Storage box capable of being unlocked in multiple modes
By combining electronic and mechanical locks in the storage box design, a dual unlocking mechanism is achieved where one unlocking method fails but the other remains usable. This solves the problems of insufficient security and convenience of traditional storage boxes, ensuring the safe storage of items.
Patent Information
- Application Number
- CN202423214987.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Traditional storage boxes have mechanical locks that are prone to wear and tear and require multiple keys for management, while electronic locks require battery power and cannot be opened without a backup power source, resulting in insufficient security and convenience.
Design a storage box with multiple unlocking methods, combining electronic and mechanical locks. The electronic lock includes a control component, a power component, a power supply component, a latch component, and a spring component, while the mechanical lock includes a lock cylinder and a linkage block. The two work together to achieve dual unlocking methods, with battery backup power and key opening functions.
This ensures that if one unlocking method fails, another method can still be used, improving security and convenience, and avoiding problems caused by batteries running out or keys being lost.
Smart Images

Figure CN223560233U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of storage box technology, specifically to a storage box with multiple unlocking methods. Background Technology
[0002] With the increasing demand for personal belongings management and security, storage boxes, as an important tool for protecting valuables and privacy, have received more and more attention for their functionality and security.
[0003] Traditional storage boxes mainly rely on a single mechanical lock or a simple electronic lock for security. However, these lock types have certain limitations. Traditional mechanical locks have a simple structure and are prone to wear and tear due to long-term use, making them difficult to open. When users need to carry multiple keys, it is easy to lose or mix them up. Furthermore, mechanical keys can be copied, increasing the risk of unauthorized access. On the other hand, single electronic locks usually require battery power. Once the battery is depleted, they cannot be opened unless there is a backup power source or an emergency unlocking mechanism. Utility Model Content
[0004] In view of the above-mentioned technical problems in the existing technology, this utility model provides a storage box with multiple unlocking methods.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A storage box with multiple unlocking methods is provided, including a box body and a box lid. The box lid has a hook ring inside, and the box body has a lock assembly. The lock assembly includes a mounting frame, within which are an electronic lock and a mechanical lock. The electronic lock includes a latch assembly, which includes a latch fixing member and a latch that are rotatably connected. The top of the latch extends a latch hook for hooking the hook ring. A power assembly includes a motor and a gearbox. The gearbox extends a lever for driving the latch fixing member to rotate, thereby releasing the latch. A spring assembly is used to drive the latch to release the latch hook after the latch fixing member releases the latch. The box also includes a power supply assembly for receiving power from an externally designated control assembly and for providing power to the control assembly and the power assembly. The mechanical lock includes a lock cylinder and a linkage block. The linkage block extends a first claw arm. Rotating the lock cylinder drives the linkage block to rotate, and the first claw arm pushes the latch fixing member to rotate, causing the latch fixing member to release the latch. The latch releases the latch hook under the drive of the spring assembly.
[0007] Preferably, the locking assembly is disposed on the inner sidewall of the mounting frame. The inner sidewall of the mounting frame is provided with a first mounting post and a second mounting post. The locking fastener is disposed on the first mounting post, and the locking fastener is disposed on the second mounting post. The locking fastener is provided with an extension rod. The swinging rod pushes the extension rod, and the extension rod drives the locking fastener to rotate, thereby releasing the locking fastener. The elastic assembly is also disposed on the inner sidewall of the mounting frame. The elastic assembly includes a connecting post and a first torsion spring. The two ends of the first torsion spring extend in opposite directions with spring rings and first spring hooks. The main body of the first torsion spring is sleeved on the second mounting post. The spring rings hook the connecting post, and the first spring hooks hook the locking fastener. The first spring hooks are used to drive the locking fastener to rotate through the elastic force after the locking fastener releases the locking fastener, so as to release the locking hook.
[0008] Preferably, the control component includes an electrically connected control board and an unlocking panel. The unlocking panel is located on the top of the mounting frame. The top of the unlocking panel is provided with multiple password keys for inputting unlocking commands and a fingerprint reader for recognizing fingerprints. The lid is provided with an unlocking hole. When the lid is closed, the unlocking panel is exposed through the unlocking hole.
[0009] Preferably, the power supply assembly is housed within the mounting frame, and includes a power compartment and a battery housed within the power compartment; a charging port is also provided on the side wall of the housing, which is used to connect an external power source to supply power to the control and power components in an emergency.
