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One-Dimensional Shock and Detonation Characterization of Ultrafine Hexanitrostilbene

机译:超细六硝基苯甲酸纤烯的一维冲击和爆轰表征

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A series of plate impact experiments was performed, using a single-stage gas gun, on die-pressed, high density (92 % theoretical maximum) samples of ultrafine hexanitrostilbene (HNS). This enabled investigation of the inert shock response and subsequent detonation of the material. Shock magnitudes up to ca. 6 GPa were investigated by varying the flyer and target plate materials, and impact velocities. In each case, the shock length was chosen to be longer than the pellet (ca. 3 mm). Shock wave profiles and transit times were diagnosed using embedded miniature (1 mm2) manganin stress gauges placed at the front and rear of the shock assemblies. The results have been interrogated to establish the non-reactive Hugoniot of the HNS and deduce information on its run-to-detonation. Analysis of measured stresses and calculated pressures suggests that pressed HNS possesses little strength behind the shock front. These and other features are discussed and compared with existing data.
机译:使用单级气枪进行一系列板冲击实验,对超细,高密度(92%理论最大)样品进行超细己腈(HNS)。这使得能够调查惰性冲击响应和随后的材料爆炸。震荡大小达到CA.通过改变传单和目标板材和冲击速度来研究6 GPA。在每种情况下,选择冲击长度比颗粒(约3mm)长。使用嵌入的微型(1mm2)锰甘蛋白应力计诊断,诊断了冲击波轮廓和运输时间,所述锰磺应力计放置在冲击组件的前后和后部。结果已被询问,以建立HNS的非反应性Hugoniot,并推断出关于其犯罪的信息。测量的应力分析和计算压力表明,压笼状的震动前面的强度很小。与现有数据进行讨论并与现有数据进行讨论这些和其他功能。

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