System for providing electrical energy to a missile and the like
    62.
    发明授权
    System for providing electrical energy to a missile and the like 失效
    向导弹等提供电能的系统

    公开(公告)号:US4577116A

    公开(公告)日:1986-03-18

    申请号:US550879

    申请日:1983-11-14

    Inventor: George T. Pinson

    CPC classification number: H02K7/1823 F01D15/10

    Abstract: A system for providing electrical energy to a missile and the like. The system including a turbine driven by a gas supply on board the missile. The turbine driving a generator thereby eliminating batteries and other electrical power sources heretofore used on missiles. The generator includes spring biased magnetic vanes forming the turbine rotor.

    Abstract translation: 用于向导弹等提供电能的系统。 该系统包括由导弹上的气体供应驱动的涡轮机。 涡轮驱动发电机,从而消除迄今用于导弹的电池和其它电力源。 发电机包括形成涡轮机转子的弹簧偏置磁性叶片。

    Digitally-controlled artificial hand
    63.
    发明授权
    Digitally-controlled artificial hand 失效
    数字控制人造手

    公开(公告)号:US4246661A

    公开(公告)日:1981-01-27

    申请号:US20575

    申请日:1979-03-15

    Inventor: George T. Pinson

    Abstract: An artificial forearm and hand having a fully-articulated wrist motion. The invention provides an integrated digitally-controlled remote manipulator device capable of reproducing all of the major motions of the human forearm, wrist and hand in a cmpact in-line package. This motion is accomplished without the requirement for feedback thereby making the invention ideally suited to digital computer control. The packaging of the device permits it to be sealed, meaning that it can be used as a remote manipulator that can reproduce human arm and hand motions. The packaging also produces a lightweight, cosmetically pleasing prosthetic device for use by humans.

    Abstract translation: 一个人造前臂和手有完全关节的手腕运动。 本发明提供了一种集成的数字控制的远程操纵器装置,其能够以cmpact在线包装再现人类前臂,手腕和手的所有主要运动。 该运动是在不需要反馈的情况下完成的,从而使得本发明理想地适用于数字计算机控制。 该装置的包装允许其被密封,这意味着它可以用作可以再现人类手臂和手部运动的远程操纵器。 该包装还生产一种轻量级,美观的假肢装置供人类使用。

    Shock suppressing apparatus and method for a rocket launcher
    64.
    发明授权
    Shock suppressing apparatus and method for a rocket launcher 失效
    用于火箭发射器的减震装置和方法

    公开(公告)号:US4203347A

    公开(公告)日:1980-05-20

    申请号:US895247

    申请日:1978-04-10

    CPC classification number: F41A1/08 F41A21/30 F41F3/0455

    Abstract: A shock suppressing device adapted to be attached to the aft end of a shoulder-fired rocket launcher. The device comprises a cylindrical housing defining a substantially enclosed expansion chamber having a diameter and cross-sectional area greater than that of the exhaust end of the launch tube. A plurality of annular baffles extend radially inwardly from the cylindrical housing and define aligned through openings through which a plug from a rocket being launched can be emitted rearwardly from the launch tube. The initial shock which follows the expulsion of the plug from the rocket is spread outwardly into the expansion chamber to engage the baffles therein. The baffles suppress the shock by absorbing a substantial portion of the energy of the shock wave, and also partially reflecting the shock wave in an upstream direction toward the launch tube. In the preferred form, the housing is made of several members which telescope together for storage, and are pulled out to an expanded position for use.

    Abstract translation: 一种适用于安装在肩膛火箭发射器的后端的减震装置。 该装置包括限定基本封闭的膨胀室的圆柱形壳体,该膨胀室的直径和横截面面积大于发射管的排气端的直径和横截面面积。 多个环形挡板从圆柱形壳体径向向内延伸并且限定对准通过开口,来自发射的火箭的塞子可以通过该开口从发射管向后发射。 随着塞子从火箭中排出的初始冲击向外扩展到膨胀室中以与挡板接合。 挡板通过吸收冲击波的大部分能量来抑制冲击,并且还将部分地反射朝向发射管的上游方向的冲击波。 在优选形式中,壳体由若干将望远镜一起存放的构件制成,并被拉出到扩展位置以供使用。

    Guidance system for missiles
    65.
    发明授权
    Guidance system for missiles 失效
    导弹指导系统

    公开(公告)号:US4168813A

    公开(公告)日:1979-09-25

    申请号:US731312

    申请日:1976-10-12

    CPC classification number: F41G7/2213

    Abstract: A missile guidance system is provided in which a sensor is pivotally mounted on the missile in a gimbal system having two degrees of freedom. The sensor is controlled during flight in such a manner that the axis of the sensor is aligned in a direction determined by the acceleration of the missile, and the sensor locates the target and determines the angle between the direction of the sensor axis and the direction of the target. Guidance information is derived from this angle for directing the missile toward the target. Compensation for gravity may be provided by means of a spring suitably arranged in the gimbal system. The sensor system may be either active or passive and may be responsive to any desired type of signal from the target.

    Abstract translation: 提供了一种导弹引导系统,其中传感器在具有两个自由度的万向节系统中枢转地安装在导弹上。 传感器在飞行过程中被控制,使得传感器的轴线在由导弹的加速度确定的方向上对准,并且传感器定位目标并且确定传感器轴线的方向与传感器轴线的方向之间的角度 目标。 指导信息是从这个角度得出的,用于指导导弹朝向目标。 重力的补偿可以通过适当布置在万向节系统中的弹簧来提供。 传感器系统可以是主动的或被动的,并且可以响应于来自目标的任何期望类型的信号。

    Non-gimbaled pointer and tracking platform assembly
    66.
    发明授权
    Non-gimbaled pointer and tracking platform assembly 失效
    非万向节指针和跟踪平台组件

    公开(公告)号:US4158845A

    公开(公告)日:1979-06-19

    申请号:US891982

    申请日:1978-03-31

    Inventor: George T. Pinson

    CPC classification number: H01Q3/10 Y10T74/18544

    Abstract: A low-cost mechanical pointing and tracking platform that does not use gimbals and to which a sensor may be attached for use in searching an area for a target located at some unknown point. This is achieved with the use of a shaft, mounted intermediate its ends in a ball and socket joint and carrying at its forward end a platform for mounting a sensor. The other end of the shaft passes through a radial slot in a first rotatable member and extends into a spiral groove in a second rotatable member coaxial with the first. By manipulating the rotation of the two members, the sensor can be made to scan a circular, conical, spiral, linear or any other fixed or programmed complex pattern, can locate a target at any point in a two-dimensional field of view and can be made to track a target once it is detected.

    Abstract translation: 一种低成本的机械指向和跟踪平台,不使用万用表,传感器可以连接到其上,用于搜索位于某个未知点的目标区域。 这是通过使用轴来实现的,轴在其端部安装在球窝接头中,并在其前端承载安装传感器的平台。 轴的另一端穿过第一可旋转构件中的径向狭槽,并延伸到与第一旋转构件同轴的第二可旋转构件中的螺旋槽中。 通过操纵两个构件的旋转,可以使传感器扫描圆形,圆锥形,螺旋形,线性或任何其他固定或编程的复合图案,可以在二维视场中的任何点定位目标,并且可以 一旦检测到目标,就可以跟踪目标。

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