A recycling storage box for old power batteries with a sorting structure

By designing a recycling and storage box for old power batteries with a classification structure and protective reinforcement components, the problems of battery classification and protection are solved, thereby improving the stability and safety of the batteries.

CN224577240UActive Publication Date: 2026-07-31GUANGZHOU XINHUAN ENERGY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU XINHUAN ENERGY TECHNOLOGY CO LTD
Filing Date
2025-08-14
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing technology cannot classify normal used batteries from damaged used batteries, and lacks protective and reinforcement functions, resulting in unstable battery transportation and easy damage.

Method used

A recycling and storage box for old power batteries with a classification structure was designed, which includes an isolation plate, a partition plate, a reinforcement frame and a biodegradable sleeve. The isolation plate enables battery classification, the reinforcement frame provides support, and the biodegradable sleeve provides fire protection at high temperatures.

Benefits of technology

It enables the effective classification of old and damaged batteries, improves the stability and safety of battery storage, prevents battery damage from impacts and explosions, and enhances the safety of transportation.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224577240U_ABST
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Abstract

This utility model provides a used power battery recycling storage box with a classification structure, belonging to the field of battery recycling technology. It includes a storage box, a classification component, and a protective reinforcement component. The classification component includes connecting plates on both sides of an isolation plate. Several guide grooves are provided at both ends of the two connecting plates and at both ends of the inner wall of the storage box. Several partition plates are slidably connected inside the guide grooves. The advantages of this utility model are: in use, normal used batteries and damaged used batteries can be placed on both sides of the isolation plate, and the partition plates can be used to separate them according to their shape, achieving classification. If some batteries are large, the user can control the drive component to slide the clip out of the clip slot, releasing the restriction on the partition plate, allowing the partition plate to be pulled out of the guide groove and inserted into other guide grooves, changing the space, and thus allowing batteries of different sizes to be stored, improving stability, thereby achieving the purpose of classification and storage of batteries of different sizes.
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Description

Technical Field

[0001] This utility model belongs to the field of battery recycling technology, specifically relating to a used power battery recycling storage box with a classification structure. Background Technology

[0002] A battery refers to a cup, tank, or other container or composite container containing an electrolyte solution and metal electrodes to generate an electric current. It is a device that converts chemical energy into electrical energy. A search revealed that application number "CN202121288148.1" discloses "a device for recycling waste batteries," which describes a system where "multiple recycling holes are opened at the front end of the casing. These holes can be arranged in different shapes. When recycling is needed, pulling outwards on multiple ball handles drives a connecting rod, causing a telescopic rod and spring fixed to a connecting plate to elastically pull the connecting plate downwards along a second slide rail, thus facilitating the insertion of waste batteries into the collection box." The system uses multiple partitions fixed between the front and rear inner walls of the collection box to facilitate battery sorting and recycling. Multiple recycling holes, which can be configured in different shapes, are opened at the front of the box. When recycling is needed, pulling outwards on multiple ball handles drives a connecting rod, which in turn causes a telescopic rod and spring fixed to the connecting plate to elastically pull the connecting plate downwards along a second slide rail, facilitating the insertion of waste batteries into the collection box. While this system effectively sorts batteries and uses multiple partitions fixed between the front and rear inner walls of the collection box for easy recycling, the above-mentioned comparison document still has the following problems in actual use:

[0003] In actual use, it is impossible to classify normal old batteries from damaged old batteries, it is impossible to adjust according to the shape of the battery, and it lacks protective and reinforcement functions during use, which makes battery transportation prone to problems.

[0004] Therefore, providing a storage box that can classify old and damaged old batteries, can be adjusted according to the shape of the battery, and has protective reinforcement is highly practical. Utility Model Content

[0005] The purpose of this invention is to provide a used power battery recycling and storage box with a classification structure, in order to solve the above-mentioned technical problems.

[0006] This utility model provides a used power battery recycling storage box with a sorting structure, including a storage box, a sorting component, and a protective reinforcement component.

