Multi-channel battery sorting device
The automated conveying and sorting of the multi-channel battery sorting device solves the problem of wasted manpower in the battery testing process and achieves a highly efficient battery testing workflow.
Patent Information
- Application Number
- CN202422970883.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-03
AI Technical Summary
During battery testing, frequent manual handling of batteries requires a lot of manpower, and existing technologies cannot effectively solve this problem.
A multi-channel battery sorting device is adopted, including a first conveying component, a detection component, and a second conveying component. Through automated conveying and sorting, frequent manual handling of batteries is avoided.
This eliminates the need for frequent manual battery movement during battery testing, saving manpower and improving testing efficiency.
Smart Images

Figure CN223587737U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery detection field, concretely relates to a multichannel battery sorting device. BACKGROUND
[0002] With the long -term use of power battery, the individual battery in battery pack can be damaged, voltage reduces, resistance becomes big, capacity becomes small bad result existing battery detection mode can see the patent of application No.
[0003] In the process of battery detection, the battery electrode to be detected needs to be connected with the detection connector, and then the electrical parameters of the battery are obtained through the detection circuit, but when a large number of batteries are detected, the batteries need to be frequently moved, which needs a lot of manpower.
[0004] Therefore, how to avoid frequent manual movement of the battery in the detection process is a technical problem to be solved. UTILITY MODEL CONTENTS
[0005] The utility model aims at overcoming the above technical defects, and provides a multichannel battery sorting device, which solves the technical problem of how to avoid frequent manual movement of the battery in the detection process in the prior art.
[0006] To achieve the above technical purpose, the utility model adopts the following technical scheme:
[0007] The utility model provides a multichannel battery sorting device, which comprises:
[0008] A first conveying assembly is used to convey the battery, and the first conveying assembly can pause conveying to make the battery rest.
[0009] A detection assembly comprises a support frame, a driving member and a detection connector, the support frame is arranged on the first conveying member, the detection connector is slidably arranged on the support frame, and the sliding track of the detection connector has a first position for connecting the battery electrode and a second position away from the battery.
[0010] A second conveying assembly receives the battery exported by the first conveying assembly, the second conveying assembly has a first guide outlet and a second guide outlet, the first guide outlet is used to export qualified batteries, and the second guide outlet is used to export unqualified batteries.
[0011] In some embodiments, the first conveying assembly comprises a first conveyor belt, and the first conveyor belt is horizontally arranged.
[0012] In some embodiments, the second conveying assembly comprises a second conveying belt, a first slide and a second slide, the second conveying belt is perpendicular to the first conveying belt, and a middle portion of the second conveying belt overlaps the outgoing end of the first conveying belt, the first slide overlaps one end of the second conveying belt, and the first guide outlet is located in the first slide, and the second slide overlaps the other end of the second conveying belt, and the second guide outlet is located in the second slide.
[0013] In some embodiments, the detection joint comprises a lifting seat and a terminal, the lifting seat is slidingly arranged on the support frame, and the terminal is arranged on the lifting seat.
[0014] In some embodiments, the support frame is provided with a sliding rail, and the lifting seat is slidingly arranged on the sliding rail.
[0015] In some embodiments, the driving member comprises a first cylinder, a cylinder body of the first cylinder is mounted on the support frame, and a piston rod of the first cylinder is connected to the lifting seat.
[0016] In some embodiments, the detection assembly further comprises a positioning member arranged below the detection joint, the positioning member is used to clamp the battery so that the battery electrode is aligned with the detection joint.
[0017] In some embodiments, the positioning member comprises a positioning plate, a sliding seat and a second cylinder, the positioning plate is arranged on one side of the first conveying assembly, the second cylinder is arranged on the other side of the first conveying assembly, the second cylinder is drivingly connected to the sliding seat to push the sliding seat to approach or move away from the positioning plate, and the battery is clamped by the sliding seat and the positioning plate so that the battery electrode is aligned with the detection joint.
[0018] In some embodiments, one side of the sliding seat facing the positioning plate is provided with a clamping groove.
