Luggage electronic lock, storage box and storage bag

By designing the base, bolt, elastic element, and linear drive mechanism of the electronic lock for luggage, and utilizing the electronic unlocking component to start the power source, the problem of needing to input information for both unlocking and locking in existing technologies is solved, realizing a convenient locking and unlocking process and improving the user experience.

CN223805957UActive Publication Date: 2026-01-16SHENZHEN WALSUN DIGITAL TECH CO LTD
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Patent Information

Application Number
CN202520160111.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-01-16
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing electronic locks for bags are inconvenient to use, requiring information to be entered when unlocking and locking, resulting in a poor user experience.

Method used

An electronic lock for bags has been designed, comprising a base, a bolt, a first elastic element, a stop, a linear drive mechanism, and an electronic unlocking component. By inputting information through the electronic unlocking component, the power source is activated, which drives the stop to move open. The bolt rotates to the unlock position under the action of the elastic element, and the user can lock the bag simply by inserting the latch.

Benefits of technology

It eliminates the need for inputting information when locking, improving ease of use and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to a luggage electronic lock, a storage box and a storage bag. The luggage electronic lock comprises a base, a lock tongue, a check block, a linear driving mechanism and an electronic unlocking assembly, a first inserting groove is formed in the base, a limiting block, a lock hook and a pressed block are arranged on the lock tongue, the lock hook and the pressed block are exposed out of the first inserting groove, the lock tongue is rotatably arranged on the base so that the lock tongue can rotate to a first rotating position for locking a lock catch, and the lock catch can rotate to a second rotating position for locking the lock catch. The linear driving mechanism comprises a second elastic piece connected with the check block, after a user inserts the lock catch into the first inserting groove, the lock catch can exert pressure on the pressed block, then the spring bolt rotates to the first rotating position, and at the moment, the limiting block cannot be blocked on the moving path of the check block any more; therefore, the second elastic piece can drive the check block to move to the rotating path of the limiting block through energy release so as to limit the spring bolt to rotate to the second rotating position, when the luggage electronic lock is locked, information does not need to be input to drive the spring bolt, and the luggage electronic lock is more convenient to use.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of luggage lock, especially to a luggage electronic lock, a storage box and a storage bag. BACKGROUND

[0002] The previous luggage lock is usually a mechanical password lock, which is composed of three rollers, and is easy to decipher. In order to improve the security, the luggage electronic lock is developed.

[0003] Although the luggage electronic lock is difficult to decipher, it is not convenient to use. The reason is that the luggage electronic lock on the market not only needs to input information when unlocking to make the control component drive the lock tongue to unlock the lock buckle, but also needs to input information when locking to make the control component drive the lock tongue to reset and lock the lock buckle, so the user experience is poor. SUMMARY

[0004] The technical problem to be solved by the embodiments of the utility model is to provide a luggage electronic lock, a storage box and a storage bag to solve the problem of inconvenient use of the luggage electronic lock in the prior art.

[0005] In the first aspect, the utility model provides a luggage electronic lock for clamping on a handle, comprising: a base provided with a first slot; a lock tongue provided with a lock hook, a pressure block and a limiting block; the lock hook and the pressure block are exposed to the first slot, and the lock tongue is rotatably installed on the base, so that the lock tongue can be rotated to a first rotation position and a second rotation position; when the lock tongue is in the first rotation position, the lock hook is used to lock the lock buckle inserted into the first slot; when the lock tongue is in the second rotation position, the lock buckle is unlocked; the pressure block is located on the side of the lock hook away from the slot of the first slot, and is used to drive the lock tongue to reset to the first rotation position when pressed; a first elastic member is connected with the lock tongue, and is used to drive the lock tongue to rotate to the second rotation position when released; a stop block is arranged on the rotation path of the limiting block to limit the rotation of the lock tongue to the second rotation position; a linear driving mechanism includes a power source and a second elastic member arranged in the base; the power source and the second elastic member are connected with the stop block, and the power source is used to drive the stop block to translate away from the rotation path of the limiting block when the lock tongue is in the first rotation position; the second elastic member is used to release energy when the lock tongue resets to the first rotation position to drive the stop block to translate to the rotation path of the limiting block; an electronic unlocking component is arranged on the base and electrically connected with the power source, and the electronic unlocking component is used to start the power source according to the input information.

