Wang Xianshuang, Liu Ruibin, He Yage, Fu Ying, Wang Junfeng, Li An, Guo Xueyong, Wang Manman, Guo Wei, Zhang Tonglai, Shu Qinghai, Yao Yugui
Opt Express. 2022 Feb 14;30(4):4718-4736. doi: 10.1364/OE.449382.
Determination of macroscale detonation parameters of energetic materials (EMs) in a safe and rapid way is highly desirable. However, traditional experimental methods suffer from tedious operation, safety hazards and high cost. Herein, we present a micro-scale approach for high-precision diagnosis of explosion parameters based on radiation spectra and dynamic analysis during the interaction between laser and EMs. The intrinsic natures of micro-explosion dynamics covering nanosecond to millisecond and chemical reactions in laser-induced plasma are revealed, which reveal a tight correlation between micro-detonation and macroscopic detonation based on laser-induced plasma spectra and dynamics combined with statistic ways. As hundreds to thousands of laser pulses ablate on seven typical tetrazole-based high-nitrogen compounds and ten single-compound explosives, macroscale detonation performance can be well estimated with a high-speed and high-accuracy way. Thereby, the detonation pressure and enthalpies of formation can be quantitatively determined by the laser ablation processes for the first time to our knowledge. These results enable us to diagnose the performance of EMs in macroscale domain from microscale domain with small-dose, low-cost and multiple parameters.
以安全、快速的方式测定含能材料(EMs)的宏观爆轰参数是非常必要的。然而,传统的实验方法存在操作繁琐、安全隐患和成本高的问题。在此,我们提出了一种基于激光与含能材料相互作用过程中的辐射光谱和动力学分析的微尺度方法,用于高精度诊断爆炸参数。揭示了从纳秒到毫秒的微爆炸动力学以及激光诱导等离子体中的化学反应的内在本质,基于激光诱导等离子体光谱和动力学并结合统计方法揭示了微爆轰与宏观爆轰之间的紧密关联。当数百到数千个激光脉冲烧蚀七种典型的四唑基高氮化合物和十种单组分炸药时,可以以高速、高精度的方式很好地估计宏观爆轰性能。据此,据我们所知首次通过激光烧蚀过程定量确定了爆轰压力和生成焓。这些结果使我们能够从小尺度领域以小剂量、低成本和多参数的方式诊断含能材料在宏观尺度领域的性能。