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    • 25. 发明申请
    • ELECTROMAGNETIC TRANSFER SYSTEM
    • 电磁传输系统
    • US20140083817A1
    • 2014-03-27
    • US14115406
    • 2012-03-19
    • Heinrich van de LoechtMartin Reinisch
    • Heinrich van de LoechtMartin Reinisch
    • B65G47/31
    • B65G47/31B65G19/265B65G47/841B65G54/02
    • The invention relates to an electromagnetic transfer system (100) having a preferably closed carrier path (20), along which a multiplicity of individually activatable induction coils (25) are arranged, and having conveying elements (30, 30a to 30e), which are arranged in a movable manner on the carrier path (20) and each have a driver element (38), which serves for conveying in each case at least one article (1) from a first conveying arrangement (11), along a conveying route (18) in the region of the transfer system (100), into a second conveying arrangement (12) arranged downstream, wherein the driver elements (38) are in abutting contact with the at least one article (1) at least along the conveying route (18), and wherein the conveying element (30, 30a to 30e) has, as drive element, at least one permanent-magnet element (31) arranged in operative connection with the induction coils (25). According to the invention, it is provided that the driver element (38) is arranged on the conveying element (30, 30a to 30e) such that it can be moved, in particular pivoted, in order to be brought into abutting contact with, and removed from abutting contact with, the at least one article (1), wherein the driver element (38) is moved by at least one actuating element (43, 44) arranged at a fixed location on the carrier path (20).
    • 本发明涉及一种具有优选封闭的载体路径(20)的电磁转移系统(100),沿着该电磁转移系统布置多个独立可激活的感应线圈(25),并具有输送元件(30,30a至30e) 以可移动的方式布置在所述载体路径(20)上,并且每个都具有驱动元件(38),所述驱动元件用于沿着输送路径(第一输送装置)从第一输送装置(11)输送至少一个物品(1) 在传送系统(100)的区域中,至少布置在下游的第二输送装置(12)中,驱动元件(38)至少沿输送路径与所述至少一个物品(1)抵接 (18),并且其中所述输送元件(30,30a至30e)具有作为驱动元件的至少一个与感应线圈(25)可操作地连接的永磁体元件(31)。 根据本发明,提供了驱动元件(38)布置在输送元件(30,30a至30e)上,使得其可以被移动,特别是枢转,以便与其抵接接触,并且 与所述至少一个物品(1)邻接接触,其中所述驱动元件(38)由布置在所述载体路径(20)上的固定位置处的至少一个致动元件(43,44)移动。
    • 29. 发明授权
    • Conveying system
    • 输送系统
    • US06669011B2
    • 2003-12-30
    • US10151420
    • 2002-05-17
    • Toralf Teuber
    • Toralf Teuber
    • B65G2900
    • B65G19/02B65G17/42B65G19/265B65G2201/02B65G2201/06
    • A conveying system comprising a drive chain and at least one conveying carrier, the conveying system being flexible for the most different goods to be conveyed. The conveying carrier can be brought into detachable engagement with the drive chain, the drive chain comprising chain links arranged in a row and interconnected via a chain joint, a chain joint being formed by a sleeve pertaining to a first chain link and by a bolt passed through the sleeve and pertaining to a second chain link, at least part of the bolts projecting laterally at both sides and a transporting sleeve being arranged on each of the projecting end portions, and the conveying carrier comprising an engaging means which can be brought into detachable engagement at least with both transporting sleeves of a bolt. The invention further relates to a drive chain for such a conveying system.
    • 一种输送系统,包括驱动链和至少一个输送托架,所述输送系统对于要传送的最不同的货物是柔性的。 输送载体可以与驱动链可拆卸地接合,该驱动链条包括链条,该链条链条布置成一排并经由链节相互连接,链节由相关于第一链节的套筒和通过螺栓通过的螺栓形成 通过所述套筒并且属于第二链节,所述螺栓的两侧侧面突出的螺栓的至少一部分和布置在每个所述突出端部上的传送套筒,并且所述输送托架包括可以被拆卸的接合装置 至少与螺栓的两个运输套筒接合。 本发明还涉及一种用于这种输送系统的驱动链。
    • 30. 发明授权
    • Powered pushing unit
    • 动力推动单元
    • US06435099B2
    • 2002-08-20
    • US09825544
    • 2001-04-02
    • James M. Gunter
    • James M. Gunter
    • B60M1300
    • B61B10/025B61J3/08B65G19/265
    • A powered pushing unit transfers ads no greater than a predetermined magnitude in one direction along the length of a load transfer system. The pushing unit includes a frame and a source of power for moving the pushing unit back and forth along the length of the load transfer system. A dog for engaging a load is pivotally mounted with respect to the frame. A restricting mechanism applies a load engaging force to hold the dog at a load transfer range of positions until the load is greater than the predetermined magnitude. A toggle joint is mounted between the dog and the frame. The toggle joint forms an angle in a first angular direction to lock the dog in a load engaging position during engagement of a load under the predetermined magnitude. The toggle joint further shifts to form an angle in a second angular direction upon engagement of a load in excess of the predetermined magnitude, thereby allowing the dog to pivot away from the load which is in excess of the predetermined magnitude. When pivoting away from and passing beneath the toad, the dog exerts a force against the load that is substantially less than the predetermined magnitude. A toggle force mechanism returns the toggle joint to a first angular direction after the dog passes the load.
    • 动力推动单元沿着负载传递系统的长度在一个方向上传送不大于预定大小的广告。 推动单元包括框架和用于沿着负载传送系统的长度前后移动推动单元的动力源。 用于接合负载的狗相对于框架枢转地安装。 限制机构施加负载接合力以将狗保持在位置的负载传递范围,直到负载大于预定大小。 肘关节安装在狗和框架之间。 肘节关节在第一角度方向上形成角度,以在预定大小的负载接合期间将狗锁定在负载接合位置。 在超过预定大小的负载接合时,肘节关节进一步移动以在第二角度方向上形成角度,从而允许狗枢转远离超过预定大小的负载。 当从蟾蜍摆动离开并经过蟾蜍下方时,狗对负荷施加力,该力基本上小于预定的大小。 在狗通过负载后,肘节力机构将肘节关节返回到第一角度方向。