[0006] Optionally, the power source is a rotating motor with an eccentric rod at the output end, the eccentric rod is connected with the block to drive the block to translate away from the rotating path of the limiting block when rotating.

[0007] Optionally, the block comprises a pushing part; the second elastic member is a compression spring, and the pushing part is clamped between the eccentric rod and the compression spring.

[0008] Optionally, one side of the pushing part towards the compression spring is provided with a limiting groove, and one end of the compression spring is inserted into the limiting groove.

[0009] Optionally, one side of the pushing part towards the compression spring is provided with a limiting convex, and one end of the compression spring is sleeved on the limiting convex.

[0010] Optionally, the rotating path of the limiting block has a second insertion slot for accommodating the block, and a chamfer is arranged at the slot opening of the second insertion slot to guide the block into the second insertion slot.

[0011] Optionally, the electronic unlocking assembly comprises a fingerprint identification module exposed on the base, and a control circuit module electrically connected with the fingerprint identification module and the linear driving mechanism.

[0012] Optionally, the electronic unlocking assembly further comprises a secret key interface exposed on the base and electrically connected with the control circuit module, and the secret key interface is used for electrically connecting with an electronic secret key.

[0013] In the second aspect, the utility model embodiment further provides a storage box, which comprises a lock catch and the bag electronic lock shown in the first aspect, and the lock catch is used for cooperating with the lock tongue of the bag electronic lock to lock the storage box.

[0014] In the third aspect, the utility model embodiment further provides a storage bag, which comprises a lock catch and the bag electronic lock shown in the first aspect, and the lock catch is used for cooperating with the lock tongue of the bag electronic lock to lock the storage bag.

[0015] Compared with the prior art, the box electronic lock, the storage box and the storage bag have the beneficial effects that: the box electronic lock provided by the embodiment of the utility model includes base, lock tongue, first elastic piece, baffle, linear drive mechanism and electronic unlocking assembly, the first slot for the lock catch is set up on the base, the lock tongue is rotatably installed on the base, so that the lock tongue can be rotated to the first rotation position and the second rotation position, the first rotation position is the position of the lock hook locking the lock catch, the second rotation position is the position of unlocking the lock catch, the linear drive mechanism includes the power source and the second elastic piece which are connected with the baffle; specifically, after the user inputs the correct information by using the electronic unlocking assembly, the power source will be started, the power source will drive the baffle to move away from the rotation path of the limiting block, so that the first elastic piece can release energy to drive the lock tongue to rotate to the second rotation position to unlock the lock catch; after the user inserts the lock catch into the first slot, the lock catch will press the pressure block, and then the lock tongue will rotate to the first rotation position, since the limiting block arranged on the lock tongue will also rotate, so the limiting block will not block the movement path of the baffle, at this time, the second elastic piece can drive the baffle to move to the rotation path of the limiting block to limit the lock tongue from rotating to the second rotation position.

[0016] Therefore, the box electronic lock provided by the embodiment of the utility model only needs to insert the lock catch into the first slot when locking, and the lock catch can be locked by the lock tongue, without inputting information to drive the lock tongue to lock the lock catch when locking as in the prior art, so that the box electronic lock provided by the embodiment of the utility model is more convenient to use and has better user experience. BRIEF DESCRIPTION OF DRAWINGS

[0017] The specific implementation of the utility model will be further described in detail below in combination with the drawings and embodiments, and the drawings are as follows:

[0018] Figure 1 is the structure schematic view of the lock catch and the box electronic lock provided by the embodiment of the utility model;

[0019] Figure 2 is the structure schematic view of the box electronic lock provided by the embodiment of the utility model;

[0020] Figure 3 is the structure schematic view of the lock hook locking the lock catch provided by the embodiment of the utility model;

[0021] Figure 4 is Figure 3 is the structure schematic view of the lock catch after the structure shown in the figure is omitted;

[0022] Figure 5Is the structure schematic view of the first elastic member releasing energy to drive the lock tongue to rotate to the second rotating position after the power source driving stop block translates away from the rotating path of the limiting block, which is provided by the embodiment of the utility model.

