Conveying device for steering of storage battery
By designing an automated conveyor device, the problem of low manual steering efficiency of the battery is solved, and the automatic steering of the battery is realized, which improves production efficiency and saves labor.
Patent Information
- Application Number
- CN202422243634.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-13
AI Technical Summary
In the prior art, the battery needs to be turned manually before closing the cover, resulting in low production efficiency.
A conveying device including a chain plate conveyor, a roller conveyor, a frame and a push plate assembly is designed. Through the cooperation of the push plate assembly and the spacer, the automatic steering of the battery is realized, ensuring that the battery changes from horizontal to vertical arrangement.
It realizes the fully automated steering of the battery, improves production efficiency and saves labor costs.
Smart Images

Figure CN223073366U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of battery production, in particular to a conveying device for battery steering. Background Art
[0002] As is well known, in the production process of batteries, after the ear tabs are welded by a casting welder to form a bus bar, it is necessary to perform a middle cover closing operation on the battery. The operation of closing the middle cover requires the use of a cover closing machine. The batteries coming out of the casting welder are conveyed in rows on a chain conveyor towards the cover closing machine. Since each battery in each row on the chain conveyor is arranged horizontally, which is inconsistent with the direction of the inlet of the cover closing machine, it is necessary to turn each battery in each row. Only when arranged vertically can it enter the cover closing machine for the next operation. In current production, the steering operation of the battery is all manual steering, which requires turning each battery by 90 degrees, then arranging them in a row and feeding them into the cover closing machine. The above operations are time-consuming and laborious, and the production efficiency is low. Summary of the Invention
[0003] In order to overcome the deficiencies in the background art, the utility model discloses a conveying device for battery steering.
[0004] In order to achieve the above-mentioned invention purpose, the utility model adopts the following technical solutions:
[0005] A conveying device for battery steering, comprising a chain conveyor, a roller conveyor, a frame and a push plate assembly. A roller conveyor is arranged on the right side of the chain conveyor, and a frame is fixed on the upper surface of the roller conveyor. The frame is composed of a horizontal frame, a vertical frame and an extension frame. Vertical frames extend from both sides of the lower part of the horizontal frame, and extension frames are arranged on both sides of the lower part between the two vertical frames on both sides. The push plate assembly is composed of a slide rod, a push plate and a driving member. There are two slide rods, which are fixedly arranged at intervals in the middle of the horizontal frame. Two through holes in the upper part of the push plate are slidably arranged on the two slide rods, and the push plate is pushed by the driving member.
[0006] For the above-mentioned conveying device for battery steering, the driving member includes a fixed plate, a bearing seat, a pulley and a belt. Fixed plates are fixed on the outer sides of both sides of the horizontal frame, and square holes are opened on the fixed plates. Bearing seats are fixed on both sides of the square holes and on the fixed plates. The pulley is located between the two bearing seats and corresponds to the square hole. A transmission shaft is passed through the inner holes of the two bearing seats and the pulley. A belt is connected between the two pulleys on both sides. The upper layer of the belt passes through and is fixed in the through hole A in the middle of the push plate, and the lower layer of the belt passes through the through hole B in the lower part of the push plate. Any one of the transmission shafts is fixedly connected to the output end of the motor, and the motor is fixed on the fixed plate where this transmission shaft is located.
[0007] For the conveying device for battery steering, a partition member is fixed on the right side beam of the horizontal frame. The partition member includes a square frame and a clamping plate. On the upper parts of both sides on the right side of the square frame, clamping plates extend upward. The upper end of the clamping plate is provided with an "n"-shaped hook. The partition member is fixed on the right side beam of the horizontal frame through the "n"-shaped hook; the rear end face of the square frame is closely arranged with the extending frame at the rear, and a passing gap for the battery is provided between the front end face of the square frame and the extending frame at the front.
[0008] For the conveying device for battery steering, a transverse bar is provided on the right side of the frame. The bar is inserted between two roller shafts of the roller conveyor. A push-pull cylinder is fixed on the lower frame of the roller conveyor body, and the lower part of the bar is fixedly connected with the telescopic end of the push-pull cylinder.
[0009] For the conveying device for battery steering, a cylinder is fixed on the side frame of the roller conveyor between the extending frame at the front and the bar. The telescopic end of the cylinder is arranged towards the direction of the roller shaft of the roller conveyor.
[0010] Due to the adoption of the above technical solutions, the utility model has the following beneficial effects:
[0011] For the conveying device for battery steering of the utility model, by arranging a frame on the upper part of the roller conveyor and providing a push plate assembly on the frame, the battery after casting and welding is pushed to the right side of the partition member through the push plate assembly. During the pushing process, due to the blocking effect of the partition member, the horizontally arranged batteries are turned to be vertically arranged, which is convenient for being sent to the next process for use; the structure of the utility model is compact and reasonable, realizing fully automatic conveying, greatly improving the production efficiency and saving labor. Description of the Drawings
[0012] Figure 1 is a schematic structural diagram of the utility model.
