, heat or shrapnel. Particles of explosives (such as hexogen, nitroguanidine and nitrotriazolone) are suspended in different proportions in a matrix of 2.4-dinitroanisole. In this paper, we investigated samples of commonly used IHEs: PAX-41, IMX-104 and IMX-101, whose internal structures were determined by a scanning electron microscope. Terahertz time domain spectroscopy was applied in both transmission and reflection configurations. At first, the complex refraction indices of four pure constituents creating IHEs were determined and became the basis of further calculations. Next, the experimentally determined transmission and reflection spectra of IHEs and pure constituents were compared with theoretical considerations. The influence of the grain size of constituent material and scattering on the reflection spectra was analysed, and good agreement between the experimental and theoretical data was achieved.
机译:当前,投放市场的火炮弹和手榴弹是基于可熔融浇铸的不敏感高炸药(IHE),它们在遭受撞击,发热或弹片的危险时不会爆炸。炸药颗粒(如己糖,硝基胍和硝基三唑酮)以不同比例悬浮在2.4-二硝基苯甲醚基质中。在本文中,我们研究了常用IHE的样品:PAX-41,IMX-104和IMX-101,其内部结构由扫描电子显微镜确定。太赫兹时域光谱仪既用于透射结构,又用于反射结构。首先,确定了产生IHE的四个纯成分的复折射率,并将其作为进一步计算的基础。接下来,将实验确定的IHE和纯组分的透射和反射光谱与理论考虑进行了比较。分析了组成材料的晶粒尺寸和散射对反射光谱的影响,并在实验数据和理论数据之间取得了良好的一致性。

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