[0007] The storage box has an isolation plate in the middle of its inner wall;

[0008] The sorting component includes connecting plates disposed on both sides of the isolation plate. Several guide grooves are provided at both ends of the two connecting plates and at both ends of the inner wall of the storage box. Several partition plates are slidably connected inside the several guide grooves. Two limiting rods are provided inside the partition plates. Moving strips are slidably connected to the outer walls of the two limiting rods. Hinges are provided at both ends of the moving strips. A connecting rod is hinged at one end of each of the two hinges. A locking head is provided at the top of the end of each of the two connecting rods.

[0009] The protective reinforcement assembly includes reinforcement frames located at the four corners of the outer wall of the storage box, reinforcement rods located in the middle of the reinforcement frames, and connection frames located at both ends of the storage box. Two stabilizing frames are interlaced inside the connection frames. A protective cover is hinged to the top of the storage box, and a biodegradable sleeve is located at the bottom of the inner wall of the protective cover.

[0010] In one embodiment of this utility model, the driving assembly includes a blocking plate disposed in the middle of the outer wall of two limiting rods, two springs disposed at the top of the moving bar, the top of each of the two springs being fixedly connected to the top of the inner wall of the partition plate, a pull rod disposed at the top of the moving bar, a pull head disposed at the top of the pull rod penetrating the partition plate, auxiliary grooves being provided at both ends of the partition plate, and limiting posts disposed in the middle of the two connecting rods, the two sides of the two limiting posts being fixedly connected to the inner wall of the partition plate.

[0011] In one embodiment of this utility model, the fixing component includes a protective box disposed on the top of the protective cover. Screw nuts are threadedly connected to both sides of the inner wall of the protective box. A rotating head is disposed between the two screw nuts. A worm gear is disposed on the outer wall of the rotating head. A worm is meshed with the top of the worm gear. One end of the worm is rotatably connected to one end of the inner wall of the protective box. The other end of the worm passes through the protective box and is provided with a handle. Movable frames are threadedly connected to the outer walls of both screw nuts. The ends of both movable frames pass through the protective box and are inserted into a stabilizing frame. The bottom of the stabilizing frame is movably connected to the protective cover.

[0012] In one embodiment of this utility model, auxiliary rods are slidably connected inside the two movable frames, and both sides of the auxiliary rods are fixedly connected to the protective box.

[0013] In one embodiment of this utility model, a slot is provided in the middle of each of the several guide grooves, and the ends of the two clips are inserted and connected to the slot.

[0014] In one embodiment of this utility model, the storage box is provided with handles on both sides, and a protective lock is provided at one end of the protective cover.

[0015] In one embodiment of this utility model, the interior of the biodegradable sleeve is provided with perfluorohexanone.

[0016] Compared with the prior art, the beneficial effects of this utility model are:

[0017] 1) When in use, normal old batteries and damaged old batteries can be placed on both sides of the separator plate. The separator plate can be used to separate batteries according to their different shapes, thus achieving classification. If some batteries are large, the user can control the drive component to slide the card head out of the card slot, release the limit on the separator plate, pull the separator plate out of the guide slot, and insert it into other guide slots to change the space, thereby allowing batteries of different sizes to be stored, improving stability, and thus achieving the purpose of classification and storage of batteries of different sizes.

[0018] 2) When in use, it can be used with the reinforcing rod to support and reinforce the storage box, making the storage box more stable in protecting the internal battery and preventing damage to the internal battery from impacts. It can also use the stabilizer to fix the protective cover and the storage box together stably, preventing the protective cover from being blown open and igniting other nearby items if the internal battery explodes. It further protects the storage box. In the event of a fire inside the storage box, the high temperature will melt the biodegradable sleeve, allowing the perfluorohexanone inside to be discharged for fire extinguishing, thereby achieving the purpose of protection and reinforcement. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the unfolded structure of this utility model;

[0022] Figure 3 This is an enlarged schematic diagram of the internal structure of the protective box of this utility model;

[0023] Figure 4 This is a schematic diagram of the internal structure of the partition plate of this utility model.

