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    • 35. 发明申请
    • Apparatus and method for gyroscopic propulsion
    • 陀螺仪推进装置及方法
    • US20050178221A1
    • 2005-08-18
    • US10770795
    • 2004-02-03
    • Raymond Tippett
    • Raymond Tippett
    • F03G3/00G01C19/06
    • F03G3/00Y10T74/1218Y10T74/1221Y10T74/1225Y10T74/1229Y10T74/125
    • The present invention is a combination of three interconnected gyroscopic ring-like rotating masses, with each of the three ring-like masses being configured to rotate in various planes, depending on the desired orientation. Regardless of the orientation of the three rings, each of the three interconnected rotating masses will share substantially the same center of gravity and generate a separate yet interactive kinetic energy and angular momentum in each of the three planes, thereby providing resistance to rotational forces from external sources. This is known as “equal force presence.” Additionally, a series of pedestal supports for supporting the three ring-like masses is disclosed.
    • 本发明是三个互连的陀螺仪环状旋转质量块的组合,三个环状质量块中的每一个被构造成根据期望的取向在各种平面中旋转。 不管三个环的取向如何,三个相互连接的旋转质量块中的每一个将共享基本上相同的重心并在三个平面中的每一个中产生单独但交互的动能和角动量,从而提供对来自外部的旋转力的抵抗力 来源。 这被称为“同等力量存在”。 另外,公开了用于支撑三个环形块的一系列基座支撑件。
    • 36. 发明授权
    • Shaftless gyrostabilizer for aerial platforms
    • 用于高空作业车的无轴陀螺稳定器
    • US06907800B1
    • 2005-06-21
    • US10446009
    • 2003-05-26
    • William E. Inman
    • William E. Inman
    • B64G1/28G01C19/02G01C19/30G01C19/54
    • B64G1/285B64G1/28B64G1/286Y10T74/1221Y10T74/1229Y10T74/125Y10T74/1296
    • Gyrostabilizer methods and apparatus having simultaneously counter-revolving masses that do not require physical shafts or axles. The stabilizer can have dual counter-revolving concentric rings, or tracks filled with weights such as spherical balls, that are propelled in orbital fashion by fluid pressure or electromagnet propulsion. The rings can include rigid contiguous rings, such as metal, plastic, composites, and the like. Additionally, the rings can include liquids and/or gasses. Still furthermore, the rings can include flexible, bendable contiguous materials, such as chains and ropes. The concentric ring diameters can be a few inches to more than ten (10) feet. Without an axle or shaft the weight of the gyrostabilizer is shifted to the perimeter where most of the momentum is generated at a fraction of the weight of gyrostabilizers that spin on an axle. The gyrostabilizer can dampen unsteadiness such as tremors, vibrations, sway, pitch, roll, and yaw.
    • 具有同时具有不需要物理轴或轴的反向旋转质量的Gyrostabilizer方法和装置。 稳定器可以具有双重反向旋转的同心环或充满重量(例如球形球)的轨道,其通过流体压力或电磁推进以轨道方式推进。 环可以包括刚性连续的环,例如金属,塑料,复合材料等。 另外,环可以包括液体和/或气体。 此外,环可以包括柔性的,可弯曲的连续材料,例如链条和绳索。 同心环直径可以是几英寸到十(10)英尺。 在没有轴或轴的情况下,陀螺稳定器的重量被转移到周边,其中大部分动量是在旋转轴上的陀螺仪的重量的一部分产生的。 陀螺稳定器可以抑制震动,振动,摇摆,俯仰,滚动和偏航等不稳定性。
    • 37. 发明申请
    • Radially actuated control moment gyroscope
    • US20040035229A1
    • 2004-02-26
    • US10227218
    • 2002-08-22
    • Marc E. Meffe
    • G01C019/28
    • B64G1/286Y10T74/125Y10T74/1254Y10T74/1261Y10T74/1264
    • The present invention provides a control moment gyroscope that overcomes many of the limitations of the prior art. The control moment gyroscope provides a radial actuator mechanism to provide rotation to an inner gimbal assembly around a gimbal axis. The radial actuator mechanism comprises a circular ring at the midpoint of the gimbal axis, the circular ring extending around the outer periphery of the inner gimbal assembly housing. The radial actuator mechanism rotates the inner gimbal assembly around the gimbal axis through the use of a non-contact motor that provides rotational force directly to the outer perimeter of the inner gimbal assembly. Because the inner gimbal assembly is rotated from the midpoint of the gimbal axis, a torque module assembly at the end of the gimbal axis is not required. Thus, the overall length of the control moment gyroscope can be reduced. Additionally, the cost and life limiting attributes of the torque module assembly can be eliminated, and the operational bandwidth of the gyroscope increased. Finally, because the inner gimbal assembly is rotated from the outer perimeter, the torque provided to the inner gimbal assembly is naturally increased by the leverage arm of the inner gimbal assembly.
    • 38. 发明申请
    • Apparatus and method for gyroscopic propulsion
    • 陀螺仪推进装置及方法
    • US20030019309A1
    • 2003-01-30
    • US10087430
    • 2002-03-01
    • Raymond Kelly Tippett
    • G01C019/02
    • F03G3/00Y10T74/1221Y10T74/1225Y10T74/125Y10T74/1279
    • According to the preferred embodiments of the present invention, an apparatus and method for creating directional movement using the natural forces of rotational energy in a gravitational field is disclosed. The present invention is a combination of three interconnected gyroscopic ring-like rotating masses, with each of the three ring-like masses rotating in a separate plane. Each of the three interconnected rotating masses will share substantially the same center of gravity and generate a separate yet interactive kinetic energy and angular momentum in each of the three planes, thereby providing resistance to rotational forces from external sources. At high enough levels of angular momentum, outside cosmic forces, including the gravitational force of the environment, will cause the interconnected rotating masses to seek equilibrium by moving away from the strength of the gravitational force.
    • 根据本发明的优选实施例,公开了一种在重力场中使用旋转能量的自然力产生定向运动的装置和方法。 本发明是三个互连的陀螺仪环形旋转质量块的组合,三个环状质量块中的每一个在独立的平面中旋转。 三个相互连接的旋转质量块中的每一个将共享基本上相同的重心并在三个平面中的每一个中产生单独但交互的动能和角动量,由此提供对来自外部源的旋转力的抵抗力。 在足够高的角动量水平下,包括环境的重力在内的宇宙力将导致互连的旋转质量块通过远离重力的强度来寻求平衡。