• Infrared and Laser Engineering
  • Vol. 54, Issue 1, 20240282 (2025)
Shaodong LI1, Ji LIU1, Jinhui WU2, Lixia YU1..., Peng SUN1 and Daqian GUO1|Show fewer author(s)
Author Affiliations
  • 1School of Information and Communication Engineering, North University of China, Taiyuan 030051, China
  • 2School of Instrument and Electronics, North University of China, Taiyuan 030051, China
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    DOI: 10.3788/IRLA20240282 Cite this Article
    Shaodong LI, Ji LIU, Jinhui WU, Lixia YU, Peng SUN, Daqian GUO. Spectral perception and characteristic analysis of high-speed target collision flash[J]. Infrared and Laser Engineering, 2025, 54(1): 20240282 Copy Citation Text show less
    References

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    [2] THOMSON G M, MCNEIR M R. Impact flash: a tool f rapid battle damage assessment [C]Proceedings of SPIE, 2004, 5406: 690700.

    [3] LAWRENCE R J, REINHART W, CHHABILDAS L C, et al. Hypervelocity impact flash f missiledefense kill assessment engagement analysis: experiments on Z[R]. US: Sia National Labaties, 2005.

    [4] Anhua SHI, Sen LIU, Jie HUANG. Spectra measurement of radiation produced by aluminum projectiles impacting aluminum targets at hypervelocity speeds. Journal of Astronautics, 29, 715-717(2008).

    [5] Anhua SHI, Sen LIU, Jie HUANG. Visible spectral radiant intensity measuring technology for hypervelocity impact phenomena. Journal of Experiments in Fluid Mechanics, 21, 83-85(2007).

    [6] E L TANG, Q M ZHANG, W ZHANG. Evolutionary characteristics of light flash radiation produced by hypervelocity impact on LY12 aluminum targets. High Power Laser and Particle Beams, 24, 2454-2458(2012).

    [7] ZHANG Kai. Experimental study on electromagic radiation of LY12Al produced by hypervelocity impact[D]. Beijing: Beijing Institute of Technology, 2016. (in Chinese)

    [8] Liheng LIU, Zhaoxia MA, Xuefei DU. Measurements of optical radiation characteristics in tests of impacting RDX at hypervelocity. Journal of Ordnance Equipment Engineering, 43, 291-298(2022).

    [9] X CHEN, Y G LU, Z W LI et al. Experimental investigation of spectral evolution in flash radiation by hypervelocity impact on aluminum plates. Defence Technology, 37, 96-110(2024).

    [10] Enling TANG, Xiaohan SHI, Meng WANG. Evolutionary characteristics of radiation intensity for light flash created by strong shock LY12 aluminum target. High Power Laser and Particle Beams, 26, 074003(2014).

    [11] DONG Wenpu, DU Xuefei, SHI Anhua, et al. Timeevolution acteristics of flash radiation of gasified aluminum in aluminumaluminum hypervelocity impact[JOL]. (20231113) [20240807]. http:kns.cnki.kcmsdetail11.5266.V.20231108.0919.002.html.

    [12] Enling TANG, Zhenbo LI, Yafei HAN. Spatial evolutionary rules of light flash radiation generated by hypervelocity impact on 2A12 aluminum plate. Chinese Journal of Luminescence, 38, 944-952(2017).

    [13] Z X MA, A H SHI, J L LI et al. Radiation evolution characteristics of the ejecta cloud produced by aluminum projectiles hypervelocity impacting aluminum plates. International Journal of Impact Engineering, 138, 103480(2020).

    [14] Z X MA, A H SHI, J L LI et al. Radiation mechanism analysis of hypervelocity impact Ejecta cloud. International Journal of Impact Engineering, 141, 103560(2020).

    [15] S GARY, M JUSTIN, S MATTHEW et al. First contact: Fine structure of the impact flash and ejecta during hypervelocity impact. PNAS Nexus, 2, 214(2023).

    [16] M J PEUKER, P LYNCH, H KRIER et al. On AlO emission spectroscopy as a diagnostic in energetic materials testing. Propellants, Explosives, Pyrotechnics, 38, 577-585(2013).

    [17] V TANGUAY, S GOROSHIN, J A HIGGINS et al. Aluminum particle combustion in high-speed detonation products. Combustion Science and Technology, 181, 670-693(2009).

    Shaodong LI, Ji LIU, Jinhui WU, Lixia YU, Peng SUN, Daqian GUO. Spectral perception and characteristic analysis of high-speed target collision flash[J]. Infrared and Laser Engineering, 2025, 54(1): 20240282
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