Dual Power Electronic Mechanical Lock
20180202192 ยท 2018-07-19
Inventors
Cpc classification
E05B65/0075
FIXED CONSTRUCTIONS
E05B21/00
FIXED CONSTRUCTIONS
E05B57/00
FIXED CONSTRUCTIONS
E05B2047/0013
FIXED CONSTRUCTIONS
International classification
Abstract
This invention provides a dual-power electromechanical lock. The lock comprises a lock cover and a lock body with a latch therein, wherein the latch is installed in the lock body by a rotation restoring mechanism, the lock body is provided with a main power device in transmission connection with the latch, the lock cover is provided with a key hole corresponding to a key, a mechanical power device corresponding to the main power device is provided inside the lock body, and the mechanical power device is in transmission connection with the main power device.
Claims
1. A dual power electronic mechanical lock, comprising a lock body and a lock lid, wherein, a lock latch is installed in the lock body through a rotating recovery mechanism, a primary power device driving and connecting the lock latch is installed in the lock body, a keyhole corresponding to a key is located in the lock lid, a mechanical power device corresponding to the primary power device is installed in the lock body, and the mechanical power device is in transmission connection with the primary power device.
2. The dual power electronic mechanical lock according to claim 1, wherein, the primary power device includes a bracket and a breadboard which are slidably configured in the lock body; the bracket is provided with a primary power source, an auxiliary power source and a slider connecting with the lock latch; the breadboard connects the primary power source and the auxiliary power source; the primary power source and the auxiliary power source are located in the same center line, with a cam on the primary power source and an auxiliary cam on the auxiliary power source and the cams are mechanically connected with each other; the cam on a power output shaft of the primary power source is in vertically D-shape, and is in transmission connection with the slider, the cam is connected with a special-shaped groove on the slider, the cam is located in an arc groove at an end of the special-shaped groove when it is in normal state, the cam is provided with a torsional spring and is deflected to restrict the slider from moving by a torsion of the torsional spring; the primary power source rotates by overcoming the torsion of the torsional spring, when a platform surface of the cam turns parallel with a surface of the special-shaped groove of the slider, a safe handle is turned to push the lock latch blocking surface to rotate inward to the lock body, an end of the lock latch presses the slider and moves downward by overcoming elastic force of the spring, and the lock is unlocked.
3. The dual power electronic mechanical lock according to claim 1, wherein, the mechanical power device includes the keyhole in the lock lib and the key passing through the keyhole; the key mechanically is connected to a blade group composed of a number of blazes, and the blazes are provided with grooves; the bracket is provided with an inserting piece; the key is turned to drive the blade to move relatively and to align the grooves, when the aligned grooves are properly lined up with the inserting piece, the key is further turned to pull the bracket, the inserting piece is inserted into the grooves and sliding movement of the bracket drives the slider to move in unlock direction to unlock the lock.
4. The dual power electronic mechanical lock according to claim 2, wherein, the primary power source is a primary motor and the auxiliary power source is an auxiliary motor, which are controlled by mutually independent control circuits.
5. The dual power electronic mechanical lock according to claim 4, wherein, the primary motor, the auxiliary motor and the slider are installed on the slidable bracket.
6. The dual power electronic mechanical lock according to claim 2, wherein, the bracket provided with the primary power source and the slider is formed as a whole with the lock body, which is an inseparable part of the lock body.
7. The dual power electronic mechanical lock according to claim 1, wherein, the primary power device is a whole of the primary power source, the cam, the slider and the breadboard installed in the lock body.
8. The dual power electronic mechanical lock according to claim 2, wherein, the primary power device is a whole of the primary power source, the cam, the slider and the breadboard installed in the lock body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
Examples
[0023] As shown in
[0024] In this embodiment, the mentioned rotating and recovery mechanism includes the spindle 15 installed in the lock body 2. Spindle 15 is connected to lock latch 1 through the center bore 38 in lock latch 1. The mentioned lock body 2 has been arranged with finite plane 11 and positioning column 35. Tension spring 16 connected to positioning column 35 is connected to lock latch 1 through the connector 17. In this embodiment, connector 17 may be a rivet or bolt.