[0013] Figure 2 is a schematic structural diagram of the frame of the utility model.
[0014] Figure 3 is a schematic structural diagram of the push plate assembly of the utility model.
[0015] Figure 4 is a schematic diagram of the driving member of the push plate assembly of the utility model.
[0016] Figure 5 is a schematic structural diagram of the push plate in the push plate assembly of the utility model.
[0017] In the figure: 1. Frame; 2. Slide bar; 3. Partition piece; 4. Push plate assembly; 5. Rear-turned battery; 6. Stop bar; 7. Roller conveyor; 8. Post-cast-weld battery; 9. Chain plate conveyor; 10. Cylinder; 11. Horizontal frame; 12. Vertical frame; 13. Square frame; 14. Clamping plate; 15. Extension frame; 16. Fixed plate; 17. Motor; 18. Bearing seat; 19. Rotating shaft; 20. Pulley; 21. Square hole; 22. Through hole; 23. Perforation A; 24. Perforation B; 25. Push plate; 26. Belt. Detailed implementation manner
[0018] The present utility model can be explained in detail through the following embodiments. The purpose of disclosing the present utility model is to protect all technical improvements within the scope of the present utility model.
[0019] Combined with the attached Figures 1-5 The conveying device for battery turning includes a chain plate conveyor 9, a roller conveyor 7, a frame 1, and a push plate assembly 4. A roller conveyor 7 is provided on the right side of the chain plate conveyor 9. The frame 1 is fixed on the upper surface of the roller conveyor 7. The frame 1 is composed of a horizontal frame 11, a vertical frame 12, and an extension frame 15. The vertical frames 12 extend from both lower sides of the horizontal frame 11, and the extension frames 15 are provided on both lower sides between the two vertical frames 12. The push plate assembly 4 consists of a slide bar 2, a push plate 25, and a driving member. Two slide bars 2 are provided and are fixedly spaced in the middle of the horizontal frame 11. Two through holes 22 in the upper part of the push plate 25 are slidably arranged on the two slide bars 2, and the push plate 25 is pushed by the driving member.
[0020] The driving member includes a fixed plate 16, a bearing seat 18, a pulley 20, and a belt 26. Fixed plates 16 are fixed on the outer sides of both sides of the horizontal frame 11. Square holes 21 are formed in the fixed plates 16. Bearing seats 18 are fixed on both sides of the square holes 21 and on the fixed plates 16. The pulley 20 is located between the two bearing seats 18 and corresponds to the square hole 21. A transmission shaft 19 is passed through the inner holes of the two bearing seats 18 and the pulley 20. A belt 26 is connected between the two pulleys 20 on both sides. The upper layer of the belt 26 is passed through and fixed in the perforation A23 in the middle of the push plate 25, and the lower layer of the belt 26 is passed through the perforation B24 in the lower part of the push plate 25. Any one of the transmission shafts 19 is fixedly connected to the output end of the motor, so that the motor drives the transmission shaft 19 to drive the pulley 20 to rotate, thereby driving the belt 26 to move. A horizontal stop bar 6 is provided on the right side of the frame 1. The stop bar 6 is inserted between the two roller shafts of the roller conveyor 7. A push-pull cylinder is fixed on the lower frame of the bed of the roller conveyor 7, and the lower part of the stop bar 6 is fixedly connected to the telescopic end of the push-pull cylinder.
[0021] Further, a partition member 3 is fixed on the right side beam of the horizontal frame 11. The partition member 3 includes a square frame 13 and a clamping plate 14. Clamping plates 14 extend upwardly at the upper parts of both sides on the right side of the square frame 13. The upper ends of the clamping plates 14 are provided with "n"-shaped hooks. The partition member 3 is fixed on the right side beam of the horizontal frame 11 through the "n"-shaped hooks. The rear end face of the square frame 13 is closely arranged with the extending frame 15 at the rear. A passing gap for the storage battery is provided between the front end face of the square frame 13 and the extending frame 15 at the front. An air cylinder 10 is fixed on the bed side frame of the roller conveyor 7 between the extending frame 15 at the front and the bar 6. The telescopic end of the air cylinder 10 is arranged towards the roller shaft direction of the roller conveyor 7.
[0022] When implementing the conveying device for the storage battery to turn, during use, the storage battery 8 after casting and welding coming out of the casting and welding machine enters the chain plate conveyor 9. As Figure 1 shown, there are multiple rows of the storage batteries 8 after casting and welding located on the chain plate conveyor 9. Each row of the storage batteries 8 after casting and welding is arranged horizontally, that is, in the length direction of the cast and welded storage battery 8 is one row. The chain plate conveyor 9 sends the first row of the storage batteries 8 after casting and welding onto the roller conveyor 7, and the chain plate conveyor 9 stops conveying. At this time, the roller shaft of the roller conveyor 7 is rotating, but the first row of the storage batteries 8 after casting and welding is blocked by the square frame 13 and cannot move to the right.
