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Laboratory-scale Investigation of the Influence of Ageing on the Performance and Sensitivity of an Explosive Containing E-CL-20

机译:实验室规模调查老龄化对含E-CL-20爆炸物性能和敏感性的影响

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摘要

The performance and sensitivity of aged composite explosives based on the epsilon polymorph of hexanitrohexaazaisowurtzitane (E-CL-20) have been evaluated with the laser-induced air shock from energetic materials (LASEM) technique using only milligram quantities of material. The LASEM results demonstrated reduced explosive performance (i.e., lower estimated detonation velocities) and higher sensitivity to ignition with increasing ageing. Chemical analysis of the explosive formulation subjected to ambient and accelerated aging was conducted to help understand the LASEM results. The Fourier Transform Infrared (FTIR) spectra revealed no evidence for conversion to lower-energy polymorphs. Based on the desorption gas chromatography/mass spectrometry (D-GC/MS) results, the observed decrease in performance and increase in sensitivity for the explosive powder aged at 100 degrees C (relative to ambient and 70 degrees C aging) have been attributed to changes related to solvent inclusions in the molding powders.
机译:根据仅使用毫克数量的材料,通过激光诱导的空气冲击评估了基于己基己唑氧化氢氨基鲁丁酮(E-CL-20)的ε多晶型物的性能和敏感性。 LASEM结果表明爆炸性性能降低(即,估计估计的爆炸速度)和随着衰老的增加点火的敏感性更高。进行了对环境和加速老化的爆炸制剂的化学分析,以帮助了解溶扰度。傅里叶变换红外(FTIR)光谱没有显示转换为低能量多晶型物的证据。基于解吸气相色谱/质谱(D-GC / MS)的结果,观察到的性能降低和100摄氏度(相对于环境和70摄氏度)的爆炸粉末的敏感性增加已经归因于与塑料粉末中的溶剂夹杂物相关的变化。

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