Linked luggage electronic locks and luggage
By designing a linkage electronic lock for luggage on the luggage, and using a linkage rod and a sliding part to form a linkage relationship, the problem of requiring two electronic lock cores in the prior art is solved, achieving the effects of cost reduction and structural simplification.
Patent Information
- Application Number
- CN202010520618.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-06-09
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2040-06-09
AI Technical Summary
In the prior art, electronic locks for luggage require two independently designed electronic lock cores, which increases cost and complexity.
A linkage luggage electronic lock core, a linkage rod, a linkage luggage electronic lock body and a limit piece are designed to form a linkage relationship. The electronic lock body drives the limit piece to move to achieve unlocking and locking. Only one electronic lock core is required, which reduces costs and simplifies the structure.
The invention realizes that only one electronic lock cylinder is required on the luggage, thereby reducing costs, simplifying the structure, and improving reliability and stability.
Smart Images

Figure CN111779376B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a linked electronic lock for luggage, and also to a luggage. Background Art
[0002] When people travel, they usually carry their clothes and some important items in luggage. This makes the safety and convenience of luggage more and more important to people. Luggage is locked by luggage locks. It can be seen that luggage locks are the main components that affect the safety and convenience of luggage.
[0003] For example, Chinese patent No. 2018102753282 discloses an automatic unlocking electronic luggage lock that is not affected by tension, and Chinese patent No. 2018101423567 discloses an automatic electronic luggage lock. Both are equipped with motors. When designed on luggage, the electronic luggage lock is driven by a fingerprint device, making the use of luggage very convenient and safe.
[0004] Existing electronic locks for luggage are all independently designed. Generally, an electronic lock is set on each side of the luggage to stably lock the luggage. This requires two motors and two sets of components that cooperate with the motors, which undoubtedly increases the cost and complexity of the luggage. Summary of the Invention
[0005] The first technical problem to be solved by the present invention is to provide a linked electronic lock for luggage, which only requires one electronic lock core when used on luggage.
[0006] The second technical problem to be solved by the present invention is to provide a luggage that is only provided with one electronic lock cylinder, which has lower cost and more reliable operation.
[0007] To solve the above-mentioned first technical problem, the technical solution adopted by the present invention is as follows:
[0008] The locking mechanism of the lock body is a kind of locking mechanism of the present invention, and its locking mechanism is a pair of locking members, and its locking mechanism is a pair of locking members, and its locking mechanism is a pair of locking members.
[0009] Furthermore, the sliding member is provided with a first sliding surface, and the pushing member is provided with a second sliding surface that matches the first sliding surface, and the force is converted into a force that pushes the sliding member through the relative sliding of the first sliding surface and the second sliding surface.
[0010] Furthermore, the electronic lock body includes a motor for driving unlocking.
[0011] Furthermore, the linked luggage electronic lock also includes a lock plate, and the electronic lock body also includes a lock box, a lock box spring, a lock box mounting base plate, an inner lock hook, and a lock hook spring. The lock box is hinged on the lock box mounting base plate, and the lock box spring is installed between the lock box and the lock box mounting base plate. The lock box spring is used to bounce the lock box outward, and the lock hook is slidably arranged in the lock box. The lock hook spring is used to keep the inner lock hook locked to the lock plate. The motor is arranged in the lock box, and the inner lock hook is pushed by the motor to unlock the lock plate, and the pushing member is fixed on the lock box.
[0012] Furthermore, the pushing member and the sliding member are both columnar, the first sliding surface and the second sliding surface are respectively arranged on the facing side surfaces of the pushing member and the sliding member, and the first sliding surface and the second sliding surface are both inclined surfaces.
