首页> 外文会议>National Defense Industrial Association;International symposium on ballistics >PARAMETRIC STUDY OF EXPLODING FOIL BURST PHENOMENON FOR THIN FLYER IMPACT INITIATION OF EXPLOSIVES
【24h】

PARAMETRIC STUDY OF EXPLODING FOIL BURST PHENOMENON FOR THIN FLYER IMPACT INITIATION OF EXPLOSIVES

机译:炸药爆炸性箔爆现象的参数化研究

获取原文
获取外文期刊封面目录资料

摘要

In an Exploding Foil Initiator (EFI), thin polyimide flyer is accelerated at a velocity of 3-4km/s by exploding metal foil, which bursts when high electrical energy is applied in shortduration. The working of an EFI at low energy depends on many factors such as circuitparameters, characteristics of foil, flyer, barrel and types of explosive. Keeping the material,voltage, capacitance, length and width of foil constant, and varying foil thickness,parametric study of exploding foil is presented. When a large amount of electrical energy isdeposited at very fast rate to fine bridge foil, it passes through the melting, boiling andvaporization phases up to the plasma state, giving off thermal energy and shock waves. Inthis work, the electrical Gurney Energy is calculated for estimation of flyer velocity usingburst current density that defines action- integral characteristics of burst phenomenon. AMATLAB code is developed for studying variations in parameters and their interrelationships.The program computes foil burst parameters based on input values and thushelps in determination of exploding foil behavior. It is observed that keeping voltage 2 kVand charging capacitor capacity at 1 μF, as the thickness of exploding metal foil increasesfrom 3 to 6 μm, the flyer velocity slightly increases, and remains constant up to 9 μm,thereafter, decreases marginally up to 13 micron, after which there is sharp decrease and noburst occurs at thickness greater than 20 micron. Also, for a given dimension of metal foil,the flyer velocity is highest for Gold material as compare to Copper and Aluminum.Experimental trials were carried out to establish parameters for successful working of EFI atlow energy using an etched copper bridge foil. Experimental results are in good agreementwith the results of the theoretical modeling using MATLAB, which will enable design ofrelatively low energy slapper detonator or explosive initiator for various applications.
机译:在爆炸箔引发剂(EFI)中,聚酰亚胺薄薄片以3-4的速度加速 金属箔爆炸产生的km / s,短时施加高电能会爆炸 期间。 EFI在低能量下的工作取决于许多因素,例如电路 参数,金属箔,传单,枪管的特性和炸药类型。保持材料, 电压,电容,箔的长度和宽度恒定以及箔厚度的变化, 提出了爆炸箔的参数研究。当大量电能 以非常快的速度沉积到细小的桥箔上,经过熔化,沸腾和 汽化阶段达到等离子体状态,释放出热能和冲击波。在 在这项工作中,使用以下方法计算葛尼电能,以估算飞行器速度 突发电流密度,定义了突发现象的动作积分特性。一种 开发了MATLAB代码,用于研究参数及其相互关系的变化。 该程序根据输入值计算箔爆裂参数,因此 帮助确定箔的爆炸行为。观察到保持电压2 kV 爆炸金属箔的厚度增加时,充电电容器的容量为1μF 从3到6μm,飞行器速度略有增加,直到9μm都保持恒定, 此后略微减小至13微米,此后急剧减小且没有 爆裂发生在厚度大于20微米的地方。另外,对于给定尺寸的金属箔, 与铜和铝相比,金材料的飞行速度最高。 进行了试验试验,以建立使EFI成功运行的参数。 使用蚀刻的铜桥箔实现低能耗。实验结果吻合得很好 使用MATLAB进行理论建模的结果,这将有助于设计 相对低能量的拍打雷管或爆炸起爆器,可用于各种应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号