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The development of a laser detonator system

机译:激光雷管系统的发展

摘要

Laser detonators offer several advantages over traditional electrical detonators, such as exploding bridgewire and slapper detonators, in terms of both safety and performance. Laser detonators remove the electrical conduction path to the energetic material, providing immunity from threats such as electrostatic discharge and lightning. A larger separation between the initiating energy source and the explosive devices is possible, up to several tens of metres, compared to a few metres for electrical slapper detonators.A laser detonator system has been developed, with laser-driven flyer plates used to shock initiate the explosive. All aspects of the system, including coupling into an optical fibre, used to transmit the laser energy to the detonator, the optical fibre, theflyer plate launch and acceleration and subsquent shock into the explosive, and the explosive initiation have been investigated, with an understanding of the underlying principles and processes developed. Shock initiation of two secondary explosives, hexanitrostilbene and pentaerythritol tetranitrate, has been studied at extremely high shock pressures, comparable to the detonation pressure, and the critical energy fluence required for initiation established.The laser detonator system is robust and optimised, with design tools developed to enable efficient design of future system
机译:激光雷管在安全性和性能方面都比传统的电雷管具有多个优势,例如,爆炸的桥丝和拍击式雷管。激光雷管消除了通往高能材料的导电路径,从而可抵抗静电放电和雷电等威胁。与电扇雷管的几米相比,起爆能量源与爆炸装置之间的距离可能更大,可达几十米。激光雷管系统已经开发出来,其激光驱动的飞片用于激波起爆爆炸物。对该系统的各个方面,包括耦合到光纤中的用于将激光能量传输到雷管,光纤,飞行器板的发射和加速以及随后进入炸药的冲击以及炸药的起爆进行了研究,并了解到制定的基本原则和流程。已经研究了两种二次炸药六硝基comparable和季戊四醇四硝酸盐的冲击起爆,其爆震压力与爆炸压力相当,并且建立起爆所需的临界能量通量。激光起爆器系统坚固且经过优化,并开发了设计工具实现未来系统的高效设计

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  • 作者

    Bowden M;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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