CHINESE JOURNAL OF ENERGETIC MATERIALS
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FSFH共沉淀起爆药的合成及其主要性能
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陈利魁(1971-),男,高级工程师,主要从事火工药剂研究。email: lkchen@163.com

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国防重点实验室基金(预2006612)


Synthesis and Performance of Coprecipitating Primary Explosive FSFH
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    摘要:

    以斯蒂芬酸铁和次磷酸钠反应,采用共沉淀的方法合成绿色起爆药斯蒂芬酸铁和次磷酸铁起爆药(FSFH),研究了其热性能、爆炸性能(撞击、摩擦、火焰、静电感度、极限起爆药量)和在击发药中应用。结果表明: FSFH初始分解温度为185.36 ℃,峰温为205.88 ℃,具有典型起爆药分解特征; 撞击、火焰、静电感度与叠氮化铅相当,摩擦感度高,摆角50°发火率100%; FSFH是一种弱起爆药,不能单独作为起爆药,可以用来做击发药或针刺药的组分。

    Abstract:

    By adopting coprecipitating method, the green primary explosive ferric styphnate-ferric hypophosphite (FSFH) was synthesized from styphnate-ferric and sodium hypophosphite. The thermal and explosive properties(impact, friction, flame, electrostatic spark sensitivity, the minimum initiating charge) were studied. The results show that FSFH is high friction sensitivity with 50 angle and 100% fire. The FSFH and lead azide are almost equal in impact, flame and electrostatic spark sensitivity. The thermal decomposition peak of FSFH is 205.88 ℃ with initial temperature of 185.36 ℃, which indicates that FSFH is weak primary explosive and can be used as primer charge and stab initiating composition.

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陈利魁,盛涤伦,朱雅红,等. FSFH共沉淀起爆药的合成及其主要性能[J].含能材料, 2010, 18(6):660-664. DOI:10.3969/j. issn.10069941.2010.06.011.
CHEN Li-kui, SHENG Di-lun, ZHU Ya-hong, et al. Synthesis and Performance of Coprecipitating Primary Explosive FSFH[J]. Chinese Journal of Energetic Materials, 2010, 18(6):660-664. DOI:10.3969/j. issn.10069941.2010.06.011.

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  • 收稿日期: 2010-06-28
  • 最后修改日期: 2010-08-21
  • 录用日期: 2010-09-13
  • 在线发布日期: 2012-02-22
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