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Volume 37 Issue 2
Jan.  2013
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Effect of reagent ratio of graphite to potassium nitrate on reactive photoacoustic characteristics

  • In order to study the effect of the pharmacy ratio of graphite to potassium on the reactive photoacoustic spectrum, the dynamic photoacoustic detection technology and differential scanning calorimetry(DSC)were used for analysis. When the samples were irradiated by an Nd:YAG pulse laser (wavelength of 1.06μm, pulse width of 54μs), the greater the laser energy, the stronger the photoacoustic signal. The photoacoustic signal changed when the ratio of samples were different. The photoacoustic signal became the strongest when the ratio of the sample (3# sample) was 25/75, while the ratio was 30/70(4# sample), the photoacoustic signal was weak. After studying the time needed to achieve the photoacoustic signal peak, it found that when laser energy increased, the time first increased and then decreased. The results show that the different proportion of C and KNO3 arousing different chemical reaction. Thermal analysis results conform to the photoacoustic experimental results.
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  • [1]

    WENG Ch Sh,WANG Zh,FENG D Ch. A two-dimensional model and calculationfor the prcess of laser ignition[J]. Acta Armamentarii,2005,26(2):169-172(in Chinese).
    [2]

    BAUER C,WILLER U, SCHADE W. Use of quantum cascade lasers for detection of explosives: progress and challenges[J].Optical Enginneering,2010,49(11):111-126.
    [3]

    KONG Y,CHEN X F,ZHU T, et al.Ultra-short blue laser generation by sum-frequency of two lasers with different pulse width[J].Laser Technology,2012,36(1):134-137(in Chinese).
    [4]

    SHEN R Q, YE Y H, DAI Sh Zh. Study of reactivity photoacoustic spectra of graphite in ablation by a pulsed Nd3+:YAG laser[J]. Chinese Journal of Lasers,1998,A25(5):437-440(in Chinese).
    [5]

    ZHANG R F, KONG L H, LU Ch G. Design of constant-current source for high power semiconductor laser diode[J]. Laser Technology,2012,36(1):80-83(in Chinese).
    [6]

    XIANG Sh B, HUA G, CHEN L, et al. Investigation on oxygen-equilibrium effects of laser ignition of egergetic materials[J]. Laser Journal,2005,26(3):81-82(in Chinese).
    [7]

    SHEN R Q, SUN T J, DAI Sh Zh. Photoacoustic model of solid chemical reaction[J]. Chinese Journal of Lasers,1994,A21(10):821-826(in Chinese).
    [8]

    TANG Zh,YANG L,QIAO X J, et al. On themal decomposition kinetics and themal safety of HMX[J]. Chinese Journal of Energetic Materials,2011,19(4):396-400(in Chinese).
    [9]

    ZHOU N, QIAO D J. Materials dynamics under pulse beam radiation[M]. Beijing: National Defense Industry Press,2008:12-30(in Chinese).
    [10]

    YU B L, JIANG J D. Practical thermal analysis[M].Beijing:Textile Industry Press,1990:3-7(in Chinese).
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Effect of reagent ratio of graphite to potassium nitrate on reactive photoacoustic characteristics

    Corresponding author: SHEN Rui-qi, rqshen@mail.njust.edu.com
  • 1. School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;
  • 2. School of Chemical Engineering, Anhui University of Science and Technology, Huainan 232001, China

Abstract: In order to study the effect of the pharmacy ratio of graphite to potassium on the reactive photoacoustic spectrum, the dynamic photoacoustic detection technology and differential scanning calorimetry(DSC)were used for analysis. When the samples were irradiated by an Nd:YAG pulse laser (wavelength of 1.06μm, pulse width of 54μs), the greater the laser energy, the stronger the photoacoustic signal. The photoacoustic signal changed when the ratio of samples were different. The photoacoustic signal became the strongest when the ratio of the sample (3# sample) was 25/75, while the ratio was 30/70(4# sample), the photoacoustic signal was weak. After studying the time needed to achieve the photoacoustic signal peak, it found that when laser energy increased, the time first increased and then decreased. The results show that the different proportion of C and KNO3 arousing different chemical reaction. Thermal analysis results conform to the photoacoustic experimental results.

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