[0023] Figure 6 Is the structure schematic view of the linear driving mechanism and the stop block, which is provided by the embodiment of the utility model.

[0024] Figure 7 Is the structure schematic view of the second slot, which is provided by the embodiment of the utility model.

[0025] Figure 8 Is the structure schematic view of the luggage electronic lock after omitting part of the base, which is provided by the embodiment of the utility model.

[0026] The reference signs in the drawings are as follows:

[0027] 1000, the luggage electronic lock;

[0028] 100, the base; 110, the first slot; 120, the second slot; 121, the chamfer;

[0029] 200, the lock tongue; 210, the lock hook; 220, the pressure receiving block; 230, the limiting block;

[0030] 300, the first elastic member;

[0031] 400, the stop block; 410, the pushing part; 411, the limiting groove;

[0032] 500, the linear driving mechanism; 510, the power source; 511, the eccentric rod; 520, the second elastic member;

[0033] 600, the electronic unlocking assembly; 610, the fingerprint identification module; 620, the control circuit module; 630, the secret key interface;

[0034] 9000, the lock catch. DETAILED DESCRIPTION

[0035] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.

[0036] The embodiment of the utility model provides a kind of luggage electronic lock 1000, such as Figures 1-6As shown, the electronic luggage lock 1000 comprises a base 100, a lock tongue 200, a first elastic member 300, a stop block 400, a linear driving mechanism 500 and an electronic unlocking assembly 600. The base 100 is provided with a first slot 110, the lock tongue 200 is provided with a lock hook 210, a pressure receiving block 220 and a limiting block 230, the lock hook 210 and the pressure receiving block 220 are exposed to the first slot 110, and the lock tongue 200 is rotatably arranged on the base 100, so that the lock tongue 200 can be rotated to a first rotation position and a second rotation position, when the lock tongue 200 is at the first rotation position, the lock hook 210 is used to lock the lock buckle 9000 inserted into the lock slot, when the lock tongue 200 is at the second rotation position, the lock buckle 9000 is unlocked. The pressure receiving block 220 is located on the side of the lock hook 210 away from the slot of the first slot 110, and is used to reset the lock tongue 200 to the first rotation position when the pressure receiving block 220 is pressed. The first elastic member 300 is connected with the lock tongue 200, and is used to drive the lock tongue 200 to rotate to the second rotation position when the first elastic member 300 is released. The stop block 400 is arranged on the rotation path of the limiting block 230, so as to limit the rotation of the lock tongue 200 to the second rotation position. The linear driving mechanism 500 comprises a power source 510 and a second elastic member 520 arranged in the base 100, the power source 510 and the second elastic member 520 are connected with the stop block 400, when the lock tongue 200 is at the first rotation position, the power source 510 is used to drive the stop block 400 to translate away from the rotation path of the limiting block 230, and the second elastic member 520 is used to release energy when the lock tongue 200 resets to the first rotation position, so as to drive the stop block 400 to translate to the rotation path of the limiting block 230. The electronic unlocking assembly 600 is arranged on the base 100 and is electrically connected with the power source 510, and the electronic unlocking assembly 600 is used to start the power source 510 according to the input information.

[0037] By implementing the embodiment, after the user inputs the correct information by using the electronic unlocking assembly 600, the power source 510 will be driven, the power source 510 will drive the stop block 400 to translate away from the rotation path of the limiting block 230, so that the first elastic member 300 can release energy to drive the lock tongue 200 to rotate to the second rotation position to unlock the lock buckle 9000; after the user inserts the lock buckle 9000 into the first slot 110, the lock buckle 9000 will press the pressure receiving block 220, so that the lock tongue 200 rotates to the first rotation position, at this time, the first elastic member 300 will be deformed to store energy, since the limiting block 230 arranged on the lock tongue 200 will also rotate, so the limiting block 230 will not block the movement path of the stop block 400, at this time, the second elastic member 520 can drive the stop block 400 to move to the rotation path of the limiting block 230 by releasing energy, so as to limit the rotation of the lock tongue 200 to the second rotation position.

