Patterson James E, Dreger Zbigniew A, Gupta Yogendra M
Institute for Shock Physics and Department of Physics, Washington State University Pullman, Washington 99164-2816, USA.
J Phys Chem B. 2007 Sep 20;111(37):10897-904. doi: 10.1021/jp079502q. Epub 2007 Aug 24.
The real-time, molecular-level response of oriented single crystals of hexahydro-1,3,5-trinitro-s-triazine (RDX) to shock compression was examined using Raman spectroscopy. Single crystals of [111], [210], or [100] orientation were shocked under stepwise loading to peak stresses from 3.0 to 5.5 GPa. Two types of measurements were performed: (i) high-resolution Raman spectroscopy to probe the material at peak stress and (ii) time-resolved Raman spectroscopy to monitor the evolution of molecular changes as the shock wave reverberated through the material. The frequency shift of the CH stretching modes under shock loading appeared to be similar for all three crystal orientations below 3.5 GPa. Significant spectral changes were observed in crystals shocked above 4.5 GPa. These changes were similar to those observed in static pressure measurements, indicating the occurrence of the alpha-gamma phase transition in shocked RDX crystals. No apparent orientation dependence in the molecular response of RDX to shock compression up to 5.5 GPa was observed. The phase transition had an incubation time of approximately 100 ns when RDX was shocked to 5.5 GPa peak stress. The observation of the alpha-gamma phase transition under shock wave loading is briefly discussed in connection with the onset of chemical decomposition in shocked RDX.
利用拉曼光谱研究了六氢-1,3,5-三硝基-s-三嗪(RDX)定向单晶在冲击压缩下的实时分子水平响应。[111]、[210]或[100]取向的单晶在逐步加载下冲击至3.0至5.5 GPa的峰值应力。进行了两种类型的测量:(i)高分辨率拉曼光谱,用于在峰值应力下探测材料;(ii)时间分辨拉曼光谱,用于监测冲击波在材料中反射时分子变化的演变。在3.5 GPa以下,所有三种晶体取向在冲击加载下CH拉伸模式的频率偏移似乎相似。在冲击至4.5 GPa以上的晶体中观察到了显著的光谱变化。这些变化与静压测量中观察到的变化相似,表明冲击的RDX晶体中发生了α-γ相变。在高达5.5 GPa的冲击压缩下,未观察到RDX分子响应中明显的取向依赖性。当RDX冲击至5.5 GPa峰值应力时,相变的潜伏期约为100 ns。结合冲击RDX中化学分解的起始,简要讨论了冲击波加载下α-γ相变的观测结果。