[0010] Preferably, the power assembly further includes a stabilization assembly, which includes a stabilizer bar and a stabilizer plate. The stabilizer bar is disposed on one side of the gearbox, and one end of the stabilizer plate is connected to the stabilizer bar, while the other end is connected to the gearbox.
[0011] Preferably, a second torsion spring is also fitted on the lock cylinder to reset the lock cylinder after rotation. One end of the second torsion spring is provided with a second spring hook, which is connected to the linkage block. The linkage block also extends with a second claw arm, which is provided with a groove to hook the second spring hook. The other end of the second torsion spring extends with a spring tail, which abuts against the bottom of the box.
[0012] Preferably, the other end of the box body and the box cover connected by the locking assembly is hinged to each other by a hinge. The hinge includes a male blade, a female blade and a pin. The male blade is connected to the box body, the female blade is connected to the box cover, and the pin is inserted into the hinge between the male blade and the female blade. The pin is provided with a flip spring, which is connected to the box cover and can open the box cover after the latch releases the locking hook.
[0013] Preferably, the box body and the lid are also provided with shock-absorbing pads and fixing posts, and the shock-absorbing pads are fixed by the fixing posts.
[0014] Preferably, the side wall of the box is provided with a wall hole, and an anti-theft cable is connected to the wall hole. The anti-theft cable includes a cable body, a connecting ring at one end of the cable body, and a connecting part at the other end. The connecting part includes a first limiting part, a second limiting part, and a limiting groove. The limiting groove is located between the first limiting part and the second limiting part. The second limiting part is connected to one end of the cable body. The limiting groove is used to pass through the wall hole of the box body. The first limiting part and the second limiting part are located on both sides of the side wall of the box body.
[0015] The beneficial effects of this utility model are:
[0016] This utility model discloses a storage box with multiple unlocking methods, including a box body and a box lid. The box lid contains a hook, and the box body contains a lock assembly. The lock assembly includes a mounting frame, within which are an electronic lock and a mechanical lock. The electronic lock includes a latch assembly, which comprises a latch fixing member and a latch rotatably connected, with a latch hook extending from the top of the latch for engaging the hook. A power assembly includes a motor and a gearbox, with the gearbox extending a lever for driving the latch fixing member to rotate, thereby releasing the latch. A spring assembly is used to drive the latch to release the hook after the latch fixing member releases the latch. The box also includes a power supply assembly for receiving power from an externally designated control assembly and for providing power to the control assembly and the power assembly. The mechanical lock includes a lock cylinder and a linkage block, with the linkage block extending a first claw arm. Rotating the lock cylinder drives the linkage block to rotate, and the first claw arm pushes the latch fixing member to rotate, causing the latch fixing member to release the latch. The latch then releases the hook under the drive of the spring assembly. Because the storage box has both electronic and mechanical locks, users can choose the most suitable unlocking method according to the actual situation. Even if one unlocking method fails, the other can still be used, thus ensuring the safe storage of items. Attached Figure Description
[0017] Figure 1 This is a perspective view of the storage box in the open state in the embodiment.
[0018] Figure 2 This is a perspective view of the storage box in its closed state in the embodiment.
[0019] Figure 3 This is a perspective view of the lock assembly in the embodiment.
[0020] Figure 4 This is an exploded view of the lock assembly in the embodiment.
[0021] Figure 5 This is an exploded view of the electronic lock in the embodiment.
[0022] Figure 6 This is a perspective view of the power component and locking component in the embodiment.
[0023] Figure 7 This is a perspective view of the latch and elastic component in the embodiment.
[0024] Figure 8 This is a perspective view of the mechanical lock in the embodiment.
[0025] Figure 9 This is a perspective view of the storage box in the open state in the embodiment.
[0026] Figure 10 for Figure 9 Enlarged view of point A in the middle.
[0027] Figure 11 This is an exploded view of the hinge in the embodiment.
[0028] Figure 12 This is a three-dimensional view of the anti-theft cable in the embodiment.
[0029] Figure 13 for Figure 12 Enlarged view of section B in the middle.
