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    • 1. 发明申请
    • RAMMING SYSTEM
    • 拉伸系统
    • WO1996012153A1
    • 1996-04-25
    • PCT/SE1995001180
    • 1995-10-13
    • BOFORS ABANDERSSON, PärHALLQVIST, Sten
    • BOFORS AB
    • F41A09/37
    • F41A9/42F41A9/375
    • The present invention relates to a method and a device for ramming shells (7) and propellant charges (20) in artillery guns (1-5) of the type which are loaded with non-cartridged ammunition, i.e. those in which the shell (7) and propellant charge (20) are rammed separately. The invention is based on the use of a pair of cooperating flick rammers, one of which (12, 44) is intended for ramming the shells (7), and the other (38, 45) for ramming the propellant charges. For the necessary alignment of the rammers to be sufficiently exact, they are mounted in a frame (47) which forms part of the gun elevation system and in which they can be displaced sideways from each of their outermost positions on either side of the gun. When the rammers are situated in their respective outermost positions, in which they are also supplied with new shells and propellant charges, respectively, by means of members which do not form part of the present invention, the gun recoil system can pass between them.
    • 本发明涉及一种用于捣毁炮弹(5)中的炮弹(7)和推进剂装药(20)的方法和装置,其中装有非弹药的炮弹(1-5),其中炮弹(7) )和推进剂装料(20)分别被撞击。 本发明是基于使用一对协作的轻击夯锤,其中一个(12,44)用于夯实炮弹(7),而另一个(38,45)用于夯实推进剂装料。 为了使夯锤的必要对准足够精确,它们被安装在形成枪升降系统的一部分的框架(47)中,并且在该框架(47)中,它们可以从枪的两侧的最外侧的位置侧向移开。 当夯锤位于它们各自的最外部位置时,分别通过不构成本发明一部分的构件分别提供新的壳和推进剂装料,枪后坐系统可以在它们之间通过。
    • 2. 发明申请
    • AUTOMATIC FIRE ARM
    • 自动灭火器
    • WO1991003698A1
    • 1991-03-21
    • PCT/EP1990001374
    • 1990-08-20
    • ACHTERHOLT, Rainer
    • F41A09/37
    • F41A9/375F41A9/26
    • An automatic fire arm has a tube (12) rigidly mounted in a housing (10) which has a rotationally symmetrical recess (11) perpendicular to the axis of the tube. A disk-shaped cartridge chamber housing (20) containing at least one cartridge chamber (25) is rotatably mounted in the recess. The cartridge chamber can be brought continuously into a firing position (S) as well as into a loading position (L) by forced, intermittent, rotational movement in the same direction of the cartridge chamber housing (20) about its axis of rotation (21). To ensure simpler, gentler and faster introduction of the components (3 and 4) of a caseless munition, which can be handled separately, into the cartridge chamber (25), the latter is essentially T-shaped and has a first, radial bore (26) for receiving a projectile body (3) as well as a second bore (27) essentially perpendicular to the first for receiving a propellant charge body (4).