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    • 37. 发明申请
    • METHODS AND APPARATUS FOR HIGH-IMPULSE FUZE BOOSTER FOR INSENSITIVE MUNITIONS
    • 用于隐性激励的高脉冲增压器的方法和装置
    • US20100294156A1
    • 2010-11-25
    • US12429811
    • 2009-04-24
    • Bryan F. BerlinKim L. Christianson
    • Bryan F. BerlinKim L. Christianson
    • C06C5/06C06B21/00
    • F42B3/22F42B1/04
    • A method for initiating a low-sensitivity explosive charge includes initiating a booster explosive charge within an explosive charge cavity in a booster housing, and generating a planar detonation wave. Generating the planar detonation wave includes directing a detonation wave through the booster housing along a first waveshaper surface of a detonation waveshaper. The detonation wave is directed around the first waveshaper surface toward a second tapered waveshaper surface. After progressing around the first waveshaper surface, the detonation wave is directed along the second tapered waveshaper surface. The detonation wave changes into a planar detonation wave as the detonation wave moves along the second tapered waveshaper surface, the planar detonation wave includes a planar wave front. The planar detonation wave strikes a flyer plate coupled over the explosive charge cavity of the booster housing, and the planar wave front makes planar contact along an inner face of the flyer plate.
    • 用于启动低灵敏度炸药的方法包括在增压器壳体内的炸药装料腔内启动助燃剂炸药,并产生平面爆震波。 产生平面爆震波包括沿着引爆波导器的第一个波形表面引导爆震波通过增压器壳体。 引爆波围绕第一波形表面朝着第二锥形波形表面引导。 在第一个波形表面前进后,引爆波沿着第二个锥形波形表面。 当爆炸波沿着第二锥形波形表面移动时,爆轰波变成平面爆震波,平面爆震波包括平面波前。 平面爆震波撞击耦合在增压器外壳的爆炸充电腔上的飞盘,平面波前沿飞盘的内表面进行平面接触。
    • 38. 发明授权
    • Bidirectional delay connector
    • 双向延迟连接器
    • US3727552A
    • 1973-04-17
    • US3727552D
    • 1971-06-04
    • DU PONT
    • ZAKHEIM H
    • F42B1/04F42B3/16
    • F42B3/16F42B1/04
    • Bidirectional delay connectors for detonating fuse having a shell containing two detonating explosive charges, each end of the shell adjacent the detonating charges adapted to receive detonating fuse, heat-sensitive charges adjacent each detonating charge and in close proximity to exothermic charges in opposite ends of a metal relay capsule. A heat conductive metallic delay element is positioned between each heat-sensitive charge and said relay capsule containing exothermic charges.
    • 用于引爆具有两个引爆炸药的外壳的保险丝的双向延迟连接器,每个壳体的每个端部与靠近引爆保险丝的引爆电荷相邻,与每个引爆电荷相邻的热敏电荷和在相邻端的放热电荷附近 金属继电器胶囊。 导热金属延迟元件位于每个热敏电荷和包含放热电荷的所述继电器胶囊之间。