[0013] Furthermore, the electronic lock body also includes a lock box, a lock catch, a lock catch spring, a manual rotating part, a rotating sleeve and a sleeve spring that always acts on the rotating sleeve. The manual rotating part and the rotating sleeve are coaxially rotatable and arranged in the lock box. The manual rotating part is provided with a rotating handle exposed outside the lock box. The manual rotating part is connected to the rotating sleeve. A notch is provided on the side wall of the rotating sleeve. The lock catch is kept in the notch by the lock catch spring, thereby locking the rotating sleeve. The pushing part is provided on the rotating sleeve. The lock catch is pushed by the motor to unlock the rotating sleeve. When unlocking, the rotating sleeve is driven to rotate to the unlocking position by the sleeve spring, and the rotating sleeve can be driven to rotate to the locking position by the manual rotating part.
[0014] Furthermore, the pushing member is disc-shaped and coaxially fixed to the inner end of the rotating sleeve. The first sliding surface is arranged on the side of the pushing member, the sliding member is correspondingly arranged on the side of the pushing member, and the second sliding surface is arranged on the end surface of the sliding member facing the pushing member. The first sliding surface and the second sliding surface are matching arc surfaces.
[0015] Furthermore, the lock includes a center column, which can be rotatably arranged on the side of the rotating sleeve. A hook arm and a push arm are provided on the center column. The hook arm and the push arm are respectively located on opposite sides of the center column. The end of the hook arm is provided with a barb for buckling into the slot. The rotational force of the motor is converted into thrust acting on the push arm, and the lock spring acts on the hook arm so that the hook arm remains pressed toward the rotating sleeve.
[0016] Furthermore, the electronic lock body also includes a fingerprint device for driving the motor, a detachable power supply for providing electrical energy to the fingerprint device and the motor, and a customs lock for unlocking by a key.
[0017] To solve the above second technical problem, the technical solution adopted by the present invention is as follows:
[0018] A luggage, characterized in that it comprises the above-mentioned linked luggage electronic lock, a first half box and a second half box covering the first half box, the electronic lock body and the limiter are arranged on the first half box, and the external lock hook is arranged on the second half box.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] 1. The linkage electronic luggage lock of the present invention forms a linkage relationship between the electronic lock body and the limit member through the linkage rod, the sliding member and the pushing member. The electronic lock body drives the limit member to move to achieve unlocking and locking. Therefore, when the present invention is used on luggage, there is no need to set two or more electronic lock bodies. Only one set of the linkage electronic luggage lock of the present invention is required, that is, only one electronic lock body is required, which can reduce costs, simplify the structure, and make the structure more reliable.
[0021] 2. The luggage of the present invention only includes one electronic lock body, and the first half of the box body and the second half of the box body can also be firmly locked. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is one of the three-dimensional schematic diagrams of the linked electronic luggage lock according to the first embodiment of the present invention;
[0023] Figure 2 This is the second three-dimensional schematic diagram of the linked electronic luggage lock according to the first embodiment of the present invention;
[0024] Figure 3 This is one of the three-dimensional schematic diagrams of the linked luggage electronic lock after the installation box cover and the lock box are disassembled according to the first embodiment of the present invention;
[0025] Figure 4 This is the second three-dimensional schematic diagram of the linked luggage electronic lock after the installation box cover and lock box are disassembled according to the first embodiment of the present invention;
[0026] Figure 5 This is a three-dimensional schematic diagram of the lock box of the linked luggage electronic lock according to the first embodiment of the present invention after the lower cover is disassembled;
[0027] Figure 6 This is one of the three-dimensional schematic diagrams of the linked luggage electronic lock according to the first embodiment of the present invention installed on the first aluminum side and the second aluminum side of the luggage;
[0028] Figure 7 This is the second three-dimensional schematic diagram of the linked luggage electronic lock according to the first embodiment of the present invention installed on the first aluminum side and the second aluminum side of the luggage;
