Abstract:
A delinker (150) for a firearm may feature a modular delinker shaft (152) such that individual components may be replaced when they fail, rather than replacing a whole shaft. Push rods (164) may be keyed to guides (162) to counter centrifugal, inertial, force. Lock rods (170) may be used to accomplish the keyed interaction. Firing bolts may also utilize the keyed construction.
Abstract:
본 실시예의 탄약 모니터링 장치는 적어도 한 물체-위치 검출 센서 및 제어기를 포함한다. 적어도 한 물체-위치 검출 센서는, 포탄 또는 장약의 이동 경로상에서의 적어도 한 설정 영역을 향하여 설치되어, 적어도 한 설정 영역에서의 포탄 또는 장약의 위치 정보를 발생시킨다. 제어기는, 적어도 한 물체-위치 검출 센서로부터의 위치 정보에 따라, 적어도 한 설정 영역에서 포탄 또는 장약이 차지하는 위치 범위가 허용 위치 범위를 벗어났는지의 여부를 판단하고, 적어도 한 설정 영역에서 포탄 또는 장약이 차지하는 위치 범위가 허용 위치 범위를 벗어났으면 자세 불량의 경보 신호를 발생시킨다.
Abstract:
본 발명은 복합장전장치 및 복합장전방법을 개시한다. 본 발명은, 포탄이 삽입되는 제1 하우징, 상기 제1 하우징에 연결되고 장약이 삽입되는 제2 하우징, 상기 포탄 또는 상기 장약이 안착되어 선형 운동하도록 상기 제1 하우징에 배치되는 제1 지지대, 및 상기 제1 하우징 내부에 배치되며, 상기 제1 지지대와 연결되어 상기 포탄이 안착된 상기 제1 지지대를 운동시키는 구동부를 포함하는 복합장전장치에 대한 것이다.
Abstract translation:< p num =“0000”>本发明公开了一种复杂的加载装置和复杂的加载方法。 本发明中,连接到所述第一壳体,所述第一壳体外壳被插入和第二壳体,其电荷,被插入所述壳或设置在第一壳体为直线运动的第一支承件的电荷被安装,并 驱动单元设置在第一壳体中并连接到第一支撑件以移动安装有壳体的第一支撑件。
Abstract:
A system and method for selectively transferring storable units (10), particularly artillery propellant charge units, between a storage space (18) and a location outside of the storage space, the system including a storage magazine (12) having a plurality of parallel, axially elongated chambers (20) opening at an end of the storage magazine, a shuttle (14) having a transfer mechanism tube (50) movable relative to the storage magazine between positions of axial alignment with each of the plurality of elongated chambers and the location outside of the storage space, and a feed mechanism to move the units between the transfer tube (50) and the elongated chambers (20). Where the elongated chambers (20) are respectively centered on Z axes with open ends (18) presented at intersecting X and Y axes perpendicular to the Z axes, the shuttle (14) is translatable in an X direction and supports the transfer tube (50) on a Z-axis for movement in a Y direction relative to the storage magazine so that a combination of shuttle translation on the X axis and movement of the transfer tube on the Y axis positions the transfer tube in axial alignment with the respective open ends of each of the plurality of cylindrical tubes. The feed mechanism moves the charge units in the Z direction between the respective elongated chambers (20) and the transfer tube (50). A conveyor aligned with a Z axis delivers charge units to and from the storage magazine and is positioned for transfer of charge units to and from the shuttle mounted transfer tube (50).
Abstract:
There is provided an automatic firing apparatus (200), and a method for operating the automatic firing apparatus (200), the apparatus comprising a trigger actuator for automatically firing bullets contained in a magazine (5) of a firearm (322); a magazine release actuator for releasing an empty magazine (5) from the firearm (322); a magazine bank (210) for storing a bullet magazine (5) inside the firearm (322); and a magazine loading actuator (10) for loading a new magazine (5) inside the firearm (322) from the magazine bank (210). There is further provided a magazine bank apparatus (33) for use with a firearm (322) comprising a magazine bank base (202) having a plurality of slots adapted to receive and store bullet magazines (5); and a magazine load actuator (70) adapted to be automatically triggered for loading a bullet magazine (5) among the stored bullet magazines (5) inside the firearm (322).
Abstract:
Waffenstation (6) mit einer auf einem Lafettensockel (7) angeordneten Waffenlafette (8) mit einem in Azimutrichtung drehbaren Seitenrichtteil (9), und mit einer in dem Lafettensockel (7) angeordneten, mit dem Seitenrichtteil (9) drehgekoppelten Betriebsmittelaufnahme (10) zur Aufnahme eines Betriebsmittels (11) für die Waffenstation (6).
Abstract:
Dispositivo contador (11) electrónico de disparos realizados por un arma de fuego; que comprende un sensor (12) de impulsos que está conectado eléctricamente a un procesador (13) de señal que, a su vez, está conectado eléctricamente a un almacenador (14) de datos.
Abstract:
The present invention relates to a method and a device for handling artillery shells (14-16) when loading artillery guns (1) that have an integral shell magazine (9) fixed in the traverse system but independent from the elevating mass, which magazine on command feeds out shells (14-16) one by one with a specific linear velocity in the longitudinal axis of each shell. Each shell is subsequently transferred to the loading position for the gun by a loading pendulum (13) and cradle (6). The basic idea behind the present invention is that the outfeed velocity of the shells (14-16) from the magazine (9) shall be braked to zero in a brake module (12) mounted on the gun while they lie in a shell carrier (17, 18) mounted on the loading pendulum (13). Immediately after the linear velocity of the shell has been braked to zero and its rear plane has been reversed to a pre-defined position the shell carrier (17, 18) takes over the handling of the shell and re-angles it to coincide with the angle of elevation of the gun, and transfers the shell to a laterally displaceable shell loading cradle (6).
Abstract:
A light-weight firearm and related fabrication method are described for a wear resistant feed ramp for chambering cartridges from an ammunition magazine. In one embodiment, the firearm includes a barrel and a frame defining a magazine well and cartridge feed ramp. A wear insert formed of a different material than the frame is implanted in the feed ramp adjacent to the barrel chamber. The wear insert is then machined in situ to shape forming an obliquely angled wear surface. After machining, both the frame and implanted wear insert undergo a surface hardening process together. The surface hardened wear insert has a greater surface hardness than the surface hardened frame and is better adapted to resist wear after repeated chambering of rounds. In one non-limiting example, the frame may be hard anodized aluminum and the wear insert hard anodized titanium.