[0019] In some embodiments, the clamping groove is provided with a guide wedge surface at the opening thereof.
[0020] The battery to be detected is placed on the first conveying assembly, the first conveying assembly then conveys the battery to the position of the detection assembly, then the driving member drives the detection joint to move from the second position to the first position so that the detection joint is connected to the battery electrode, and the battery can be detected. After the detection of the battery is completed, the battery can be conveyed to the second conveying assembly, the second conveying assembly guides the qualified battery out through the first guide outlet and guides the unqualified battery out through the second guide outlet. By using the above multi-channel battery sorting device, the battery does not need to be manually moved frequently during the detection process, and the manpower is saved. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1It is the structural schematic view of the multi-channel battery sorting device provided by the embodiment of the utility model.
[0022] Figure 2 It is the structural schematic view of the detection assembly provided by the embodiment of the utility model.
[0023] Figure 3 It is the structural schematic view of the sliding seat provided by the embodiment of the utility model.
[0024] The figure mark explanation: first conveying assembly 100, first conveyer belt 110, detection assembly 200, support frame 210, sliding rail 211, driving piece 220, first air cylinder 221, detection connector 230, lifting seat 231, terminal 232, positioning piece 240, positioning plate 241, sliding seat 242, clamping groove 2421, second air cylinder 243, second conveying assembly 300, second conveyer belt 310, first slide 320, second slide 330, Specific implementation
[0025] In order to make the utility model's purpose, technical scheme and advantage more clear and obvious, the following is combined with the drawing and the embodiment, and the utility model is further detailedly explained.It should be understood that the specific embodiment described here is only used to explain the utility model, and is not used to limit the utility model.
[0026] In order to solve the technical problem how to avoid frequent manual moving of batteries in the detection process, the utility model provides a kind of multi-channel battery sorting device, battery can be sent for detection by first conveying assembly 100, and the battery for detection is completed by second conveying assembly 300, and in the detection process, battery does not need to be frequently manually moved, and manpower is saved.
[0027] It should be noted that the multi-channel battery sorting device of the utility model is used for but not limited to battery detection etc., in order to facilitate explanation, in the utility model, only with the multi-channel battery sorting device applied to battery detection as an example for explanation, and the principle of the multi-channel battery sorting device applied in other types of equipment and the principle applied in battery detection are substantially same, and here is not repeated.
[0028] Please refer to Figure 1 , Figure 1The utility model discloses a structure diagram of multi -pass battery sorting device of one embodiment, and multi -pass battery sorting device includes first conveying assembly 100, detection component 200 and second conveying assembly 300, and first conveying assembly 100 is used for conveying battery, and first conveying assembly 100 can suspend conveying to make battery rest. Detection component 200 includes support frame 210, drive part 220 and detection connector 230, and support frame 210 sets up at first conveying piece, and detection connector 230 is slidably arranged in support frame 210, and it has the first position of docking battery electrode and the second position of having far away from battery on the sliding track. Second conveying assembly 300 receives the battery exported by first conveying assembly 100, and second conveying assembly 300 first guide exit and second guide exit, and first guide exit is used to export qualified battery, and second guide exit is used to export unqualified battery.
[0029] In the embodiment, the battery to be detected is placed on the first conveying assembly 100, and the first conveying assembly 100 conveys the battery to the detection component 200, and then the drive part 220 drives the detection connector 230 to move from the second position to the first position, so that the detection connector 230 docks with the battery electrode, and then the battery can be detected. After the detection of the battery is completed, the battery can be conveyed to the second conveying assembly 300, and the second conveying assembly 300 exports the qualified battery through the first guide exit and exports the unqualified battery through the second guide exit. By using the above multi-pass battery sorting device, the battery does not need to be manually moved frequently during detection, and manpower is saved.
[0030] As long as the first conveying assembly 100 that can convey the battery is feasible, in some embodiments, the first conveying assembly 100 includes a first conveyor belt 110, and the first conveyor belt 110 is horizontally arranged.
