Storage battery conveying and arranging device
By combining the first linear drive device and the limiting component, the problems of falling and uneven arrangement caused by the suspended transport of batteries are solved, realizing stable and neat transport and efficient stacking of batteries, reducing energy consumption and protecting the battery casing.
Patent Information
- Application Number
- CN202520214945.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2026-03-27
- Estimated Expiration
- 2035-02-11
AI Technical Summary
In existing technologies, when batteries are transported in a suspended state, they are prone to falling or becoming misaligned due to suction cup malfunctions, which affects subsequent palletizing operations.
The system employs a combination of a first linear drive device, a second linear drive device, and a limiting component. The limiting component pushes multiple batteries from the first conveyor onto the second conveyor and arranges them neatly. The combination structure of baffles and side plates ensures the stable movement of the batteries, while a buffer plate provides cushioning protection.
It improves battery stacking efficiency, reduces energy consumption, and avoids damage to the battery casing, ensuring the stability and neatness of the batteries during transportation.
Smart Images

Figure CN224046373U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of battery production conveying, especially relates to a battery conveying arrangement device. BACKGROUND
[0002] The stacking process is one of the key links on the battery production line, with the continuous development and technological progress of the battery manufacturing industry, automation, intelligentization and integration have become the mainstream trend of industry development, and the adoption of automatic stacking equipment not only conforms to this trend, but also brings long-term development opportunities for enterprises.
[0003] The automatic stacking device clamps the batteries in groups when clamping the batteries, and the batteries are conveyed individually after production, so when the batteries are stacked, the multiple batteries need to be arranged neatly before being conveyed.
[0004] The common battery arrangement method is to use suction cups to sequentially pick up and place multiple batteries on the conveyor for conveying, but this method has drawbacks, that is, during the handling process, the batteries are in a suspended state, and if the suction cups malfunction, the batteries will fall and cannot be positioned at the designated location, resulting in uneven arrangement of multiple batteries and affecting subsequent stacking operations. UTILITY MODEL CONTENTS
[0005] The main purpose of the utility model is to provide a battery conveying arrangement device, which is matched with the first linear drive device, the second linear drive device and the limiting assembly, can sequentially push multiple batteries on the first conveyor to the second conveyor and arrange them neatly, so as to facilitate the neat conveying of multiple batteries by the second conveyor, and then facilitate the subsequent stacking device to clamp multiple batteries, improve the stacking efficiency and reduce energy consumption.
[0006] To achieve the above purpose, the utility model adopts the technical scheme that:
[0007] A battery conveying arrangement device, comprising a first conveyor and a second conveyor, the conveying directions of the first conveyor and the second conveyor are perpendicular, a first linear drive device is arranged on the top end of the first conveyor along the length direction, a second linear drive device is fixed on the first drive end of the first linear drive device, a limiting assembly is fixed on the second drive end bottom of the second linear drive device, and the second linear drive device is used to push the batteries on the first conveyor to the second conveyor through the limiting assembly.
[0008] Further, the limiting assembly comprises a top plate, a side plate is fixed on the bottom side away from the second conveyor of the top plate, a baffle is also fixed on one end of the bottom of the top plate, and the baffle and the side plate are combined into an L shape to intercept the batteries.
[0009] Further, the side of the baffle plate contacting the battery is provided with a buffer plate, the buffer plate is obliquely arranged and the top of the buffer plate is fixedly connected with the baffle plate.
[0010] Further, the top conveying heights of the first conveyor and the second conveyor are same.
[0011] Further, the stroke of the first linear driving device is within the width range of the second conveyor.
[0012] Further, the second conveyor is a roller conveyor.
[0013] Further, the first linear driving device and the second linear driving device are linear motors or air cylinders.
[0014] Further, the first conveyor, the second conveyor and the first linear driving device are fixed on the frame.
[0015] Compared with the prior art, the utility model has the advantages of:
[0016] 1. The first linear driving device can change the position of the second linear driving device and the limiting assembly, and the second linear driving device can push the batteries on the first conveyor to the second conveyor through the limiting assembly, so that the first linear driving device, the second linear driving device and the limiting assembly cooperate to push the multiple batteries on the first conveyor to the second conveyor in turn and arrange them in parallel, thereby facilitating the second conveyor to convey the multiple batteries in parallel, and further facilitating the subsequent stacking device to clamp the multiple batteries, improving the stacking efficiency and reducing the energy consumption.