[0029] Figure 8 is a three-dimensional schematic diagram of a bag according to the first embodiment of the present invention;
[0030] Figure 9 This is one of the three-dimensional schematic diagrams of the linked electronic luggage lock according to the second embodiment of the present invention;
[0031] Figure 10 This is the second three-dimensional schematic diagram of the linked electronic luggage lock according to the second embodiment of the present invention;
[0032] Figure 11 This is a three-dimensional schematic diagram of the linked luggage electronic lock according to the second embodiment of the present invention after the upper box body is disassembled and the box cover is installed;
[0033] Figure 12 This is a schematic diagram of the internal linkage structure between the limiting element and the electronic lock body of the linked luggage electronic lock according to the second embodiment of the present invention;
[0034] Figure 13 This is a second schematic diagram of the internal linkage structure of the limiting member and the electronic lock body of the linked luggage electronic lock according to the second embodiment of the present invention;
[0035] Figure 14 This is a schematic diagram of the positional relationship between the customs lock and the unlocking arm of the linked electronic luggage lock according to the second embodiment of the present invention;
[0036] Figure 15 1 is a schematic diagram of the assembly of the sleeve spring of the linked electronic luggage lock according to the second embodiment of the present invention;
[0037] Figure 16 This is a three-dimensional schematic diagram of a linked luggage electronic lock according to a second embodiment of the present invention installed on a first aluminum side and a second aluminum side of a luggage;
[0038] Figure 17 It is a three-dimensional schematic diagram of a bag according to the second embodiment of the present invention.
[0039] Meaning of the reference numerals in the figure:
[0040] 1-lock box; 1.1-lower cover; 1.2-lock hole; 1.3-upper box body; 1.4-lower box body; 2-customs lock; 2.1-boss; 3-fingerprint device; 4-insert plate; 5-external lock hook; 5.1-groove; 6-linkage rod; 7-installation box cover; 8-installation box; 8.1-entry hole; 8.2-insert hole; 9-lock plate; 9.1-buckle platform; 9.2-buckle hole; 10-power supply; 11-limiting member; 11.1-limiting boss; 12-sliding member; 12.1-second sliding surface; 13-lock box mounting base plate; 14-pushing member; 14.1-first sliding surface; 1 5-unlocking spring; 16-inner locking hook; 17-circuit board; 18-motor; 19-turntable; 20-push block; 21-first aluminum edge; 22-second aluminum edge; 23-lock hook spring; 24-manual rotating part; 24.1-rotating handle; 24.2-connecting column; 25-return spring; 26-lock; 26.1-push arm; 26.2-hook arm; 26.3-barb; 26.4-unlocking arm; 27-rotating sleeve; 27.1-slot; 28-sleeve spring; 29-first half of the box; 30-second half of the box; 31-lock spring; 32-solar panel. DETAILED DESCRIPTION
[0041] The present invention is further described below with reference to the embodiments.
[0042] Example 1:
[0043] like Figures 1 to 5 The figure shows a linked electronic luggage lock of embodiment 1, which includes an electronic lock body, an external lock hook 5, a limit member 11, a linkage rod 6, an unlocking spring 15, a lock plate 9 and two sliding members 12, wherein the electronic lock body includes a motor 18, a lock box 1, a lock box spring, a lock box mounting base plate 13, an internal lock hook 16, a lock hook spring 23, a fingerprint device 3, a power supply 10 and a customs lock 2.
[0044] The bottom surface of the lock box 1 is provided with a lower cover plate 1.1, and a lock hole 1.2 is provided on the lower cover plate 1.1. The lock box 1 is hinged on the lock box mounting base plate 13, and the lock box spring is installed between the lock box 1 and the lock box mounting base plate 13 (the lock box spring is not shown in the figure, and the lock box spring is conventionally installed). The lock box spring is used to bounce the lock box 1 outward. The inner lock hook 16 is slidably arranged in the lock hook mounting groove in the lock box 1. The position of the inner lock hook 16 corresponds to the position of the lock hole 1.2. The lock hook spring 23 is installed on the side of the inner lock hook 16 and always acts on the inner lock hook 16 to keep the inner lock hook 16 locked to the lock plate 9. The lock plate 9 is fixed on the bag when installed. Figure 3As shown, a buckle platform 9.1 is provided on the lock plate 9 corresponding to the lock hole 1.2, and a buckle hole 9.2 is provided on the buckle platform 9.1. When the buckle platform 9.1 passes into the lock box from the lock hole 1.2, the inner lock hook 16 hooks into the buckle hole 9.2, thereby locking with the lock plate 9.