[0030] Reference numerals: 1. Box body; 10. Lock assembly; 11. Mounting frame; 111. First mounting post; 112. Second mounting post;
[0031] 12. Electronic lock; 121. Control component; 1211. Control board; 1212. Unlock panel; 12121. Password keypad; 12122. Fingerprint reader; 122. Power component; 1221. Motor; 1222. Gearbox; 1223. Swing arm; 123. Stabilizing component; 1231. Stabilizing bar; 1232. Stabilizing plate; 124. Locking assembly; 1241. Locking fastener; 12411. Extension rod; 1242. Locking latch; 1243. Locking hook; 125. Power component; 1251. Power compartment; 1252. Battery; 126. Spring component; 1261. Connecting post; 1262. First torsion spring; 1263. Spring ring; 1264. First spring hook;
[0032] 13. Mechanical lock; 131. Lock cylinder; 132. Linkage block; 1321. First claw arm; 1322. Second claw arm; 1333. Groove; 1334. Second torsion spring; 1335. Second spring hook; 1336. Spring tail;
[0033] 14. Charging port;
[0034] 15. Wall hole;
[0035] 2. Box lid; 20. Hook and loop; 21. Unlocking hole;
[0036] 3. Shock-absorbing pads;
[0037] 4. Fixed column;
[0038] 5. Hinge; 50. Male blade; 51. Female blade; 52. Pin;
[0039] 6. Flip-cover spring;
[0040] 7. Anti-theft cable; 70. Cable body; 71. Connecting ring; 72. Connecting part; 721. First limiting part; 722. Second limiting part; 723. Limiting groove. Detailed Implementation
[0041] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0042] This embodiment provides a storage box with multiple unlocking methods, such as... Figures 1 to 13 As shown, the device includes a box body 1 and a box cover 2. The box cover 2 is provided with a hook 20. The box body 1 is provided with a lock assembly 10 that cooperates with the hook 20 to open or close the box body 1 and the box cover 2. The lock assembly 10 includes a mounting frame 11 and an electronic lock 12 disposed in the mounting frame 11. The electronic lock 12 includes a control assembly 121, a power assembly 122, a power supply assembly 125, a latch assembly 124, and a spring assembly 126.
[0043] The control component 121 is used to receive external commands and includes an electrically connected control board 1211 and unlocking panel 1212. The control board 1211 is disposed within the mounting frame 11, and the unlocking panel 1212 is disposed on top of the mounting frame 11. The top of the unlocking panel 1212 has multiple password buttons 12121 for inputting unlocking commands and a fingerprint reader 12122 for recognizing fingerprints. An unlocking hole 21 is also provided on the top of the cover 2. When the box body 1 and the cover 2 are closed, the unlocking panel 1212 protrudes from the top of the cover 2 for easy user operation.
[0044] The power assembly 122 is housed within the mounting frame 11. The power assembly 122 includes a motor 1221 and a gearbox 1222. The motor 1221 is connected to the gearbox 1222 and drives the gearbox 1222 to rotate. A rocker arm 1223 is also provided on the top of the gearbox 1222. When the motor 1221 starts and drives the gearbox 1222 to rotate, the rotation is transmitted through the gearbox 1222 to the rocker arm 1223, causing the rocker arm 1223 to swing accordingly. The power assembly 122 also includes a stabilizing assembly 123, which includes a stabilizing rod 1231 and a stabilizing plate 1232. The stabilizing rod 1231 is located on one side of the gearbox 1222. One end of the stabilizing plate 1232 is connected to the stabilizing rod 1231, providing support and stability. One end of the stabilizing plate 1232 is connected to the stabilizing rod 1231, and the other end is connected to the gearbox 1222, ensuring that the gearbox 1222 remains stable during operation and reducing shaking.
[0045] The power supply assembly 125 is housed within the mounting frame 11. The power supply assembly 125 includes a power compartment 1251, which contains a battery 1252 for providing power to the control assembly 121 and the power assembly 122. A charging port 14 is provided on the side wall of the housing 1. The charging port 14 is used in emergencies, such as when the battery 1252 is dead or the key is not readily available, to connect an external power source to provide power to the control assembly 121 and the power assembly 122, ensuring the electronic lock 12 can operate continuously and stably.
[0046] The locking assembly 124 includes a locking fastener 1241 and a locking buckle 1242 rotatably connected. A locking hook 1243 extends from the top of the locking buckle 1242 to engage the hook ring 20, allowing the locking buckle 1242 to flexibly switch between locked and unlocked states. The locking assembly 124 is disposed on the inner wall of the mounting frame 11, which has a first mounting post 111 and a second mounting post 112 spaced apart from each other. The locking fastener 1241 is disposed on the first mounting post 111, and the locking buckle 1242 is disposed on the second mounting post 112. By disposing the locking fastener 1241 on the first mounting post 111 and the locking buckle 1242 on the second mounting post 112, the rotation of the locking fastener 1241 and the locking hook 1243 becomes more stable.