[0017] 2. The baffle plate and the side plate are combined into an L shape, when the battery is conveyed on the first conveyor, the battery will contact the baffle plate, so that the baffle plate hinders the continuous movement of the battery, and when the limiting assembly is moved by the second driving end, the side plate will contact the battery, so that the battery is moved to the second conveyor by the side plate exerting force on the battery, and the movement of the battery is completed.
[0018] 3. The buffer plate and the baffle plate have a gap therebetween, and the buffer plate itself has a deformation capacity, so that the buffer plate can play a buffering role when the limiting assembly hinders the movement of the battery, and the battery shell is prevented from being scratched. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure schematic view of the battery conveying and arranging device.
[0020] Figure 2The utility model relates to a first linear drive device and second linear drive device connecting structure schematic view of battery conveying arrangement device.
[0021] Figure 3 The utility model relates to a limiting assembly structure schematic view of battery conveying arrangement device.
[0022] Figure 4 The utility model relates to a first conveyor and second conveyor position schematic view of battery conveying arrangement device.
[0023] In the drawing: 1, frame body, 2, first conveyor, 3, first linear drive device, 301, first drive end, 4, second linear drive device, 401, second drive end, 5, limiting assembly, 501, side plate, 502, buffer plate, 503, baffle, 504, top plate, 6, second conveyor. DETAILED DESCRIPTION
[0024] In order to make the technical means, creation features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.
[0025] As Figures 1-4 shown, a battery conveying arrangement device includes a first conveyor 2 and a second conveyor 6, the conveying directions of the first conveyor 2 and the second conveyor 6 are perpendicular, the first conveyor 2 is provided with a first linear drive device 3 at the top end along the length direction, the first drive end 301 of the first linear drive device 3 is fixed with a second linear drive device 4, the second drive end 401 bottom of the second linear drive device 4 is fixed with a limiting assembly 5, the second linear drive device 4 is used to push the battery on the first conveyor 2 to the second conveyor 6 through the limiting assembly 5, the first linear drive device 3 and the second linear drive device 4 are linear motors or air cylinders.
[0026] In the embodiment, as Figure 1 and Figure 2 shown, the movement paths of the first drive end 301 of the first linear drive device 3 and the second drive end 401 of the second linear drive device 4 are perpendicular, the first drive end 301 reciprocates along the length direction of the first conveyor 2, and the second drive end 401 moves along the length direction of the second conveyor 6.
[0027] When the first drive end 301 does not move, the limiting assembly 5 can be located at the initial position, when the battery moves on the first conveyor 2, the limiting assembly 5 intercepts the battery, then the second linear drive device 4 drives the second drive end 401 to move, so as to push the battery on the first conveyor 2 to the second conveyor 6 through the limiting assembly 5, in the process of pushing the battery by the limiting assembly 5, the first conveyor 2 stops conveying.
[0028] As Figure 4 shown, the first driving end 301 of the first linear driving device 3 can drive the second linear driving device 4 to move, so that the position of the second linear driving device 4 and the limiting assembly 5 changes relative to the second conveyor 6, and then the limiting assembly 5 is staggered with the existing batteries on the second conveyor 6, so that when the subsequent second linear driving device 4 pushes the batteries from the first conveyor 2 to the second conveyor 6 through the limiting assembly 5, the multiple batteries will not interfere, ensuring that the multiple batteries can be arranged neatly at one end of the second conveyor 6, and when the second conveyor 6 works, it can convey multiple batteries together, so as to facilitate the stacking work of the batteries.
[0029] As Figure 3 shown, the limiting assembly 5 includes a top plate 504, the side plate 501 is fixed to the bottom side of the top plate 504 away from the second conveyor 6, and the baffle 503 is also fixed to one end of the bottom of the top plate 504, and the baffle 503 and the side plate 501 are combined into an L shape. When the battery is conveyed on the first conveyor 2, it will contact the baffle 503, so that the baffle 503 hinders the continued movement of the battery, and determines the position of the battery on the first conveyor 2, and when the second driving end 401 of the second linear driving device 4 drives the limiting assembly 5 to move, the side plate 501 will contact the battery, so as to exert force on the battery through the side plate 501, so that the battery moves to the second conveyor 6.