[0045] like Figure 5 As shown, a motor 18 is installed within the lock box 1. The output end of the motor 18 is equipped with a matching turntable 19 and push block 20. These turntable 19 and push block 20 share the same principles as the turntable and push block used in the tension-independent automatic unlocking electronic luggage lock disclosed in Chinese Patent No. 2018102753282. The push block contacts and acts on the inner lock hook. The force exerted by the push block 20 on the inner lock hook 16 opposes the force exerted on the inner lock hook 16 by the lock hook spring 23. This allows the motor 18 to push the inner lock hook 16 to unlock the strike plate 9.
[0046] This embodiment includes two pushers 14 . These pushers 14 are cylindrical and fixed to either side of the lock box 1 via screws. The pushers 14 correspond to the positions of the sliders 12 . The pushers 14 extend from the lower cover 1.1 to the outside of the lock box 1 . A first sliding surface 14.1 is provided at the end of the pushers 14 that extends outward. The first sliding surface 14.1 is an inclined surface. The pushers 14 rotate with the lock box 1 .
[0047] The fingerprint device 3 and the customs lock 2 are both mounted on the lock case 1. The unlocking panel of the fingerprint device 3 and the key insertion end of the customs lock 2 are both exposed from the front surface of the lock case 1. The fingerprint device 3 is electrically connected to the motor 18, and the rotation of the motor 18 is controlled by the fingerprint device 3. Of course, a circuit board 17 is also located within the lock case 1. A boss 2.1 is provided at the inner end of the customs lock 2. When the customs lock 2 is turned with the key, the boss 2.1 rotates, which in turn pushes the inner lock hook 16 to unlock the lock.
[0048] This embodiment also includes an elongated mounting box 8, topped with a mounting box cover 7. During installation, the mounting box 8 is secured to the bag. A stopper 11, a linkage rod 6, and a slider 12 are all slidably disposed within an internal slot within the mounting box 8. One end of the linkage rod 6 is connected to the stopper 11, and the other end is connected to a corresponding slider 12, with the other slider 12 serving as a force balance. During installation, an external locking hook 5 is secured to the bag. The external locking hook 5 is provided with a groove 5.1, and the stopper 11 has a corresponding stopper boss 11.1 that inserts into the groove 5.1. The mounting box 8 has an insertion hole 8.1 at the position corresponding to the external locking hook 5.
[0049] Slider 12 is also cylindrical and extends from the mounting box cover to the outside of mounting box 8. A second sliding surface 12.1 is provided on the portion of slider 12 extending outside the mounting box. This second sliding surface 12.1 is also an inclined surface and faces first sliding surface 14.1. When lock box 1 drives pusher 14 to rotate toward slider 12, first sliding surface 14.1 slides on second sliding surface 12.1, pushing slider 12 sideways, thereby pushing stopper 11 toward locking outer locking hook 5, ultimately locking outer locking hook 5.
[0050] The unlocking spring 15 is installed at the limiting member 11 and acts on the limiting member 11 , with the force being opposite to the direction in which the pushing member 14 pushes the sliding member 12 to slide.
[0051] In order to make the connection more stable, a socket 8.2 is provided in the middle of the installation box 1, and a plug board 4 is provided corresponding to the socket 8.2.
[0052] The power supply 10 of this embodiment is detachable, and its structure is the same as that of a mobile power supply for a luggage electronic lock fingerprint device with a detachable power supply disclosed in Chinese patent No. 2018100267839. The mobile power supply is provided with a USB plug, and a USB female socket is provided on the front of the lock box and the back of the installation box. The USB female socket is connected to the power supply end of the linked luggage electronic lock, and the mobile power supply is connected to the USB female socket through the USB plug. A fixing slot for fixing the mobile power supply is also provided on the back of the installation box.