[0023] A motor is fixed on the fixed plate 16 at the rear of the frame 1. The motor drives the transmission shaft 19 arranged in the bearing seat 18 to rotate. The transmission shaft 19 drives the pulley 20 to rotate, so that the belt 26 on the pulley 20 travels. Since the push plate 25 is fixed on the upper belt of the belt 26, the push plate 25 can move along with the belt 26, realizing the movement of the push plate 25 on the slide rod 2, and moving the first row of the storage batteries 8 after casting and welding forward. The size of the through hole B24 provided on the push plate 25 is larger than the through hole A23. The lower belt of the belt 26 passes through the through hole B24, and the through hole B24 does not limit the lower belt.
[0024] When the first row of the storage batteries 8 after casting and welding located at the forefront passes through the right-angle at the front of the square frame 13, under the rolling of the roller shaft, this storage battery 8 after casting and welding completes a 90-degree turn, that is, turns, and enters the gap between the front end face of the square frame 13 and the extending frame 15 at the front. The rotating roller shaft of the roller conveyor 7 enables this storage battery 8 after casting and welding to enter the left side of the bar 6, and is blocked by the bar 6 and no longer moves to the right.
[0025] Next, the cylinder 10 is activated, and its telescopic end extends to push the cast-welded battery 8 to the rear part on the left side of the stop bar 6. The subsequent cast-welded batteries 8 are all operated in the same manner as the first cast-welded battery 8 at the frontmost position in the first row. After all the cast-welded batteries 8 in the first row have completed the turning and are all located on the left side of the stop bar 6, the push-pull cylinder under the stop bar 6 pulls the stop bar 6 downwards. As a result, the turned batteries 5 in the first row move to the right side of the roller conveyor 7 and directly enter the subsequent lid closing machine for lid closing work; the turning method of the remaining multiple rows of cast-welded batteries 8 on the chain plate conveyor 9 repeats the above operation; compared with the prior art of manually turning the batteries, the present utility model effectively improves the work efficiency, saves labor, and realizes fully automated operation.
[0026] The parts not detailed in the present utility model are the prior art.
[0027] The embodiments selected herein for disclosing the inventive purpose of the present utility model are considered to be suitable at present. However, it should be understood that the present utility model is intended to include all variations and improvements of all embodiments falling within the scope of this concept and utility model.
Claims
1. A conveying device for battery steering, comprising a chain plate conveyor, a roller conveyor, a frame and a push plate assembly, characterized in that: A roller conveyor is provided on the right side of the chain plate conveyor. A frame is fixed on the upper surface of the roller conveyor. The frame is composed of a horizontal frame, a vertical frame, and an extension frame. Vertical frames extend from both lower sides of the horizontal frame, and extension frames are provided on both lower sides between the two vertical frames on both sides. The push plate assembly is composed of a slide bar, a push plate, and a driving member. Two slide bars are provided and are fixedly spaced in the middle of the horizontal frame. Two through holes in the upper part of the push plate are slidably arranged on the two slide bars, and the push plate is pushed by the driving member.
2. The conveying device for battery-powered steering according to claim 1, characterized in that: The driving member includes a fixed plate, a bearing seat, a pulley, and a belt. Fixed plates are fixed on the outer sides of both sides of the horizontal frame. Square holes are provided on the fixed plates. Bearing seats are fixed on both sides of the square holes and on the fixed plates. The pulley is located between the two bearing seats and corresponds to the square hole. A transmission shaft is passed through the inner holes of the two bearing seats and the pulley. A belt is connected between the pulleys on both sides. The upper layer of the belt is passed through and fixed in the through hole A in the middle of the push plate, and the lower layer of the belt is passed through the through hole B in the lower part of the push plate. Any one of the transmission shafts is fixedly connected to the output end of the motor, and the motor is fixed on the fixed plate where this transmission shaft is located.
3. The conveying device for battery steering according to claim 1 is characterized in that: in A partition member is fixed on the right side beam of the horizontal frame. The partition member includes a square frame and a clamping plate. Clamping plates extend upward from the upper parts of both sides on the right side of the square frame. An "n"-shaped hook is provided at the upper end of the clamping plate. The partition member is fixed on the right side beam of the horizontal frame through the "n"-shaped hook. The rear end face of the square frame is closely attached to the extension frame at the back, and a passing gap for the storage battery is provided between the front end face of the square frame and the extension frame at the front.
4. The conveying device for battery steering according to claim 1, characterized in that: A horizontal stop bar is provided on the right side of the frame. The stop bar is inserted between the two roller shafts of the roller conveyor. A push-pull cylinder is fixed on the lower frame of the roller conveyor body. The lower part of the stop bar is fixedly connected to the telescopic end of the push-pull cylinder.
5. The conveying device for battery steering according to claim 1 is characterized in that: in A cylinder is fixed on the side frame of the roller conveyor between the extension frame at the front and the stop bar. The telescopic end of the cylinder is arranged in the direction of the roller shaft of the roller conveyor.