Electronic lock structure and unlocking method for dangerous solid waste transfer container
A technology for transfer containers and electronic locks, which is applied to portable protective containers, non-mechanical transmission-operated locks, instruments, etc., can solve problems such as secondary pollution, poor sealing device effect, leakage of hazardous waste materials, etc., to ensure stability performance, good sealing effect
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Embodiment 1
[0030] Embodiments of the present invention provide a Figure 4 to Figure 8 The shown electronic lock structure for hazardous solid waste transfer containers, the lock structure includes a lock bar 5 and a lock box 6; wherein, the lock box 6 is provided with a limiting device for the passage of the lock bar 5 and a locking mechanism , a gear is installed in the locking mechanism; a rack 5-1 is processed on the locking bar 5, which extends into the limiting device in the lock box 6 from the outside, and cooperates with the gear in the lock box 6, The container cover 1 of the industrial hazardous waste storage and transportation container can be tightly closed on the casing to form a sealed state;
[0031] The lock structure also includes an electronic lock device, the electronic lock device is provided with a dead bolt 6-94, a spring 6-95, and a motor 6-92, and the dead bolt 6-94 is connected with the spring 6-95. Scanning the electronic code makes the motor 6-92 drive the spr...
Embodiment 2
[0045] On the basis of the above-mentioned embodiments, the locking mechanism provided by this embodiment includes two gears, upper and lower, wherein the upper gear is the first spur gear 6-1, and the lower gear includes the second spur gear 6-1 and the second spur gear 6-1 on different planes. Helical gear 6-2;
[0046] The first spur gear 6-1 and the second spur gear 6-1 are on the same line on the same plane, and the two spur gears 6-1 are all meshed with the rack 5-1 of the lock bar 5, and the lock bar 5 rotates synchronously when moving downward; the helical gear 6-2 is coaxial with the second spur gear 6-1, and the helical gear 6-2 is on the same plane as the brake non-return claw 6-3.
[0047] In order to further realize the precise positioning of the locking bar 5 in four directions, the limiting semi-guide rail 6-6 includes two intersecting sides, wherein the first side fits with the plane on the outside of the locking bar 5, which is the locking bar 5 Provide limit...
Embodiment 3
[0049] This embodiment provides a manual unlocking method based on the lock structure in Embodiments 1 and 2 above. The method includes the following steps: scan the two-dimensional code, the signal receiving device in the electronic lock receives the unlocking signal, and then drives the motor 6-92 start up;
[0050] The motor 6-92 drives the first spring 6-95 to shrink, so that the latch 6-93 leaves the slot; the second spring 6-95 pops up due to the pre-tightening force, so that the lock tongue 6-94 penetrates into the brake non-return claw. In the free part, the hook claw of the braking non-return pawl is separated from the helical gear, the helical gear rotates freely, the lock bar is not restricted by the braking non-return pawl, the rack can move up and down freely, and then the bucket lid is opened to unlock the gear; Then insert the container cover through the AGV and lift the container cover.
[0051] By scanning the two-dimensional code, the motor 6-92 of the elect...
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