[0053] like Figure 8 As shown, the luggage of this embodiment includes the linked luggage electronic lock of embodiment 1, a first half box 29 and a second half box 30 covering the first half box 29. The electronic lock body and the limiter 11 of embodiment 1 are arranged in the first half box 29, and the outer lock hook 5, the lock plate 9 and the inserting plate 4 are arranged in the second half box 30. Figure 6 and Figure 7 As shown in the figure, the first aluminum edge 21 is fixed to the inner surface of the second half box 30, the second aluminum edge 22 is fixed to the inner surface of the first half box 29, the outer lock hook 5, the lock plate 9 and the plug plate 4 are fixed to the first aluminum edge 21, and the electronic lock body and the limiter 11 are fixed to the second aluminum edge 22.
[0054] This embodiment further provides a solar device, which provides power to the electronic lock body and can also charge the power supply 10. The solar panel 32 of the solar device is provided on the surface of the bag.
[0055] When the bag needs to be closed and locked, the first half of the box is closed with the second half of the box, the outer lock hook 5 is inserted into the corresponding penetration hole 8.1, and the plug plate 4 is inserted into the corresponding insertion hole 8.2. At this time, the lock box 1 is in an outward pop-up state. When the cover is closed, the lock box 1 is manually pressed against the lock plate 9. When the pusher 14 contacts the sliding member 12, the pusher 14 pushes the sliding member 12 to slide sideways, thereby pushing the limiter 11. The boss 11.1 of the limiter 11 gradually inserts into the groove 5.1 of the outer lock hook 5, and the lock is locked. The buckle platform 9.1 on the buckle plate 9 gradually penetrates into the lock box 1 from the lock hole 1.2. When the buckle platform 9.1 contacts the inner lock hook 16, it will gradually push the inner lock hook 16 to the side. When the buckle platform 9.1 is completely penetrated, the inner lock hook 16 will be reset under the action of the lock hook spring 23 and hooked into the buckle hole 9.2, thereby locking with the lock plate 9. At this time, the boss 11.1 of the limiter 11 is also completely inserted into the groove 5.1 of the outer lock hook 5, locking the outer lock hook 5, and completing the locking of the first half box and the second half box.
[0056] When unlocking is required, it can be done with a fingerprint or a key. When the user passes fingerprint authentication, the fingerprint device 3 controls the motor 18 to rotate. The motor 18 pushes the push block 20 forward via the turntable 19, thereby pushing the inner lock hook 16 to slide sideways and unlock. After the lock plate 9 is unlocked, the lock box 1 will spring outward under the action of the lock box spring, and the push member 14 rotates outward along with the lock box 1. The push member 14 avoids the slide 12. At this time, under the action of the unlocking spring 15, the limiter 11 and the slide 12 return to their original position, and the boss 11.1 of the limiter 11 moves out of the groove 5.1 of the outer lock hook 5. The bag can now be opened. Of course, after unlocking, the motor 18 and the inner lock hook 16 also return to their original position. When the key is inserted into the customs lock 2 and the customs lock 2 is rotated, the boss 2.1 will rotate, and the boss 2.1 will push the inner lock hook 16 to unlock. The process after the lock plate 9 is unlocked is the same as the fingerprint unlocking process described above.
[0057] Example 2:
[0058] like Figures 9 to 15 The figure shows a linked electronic luggage lock of embodiment 2, which includes an electronic lock body, two external lock hooks 5, two limit members 11, two linkage rods 6, two unlocking springs 15 and two sliding members 12, wherein the electronic lock body includes a motor 18, a lock box, a lock catch 26, a lock catch spring 31, a manual rotating member 24, a rotating sleeve 27, a sleeve spring 28, a fingerprint device 3, a power supply 10 and a customs lock 2.