[0047] The elastic component 126 is disposed on the inner side wall of the mounting frame 11. The elastic component 126 includes a connecting post 1261 and a first torsion spring 1262. The main body of the first torsion spring 1262 is sleeved on the second mounting post 112. Spring rings 1263 and first spring hooks 1264 extend from both ends of the first torsion spring 1262 in opposite directions. The spring rings 1263 hook the connecting post 1261, and the first spring hooks 1264 hook the lock 1242. In use, the user enters a password via the password keypad 12121 on the unlock panel 1212 or places their finger on the fingerprint reader 12122 for authentication. When the control board 1211 recognizes the correct password or the fingerprint successfully matches the registered template, the control board 1211 sends a signal to start the power assembly 122. At this time, the control board 1211 controls the motor 1221 to start running. The motor 1221 drives the gearbox 1222 to rotate, and the gearbox 1222 drives the swing arm 1223 to swing. An extension is provided on the locking fastener 1241. When the extension rod 12411 and the swing rod 1223 swing, they contact and push the extension rod 12411, causing the locking fastener 1241 to rotate clockwise (referring to direction 6 in the attached figure). The rotation of the locking fastener 1241 causes it to release its constraint on the lock 1242. When the lock hook 1243 is hooked on the hook ring 20, the first torsion spring 1262 is in a taut state. When the locking fastener 1241 releases the lock 1242, the first spring hook 1264 drives the lock 1242 to rotate through the elastic force provided by the first torsion spring 1262, causing it to release the lock hook 1243 and complete the unlocking action.
[0048] Furthermore, the lock assembly 10 also includes a mechanical lock 13 disposed within the mounting frame 11. The mechanical lock 13 includes a lock cylinder 131, on which a linkage block 132 is fitted. The linkage block 132 extends a first claw arm 1321. In use, the lock cylinder 131 is rotated counterclockwise by an external key, causing the lock cylinder 131 to rotate (to accommodate...) Figure 6 (With direction as reference), the linkage block 132 rotates counterclockwise together with the lock cylinder 131. At this time, the first claw arm 1321 contacts the lock fastener 1241 and pushes the lock fastener 1241 to rotate, thereby releasing the lock fastener 1241 from the constraint of the lock buckle 1242. The lock buckle 1242 releases the lock hook 1243 under the drive of the first torsion spring 1262, realizing the unlocking action.
[0049] A second torsion spring 1334 is fitted onto the lock cylinder 131 to reset the lock cylinder 131 after rotation. One end of the second torsion spring 1334 extends into a second spring hook 1335. A second claw arm 1322 extends from the linkage block 132, and the second claw arm 1322 has a groove 1333 for hooking the second spring hook 1335. The other end of the second torsion spring 1334 extends into a spring tail 1336, which abuts against the bottom of the housing 1. In use, when the user unlocks the lock with an external key, the lock cylinder 131 rotates counterclockwise (to accommodate the rotation). Figure 6 (Using the direction as a reference), the lock cylinder 131 drives the linkage block 132 to rotate counterclockwise. As the linkage block 132 rotates counterclockwise, the second claw arm 1322 drives the second torsion spring 1334 to rotate counterclockwise through the groove 1333. The second torsion spring 1334 begins to store elastic potential energy. When the key is released, the second torsion spring 1334 attempts to return to its original state, using its stored elastic potential energy to drive the second spring hook 1335 to push the linkage block 132, thereby causing the lock cylinder 131 to rotate clockwise back to its initial position. During this process, the spring tail 1336 serves as a fixed point, always abutting against the bottom of the housing 1, ensuring that the second torsion spring 1334 can correctly accumulate torsional force when the lock cylinder 131 rotates counterclockwise. It also ensures that when the second torsion spring 1334 pushes the lock cylinder 131 to reset, it can smoothly and accurately return to its original position. By providing a second torsion spring 1334 on the lock cylinder 131, when the lock cylinder 13 is unlocked using an external key, the second torsion spring 1334 can store elastic potential energy. When the external key is released, the elastic potential energy stored in the second torsion spring 1334 drives the lock cylinder 13 to reset, preventing the lock cylinder 131 from getting stuck or failing to return to its original position after unlocking. By providing a groove 1333 on the second claw arm 1332, the groove 1333 can hold the second spring hook 1335, limiting the second spring hook 1335 and preventing the second spring hook 1335 from falling off during the compression or rebound of the second torsion spring 1334.
