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    • 1. 发明申请
    • APPARATUS, SYSTEMS AND METHODS FOR LEVITATING AND MOVING OBJECTS
    • 装置,系统和方法,用于检测和移动物体
    • WO2003091132A2
    • 2003-11-06
    • PCT/US2003/012842
    • 2003-04-22
    • MAGNA FORCE, INC.LAMB, Karl, J.SPARKS, Michael, T.GOSSAGE, Scott, D.
    • LAMB, Karl, J.SPARKS, Michael, T.GOSSAGE, Scott, D.
    • B65G
    • B61B13/08B60L13/04B60L2200/26B60M7/00H02K49/046
    • Apparatus, systems and methods for levitating and moving objects such as vehicles, doors and windows are shown and described herein. The embodiments incorporate a track with lower rails having lower permanent magnets and the object with upper rails having upper permanent magnets aligned with the lower rails and oriented to oppose the polarity of the lower permanent magnets. Ferrous backing plates may be incorporated behind the lower rails and/or the upper rails. Embodiments may also incorporate a third rail of an electroconductive material, and a driving disc positioned near the third rail. Permanent magnets in the driving disc may be rotated with the driving disc in the presence of the third rail to accelerate the upper rails with respects to the lower rails. The driving disc may be coupled one of the lower rails to maintain a desired alignment with the third rail.
    • 本文显示和描述用于悬浮和移动诸如车辆,门和窗的物体的装置,系统和方法。 实施例包括具有下轨道的轨道,下轨道具有下永磁体,并且具有上轨道的物体具有与下轨道对准的上永磁体并且被定向成与下永磁体的极性相对。 黑色背板可以结合在下轨道和/或上轨道的后面。 实施例还可以包括导电材料的第三导轨和位于第三导轨附近的驱动盘。 驱动盘中的永磁体可在第三导轨存在的情况下与驱动盘一起旋转,以相对于下导轨加速上导轨。 驱动盘可以联接下轨道中的一个以保持与第三轨道的期望对准。
    • 7. 发明申请
    • MAGNETIC CENTRIFUGAL CLUTCH
    • 磁力离心机
    • WO1997034360A1
    • 1997-09-18
    • PCT/US1997003950
    • 1997-03-13
    • MAGNA FORCE, INC.
    • MAGNA FORCE, INC.LAMB, Karl, J.
    • H02K49/04
    • H02K49/046
    • A magnetic coupling device has an electroconductive rotor (15) presenting a band (16, 17) of electroconductive material and has a magnet rotor (14) with permanent magnets (26) which are slide-mounted to move radially outward responsive to centrifugal force in opposition to a spring (40) bias. When the magnet rotor is stationary the magnets are radially inward of the orbit of the electroconductive band, and when the magnets have moved outwardly when the magnet rotor is rotating, the magnets are spaced by an air gap from the electroconductive band so that eddy currents are induced in the band resulting in coupling of the rotors. The electroconductive rotor preferably has two such bands (16, 17) positioned on opposite sides of the magnet rotor. The rotors may have sheaves mounted thereon.
    • 磁耦合装置具有呈导电材料带(16,17)的导电转子(15),并具有带有永磁体(26)的磁转子(14),所述永磁体被滑动安装以响应离心力径向向外移动 反对春天(40)的偏见。 当磁体转子静止时,磁体位于导电带的轨道的径向内侧,当磁体转子转动时磁体向外移动时,磁体与导电带间隔开气隙,使得涡流为 在带内引起,导致转子的耦合。 导电转子优选地具有位于磁体转子的相对侧上的两个这样的带状物(16,17)。 转子可以具有安装在其上的滑轮。