[0059] The lock box 1 comprises a lower box body 1.4 and an upper box body 1.3 which cover each other. A manual rotating member 24 and a rotating sleeve 27 are coaxially rotatably arranged in the lock box. The manual rotating member 24 is located in the center hole of the rotating sleeve 27. The manual rotating member 24 is provided with a rotating handle 24.1 exposed outside the lock box 1. The bottom of the manual rotating member 24 is provided with a connecting post 24.2. The connecting post 14.2 is inserted into the bottom of the rotating sleeve 27, thereby connecting the manual rotating member 24 and the rotating sleeve 27. When the manual rotating member 24 is rotated, the rotating sleeve 27 rotates together. Figure 15 As shown, the sleeve spring 28 is arc-shaped, is arranged on the side of the rotating sleeve 27, and acts on the rotating sleeve 27. The side wall of the rotating sleeve 27 is provided with a notch 27.1.
[0060] The lock catch 26 includes a center column that is rotatably mounted on the side of the rotating sleeve 27. A hook arm 26.2 and a push arm 26.1 are provided on the center column. The hook arm 26.2 and the push arm 26.1 are located on opposite sides of the center column. The end of the hook arm 26.2 is provided with a barb 26.3 that engages with a notch 27.1. A lock spring 31 acts on the hook arm 26.2, causing the hook arm 26.2 to remain pressed against the rotating sleeve 27, allowing the barb 26.3 to remain engaged with the notch 27.1, thereby locking the rotating sleeve 27.
[0061] The motor 18 is disposed in the lock box 1. The output end of the motor 18 is provided with a matching turntable 19 and a push block 20. The turntable 19 and the push block 20 have the same principle as the turntable and the push block in the automatic unlocking type luggage electronic lock that is not affected by tension disclosed in Chinese Patent No. 2018102753282. In this embodiment, the push block 20 is provided with a return spring 25 for returning the push block 20. The push block 20 contacts the push arm 26.1, thereby converting the rotational force of the motor 18 into a thrust acting on the push arm 26.1. By pushing the push arm 26.1 through the push block 20, the lock catch 26 can be rotated, thereby separating the barb 26.3 from the notch 27.1, thereby unlocking the rotating sleeve 27, allowing the rotating sleeve 27 to rotate. When unlocking, the rotating sleeve 27 is driven by the sleeve spring 28 to rotate clockwise to the unlocking position. Of course, the motor is reset at this time. When it needs to be locked again, it is necessary to rotate the manual rotating member 24. The manual rotating member 24 drives the rotating sleeve 27 to rotate counterclockwise to the locking position, and the hook 26.3 is re-engaged in the notch 27.1.
[0062] like Figure 13As shown, the pusher 14 of this embodiment is disc-shaped and coaxially fixed to the inner end of the rotating sleeve 27. Two first sliding surfaces 14.1 are provided on the side of the pusher 14, located on opposite sides. Two sliding members 12 are provided on the sides of the pusher 14, corresponding to the first sliding surfaces 14.1. A second sliding surface 12.1 is provided on the end surface of the sliding member 12 facing the pusher 14. The first and second sliding surfaces 14.1 are mating arcuate surfaces, and the sliding direction of the sliding member 12 is radially relative to the rotating sleeve 27. The first sliding surface 14.1 is a gradually outwardly flaring arcuate surface, so that the sliding member 12 is pushed sideways by rotating the pusher 12 under the action of the first and second sliding surfaces 14.1, 12.1.
[0063] The customs lock 2 is located in the middle of the manual rotating member 24, and the front end of the customs lock 2 is exposed from the front of the lock box 1. Figure 14 As shown, a boss 2.1 is provided on the bottom surface of the customs lock 2, and an unlocking arm 16.4 is provided on the hook arm 26.2, which extends to the bottom of the customs lock 2. When the customs lock 2 is turned by the key, the boss 2.1 will be driven to rotate, and the boss 2.1 will push the unlocking arm 26.4, which will drive the lock catch 26 to rotate, so that the hook 26.3 is separated from the notch 27.1, thereby unlocking the rotating sleeve 27.