[0038] Therefore, the luggage electronic lock 1000 provided in the embodiment only needs to insert the lock catch 9000 into the first slot 110 when locking, and can lock the lock catch 9000 by using the lock tongue 200, without inputting information to drive the lock tongue 200 to lock the lock catch 9000 as in the prior art. Therefore, the luggage electronic lock 1000 provided in the embodiment is more convenient to use and has better user experience.

[0039] Reference Figures 1-6 In specific embodiments, the power source 510 is a rotary motor with an eccentric rod 511 at the output end, and the eccentric rod 511 is connected to the block 400 to drive the block 400 to translate away from the rotation path of the limiting block 230 when rotating.

[0040] By implementing the embodiment, after the user inputs correct information by using the electronic unlocking assembly 600, the power source 510 is started. Since the power source 510 is a rotary motor with an eccentric rod 511 at the output end, the eccentric rod 511 will be squeezed to press the block 400 when rotating, so that the block 400 can translate away from the rotation path of the limiting block 230. At this time, the second elastic member 520 will be compressed to store energy. After the block 400 moves away from the rotation path of the limiting block 230, the first elastic member 300 can drive the lock tongue 200 to rotate to the second rotation position to unlock the lock catch 9000 by releasing energy.

[0041] In another specific embodiment, the power source 510 is a linear motor. After the user inputs correct information by using the electronic unlocking assembly 600, the linear motor is started to drive the block 400 to translate away from the rotation path of the limiting block 230. At this time, the second elastic member 520 will be compressed to store energy. After the block 400 moves away from the rotation path of the limiting block 230, the first elastic member 300 can drive the lock tongue 200 to rotate to the second rotation position to unlock the lock catch 9000 by releasing energy.

[0042] Reference Figure 6 In some embodiments, the block 400 includes a pushing part 410, and the second elastic member 520 is a compression spring. The pushing part 410 is clamped between the eccentric rod 511 and the compression spring.

[0043] In this way, when the eccentric rod 511 pushes the pushing part 410, the pushing part 410 will translate towards the compression spring, and then squeeze the compression spring to deform and store energy. After the lock catch 9000 is placed in the first slot 110 to press the pressure block 220, and then the lock tongue 200 rotates to the first rotation position, the limiting block 230 will no longer block the movement path of the block 400. At this time, the compression spring can drive the block 400 to move to the rotation path of the limiting block 230 to limit the lock tongue 200 from rotating to the second rotation position by releasing energy.

[0044] ReferenceFigure 5 In specific embodiments, the toggle portion 410 is provided with a limiting groove 411 on the side facing the compression spring, and one end of the compression spring is inserted into the limiting groove 411.

[0045] By implementing the present embodiment, the position of the compression spring can be limited by the limiting groove 411, thereby increasing the service life of the luggage electronic lock 1000. The compression spring is effectively prevented from deviating from the preset position with the increase of the use time and use frequency, thereby avoiding the situation that the luggage electronic lock 1000 is disabled.

[0046] In another specific embodiment, the toggle portion 410 is provided with a limiting boss on the side facing the compression spring, and a section of the compression spring is sleeved on the limiting boss.

[0047] By implementing the present embodiment, the position of the compression spring can be limited by the limiting boss, thereby increasing the service life of the luggage electronic lock 1000. The compression spring is effectively prevented from deviating from the preset position with the increase of the use time and use frequency, thereby avoiding the situation that the luggage electronic lock 1000 is disabled.

[0048] Reference Figure 7 In some embodiments, the limiting block 230 has a second slot 120 on the rotation path thereof, the second slot 120 is used for accommodating the stop block 400, and a chamfer 121 is arranged at the slot opening of the second slot 120 to guide the stop block 400 into the second slot 120.

