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储氢材料在乳化炸药中的应用
引用本文:程扬帆,刘蓉,马宏昊,沈兆武. 储氢材料在乳化炸药中的应用[J]. 含能材料, 2013, 21(2): 268-272
作者姓名:程扬帆  刘蓉  马宏昊  沈兆武
作者单位:中国科学技术大学近代力学系,安徽大学数学科学学院,中国科学技术大学近代力学系,中国科学技术大学近代力学系
基金项目:国家自然科学基金项目(面上项目,重点项目,重大项目)
摘    要:乳化炸药具有安全、环保、稳定的特点,但爆炸威力较低,破岩效果不太理想。为了改善乳化炸药的爆炸性能,向乳化基质中添加储氢材料来提高乳化炸药的作功能力。通过水下爆炸实验和猛度测定实验,研究了两种储氢材料敏化的乳化炸药爆炸能量输出特性,并与玻璃微球敏化的传统乳化炸药进行比较。研究结果表明:储氢材料能够显著改善乳化炸药的爆炸特性,其中储氢材料A敏化的乳化炸药能量增加了32%,储氢材料B冲击波衰减时间增加了42%。储氢材料水解产生的物质产生的H2参与爆炸反应,因此其总输出能量会大于现有乳化炸药的输出能量。储氢材料在乳化炸药中起到了敏化剂和含能材料的双重作用,对新型乳化炸药设计具有指导意义。

关 键 词:爆炸力学  乳化炸药  冲击波  储氢材料
收稿时间:2012-04-19
修稿时间:2013-02-28

Research on Hydrogen Storage Materials Applied In Emulsion Explosives
CHENG Yang-fan,LIU Rong,MA Hong-hao and SHEN Zhao-wu. Research on Hydrogen Storage Materials Applied In Emulsion Explosives[J]. Chinese Journal of Energetic Materials, 2013, 21(2): 268-272
Authors:CHENG Yang-fan  LIU Rong  MA Hong-hao  SHEN Zhao-wu
Affiliation:Department of Modern Mechanics,University of Science and Technology of China,Hefei,School of Mathematical Science, University of Anhui, Hefei,Department of Modern Mechanics,University of Science and Technology of China,Hefei,Department of Modern Mechanics,University of Science and Technology of China,Hefei
Abstract:Emulsion explosive is widely applied for its safe and environmentally friendly and stable characteristics, but the rock breaking efficiency of the emulsion explosive is not ideal for its low explosion power. In order to improve the detonation characteristics of the traditional emulsion explosives, hydrogen storage material was put into it. Through underwater explosion experiment and emulsion explosives Brisance experiment, the energy output characteristics of different emulsion explosives were studied. Results of selected detonation parameters for prepared compositions of explosive materials with hydrogen storage materials are presented. For comparative purposes, the paper also presents analogous results for conventional emulsion explosives which sensitized by glass microspheres , hydrogen storage material A and B are both have a big improvement on the explosive power, and respectively increase remarkable on decay time and overpressure of the shock wave. Before the detonation reaction, hydrogen storage material A and B were hydrolyzed to create H2, then small bubbles were distributed uniformly in the emulsion matrix, at last the emulsion matrix was sensitized. H2 was energetic material and participated in the detonation reaction, so the total energy output increased.
Keywords:explosion mechanics   emulsion explosive   shock wave   hydrogen storage materials
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