[0025] The mentioned primary power devices include slidable bracket 3 and breadboard 18 (circuit board) installed in the lock body 2; bracket 3 is installed with active force source 12, auxiliary force source 13 and slider 6 connected to lock latch 1; breadboard 18 is connected to active force source 12 and auxiliary force source 13. The mentioned active force 12 and auxiliary force source 13 are at the same center line; the former has cam 10 and the latter has the auxiliary cam 9; cam 10 and auxiliary 9 are mechanically connected with each other. The vertically D-shape cam 10 on the power output shaft of the primary power source (active power source) 12 is driven and connected by the slider 6 through being connected with its special-shaped groove slider 7. The cam 10 is located in the arc groove 19 at the end of the special-shaped groove 7 when it is in the normal state; the cam 10 will be deflected to restrict the slider 6 from moving at the force of the torsional spring 4 installed on the cam 10; the primary power source 12 will rotate by overcoming the torsion of the torsional spring 4; when the platform surface 8 of the cam 10 turns parallel with the special-shaped groove surface 24 of the slider 6, turn the safe handle 27 and push the lock latch 1 blocking surface to rotate inside the lock body 2; the lock latch 1 end will squeeze the slider and move downward by overcoming spring's elastic force. The lock is unlocked.
[0026] The mentioned mechanical power devices include keyhole 41 in the lock lib 14 and key 43 running through the keyhole 41; the key 43 is connected to the external safe handle 27. Key 43 is connected to blade group 36 through transmission, which consists of some blazes with blaze groove 37. Bracket 3 has inserting piece 22 corresponding to blaze groove 37. The mentioned blazes are connected to bracket 3 through blaze groove 37. In actual processing, lock lid 14 is connected to lock body 2 through 4 bolts 42 in a sliding mode.
[0027] The mentioned primary power source is the main motor and the auxiliary power source is the auxiliary motor, which are controlled by mutually independent control circuits. The mentioned main motor, auxiliary motor and slider can be installed on the slidable bracket.
[0028] In practice, the cam 10 is located in the arc groove at the end of the special-shaped groove when it is in the normal state; the cam 10 will be deflected to restrict the slider from moving at the force of the torsional spring 4 installed on the cam; when the main motor rotates by overcoming the torsion of the torsional spring 4 driven by the control circuit on the breadboard and the platform surface 8 of the cam 10 turns parallel with the special-shaped groove surface 24 of the slider 6, turn the safe handle 27 and push the lock latch blocking surface to rotate inside the lock body; the lock latch 1 end will squeeze the slider 6 and move downward by overcoming spring 5's elastic force. The lock is unlocked.
[0029] When the main motor or the control circuit breaks down and the lock cannot be unlocked, input signals to the breadboard control circuit controlling the auxiliary motor and it will rotate driven by the control circuit; it rotates by overcoming the torsion force of torsional spring 4 through the auxiliary cam 9 driving the cam 10 to parallel the platform surface 8 with the special-shaped groove surface 24 and release slider 6. The external force pushes the lock latch 1 to rotate and squeezes slider 6 to move downward to realize the emergency unlock. When the external force disappears, lock latch 1 will return to the original position under the effect of tension spring 16; slider 6 also moves to the original place under the spring action of spring 5. Cam will rotate under the torsion of torsional spring 4 and the platform surface 8 will form a certain angle with the special-shaped groove. Slider 6 will be locked up again and the whole lock is locked.
[0030] When the main motor, auxiliary motor and control circuit fails to work, insert key 43 into lock body 2 from keyhole 41 and rotate key 43; key 43 will set the blade in lock body 2 in motion; when the blade is lined up with the blade groove 37, bracket 3 will be pulled by the key; inserting piece 22 in bracket 3 will be inserted into the blade groove 37, then the main motor, auxiliary motor and slider 6 will move down together. The lock is unlocked in a mechanical emergency way.
[0031]
[0032]
[0033]
[0034] The invention adopts circuit driving motor and the deflection of cam to realize the lock-up and opening of locks. Redundant backups of the auxiliary circuit and drive auxiliary motor are set up to realize the electronic emergency opening of electronic lock; blade mechanical lock is set up in the lock body to control the movement of the bracket and realize the electronic emergency opening of electronic lock, so as to ensure the electronic lock can be opened at any situation.
[0035] The invention is not limited to the above preferred implementation schemes. Anybody shall be aware that structure changes made under the inspiration of the invention and all technical schemes that are identical or similar with this invention belong to the protection scope of this invention.