[0024] In the diagram: 100, storage box; 110, isolation plate; 200, sorting component; 210, connecting plate; 220, partition plate; 230, limit rod; 240, moving strip; 250, hinge seat; 260, connecting rod; 270, locking head; 300, protective reinforcement component; 310, reinforcement frame; 320, reinforcement rod; 330, connecting frame; 340, stabilizing frame; 350, protective cover; 360, biodegradable sleeve; 400, drive component; 410, blocking plate; 420, spring; 430, pull rod; 440, pull head; 450, limit post; 500, fixing component; 510, protective box; 520, lead screw nut; 530, worm gear; 540, worm; 550, grip handle; 560, moving frame; 600, auxiliary rod; 700, carrying handle; 800, protective lock. Detailed Implementation

[0025] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0026] Example

[0027] Please see Figure 1-4 A used power battery recycling storage box with a classification structure includes a storage box 100, a classification component 200, and a protective reinforcement component 300.

[0028] Please refer to the details. Figure 1 An isolation plate 110 is provided in the middle of the inner wall of the storage box 100.

[0029] Please see Figure 2-4 The sorting component 200 includes connecting plates 210 disposed on both sides of the isolation plate 110. Several guide grooves are provided at both ends of the two connecting plates 210 and at both ends of the inner wall of the storage box 100. Several partition plates 220 are slidably connected inside the several guide grooves. Two limiting rods 230 are provided inside the partition plates 220. Moving strips 240 are slidably connected to the outer walls of the two limiting rods 230. Hinges 250 are provided at both ends of the moving strips 240. A connecting rod 260 is hinged to one end of each of the two hinges 250. A locking head 270 is provided at the top of the end of each of the two connecting rods 260.

[0030] In one specific embodiment, the partition plate 220 allows normal old batteries and damaged old batteries to be placed on opposite sides of the partition plate 110 during use. The partition plate 220 can also be used to separate batteries according to their shape, thus achieving classification. If some batteries are large, the user can control the drive component 400 to slide the card head 270 out of the card slot, releasing the restriction on the partition plate 220. This allows the partition plate 220 to be pulled out of the guide slot and inserted into other guide slots, changing the space and allowing batteries of different sizes to be stored. This improves stability and achieves the purpose of classification and storage of batteries of different sizes.

[0031] Please see Figure 1-3 The protective reinforcement component 300 includes reinforcement frames 310 located at the four corners of the outer wall of the storage box 100, reinforcement rods 320 located in the middle of the reinforcement frames 310, connection frames 330 located at both ends of the storage box 100, two stabilizing frames 340 interlaced inside the connection frames 330, and a protective cover 350 hinged to the top of the storage box 100. A biodegradable sleeve 360 ​​is located at the bottom of the inner wall of the protective cover 350.

[0032] In one specific embodiment, the reinforcement frame 310 facilitates cooperation with the reinforcement rod 320 during use, thereby supporting and reinforcing the storage box 100. This allows the storage box 100 to more stably protect its internal battery, preventing damage from impacts. The stabilizer 340 also securely fixes the protective cover 350 and the storage box 100 together, preventing the protective cover 350 from being blown open and igniting nearby items should the internal battery explode. Furthermore, the biodegradable sleeve 360 ​​is used; if the battery inside the storage box 100 catches fire, the high temperature will melt the biodegradable sleeve 360, allowing it to release perfluorohexanone for fire extinguishing, thus achieving the purpose of protection and reinforcement.

[0033] Please see Figure 4 The drive assembly 400 includes a blocking plate 410 disposed in the middle of the outer wall of the two limiting rods 230, two springs 420 disposed at the top of the moving bar 240, the top of the two springs 420 being fixedly connected to the top of the inner wall of the partition plate 220, a pull rod 430 disposed at the top of the moving bar 240, a pull head 440 disposed at the top of the pull rod 430 penetrating the partition plate 220, auxiliary grooves being provided at both ends of the partition plate 220, and limiting posts 450 disposed in the middle of the two connecting rods 260, the two sides of the two limiting posts 450 being fixedly connected to the inner wall of the partition plate 220.

