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大储能爆炸丝模拟实验方法与装置研究

THE INVESTIGATION OF EXPERIMENTAL SIMULATING METHOD AND DEVICE WITH ENPLODING WIRES OF HIGH STORED ENERGY
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摘要 爆炸丝产生的高温、高压和高能密度使其有可能成为爆炸的模拟源。为了增加产生玻璃体的数量,我们采取了一系列技术措施:变爆炸丝为爆炸箔筒;应用迭加原理,设计脉冲磁场并建立合成回路;研制能耐高温、高压并能在高电压工作的样??品爆室。最后试验结果表明,每次爆炸可以生成3—5g岩石汽化冷凝玻璃体,整个试验系统工作稳定可靠。采用爆炸箔筒是产生爆炸化学环境的有效方法。 The high temperature,pressure and energy density produced by explodingwires made them a simulating source of explosion.To increase the amount ofglass body the following technical measures were taken:replacing wires withexploding foil tubes;designing pulsed magnetic field and building compoundloop;applying the theory of overlap;developing the sample chamber which isheat-resistant,high pressure and voltage-resistant.According to the last experi-mental results we obtained the amount of 3-5 g glass per discharge and the wholeexperimental system worked stably and reliably.It is an efficient method tosimulate the physical and chemical environment of explosion by explodingfoil tubes.
出处 《电工电能新技术》 CSCD 北大核心 1989年第1期40-46,共7页 Advanced Technology of Electrical Engineering and Energy
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