[0049] By implementing the present embodiment, the stop block 400 can be limited by the second slot 120 when the stop block 400 moves to the rotation path of the limiting block 230, thereby increasing the consistency of the stop block 400 each time it is translated. In order to ensure that the stop block 400 can enter the second slot 120 without being stuck at the slot opening of the second slot 120, the present embodiment further provides the chamfer 121 at the slot opening of the second slot 120 to guide the stop block 400 into the second slot 120.

[0050] It is worth mentioning that the chamfer 121 can be a round corner or an inclined corner, which is not limited in the present embodiment as long as it can guide the stop block 400 into the second slot 120.

[0051] Reference Figure 8 In some embodiments, the electronic unlocking assembly 600 includes a fingerprint identification module 610 and a control circuit module 620, and the fingerprint identification module 610 is exposed on the base 100. The control circuit module 620 is electrically connected with the fingerprint identification module 610 and the power source 510.

[0052] By implementing the present embodiment, the user only needs to place the finger on the fingerprint identification module 610 to achieve the unlocking of the lock catch 9000, which is very convenient.

[0053] refer to Figure 2 In a specific embodiment, the electronic unlocking component 600 further includes a key interface 630, which is exposed on the base 100 and electrically connected to the control circuit module 620. The key interface 630 is used to electrically connect to the electronic key.

[0054] Specifically, users sometimes encounter situations where fingerprints become unusable due to peeling skin or scratches on their fingers. If unlocking is only possible by inputting information through the fingerprint recognition module 610, it will result in the inability to unlock. To solve this technical problem, this embodiment adds a key interface 630 for use with an electronic key. Specifically, when fingerprints fail, an electronic key can be used to access the interface to input unlocking information, enabling the control circuit module 620 to control the power source 510 to start, thus achieving the purpose of unlocking.

[0055] In other embodiments, the electronic unlocking assembly 600 includes a touch keyboard module and a control circuit module 620, with the touch keyboard module exposed on the base 100. The control circuit module 620 is electrically connected to the touch keyboard module and the power source 510.

[0056] By implementing this embodiment, users can unlock the latch 9000 simply by inputting information through the touch keyboard module, which is very convenient.

[0057] This utility model embodiment also provides a storage box, such as Figures 1-6 As shown, the storage box includes a latch 9000 and an electronic lock 1000 for bags as illustrated in the above embodiment.

[0058] By implementing this embodiment, after the user inputs the correct information using the electronic unlocking component 600, the power source 510 is driven. The power source 510 drives the stop block 400 to move away from the rotation path of the limiting block 230, so that the first elastic element 300 can release energy to drive the latch 200 to rotate to the second rotation position to unlock the latch 9000. After the user inserts the latch 9000 into the first slot 110, the latch 9000 will apply pressure to the pressure block 220, thereby causing the latch 200 to rotate to the first rotation position. Since the limiting block 230 provided on the latch 200 will also rotate, the limiting block 230 will no longer block the movement path of the stop block 400. At this time, the second elastic element 520 can release energy to drive the stop block 400 to move to the rotation path of the limiting block 230, thereby restricting the latch 200 from rotating to the second rotation position.

[0059] Therefore, the bag electronic lock 1000 provided by the embodiment only needs to insert the lock catch 9000 into the first slot 110 when locking, and the lock tongue 200 can be used to lock the lock catch 9000, without inputting information to drive the lock tongue 200 to lock the lock catch 9000 when locking as in the prior art, so that the bag electronic lock 1000 provided by the embodiment is more convenient to use and has better user experience.

[0060] The utility model embodiment further provides a storage bag, as shown in the figure, Figures 1-6 The storage bag includes the lock catch 9000 and the bag electronic lock 1000 shown in the above embodiment.

[0061] Through the implementation of the embodiment, after the user inputs correct information by using the electronic unlocking assembly 600, the power source 510 is driven, the stop block 400 is translated away from the rotation path of the limiting block 230, the first elastic member 300 can be released to drive the lock tongue 200 to rotate to the second rotation position to unlock the lock catch 9000; after the user inserts the lock catch 9000 into the first slot 110, the lock catch 9000 exerts pressure on the pressure receiving block 220, and then the lock tongue 200 rotates to the first rotation position, and since the limiting block 230 arranged on the lock tongue 200 also rotates, the limiting block 230 no longer blocks the movement path of the stop block 400, at this time, the second elastic member 520 can drive the stop block 400 to move to the rotation path of the limiting block 230 to limit the lock tongue 200 from rotating to the second rotation position.