[0034] In one specific embodiment, the movable strip 240 allows the user to easily change the position of the partition 220 by pulling the pull head 440. The pull head 440 moves the movable strip 240 upward via the pull rod 430. The upward movement of the movable strip 240 causes the spring 420 to contract under force. The upward movement of the movable strip 240 also causes the hinge seat 250 to move. The hinge seat 250 then causes the connecting rod 260 to rotate via the limit post 450, which in turn causes the locking head 270 to slide out of the slot, completing the removal. During subsequent installation, the pull head 440 is released, causing the spring 420 to reset and other parts to reset, allowing the locking head 270 to re-lock into the slot.

[0035] Please see Figure 1-3 The fixing component 500 includes a protective box 510 disposed on the top of the protective cover 350. Screw nuts 520 are threadedly connected to both sides of the inner wall of the protective box 510. A rotating head is disposed between the two screw nuts 520. A worm gear 530 is disposed on the outer wall of the rotating head. A worm 540 is meshed with the top of the worm gear 530. One end of the worm 540 is rotatably connected to one end of the inner wall of the protective box 510. The other end of the worm 540 passes through the protective box 510 and is provided with a handle 550. Movable frames 560 are threadedly connected to the outer walls of both screw nuts 520. The ends of both movable frames 560 pass through the protective box 510 and are inserted into and connected to a stabilizing frame 340. The bottom of the stabilizing frame 340 is movably connected to the protective cover 350.

[0036] In one specific embodiment, the provided grip 550 allows the user to rotate the grip 550 during use. The rotation of the grip 550 will drive the worm gear 540 to rotate the worm wheel 530, which in turn drives the rotating head. The rotating head drives the two lead screw nuts 520 to rotate. The two lead screw nuts 520 have opposite threads, which in turn allow the lead screw nuts 520 to engage with the auxiliary rod 600 through their external threads, thus allowing the moving frame 560 to be inserted into the stabilizing frame 340.

[0037] Please see Figure 3 The two movable frames 560 are internally slidably connected to auxiliary rods 600, and both sides of the auxiliary rods 600 are fixedly connected to the protective box 510.

[0038] In one specific embodiment, the auxiliary rod 600 facilitates the movement of the movable frame 560, making it more stable during movement, thus improving stability and increasing practicality.

[0039] Please see Figure 2 Each of the several guide slots has a slot in the middle, and the ends of the two card heads 270 are inserted into the slot.

[0040] In one specific embodiment, the provided slot allows the card head 270 to be inserted into the slot during use, so as to fix the separator 220 in the guide groove, isolate different batteries, and improve stability.

[0041] Please see Figure 1 The storage box 100 has handles 700 on both sides, and a protective lock 800 is provided at one end of the protective cover 350.

[0042] In one specific embodiment, the provided handle 700 allows the storage box 100 to be lifted during use and placed on other equipment for transportation, improving stability and increasing convenience.

[0043] Please see Figure 2 The interior of the biodegradable sleeve 360 ​​contains perfluorohexanone.

[0044] In one specific embodiment, the presence of perfluoroethyl ketone facilitates the use of its ability to suppress the explosion of electrolyte vapors, thereby assisting and protecting the battery, suppressing fires, and improving safety.

[0045] In use, the provided divider 220 allows normal and damaged old batteries to be placed on opposite sides of the separator 110. The divider 220 also allows for separation based on shape, achieving categorization. If some batteries are large, the user can control the drive assembly 400 to slide the card head 270 out of the card slot, releasing the limit on the divider 220. This allows the divider 220 to be pulled out of the guide slot and inserted into other guide slots, changing the space and allowing batteries of different sizes to be stored, improving stability and achieving the purpose of categorization and storage of batteries of different sizes. Finally, the provided reinforcement bracket 310 facilitates... When used, it can cooperate with the reinforcing rod 320 to support and reinforce the storage box 100, so that the storage box 100 can more stably protect the internal battery and avoid damage to the internal battery due to bumps. The stabilizer 340 can also be used to stably fix the protective cover 350 and the storage box 100 together, so as to prevent the protective cover 350 from being blown open and igniting other nearby items if the internal battery explodes. Finally, it can further protect the storage box 100. In the event of a fire inside the storage box 100, the high temperature will melt the biodegradable sleeve 360, allowing the perfluorohexanone inside to be discharged for fire extinguishing, thereby achieving the purpose of protection and reinforcement.

