A fully automatic lock cylinder structure based on transmission rope
A transmission rope and lock cylinder technology, which is applied to non-mechanical transmission-operated locks, building locks, building structures, etc., can solve the problems of wasting manpower, locking and opening work requiring manual intervention, and reducing work efficiency.
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Embodiment 1
[0027] Such as figure 1 As shown, the lock cylinder of the fully automatic lock cylinder structure in the first embodiment adopts a direct connection type lock cylinder 71, one end of the direct connection type lock cylinder 71 is arranged on the transmission rope 9, and the other end of the direct connection type lock cylinder 71 is in the The position corresponding to the lock hole 1 facilitates the direct-connected lock cylinder 71 to be smoothly pushed into the lock hole 1 of the box body 2 .
[0028] The following combination figure 1 , the working process of the fully automatic lock cylinder structure in the present embodiment one is described:
[0029] (1) External control equipment, such as a handheld RFID transmitter, sends a locking lid command to the receiving antenna 5 on the lid;
[0030] (2) The receiving antenna 5 receives the locking lid command sent by the external control device, and sends the locking lid command to the control panel 6;
[0031] (3) The co...
Embodiment 2
[0036] Such as figure 2 As shown, the lock core of the fully automatic lock core structure in the present embodiment two adopts the link type lock core that cooperates with the lock hole, and the link type lock core is arranged on the periphery of the box cover body 3, and the link type lock core includes The first movable rod 721 and the second movable rod 722 matched with the lock hole 1 are movably connected with one end of the first movable rod 721 and the second movable rod 722 , and the other end of the second movable rod 722 is arranged on the transmission rope 9 .
[0037] When the transmission rope 9 moves counterclockwise under the rotation of the motor 4, and drives the second movable rod 722 to move along the moving direction of the transmission rope 9, the first movable rod 721 is applied to the direction of the lock hole 1 by the second movable rod 722. thrust. However, due to the flexibility of the transmission rope 9 itself, the thrust direction applied by th...
Embodiment 3
[0048] Such as image 3 As shown, the lock cylinder of the fully automatic lock cylinder structure in the third embodiment not only adopts the direct connection type lock cylinder 71 as in the first embodiment, but also adopts the connecting rod type lock cylinder as in the second embodiment. Wherein, the quantity of the direct-connected lock cylinder 71 and the link-type lock cylinder can be set according to specific conditions. In the third embodiment, the number of direct-connection lock cylinders 71 and link-type lock cylinders is set to four respectively, and one direct-connection lock cylinder 71 and one Link lock cylinder.
[0049] For the working process of the fully automatic lock cylinder structure in the third embodiment, refer to the first and second implementations, wherein the action of the direct-connection lock cylinder 71 is synchronized with that of the link-type lock cylinder.
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