[0062] Therefore, the bag electronic lock 1000 provided by the embodiment only needs to insert the lock catch 9000 into the first slot 110 when locking, and the lock tongue 200 can be used to lock the lock catch 9000, without inputting information to drive the lock tongue 200 to lock the lock catch 9000 when locking as in the prior art, so that the bag electronic lock 1000 provided by the embodiment is more convenient to use and has better user experience.

[0063] It should be understood that the above embodiments are only used to illustrate the technical solutions of the utility model, rather than limit them, and the technical solutions recorded in the above embodiments can be modified by those skilled in the art, or some technical features can be replaced by equivalents; all these modifications and replacements should belong to the protection scope of the claims of the utility model.

Claims

1. A bag electronic lock for being clamped on a handle, characterized in that, include: The base has a first slot on it; The latch has a latch hook, a pressure block, and a limiting block. The latch hook and the pressure block are both exposed in the first slot. The latch is rotatably mounted on the base so that it can rotate to a first rotation position and a second rotation position. When the latch is in the first rotation position, the latch hook locks the latch inserted into the first slot. When the latch is in the second rotation position, the latch is unlocked. The pressure block is located on the side of the latch hook away from the opening of the first slot and is used to drive the latch to return to the first rotation position when pressure is applied. The first elastic element is connected to the locking tongue and is used to drive the locking tongue to rotate to the second rotation position when energy is released; A stop block is provided on the rotation path of the limiting block to restrict the bolt from rotating to the second rotation position; A linear drive mechanism includes a power source and a second elastic element disposed within the base; both the power source and the second elastic element are connected to the stop block. When the latch is in the first rotational position, the power source drives the stop block to translate away from the rotational path of the limiting block; the second elastic element releases energy when the latch returns to the first rotational position, thereby driving the stop block to translate onto the rotational path of the limiting block. An electronic unlocking component is disposed on the base and electrically connected to the power source. The electronic unlocking component is used to start the power source according to input information.

2. The luggage electronic lock according to claim 1, wherein: The power source is a rotating motor with an eccentric rod at the output end. The eccentric rod is connected to the stop block so that when rotating, it drives the stop block to move away from the rotation path of the limiting block.

3. The luggage electronic lock according to claim 2, wherein, The stop includes a toggle part; the second elastic element is a compression spring, and the toggle part is sandwiched between the eccentric rod and the compression spring.

4. The luggage electronic lock according to claim 3, wherein The actuating part has a limiting groove on the side facing the compression spring, and one end of the compression spring is inserted into the limiting groove.

5. The electronic lock of luggage according to claim 3, wherein The actuating part has a limiting boss on the side facing the compression spring, and one end of the compression spring is sleeved on the limiting boss.

6. The luggage electronic lock according to claim 1, wherein: The limiting block has a first slot on its rotation path. The first slot is used to accommodate the stop block. The opening of the first slot is chamfered to guide the stop block into the first slot.

7. The electronic lock of any of claims 1-6, wherein, The electronic unlocking component includes: A fingerprint recognition module is exposed in the base; The control circuit module is electrically connected to the fingerprint recognition module and the power source.

8. The luggage electronic lock according to claim 7, wherein, The electronic unlocking component also includes a key interface exposed on the base and electrically connected to the control circuit module. The key interface is used to electrically connect to an electronic key.

9. A storage box characterized by, include: The latch is the same as the electronic lock for bags shown in any one of claims 1-8, wherein the latch is used to cooperate with the latch of the electronic lock for locking the storage box.

10. A kit, characterized by include: The latch is an electronic lock as shown in any one of claims 1-8, the latch being used to engage with the latch of the bag electronic lock to lock the storage bag.