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    • 3. 发明授权
    • Weapon control system
    • 武器控制系统
    • US4558627A
    • 1985-12-17
    • US655262
    • 1984-09-27
    • James C. LeBlancRichard S. LeBlanc
    • James C. LeBlancRichard S. LeBlanc
    • F41A27/26F41G5/02
    • F41A27/26
    • The disclosure relates to an electronic and hydraulic control system to provide variable speed capability for moving a weapon system carried on an armored vehicle. A weapon system is mounted on a turret assembly for movement in the azimuth and elevation directions. Hydraulic motors and piston-cylinder arrangements actuated by a variable electronic control system are employed to drive the weapon system. Through the desired path the control system permits the weapon system to be driven in two ranges, a normal range which is variable and a high speed range which is constant to provide quick motion to a target when needed.
    • 本公开涉及一种电子和液压控制系统,以提供用于移动装甲车辆上携带的武器系统的可变速度能力。 武器系统安装在转塔组件上,用于在方位角和高度方向上移动。 采用由可变电子控制系统驱动的液压马达和活塞缸装置来驱动武器系统。 通过所需的路径,控制系统允许武器系统在两个范围内被驱动,该范围是可变的正常范围和恒定的高速范围,以在需要时向目标提供快速运动。
    • 5. 发明授权
    • Quick-response drive mechanism for controlling the movement of an object relative to a support
    • 用于控制物体相对于支撑件运动的快速响应驱动机构
    • US07798050B2
    • 2010-09-21
    • US11977535
    • 2007-10-24
    • Roger Sembtner
    • Roger Sembtner
    • F41G5/02
    • F41A27/06F41A27/22F41A27/24F41A27/28
    • An improved drive mechanism (100) adapted to be mounted on a support for controllably moving a first output shaft (16) about either or both of two orthogonal axes (T, E). The drive mechanism has a stationary lower portion adapted to be mounted on the support and having a movable upper portion mounted for movement relative to the stationary portion. The improved drive mechanism broadly includes: a first power train (10, 12, 2, 4, 14) for controllably rotating a first gear (6); a second power train (9, 11, 1, 3,13) for controllably rotating a second gear (5); and a third gear (7) connected to the first output shaft and meshing with at least one of the first and second gears. The first, second and third gears form a portion of a differential-like mechanism (18) mechanically coupling the first and second power trains to the first output shaft. The first and second power trains may be selectively operated to controllably and cooperatively move the first output shaft to a desired position relative to the support.
    • 改进的驱动机构(100)适于安装在支撑件上,以可控地移动围绕两个正交轴(T,E)中的一个或两个的第一输出轴(16)。 驱动机构具有适于安装在支撑件上的固定下部,并具有安装成相对于静止部分运动的可移动上部。 改进的驱动机构广泛地包括:用于可控地旋转第一齿轮(6)的第一动力传动系(10,12,2,4,14)。 用于可控地旋转第二齿轮(5)的第二动力传动系(9,11,13,13)。 以及连接到第一输出轴并与第一和第二齿轮中的至少一个啮合的第三齿轮(7)。 第一,第二和第三齿轮形成将第一和第二动力传动系统机械联接到第一输出轴的差速式机构(18)的一部分。 可以选择性地操作第一和第二动力传动系以可控地和协同地将第一输出轴移动到相对于支撑件的期望位置。
    • 9. 发明申请
    • CARTRIDGE BASED MODULAR TURRET CONTROL SYSTEM
    • 基于CARTRIDGE的模块化电流控制系统
    • US20160169628A1
    • 2016-06-16
    • US15055384
    • 2016-02-26
    • NPC Robotics Corporation
    • Norman L. DomholtRichard ReidJohn DavidTyler Andrew JacobsonMichael Richmon Thoreson
    • F41G5/02
    • F41G5/02F41A27/20Y10T29/49947Y10T74/19Y10T74/19051
    • Apparatus and associated methods relate to a modular cartridge turret assembly system for quickly exchanging modular cartridges to interact with a ring gear. A modular cartridge may be a brake cartridge, which when inserted into a modular cartridge turret assembly, operably engages with the ring gear to inhibit the rotation of a turret. In an illustrative example, the brake cartridge, when inserted, may prevent damages and injuries caused by the rotation of the turret during transportation. In an exemplary embodiment, the modular cartridge turret assembly system may include a locking mechanism to secure the modular cartridge within the modular cartridge turret assembly. The locking mechanism may safeguard that the brake cartridge remains within the modular cartridge turret assembly system during turbulent situations caused by environmental conditions.
    • 装置和相关联的方法涉及用于快速交换模块化盒与环形齿轮相互作用的模块化盒式转塔组件系统。 模块化卡座可以是制动盒,当插入到模块化墨盒转塔组件中时,可操作地与环形齿轮啮合以阻止转台旋转。 在说明性的示例中,当插入时,制动筒可以防止在运输期间由于转塔的旋转而造成的损坏和损伤。 在示例性实施例中,模块化墨盒转塔组件系统可以包括锁定机构,以将模块化墨盒固定在模块化墨盒转塔组件内。 锁定机构可以保护在由环境条件引起的湍流状态期间制动筒保持在模块化的盒式转塔组件系统内。