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    • 6. 发明公开
    • A SUBCALIBRE KINETIC ENERGY PROJECTILE
    • 次级动能能量项目
    • EP1297291A1
    • 2003-04-02
    • EP01944032.0
    • 2001-06-20
    • Bofors Defence AB
    • RÖNN, Torsten
    • F42B5/38
    • F42B12/06
    • The present invention relates to a segmented subcalibre projectile (1) subdivisible into a number of separate segments contiguous with each other at least initially to form an integral projectile of united segments or submunitions (5). The advantage with this subcalibre projectile is that since the segments or submunitions (5) are arranged sequentially after each other, each one comprises an explosive charge (7) initiatable by a very powerful shock and encased in an outer casing (6) of hard material such that the projectile in integral form can be used directly against heavy armour, and by means of dispersion of the various segments can also be used against aircraft.
    • 本发明涉及一种分段的亚平面射弹(1),其可分成许多彼此邻接的单独的节段,至少在开始时形成一个整体的联合节段或子弹药(5)的射弹。 这种亚级别弹丸的优点在于,由于分段或子弹药(5)彼此相继排列,所以每个弹药包含爆炸炸药(7),该爆炸炸药可通过非常强大的震动启动,并装入硬质材料的外壳(6) 使得整体形式的射弹可以直接用于对付重型装甲,并且通过各种分散的方式也可以用于对付飞机。
    • 8. 发明授权
    • PROGRAMMABLE BARREL WEAPON
    • 武器有装置运行烧写炮弹引信
    • EP0894237B1
    • 2001-12-12
    • EP97918453.8
    • 1997-04-11
    • Bofors Defence AB
    • LARSSON, RolfJOHANSSON, NilsFOHRMAN, ErikHAGSTRÖM, BjörnJERN, Sven-Ake
    • F42C17/04
    • F42C17/04
    • The present invention relates to a shell-firing barrel weapon which fires shells (3) provided with programmable electronic fuses (7) and in which the fuses (7) are programmed inside the cartridge chamber (12) of the weapon. Since the barrel (11) of the weapon is presupposed to be made of steel, the programming pulses are transmitted to the fuses (7) via one or more contact pins (13) which are let into the barrel (11) and are electrically insulated in relation to this and which are arranged in such a manner that, when the shells (3) are rammed home in the cartridge chamber (12) of the weapon, the pins come into contact with an electrically conductive contact band (9) which is let into the respective shell and has an external diameter which is slightly smaller than the internal diameter of the barrel and therefore does not come into contact with the inside of the barrel. Said contact band (9) is then in turn electrically insulated in relation to the main part (5) of the shell (3). The feedback of the programming pulses then takes place via the main part (5) of the shell body to the barrel (11) and back to the programming device (17) concerned.