[0050] Furthermore, the other end of the box body 1 and the box lid 2 connected by the locking assembly 10 is hinged to each other by a hinge 5. The hinge 5 includes a male blade 50, a female blade 51, and a pin 52. The male blade 50 connects to the box body 1, the female blade 51 connects to the box lid 2, and the pin 52 is inserted into the hinge between the male blade 50 and the female blade 51. A flip-top spring 6 is also provided on the pin 52, and the flip-top spring 6 is connected to the box lid 2. In use, when the box body 1 and the box lid 2 are closed, the flip-top spring 6 is in a taut state. When the locking fastener 1241 releases the locking buckle 1242, the flip-top spring 6 immediately takes effect, automatically lifting the box lid 2 upwards to open the box lid 2.
[0051] Furthermore, shock-absorbing pads 3 are respectively provided inside the box body 1 and the lid 2. The shock-absorbing pads 3 are preferably foam cotton. By providing shock-absorbing pads 3, when fragile or delicate items are placed in the storage box, the shock-absorbing pads 3 can effectively absorb and disperse external impact forces, reducing the impact of vibration on the items inside the storage box. Fixing posts 4 are also provided inside the box body 1 and the lid 2 to fix the shock-absorbing pads 3. The fixing posts 4 fix the shock-absorbing pads 3 inside the box body 1 and the lid 2, ensuring that the shock-absorbing pads 3 will not shift or fall off during use.
[0052] Furthermore, it also includes an anti-theft cable 7, which includes a cable body 70. One end of the cable body 70 is provided with a connecting ring 71, and the other end is provided with a connecting part 72. The connecting part 72 includes a first limiting part 721, a second limiting part 722, and a limiting groove 723. The limiting groove 723 is located between the first limiting part 721 and the second limiting part 722, and the second limiting part 722 is connected to one end of the cable body 70. A wall hole 15 is provided on the side wall of the box body 1. The anti-theft cable 7 is connected to the box body 1 through the connecting part 72. The limiting groove 723 is used to pass through the wall hole 15 of the box body 1, and the first limiting part 721 and the second limiting part 722 are located on both sides of the side wall of the box body 1.
[0053] In the description of this utility model, it is obvious that the described embodiments are only a part of the embodiments of this utility model, and not all of them. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0054] Therefore, the above detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
Claims
1. A storage box with multiple unlocking methods, characterized in that, Includes a box body (1) and a box cover (2), the box cover (2) is provided with a hook (20), the box body (1) is provided with a lock assembly (10), the lock assembly (10) includes a mounting frame (11), the mounting frame (11) is provided with an electronic lock (12) and a mechanical lock (13), the electronic lock (12) includes a latch assembly (124), the latch assembly (124) includes a latch fixing member (1241) and a latch (1242) rotatably connected, the top of the latch (1242) extends with a latch hook (1243) for hooking the hook (20); a power assembly (122) includes a motor (1221) and a gearbox (1222), the gearbox (1222) extends with a lever (1223) for driving the latch fixing member (1241) to rotate and thus releasing the latch (1242); elastic The component (126) is used to drive the latch (1242) to release the hook (1243) after the latch fastener (1241) releases the latch (1242); it also includes a power supply component (125) for receiving an externally designated control component (121) and for providing power to the control component (121) and the power component (122); the mechanical lock (13) includes a lock cylinder (131) and a linkage block (132), the linkage block (132) extending with a first claw arm (1321), by rotating the lock cylinder (131) to drive the linkage block (132) to rotate, the first claw arm (1321) pushes the latch fastener (1241) to rotate, so that the latch fastener (1241) releases the latch (1242), and the latch (1242) releases the hook (1243) under the drive of the elastic component (126).
