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Mechanics of the Run up on Linear Shaped Charges Cutting

机译:线形装药切割的加速机理

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摘要

Run up is a factor in Linear Shaped Charge (LSC) cutting for which an account must be made. It occurs on the initiation segment of the charge, and the cutting performance during this period is significantly lower. Previous investigations by the UMR Explosives Group observed that similar effects occur not only with LSCs but a wide range of other explosives applications, including explosive-driven flux-compression generators. Prior to this investigation, it was believed that the main contributing factors to run up were from the combined effects of explosive run up (detonation pressure), lack of confinement at the free, initiation end of the charge, and penetrator transition from segmented pieces to a long-rod penetrator blade. As an initial step to understanding the mechanics of LSC run up, a series of investigations was performed in which the testing series was divided into several sub-categories (explosive detonation pressure run up, lack of confinement and long-rod penetrator concept) in order to reveal the effect of each on the run up. Predominantly, commercially manufactured LSCs were used for the investigation, and the entire testing was completed by the UMR Explosives Group.
机译:加速是线性装药(LSC)切割中必须考虑的因素。它发生在装料的起始段上,在此期间的切削性能明显降低。 UMR爆炸物小组先前的调查发现,不仅对LSC产生了类似的影响,而且包括炸药驱动的通量压缩发生器在内的其他许多爆炸物应用也发生了类似的影响。在进行此调查之前,人们认为,助燃的主要因素是爆炸助燃(爆炸压力),在自由状态,装药的起始端缺乏限制以及从分段弹药向弹药转变的综合影响。长杆穿透刀片。作为了解LSC爆破机理的第一步,进行了一系列研究,其中将测试序列分为几个子类别(爆破爆破压力上升,缺乏限制和长杆穿透器概念),以便按顺序进行。揭示每个因素对加速的影响。主要使用商业生产的LSC进行调查,整个测试由UMR爆炸物小组完成。

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