[0046] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A used power battery recycling storage box with a classification structure, characterized in that, include: Storage box (100), wherein an isolation plate (110) is provided in the middle of the inner wall of the storage box (100); A sorting component (200) includes connecting plates (210) disposed on both sides of a partition plate (110). Both ends of the two connecting plates (210) and both ends of the inner wall of the storage box (100) are provided with a plurality of guide grooves. A plurality of partition plates (220) are slidably connected inside the plurality of guide grooves. Two limiting rods (230) are disposed inside the partition plates (220). A moving strip (240) is slidably connected to the outer wall of the two limiting rods (230). Both ends of the moving strip (240) are provided with hinge seats (250). One end of each of the two hinge seats (250) is hinged with a connecting rod (260). The top of the end of each of the two connecting rods (260) is provided with a locking head (270). A protective reinforcement component (300) includes reinforcement frames (310) located at the four corners of the outer wall of the storage box (100), a plurality of reinforcement rods (320) located in the middle of the plurality of reinforcement frames (310), a plurality of connecting frames (330) located at both ends of the storage box (100), two stabilizing frames (340) being interlaced inside the plurality of connecting frames (330), a protective cover (350) hinged to the top of the storage box (100), and a biodegradable sleeve (360) located at the bottom of the inner wall of the protective cover (350).

2. The old power battery recycling storage box with a classification structure according to claim 1, characterized in that: A drive assembly (400) includes a blocking plate (410) disposed in the middle of the outer wall of two limiting rods (230), two springs (420) disposed at the top of the moving bar (240), the top of the two springs (420) being fixedly connected to the top of the inner wall of the partition plate (220), a pull rod (430) disposed at the top of the moving bar (240), a pull head (440) disposed at the top of the pull rod (430) penetrating the partition plate (220), auxiliary grooves being provided at both ends of the partition plate (220), and limiting posts (450) being provided in the middle of the two connecting rods (260), the two sides of the two limiting posts (450) being fixedly connected to the inner wall of the partition plate (220).

3. A used power battery recycling and storage box with a classification structure according to claim 1, characterized in that: A fixing component (500) includes a protective box (510) disposed on the top of a protective cover (350). Both sides of the inner wall of the protective box (510) are threaded with lead screw nuts (520). A rotating head is disposed between the two lead screw nuts (520). A worm gear (530) is disposed on the outer wall of the rotating head. A worm (540) meshes with the top of the worm gear (530). One end of the worm (540) is rotatably connected to one end of the inner wall of the protective box (510). The other end of the worm (540) passes through the protective box (510) and is provided with a handle (550). The outer walls of both lead screw nuts (520) are threaded with movable frames (560). The ends of both movable frames (560) pass through the protective box (510) and are inserted into a stabilizing frame (340). The bottom of the stabilizing frame (340) is movably connected to the protective cover (350).

4. A used power battery recycling and storage box with a classification structure according to claim 3, characterized in that: The two movable frames (560) are internally slidably connected with auxiliary rods (600), and both sides of the auxiliary rods (600) are fixedly connected to the protective box (510).

5. A used power battery recycling and storage box with a classification structure according to claim 1, characterized in that: Each of the guide slots has a slot in the middle, and the ends of the two card heads (270) are inserted into the slot.

6. A used power battery recycling and storage box with a classification structure according to claim 1, characterized in that: The storage box (100) is provided with handles (700) on both sides, and a protective lock (800) is provided at one end of the protective cover (350).

7. A used power battery recycling and storage box with a classification structure according to claim 1, characterized in that: The interior of the biodegradable sleeve (360) contains perfluorohexanone.