2. A storage box with multiple unlocking methods according to claim 1, characterized in that, The locking assembly (124) is disposed on the inner side wall of the mounting frame (11). The inner side wall of the mounting frame (11) is provided with a first mounting post (111) and a second mounting post (112). The locking fastener (1241) is disposed on the first mounting post (111), and the lock (1242) is disposed on the second mounting post (112). The locking fastener (1241) is provided with an extension rod (12411). The swing rod (1223) swings and pushes the extension rod (12411), and the extension rod (12411) drives the locking fastener (1241) to rotate, thereby releasing the lock (1242). The elastic assembly (126) is also disposed on the mounting frame. (11) On the inner wall, the elastic component (126) includes a connecting post (1261) and a first torsion spring (1262). The two ends of the first torsion spring (1262) in opposite directions have spring rings (1263) and first spring hooks (1264). The main body of the first torsion spring (1262) is sleeved on the second mounting post (112). The spring rings (1263) hook the connecting post (1261), and the first spring hooks (1264) hook the latch (1242). The first spring hooks (1264) are used to drive the latch (1242) to rotate through the elastic force after the latch fixing member (1241) releases the latch (1242) so that it releases the latch hook (1243).
3. A storage box with multiple unlocking methods according to claim 2, characterized in that, The control assembly (121) includes an electrically connected control board (1211) and an unlocking panel (1212). The unlocking panel (1212) is located on the top of the mounting frame (11). The top of the unlocking panel (1212) is provided with multiple password keys (12121) for inputting unlocking commands and a fingerprint reader (12122) for recognizing fingerprints. The cover (2) is provided with an unlocking hole (21). When the cover (2) is closed, the unlocking panel (1212) is exposed from the unlocking hole (21).
4. A storage box with multiple unlocking methods according to claim 3, characterized in that, The power supply assembly (125) is set inside the mounting frame (11). The power supply assembly (125) includes a power compartment (1251) and a battery (1252) set inside the power compartment (1251). A charging port (14) is also provided on the side wall of the housing (1). The charging port (14) is used to supply power to the control assembly (121) and the power assembly (122) by connecting an external power source in an emergency.
5. A storage box with multiple unlocking methods according to claim 1, characterized in that, The power assembly (122) also includes a stabilization assembly (123), which includes a stabilizer bar (1231) and a stabilizer plate (1232). The stabilizer bar (1231) is located on one side of the gearbox (1222), and one end of the stabilizer plate (1232) is connected to the stabilizer bar (1231), while the other end is connected to the gearbox (1222).
6. A storage box with multiple unlocking methods according to claim 1, characterized in that, A second torsion spring (1334) is also fitted on the lock cylinder (131) to reset the lock cylinder (131) after rotation. One end of the second torsion spring (1334) is provided with a second spring hook (1335), which is connected to the linkage block (132). The linkage block (132) also extends a second claw arm (1322), which is provided with a groove (1333) for hooking the second spring hook (1335). The other end of the second torsion spring (1334) extends a spring tail (1336), which abuts against the bottom of the box body (1).
7. A storage box with multiple unlocking methods according to claim 1, characterized in that, The other end of the box body (1) and the box cover (2) connected by the locking assembly (10) is hinged to each other by the hinge (5). The hinge (5) includes a male blade (50), a female blade (51) and a pin (52). The male blade (50) is connected to the box body (1), the female blade (51) is connected to the box cover (2), and the pin (52) is inserted into the hinge between the male blade (50) and the female blade (51). The pin (52) is provided with a flip spring (6), which is connected to the box cover (2). After the latch (1242) releases the lock hook (1243), the box cover (2) can be opened.
8. A storage box with multiple unlocking methods according to claim 7, characterized in that, The box body (1) and the box cover (2) are respectively provided with shock-absorbing pads (3) and fixing posts (4), and the shock-absorbing pads (3) are fixed by the fixing posts (4).
9. A storage box with multiple unlocking methods according to claim 1, characterized in that, The side wall of the box body (1) is provided with a wall hole (15), and an anti-theft cable (7) is connected to the wall hole (15). The anti-theft cable (7) includes a cable body (70). One end of the cable body (70) is provided with a connecting ring (71), and the other end is provided with a connecting part (72). The connecting part (72) includes a first limiting part (721), a second limiting part (722), and a limiting groove (723). The limiting groove (723) is located between the first limiting part (721) and the second limiting part (722). The second limiting part (722) is connected to one end of the cable body (70). The limiting groove (723) is used to pass through the wall hole (15) of the box body (1). The first limiting part (721) and the second limiting part (722) are located on both sides of the side wall of the box body (1).