Manual lock structure for hazardous solid waste transportation container and unlocking method
A transfer container, manual lock technology, applied in the direction of portable protective containers, building locks, building structures, etc., can solve the problems of secondary pollution, poor sealing device effect, leakage of hazardous waste materials, etc., to ensure stability, The effect of good sealing
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Embodiment 1
[0029] Embodiments of the present invention provide a Figure 3 to Figure 6 The shown lock structure for industrial hazardous waste storage and transportation 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 hermetically sealed state;
[0030] The lock structure also includes a latch device 6-8, and the latch device 6-8 includes a lock seat, a dead bolt and a lock catch 6-9; a pin is arranged in the lock seat, and the pin is in contact with the locking mechanism, to unlock the gear.
[003...
Embodiment 2
[0043] 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;
[0044] 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.
[0045] 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
[0047] This embodiment provides a manual unlocking method based on the lock structure in Embodiments 1 and 2 above. The method includes the following steps: slide the lock bolt to move the pin to a position against the free part of the brake non-return pawl; then rotate the lock Tongue, so that it is locked at the position of the buckle 6-9;
[0048] The hook claw of the brake check claw is separated from the helical gear, the helical gear rotates freely, the lock lever is not restricted by the brake check claw, and then the container cover is inserted through the AGV to lift the container cover;
[0049] Finally, the deadbolt is unlocked, and the deadbolt is slid to move the pin in the opposite direction, and the brake non-return pawl returns to the original position, and the unlocking is completed.
[0050] The lock structure realizes the unlocking of the gear by setting the latch device 6-8, sliding the lock tongue, so that the pin moves to the position against the locking ...
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