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High speed velocity measurements on an EFI-system

机译:在EFI系统上进行高速速度测量

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For the development of an Exploding Foil Initiator for Insensitive Munitions applications the following topics are of interest: the electrical circuit, the exploding foil, the velocity of the flyer, the driver explosive, the secondary flyer and the acceptor explosive. Several parameters of the EFI have influences on the velocity of the flyer. To investigate these parameters a Fabry-Perot Velocity Interferometer System (F-PVIS) has been used. The light to and from the flyer is transported by a multimode fibre terminated with a GRIN-lens. By this method the velocity of very tiny objects (0.1 mm), can be measured. The velocity of flyer can be recorded with nanosecond resolution, depending on the Fabry-Perot etalon and the streak camera. With this equipment the influence of the dimensions of the exploding foil and the flyer on the velocity and the acceleration of the flyer are investigated. Also the integrity of the flyer during flight can be analyzed. To characterize the explosive material, to be used as driver explosive in EFI's, the initiation behaviour of the explosive has been investigated by taking pictures of the explosion with a high speed framing and streak camera. From these pictures the initiation distance and the detonation behaviour of the explosive has been analyzed. Normally, the driver explosive initiates the acceptor explosive (booster) by direct contact. This booster explosive is embedded in the main charge of the munitions. The combination of initiator, booster explosive and main charge explosive is called the detonation train. In this research the possibility of initiation of the booster by an intermediate flyer is investigated. This secondary flyer can be made of different materials, like aluminium, steel and polyester with different sizes. With the aid of the F-PVIS the acceleration of the secondary flyer is investigated. This reveals the influence of the thickness and density of the flyer on the acceleration and final velocity. Under certain circumstances the flyer breaks up in several parts and several velocities at the same time have been recorded. Several flyer materials and dimensions exist that are able to initiate very insensitive explosives like TATB.
机译:为了开发用于不敏感弹药的爆炸箔引发剂,需要关注以下主题:电路,爆炸箔,飞行器的速度,驾驶员炸药,辅助飞行器和受体爆炸。 EFI的几个参数会影响传单的速度。为了研究这些参数,使用了法布里-珀罗速度干涉仪系统(F-PVIS)。往返飞行物的光由端接GRIN透镜的多模光纤传输。通过这种方法,可以测量非常小的物体(0.1毫米)的速度。可以以纳秒分辨率记录飞行器的速度,具体取决于Fabry-Perot标准具和条纹相机。利用该设备,研究了爆炸箔和翼片的尺寸对翼片的速度和加速度的影响。还可以分析飞行期间传单的完整性。为了表征爆炸材料,以用作EFI中的驱动炸药,已通过使用高速取景和连拍照相机对爆炸照片进行了研究,从而研究了爆炸的起爆行为。从这些图片中,已经分析了炸药的起爆距离和爆炸行为。通常,驾驶员炸药通过直接接触来引发受体炸药(助推器)。这种增强炸药被嵌入弹药的主要炸药中。起爆药,助推炸药和主装药炸药的组合称为爆轰列车。在这项研究中,研究了由中间飞行器引发助推器的可能性。该辅助传单可以由不同材料制成,例如铝,钢和尺寸不同的聚酯。借助F-PVIS,研究了副翼的加速情况。这揭示了传单的厚度和密度对加速度和最终速度的影响。在某些情况下,传单会分成几个部分,并且同时记录了多个速度。存在几种传单材料和尺寸,它们能够引发非常不敏感的爆炸物,例如TATB。

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