[0064] This embodiment also provides an installation box 8, on top of which is an installation box cover 7, two limit members 11 and two linkage rods 6 are correspondingly slidably provided in the installation box 8, one end of the linkage rod 6 is connected to the corresponding limit member 11, and the other end extends to the position of the electronic lock body and is connected to the corresponding sliding member 12, so that the limit member 11 and the sliding member 12 form a linkage relationship.
[0065] The fingerprint device 3 is provided on the lock box 1 , and the unlocking panel of the fingerprint device 3 is exposed from the front surface of the lock box. The fingerprint device 3 is electrically connected to the motor 18 , and the rotation of the motor 18 is controlled by the fingerprint device 3 . Of course, a circuit board 17 is also provided in the lock box 1 .
[0066] The outer locking hook 5 is fixed on the bag during installation. The outer locking hook 5 is installed corresponding to the limiting piece 11. The installation box 8 is provided with a penetration hole 8.1 corresponding to the outer locking hook 5. The outer locking hook 5 is provided with a groove 5.1, and the limiting piece 11 is provided with a limiting boss 11.1 inserted into the groove.
[0067] The unlocking spring 15 is installed at the limiting member 11 and acts on the limiting member 11 , with the force being opposite to the direction in which the pushing member 14 pushes the sliding member 12 to slide.
[0068] In order to make the connection more stable, a socket 8.2 is provided in the middle of the lock box, and a plug plate 4 is provided corresponding to the socket 8.2.
[0069] The power supply 10 of this embodiment is detachable, and its structure is the same as that of a mobile power supply for a luggage electronic lock fingerprint device with a detachable power supply disclosed in Chinese patent No. 2018100267839. The mobile power supply is provided with a USB plug, and a USB female socket is provided on the front of the lock box and the back of the installation box. The USB female socket is connected to the power supply end of the linked luggage electronic lock, and the mobile power supply is connected to the USB female socket through the USB plug. A fixing slot for fixing the mobile power supply is also provided on the back of the installation box.
[0070] like Figure 17 The figure shows a luggage of this embodiment, which includes the linked luggage electronic lock of embodiment 2, a first half box 29 and a second half box 30 covering the first half box 29. The electronic lock body and the limiter 11 of embodiment 2 are arranged in the first half box 29, and the outer lock hook 5 and the plug plate 4 are arranged in the second half box 30. Figure 16 As shown in the figure, the first aluminum edge 21 is fixed to the inner surface of the second half box 30, and the second aluminum edge 22 is fixed to the inner surface of the first half box 29.
[0071] When the bag is unlocked, the rotating sleeve 27 is in the unlocked state, and the first sliding surface 14.1 of the pushing member 14 clears the sliding member 12. The stopper 12 is pushed to the unlocked position by the unlocking spring 15. When the bag needs to be closed and locked, the first half of the case 29 and the second half of the case 30 are closed together, the outer locking hook 5 is inserted into the corresponding insertion hole, and the plug plate 4 is inserted into the corresponding insertion hole. Then, the rotating handle 24.1 of the manual rotating member 24 is rotated, which drives the rotating sleeve 27 to rotate together until the barb 26.3 of the lock catch 26 engages the notch 27.1, locking the rotating sleeve 27. During the rotation of the rotating handle 24.1, the first sliding surface 14.1 and the second sliding surface 12.1 push the sliding member 12 sideways, thereby pushing the stopper 11, and finally the stopper locks the outer locking hook 5.
[0072] This embodiment further provides a solar device, which provides power to the electronic lock body and can also charge the power supply 10. The solar panel 32 of the solar device is provided on the surface of the bag.