[0031] In the embodiment, the battery is placed on the belt surface of the first conveyor belt 110, and the first conveyor belt 110 rotates to drive the battery to move, and the first conveyor belt 110 stops rotating to make the battery rest.
[0032] In some embodiments, the second conveying assembly 300 includes a second conveyor belt 310, a first slide 320 and a second slide 330, the second conveyor belt 310 is perpendicular to the first conveyor belt 110, and the middle part of the second conveyor belt 310 is lapped with the export end of the first conveyor belt 110, the first slide 320 is lapped with one end of the second conveyor belt 310, and the first guide exit is located in the first slide 320, and the second slide 330 is lapped with the other end of the second conveyor belt 310, and the second guide exit is located in the second slide 330.
[0033] In the embodiment, the second conveying belt 310 can receive the batteries discharged by the first conveying belt 110, and the second conveying belt 310 is rotated to the first slide 320, so as to guide the batteries to the first slide 320. The second conveying belt 310 is rotated to the second slide 330, so as to guide the batteries to the second slide 330.
[0034] In some embodiments, the detection joint 230 comprises a lifting seat 231 and a terminal 232. The lifting seat 231 is slidingly arranged on the support frame 210, and the terminal 232 is arranged on the lifting seat 231.
[0035] In the embodiment, the terminal 232 is used to abut the battery electrode, and the terminal 232 is arranged on the lifting seat 231. The lifting seat 231 slides along the support frame 210, so as to drive the terminal 232 to approach or move away from the battery electrode.
[0036] In some embodiments, the support frame 210 is provided with a sliding rail 211, and the lifting seat 231 is slidingly arranged on the sliding rail 211.
[0037] In the embodiment, the lifting seat 231 slides along the sliding rail 211, so that the lifting seat 231 has a precise sliding track.
[0038] On the basis of the above-mentioned embodiments, in some embodiments, the driving member 220 comprises a first air cylinder 221. The cylinder body of the first air cylinder 221 is arranged on the support frame 210, and the piston rod of the first air cylinder 221 is connected to the lifting seat 231.
[0039] In the embodiment, the piston rod of the first air cylinder 221 moves relative to the cylinder body of the first air cylinder 221, so as to drive the lifting seat 231 to move.
[0040] In some embodiments, the detection assembly 200 further comprises a positioning member 240 arranged below the detection joint 230. The positioning member 240 is used to clamp the battery, so as to align the battery electrode with the detection joint 230.
[0041] As long as the positioning member 240 can clamp and fix the battery, any embodiment of the positioning member 240 is feasible. In some embodiments, the positioning member 240 comprises a positioning plate 241, a sliding seat 242 and a second air cylinder 243. The positioning plate 241 is arranged on one side of the first conveying assembly 100, and the second air cylinder 243 is arranged on the other side of the first conveying assembly 100. The second air cylinder 243 is drivingly connected to the sliding seat 242, so as to drive the sliding seat 242 to approach or move away from the positioning plate 241. The battery is clamped and pressed by the sliding seat 242 and the positioning plate 241, so as to align the battery electrode with the detection joint 230.
[0042] In the embodiment, the second cylinder 243 drives the sliding seat 242 to move, the sliding seat 242 is close to the positioning plate 241, then the sliding seat 242 and the positioning plate 241 can be used to clamp and fix the battery, the sliding seat 242 is away from the positioning plate 241, then the battery can be released, so that the battery continues to move with the first conveying assembly 100.
[0043] In some of the embodiments, a clamping groove 2421 is formed on one side of the sliding seat 242 towards the positioning plate 241.
[0044] In the embodiment, the clamped battery is partially embedded in the clamping groove 2421, so that the position of the battery can be more accurately controlled, and the battery can be aligned with the detection connector 230.
[0045] On the basis of the above-mentioned embodiments, in some of the embodiments, the clamping groove 2421 has a guide wedge surface at the opening thereof.
[0046] In the embodiment, under the guidance of the guide wedge surface, the battery is guided into the clamping groove 2421.
