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    • 1. 发明授权
    • Locking device for extensible elevator sections
    • 可扩展电梯部分的锁定装置
    • US4655323A
    • 1987-04-07
    • US816132
    • 1986-01-03
    • Albert Bocker
    • Albert Bocker
    • B66B7/02B66B7/06B66B9/06B66B9/16B66B9/187E06C7/12B66F9/08E04H12/34
    • E06C7/12B66B9/16
    • An elevator, especially an oblique elevator, has a plurality of telescopic sections, along which a load container is movable. The telescoping of the sections takes place in such a manner that all the telescopic sections move simultaneously in relation to one another, or in such a manner that, as a given telescopic section extends, it takes with it all those arranged after it, as a "pack". For the purpose of locking in any desired position of extension a locking/unlocking device is provided between each pair of adjacent telescopic sections. This locking is effected by the actuation of a draw cable attached to the lowermost telescopic section, the draw cable acting upon an actuating cable which effects the locking or unlocking. The actuating cable runs in tackle block manner around two cable guides, and is shortened or lengthened by the variation of spacing of two cable guides.
    • 电梯,特别是倾斜电梯具有多个伸缩部分,负载容器沿着该伸缩部分可移动。 这些部分的伸缩以这样一种方式进行,使得所有的伸缩部分彼此相互同时移动,或者以这样的方式使得当给定的伸缩部分延伸时,它将所有这些布置在它之后的那些作为 “包”。 为了锁定任何期望的延伸位置,在每对相邻的伸缩部分之间提供锁定/解锁装置。 该锁定通过连接到最下部的伸缩部分的牵引绳的致动来实现,牵引缆线作用在致动缆线上,该牵引缆线实现锁定或解锁。 驱动电缆围绕两个电缆引导件以滑块方式延伸,并且由于两个电缆引导件的间隔的变化而被缩短或延长。
    • 2. 发明授权
    • Telescopic beam
    • 伸缩梁
    • US4491196A
    • 1985-01-01
    • US420409
    • 1982-09-20
    • Albert Bocker
    • Albert Bocker
    • B66B9/16E06C1/12E06C7/10E06C7/12B66B9/20
    • E06C1/125B66B9/16E06C7/10E06C7/12
    • A telescopic beam for use in an inclined hoist has five telescopic members. An actuator comprising a motorized winch and a block and tackle arrangement is provided for extending the telescopic members relative to one another. The block and tackle arrangement includes a cable which passes several times around sets of rollers positioned at the adjacent ends of first and second of the telescopic members. A lock is provided for fixing the positions of the first and second telescopic members. To relieve the operator of the need for controlling several actuators, the single actuator is used to control the extension of all the telescopic members, and to control the angle of inclination of the last telescopic member relative to the penultimate telescopic member. For this purpose, the cable is passed from the second telescopic member to the far end of the penultimate telescopic member, and then to the adjacent end of the last telescopic member where it is secured.
    • 用于倾斜提升机的伸缩梁具有五个伸缩构件。 提供包括电动绞盘和块和滑车装置的致动器,用于相对于彼此延伸伸缩构件。 块体和滑车装置包括绕定位在伸缩构件的第一和第二相邻端部的一组滚子进行多次的缆索。 提供用于固定第一和第二伸缩构件的位置的锁。 为了减轻操作者需要控制多个致动器,单个致动器用于控制所有伸缩构件的延伸,并且控制最后的伸缩构件相对于倒数第二个伸缩构件的倾斜角度。 为此,电缆从第二伸缩构件传递到倒数第二个伸缩构件的远端,然后到达最终伸缩构件的固定位置的相邻端。
    • 5. 发明授权
    • Elevator comprising telescopic sections, and a locking device therefor
    • 包括伸缩部分的电梯及其锁定装置
    • US4640387A
    • 1987-02-03
    • US807167
    • 1985-12-09
    • Albert Bocker
    • Albert Bocker
    • B66B9/16E06C5/02E06C5/12E06C7/06
    • B66B9/16E06C5/02E06C5/12
    • The invention relates to a locking device between two relatively movable telescopic sections of an elevator such as a scaffolding or load hoist. The individual telescopic sections are locked together by a locking dog. The locking system can be arranged to snap in automatically, and to be released by cable actuation, or vice versa. The locking dog is actuated by a draw cable which controls a locking/release cable. The cable stretch of the draw cable is compensated by a tackle block reversal thereof, that is to say a substantially greater shortening takes place (with reduced force application) in the draw cable compared with the locking/release cable. Thus, a mechanical advantage is obtained not only within the draw cable itself, but also between the draw cable and the locking/release cable.
    • 本发明涉及一种在诸如脚手架或负载提升机之类的电梯的两个相对可移动的伸缩部分之间的锁定装置。 单个伸缩部分通过锁定锁定在一起。 锁定系统可以被布置成自动卡扣,并且通过电缆致动被释放,反之亦然。 锁定爪由控制锁定/释放电缆的牵引电缆驱动。 牵引电缆的电缆拉伸通过滑块的反向来补偿,也就是说,与锁定/释放电缆相比,在牵引电缆中发生显着更大的缩短(施加力减小)。 因此,不仅在牵引电缆本身内,而且在牵引电缆和锁定/释放电缆之间也获得机械优点。