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强氧化剂对FAE诱导作用的实验研究
引用本文:崔晓荣,周听清,俞永华,沈兆武. 强氧化剂对FAE诱导作用的实验研究[J]. 含能材料, 2006, 14(1): 12-15
作者姓名:崔晓荣  周听清  俞永华  沈兆武
作者单位:中国科学技术大学力学和机械工程系,安徽,合肥,230027;山东银光化工集团有限公司,山东,费县,273400
摘    要:就强氧化剂KClO4、NH4ClO4对一次起爆型燃料空气炸药(FAE)的诱导作用进行了实验研究,结果表明,一次起爆型FAE的云雾覆盖区内的氧含量充足,但对于原复合燃料,空气中氧气的利用率不高,致使燃料的潜能不能充分激发。在FAE总质量不变的情况下,用15%的NH4ClO4作强氧化剂和爆轰反应的诱导剂取代部分复合燃料,可有效提高一次起爆型FAE的爆轰威力和爆轰稳定性。

关 键 词:爆炸力学  燃料空气炸药(FAE)  离散与爆轰  延迟期  氧化剂  诱导剂
文章编号:1006-9941(2006)01-0012-04
收稿时间:2005-06-06
修稿时间:2005-08-30

Experimental Study on Revulsive Effect of Oxidizer on Single-event FAE
CUI Xiao-rong,ZHOU Ting-qing,YU Yong-hua and SHEN Zhao-wu. Experimental Study on Revulsive Effect of Oxidizer on Single-event FAE[J]. Chinese Journal of Energetic Materials, 2006, 14(1): 12-15
Authors:CUI Xiao-rong  ZHOU Ting-qing  YU Yong-hua  SHEN Zhao-wu
Affiliation:Department of Modern Mechanics, University of Science & Technology of China, Hefei 230027, China;;Department of Modern Mechanics, University of Science & Technology of China, Hefei 230027, China;;Shandong Yinguang Chemical Industry Group Co. Ltd., Feixian 273400, China;Department of Modern Mechanics, University of Science & Technology of China, Hefei 230027, China;
Abstract:The fuel dispersion and initiation of single-event FAE (SEFAE) is self-harmonious. The very short delay-time between fuel dispersion and initiation is adverse to make good use of the oxygen in atmosphere for detonation of SEFAE. Therefore,experimental study on single-event FAE were made with adding solid oxidizer to the fuel (KClO_4,NH_4ClO_4) to improve the power of SEFAE. The results show that (1) the oxygen in fuel clouds zone is abundant to oxidize the fuel of SEFAE completely,whereas,for the original solid multi-component fuel mixture,the oxygen in atmosphere is not utilized effectively,and the energy of SEFAE do not release thoroughly; (2) adding NH_4ClO_4 to the original solid multi-component fuel mixture improves the power and stability of SEFAE,and the optimum content of NH_4ClO_4 in this kind single-event FAE is 15%.
Keywords:explosion mechanics  FAE  dispersion and initiation  delay-time  oxidizer  revulsant
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