CHINESE JOURNAL OF ENERGETIC MATERIALS
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激光与含能化合物相互作用机理研究
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盛涤伦(1956- ),男,研究员,硕士,主要从事新型含能材料的研究与应用开发工作。e-mail: shdl1998@sina.com

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国家973项目(2005596)


Interactional Mechanism Between Laser and Energetic Compound
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    测试了十种新型配位化合物起爆药、炸药光吸收波谱,对比了不同波长下含能化合物的激光感度。结果表明: 高氯酸·四氨·双叠氮基合钴(Ⅲ)(DACP)在紫外-可见光有连续吸收,用635 nm的激光作用,可显著提高激光感度。在532~1060 nm,没有发现高氯酸·四氨·双(5-硝基四唑)合钴(Ⅲ)(BNCP)感度与波长有相关性。多种新型配位化合物对915 nm激光显示较高的感度。根据试验现象和结果认为: 激光波长不同,将导致化合物激发反应机理不同。如果激光是可见紫外波段,光量子能量有利于选择性地激发分子的电子能级,或破坏化合物中弱键而诱导化学反应发生,化合物属于光致分解机理、引发弱键断裂机理; 如果激光是红外波段,化合物表现的则是热分解机理。

    Abstract:

    The absorption spectra of some primary explosives and explosives were measured,and their laser sensitivities were compared with the different wavelengths laser testes. The results show that there are continuous absorbing peak for DACP in ultraviolet-visible wave,and the laser sensitivity is remarkably increased with 635 nm laser. In 532-1060 nm,there is no relation between BNCP sensitivity and wave. Many new complex compounds have quite high laser sensitivity to 915 nm. According to testing phenomena and results,it is considered that the different laser wavelength shall lead to the different exploding mechanism of compound. If the laser is in ultravioletvisible wave,photons activate choicely electron energy level or destroy weak bond of compound molecule,and result in chemistry reaction,which is photo leading decomposition mechanism. If the laser is in infrared wave,the chemistry reaction mainly is heat decomposition mechanism.

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盛涤伦,朱雅红,陈利魁,等.激光与含能化合物相互作用机理研究[J].含能材料, 2008, 16(5):481-486.
SHENG Di-lun, ZHU Ya-hong, CHEN Li-kui, et al. Interactional Mechanism Between Laser and Energetic Compound[J]. Chinese Journal of Energetic Materials, 2008, 16(5):481-486.

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  • 收稿日期: 2008-06-30
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  • 在线发布日期: 2011-05-06
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