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    • 2. 发明授权
    • Method of installing side-wall beam for guideway for magnetic levitation
vehicle
    • 安装用于磁悬浮车辆导轨的侧壁梁的方法
    • US5218800A
    • 1993-06-15
    • US813780
    • 1991-12-27
    • Hajime WakuiSeiichi TottoriNobuyuki MatsumotoTadatomo WatanabeIkuo ShimodaShuichi Nagata
    • Hajime WakuiSeiichi TottoriNobuyuki MatsumotoTadatomo WatanabeIkuo ShimodaShuichi Nagata
    • E01B25/30
    • E01B25/305
    • A side-wall beam is installed on a base for a guideway for a magnetic levitation vehicle. An elastic body is interposed between the side-wall beam and the base. Then, the side-wall beam is fastened to the base with a tendon on an imaginary line which extends through an intermediate portion of the elastic body in the transverse direction of the side-wall beam and which extends along the longitudinal direction of the side-wall beam. The elastic body is thereby held under compression between the side-wall beam and the base. The side-wall beam is supported on the base through the elastic body, and also fastened to the base, holding the elastic body under compression between the side-wall beam and the base. Reactive forces produced by the compression of the elastic body act to resist forces tending to cause the side-wall beam to fall over. Any displacement of the side-wall beam which may be caused by forces generated when the magnetic levitation vehicle passes can thereby be kept within a predetermined range.
    • 侧壁梁安装在用于磁悬浮车辆导轨的基座上。 弹性体插入在侧壁梁和底座之间。 然后,侧壁梁通过假想线上的腱紧固到基部,该假想线在侧壁梁的横向延伸穿过弹性体的中间部分,并且沿着侧壁梁的纵向方向延伸, 墙梁。 因此,弹性体在侧壁梁和底座之间保持压缩。 侧壁梁通过弹性体支撑在基座上,并且还固定到基座上,将弹性体在侧壁梁和基座之间保持压缩。 通过弹性体的压缩产生的反作用力抵抗倾向于使侧壁梁掉落的力。 可能由磁悬浮车辆通过时产生的力引起的侧壁梁的任何位移都可以保持在预定范围内。