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    • 2. 发明授权
    • Tank structure for holding liquid especially in a spacecraft
    • 用于保持液体的坦克结构,特别是在航天器中
    • US5520270A
    • 1996-05-28
    • US415422
    • 1995-04-03
    • Ernst HornungHuba OeryHerbert Wenz
    • Ernst HornungHuba OeryHerbert Wenz
    • B64D37/02B64G1/40F02K9/60F16F9/10
    • B64D37/02B64G1/402B64G2001/228
    • Vibrations of pipes or other components installed in a container such as a tank intended for holding liquids, are damped by surface area damping bodies, e.g. plates with through-holes that are immersed in the liquid in the container. These plates are rigidly connected to the pipes or components to be damped. The vibration damping plates are constructed of metal, for example, and the through-holes reduce the mass and advantageously affect the damping effect. The materials for making the perforated damping plates are selected to be compatible with the content of the containers, such as a fuel in a tank in a spacecraft. The surface area ratio of all cross-sectional areas of the through-holes to the total plate surface area is optimized to achieve a maximum damping effect. These perforated plates are secured to pipes, braces, filters, ducts, or other internal components of fuel tanks of land vehicles, aircraft, and spacecraft.
    • 安装在诸如用于保持液体的罐的容器中的管道或其他部件的振动由表面积阻尼体阻尼,例如, 具有浸没在容器中的液体中的通孔的板。 这些板刚性连接到要阻尼的管道或部件上。 振动阻尼板例如由金属构成,并且通孔减小质量并有利地影响阻尼效果。 用于制造穿孔阻尼板的材料被选择为与容器的内容物(例如在航天器中的罐中的燃料)相容。 通孔的所有横截面积与总板表面积的表面积比优化,以达到最大阻尼效果。 这些多孔板被固定到陆地车辆,飞机和航天器的燃料箱的管道,支架,过滤器,管道或其他内部部件。
    • 3. 发明授权
    • Apparatus for coupling cylindrical structural components to each other
    • 用于将圆柱形结构部件彼此连接的装置
    • US5411349A
    • 1995-05-02
    • US85756
    • 1993-06-30
    • Ernst HornungHuba OeryStefan HornungAndreas Rittweger
    • Ernst HornungHuba OeryStefan HornungAndreas Rittweger
    • B64G1/64F16B2/08F16L23/06F16L23/04
    • B64G1/645B64G1/641F16B2/08F16L23/06Y10T292/212Y10T403/648
    • Cylindrical bodies of structural components, such as a spacecraft and a rocket section or two rocket sections, are coupled to each other by a releasable coupling device. The structural components have radially protruding flanges that face each other and are encircled by the coupling device. The coupling device includes a flexible tensioning element, such as a steel belt or link chain, the ends of which are interconnected by a clamping or locking device. The clamping or locking device is constructed as a two-armed lever, one end of which is connected to each of the ends of the tensioning element. The two-armed lever is rotatably supported and driven by an operating member such as a pipe section or rod. The two-armed lever is thus rotatable through an angle of about 180.degree. so that the ends of the tensioning element are brought into overlapping positions. When the ends are in such overlapping positions the device is locked. Rotation of the two-armed lever into the opposite direction unlocks the device.
    • 诸如航天器和火箭部分或两个火箭部分的结构部件的圆柱体通过可释放的联接装置彼此联接。 结构部件具有径向突出的凸缘,其彼此面对并且被联接装置环绕。 联接装置包括柔性张紧元件,例如钢带或连杆链,其端部通过夹紧或锁定装置相互连接。 夹紧或锁定装置被构造为双臂,其一端连接到张紧元件的每个端部。 双臂杠杆由诸如管段或杆的操作构件可旋转地支撑和驱动。 双臂杠杆因此可旋转大约180度的角度,使得张紧元件的端部处于重叠位置。 当端部处于这样的重叠位置时,装置被锁定。 双臂杆向相反方向旋转可解锁设备。