[0047] In order to better understand the utility model, the following will be combined with Figures 1 to 3 The technical scheme of the utility model will be described in detail:
[0048] The battery to be detected is placed on the first conveying belt, the first conveying belt then conveys the battery to the detection assembly 200, the positioning member 240 is used to clamp the battery, so that the battery electrode is aligned with the detection connector 230. Then the driving member 220 drives the detection connector 230 to move from the second position to the first position, so that the detection connector 230 is connected to the battery electrode, and then the battery can be detected. After the detection of the battery is completed, the second conveying belt 310 can receive the battery exported by the first conveying belt 110, the second conveying belt 310 rotates towards the first slide 320, so as to guide the battery to the first slide 320, the second conveying belt 310 rotates towards the second slide 330, so as to guide the battery to the second slide 330. Finally, the qualified battery is guided out through the first guide outlet, and the unqualified battery is guided out through the second guide outlet. By using the above-mentioned multi-channel battery sorting device, the battery does not need to be manually moved frequently during the detection process, and the manpower is saved.
[0049] The specific embodiments of the utility model described above do not constitute a limitation on the protection scope of the utility model. Any various other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the claims of the utility model.
Claims
1. A multi-lane battery sorting device, characterized by, The application relates to a battery testing device, which comprises: a first conveying assembly for conveying batteries and capable of pausing the conveying to allow the batteries to rest; a detection assembly comprising a support frame, a driving member and a detection connector, the support frame is arranged on the first conveying assembly, the detection connector is slidingly arranged on the support frame and has a first position for abutting the electrodes of the batteries and a second position for moving away from the batteries on a sliding track; and a second conveying assembly for receiving the batteries discharged from the first conveying assembly, the second conveying assembly has a first discharge outlet for discharging qualified batteries and a second discharge outlet for discharging unqualified batteries.
2. The multi-lane battery sorting device of claim 1, wherein, The first conveying assembly comprises a first conveying belt arranged horizontally.
3. The multi-lane battery sorting device of claim 2, wherein, The second conveying assembly comprises a second conveying belt, a first sliding channel and a second sliding channel, the second conveying belt is perpendicular to the first conveying belt and the middle part of the second conveying belt is overlapped with the discharge end of the first conveying belt, the first sliding channel is overlapped with one end of the second conveying belt and the first discharge outlet is located in the first sliding channel, the second sliding channel is overlapped with the other end of the second conveying belt and the second discharge outlet is located in the second sliding channel.
4. The multi-lane battery sorting device of claim 1, wherein, The detection connector comprises a lifting seat and a terminal, the lifting seat is slidingly arranged on the support frame and the terminal is arranged on the lifting seat.
5. The multi-lane battery sorting device of claim 4, wherein, The support frame is provided with a sliding rail and the lifting seat is slidingly arranged on the sliding rail.
6. The multi-lane battery sorting device of claim 5, wherein, The driving member comprises a first cylinder, the cylinder body of the first cylinder is mounted on the support frame and the piston rod of the first cylinder is connected with the lifting seat.
7. The multi-lane battery sorting device of claim 1, wherein, The detection assembly further comprises a positioning member arranged below the detection connector, the positioning member is used for clamping the batteries to align the electrodes of the batteries with the detection connector.
8. The multi-lane battery sorting device of claim 7, wherein, The positioning member comprises a positioning plate, a sliding seat and a second cylinder, the positioning plate is arranged on one side of the first conveying assembly, the second cylinder is arranged on the other side of the first conveying assembly and the second cylinder is drivingly connected with the sliding seat to push the sliding seat to move close to or away from the positioning plate, the batteries are clamped by the sliding seat and the positioning plate to align the electrodes of the batteries with the detection connector.
9. The multi-lane battery sorting device of claim 8, wherein, The side of the sliding seat close to the positioning plate is provided with a clamping groove.
10. The multi-lane battery sorting device of claim 9, wherein, The opening of the clamping groove is provided with a guide wedge surface.
Citation Information
Patent Citations
Battery detection system
CN212391590U