[0073] When unlocking is required, it can be done by fingerprint or key. When the user passes the fingerprint authentication, the fingerprint device 3 controls the motor 18 to rotate. The motor 18 pushes the push block 20 forward via the turntable 19, thereby driving the lock 26 to rotate, separating the barb 26.3 from the notch 27.1, unlocking the rotating sleeve 27. The rotating sleeve 27 rotates clockwise under the action of the sleeve spring 28 to the unlocked position. During the rotation process, the rotating sleeve 27 also drives the pusher 14 to rotate. The first sliding surface 14.1 of the pusher 14 avoids the sliding member 12. The limiter 11 is pushed to the unlocked position under the action of the unlocking spring 15. At this time, the bag can be opened. Of course, after unlocking, the motor 18 automatically resets. When the key is inserted into the customs lock 2 and the customs lock is turned, the boss 2.1 will be driven to rotate, and the boss 2.1 will push the unlocking arm 26.4, and the unlocking arm 26.4 will drive the lock catch 26 to rotate, so that the hook 26.3 is separated from the notch 27.1, thereby unlocking the rotating sleeve 27. The process after the rotating sleeve 27 is unlocked is the same as the fingerprint unlocking process mentioned above.
[0074] The above embodiments of the present invention are not intended to limit the scope of protection of the present invention, and the implementation methods of the present invention are not limited thereto. All other modifications, replacements or changes made to the above structures of the present invention based on the above contents of the present invention, in accordance with common technical knowledge and customary means in this field, without departing from the above basic technical ideas of the present invention, should fall within the scope of protection of the present invention.
Claims
1. A linked electronic lock for luggage, characterized in that: include: The electronic lock body comprises a lock plate, a lock box, a motor, a lock box spring, a lock box mounting base plate, an inner lock hook, a lock hook spring, a fingerprint device and a customs lock; the lock plate is installed on the luggage; the lock box is hinged on the lock box mounting base plate, the lock box spring is installed between the lock box and the lock box mounting base plate, and the lock box spring is used to bounce the lock box outward; the inner lock hook is slidably arranged in the lock box, and the lock hook spring is used to make the inner lock hook keep locking the lock plate, the motor is arranged in the lock box, and the inner lock hook is pushed by the motor to unlock the lock plate; a limit member, the limit member is used to lock the outer lock hook, the limit member is arranged on the first half box body, and the outer lock hook is fixed to the second half box body of the luggage when installed, the outer lock hook is provided with a groove, the outer lock hook is installed corresponding to the limit member, and the limit member is correspondingly provided with a limit boss inserted into the groove; the mounting box is provided with a penetration hole at the position corresponding to the outer lock hook; a linkage rod, one end of the linkage rod is connected to the limit member; a sliding member connected to the other end of the linkage rod, and capable of sliding outside the lock box; The locking mechanism of the lock body is actuated by a spring, and the locking mechanism is adapted to engage the locking member and engage with the locking element to release the locking member from the locking mechanism, thereby releasing the locking member from the locking mechanism. The electronic lock body further comprises a manual rotating member and a rotating sleeve, wherein the manual rotating member and the rotating sleeve are coaxially rotatable and arranged in the lock box, the manual rotating member is provided with a rotating handle exposed outside the lock box, the manual rotating member is connected to the rotating sleeve, and the pushing member is arranged on the rotating sleeve; The pushing member is disc-shaped and coaxially fixed to the inner end of the rotating sleeve. The first sliding surface is provided on the side of the pushing member. The sliding member is correspondingly provided on the side of the pushing member. The second sliding surface is provided on the end surface of the sliding member facing the pushing member. The first sliding surface and the second sliding surface are matching arc-shaped surfaces. The electronic lock body further comprises a fingerprint device for driving the motor to operate, a detachable power supply for providing electrical energy to the fingerprint device and the motor, and a customs lock for unlocking by a key.
2. A bag, characterized in that: It comprises the linked luggage electronic lock according to claim 1, a first half box and a second half box covering the first half box, the electronic lock body and the limiting member are arranged on the first half box, and the external lock hook is arranged on the second half box.
Citation Information
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