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Research on Initiation Sensitivity of Solid Explosive and Planer Initiation System

机译:固体炸药平面起爆系统起爆敏感性研究

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Firstly, recently, there are a lot of techniques being demanded for complex process, various explosive initiation method and highly accurate control of detonation are needed. In this research, the metal foil explosion using high current is focused attention on the method to obtain linear or planate initiation easily, and the main evaluation of metal foil explosion to initiate explosive was conducted. The explosion power was evaluated by observing optically the underwater shock wave generated from the metal foil explosion. Secondly, in high energy explosive processing, there are several applications, such as shock compaction, explosive welding, food processing and explosive forming. In these explosive applications, a high sensitive explosive has been mainly used. The high sensitive explosive is so dangerous, since it can lead to explosion suddenly. So, for developing explosives, the safety is the most important thing as well as low manufacturing cost and explosive characteristics. In this work, we have focused on the initiation sensitivity of a solid explosive and performed numerical analysis of sympathetic detonation. The numerical analysis is calculated by LS-DYNA 3D (commercial code). To understand the initiation reaction of an explosive, Lee-Tarver equation was used and impact detonation process was analyzed by ALE code. Configuration of simulation model is a quarter of circular cylinder. The donor type of explosive (SEP) was used as initiation explosive. When the donor explosive is exploded, a shock wave is generated and it propagates into PMMA, air and metallic layers in order. During passing through the layers, the shock wave is attenuated and finally, it has influence on the acceptor explosive, Comp.B. Here, we evaluate the initiation of acceptor explosive and discuss about detonation pressure, reactive rate of acceptor explosive and attenuation of impact pressure.
机译:首先,近来,对于复杂的过程需要很多技术,需要各种爆炸起爆方法和高度精确的爆轰控制。在这项研究中,使用大电流的金属箔爆炸着重于容易获得线性或平面爆炸的方法,并进行了金属箔爆炸起爆炸的主要评估。通过光学观察金属箔爆炸产生的水下冲击波来评估爆炸力。其次,在高能炸药加工中,有多种应用,例如冲击压实,炸药焊接,食品加工和炸药成型。在这些炸药应用中,主要使用了高敏感性炸药。高敏感度爆炸物是如此危险,因为它可能会突然导致爆炸。因此,对于开发炸药而言,安全性是最重要的,而且制造成本低,炸药特性低。在这项工作中,我们集中于固体炸药的起爆敏感性,并进行了交感爆轰的数值分析。数值分析通过LS-DYNA 3D(商业代码)进行计算。为了理解炸药的起爆反应,使用了Lee-Tarver方程,并通过ALE代码对冲击爆轰过程进行了分析。仿真模型的配置是四分之一圆柱。供体类型的炸药(SEP)被用作起爆药。当施主炸药爆炸时,会产生冲击波,并依次传播到PMMA,空气和金属层中。在穿过层的过程中,冲击波被衰减,最后,它对受体炸药Comp.B产生影响。在这里,我们评估了受体炸药的起爆,并讨论了爆炸压力,受体炸药的反应速率和冲击压力的衰减。

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