Spectroscopy and Spectral Analysis, Volume. 33, Issue 10, 2603(2013)

High Resolution Laser Transient Spectroscopic Technology under Two-Stage Light Gas-Gun Loading Condition and Stability Study of Shocked Benzene

ZHAO Bei-jing*, LIU Fu-sheng, WANG Wen-peng, ZHANG Ning-chao, FENG Li-peng, ZHANG Ming-jian, and XUE Xue-dong
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    The present paper reports the high resolution transient Raman laser testing technology under two-stage light gas-gun loading experiment, and its application to studying the Raman spectroscopy of shocked benzene. In the experiments, the frequency shift of C—C stretching vibration (992 cm-1) and C—H stretching vibration peak (3 061 cm-1) in the low pressure section (less than 8 GPa) varies linearly with the pressure, and the results agree well with reported data in the literature. The structural changes in liquid benzene about 13 GPa were clarified firstly by the Raman spectral technique; the experimental results show that at a pressure of 9.7 GPa, the structural change of liquid benzene has taken place, not reported in the literature about 13 GPa. But the composition in the production is not clear. The measurement system provides an effective means to study the microstructure changes of transparent and translucent material under dynamic loading experiment.

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    ZHAO Bei-jing, LIU Fu-sheng, WANG Wen-peng, ZHANG Ning-chao, FENG Li-peng, ZHANG Ming-jian, XUE Xue-dong. High Resolution Laser Transient Spectroscopic Technology under Two-Stage Light Gas-Gun Loading Condition and Stability Study of Shocked Benzene[J]. Spectroscopy and Spectral Analysis, 2013, 33(10): 2603

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    Paper Information

    Received: Dec. 14, 2012

    Accepted: --

    Published Online: Oct. 23, 2013

    The Author Email: Bei-jing ZHAO (beijing8369@163.com)

    DOI:10.3964/j.issn.1000-0593(2013)10-2603-04

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