[0030] As Figure 3 shown, the side of the baffle 503 contacting the battery is provided with a buffer plate 502, the buffer plate 502 is located in the L-shaped space formed by the baffle 503 and the side plate 501, the buffer plate 502 is made of a material with elasticity, such as spring steel, the buffer plate 502 is inclined and the top of the buffer plate 502 is fixedly connected with the baffle 503, when the battery is conveyed on the first conveyor 2, it will contact the buffer plate 502, the buffer plate 502 has a gap between itself and the baffle 503 due to its inclination, and the buffer plate 502 itself has a deformation ability, so the buffer plate 502 can play a buffering role when the limiting assembly 5 hinders the movement of the battery, avoiding the appearance of scratches on the battery shell.
[0031] As Figure 1 shown, the top conveying height of the first conveyor 2 and the second conveyor 6 is the same, so as to ensure that the battery can be smoothly moved from the first conveyor 2 to the second conveyor 6.
[0032] The stroke of the first linear driving device 3 is within the width range of the second conveyor 6, so when the first linear driving device 3 drives the limiting assembly 5 to move, the moving path of the limiting assembly 5 is always within the width range of the second conveyor 6, thereby avoiding that the limiting assembly 5 cannot enter the second conveyor 6 when pushing the storage battery.
[0033] The second conveyor 6 is a roller conveyor, and the roller body of the roller conveyor is in linear contact with the storage battery, thereby reducing the resistance suffered by the storage battery during movement.
[0034] As shown in Figure 1 The first conveyor 2, the second conveyor 6 and the first linear driving device 3 are all fixed on the frame body 1.
[0035] The working principle is that firstly, the storage battery is conveyed by the first conveyor 2 and contacts the baffle 503, so that the baffle 503 hinders the continuous movement of the storage battery, and the position of the storage battery on the first conveyor 2 is determined; secondly, when the second driving end 401 of the second linear driving device 4 drives the limiting assembly 5 to move, the side plate 501 contacts the side surface of the storage battery, so that the storage battery is moved to the second conveyor 6 by the force applied to the storage battery by the side plate 501, and in this process, the first conveyor 2 stops working; thirdly, when the limiting assembly 5 returns to above the first conveyor 2, the first driving end 301 of the first linear driving device 3 drives the second linear driving device 4 to move, so that the position of the second linear driving device 4 and the limiting assembly 5 relative to the second conveyor 6 changes, thereby making the limiting assembly 5 staggered with the existing storage battery on the second conveyor 6; the above steps are repeated, so that multiple storage batteries can be arranged in order at one end of the second conveyor 6, and when the second conveyor 6 works, multiple storage batteries can be conveyed together, so as to improve the stacking efficiency of the stacking manipulator.
[0036] The basic principle and main features of the utility model and the advantages of the utility model are shown and described. It should be understood by those skilled in the art that the utility model is not limited by the above examples, and the above examples and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The protection scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A battery conveying arrangement comprising a first conveyor (2) and a second conveyor (6), characterized in that: The conveying directions of the first conveyor (2) and the second conveyor (6) are perpendicular, the first linear driving device (3) is arranged on the top end of the first conveyor (2) along the length direction, the first driving end (301) of the first linear driving device (3) is fixed with the second linear driving device (4), the second driving end (401) of the second linear driving device (4) is fixed with the limiting assembly (5) on the bottom, and the second linear driving device (4) is used to push the storage battery on the first conveyor (2) to the second conveyor (6) through the limiting assembly (5).
2. A battery delivery arrangement according to claim 1, wherein: The limiting assembly (5) comprises a top plate (504), the side plate (501) is fixed on the side of the top plate (504) away from the bottom of the second conveyor (6), the baffle (503) is also fixed on one end of the bottom of the top plate (504), and the baffle (503) and the side plate (501) are combined into an L-shaped structure to intercept the storage battery.
3. A battery delivery arrangement according to claim 2, wherein: The side of the baffle (503) in contact with the storage battery is provided with a buffer plate (502), the buffer plate (502) is arranged in an inclined manner, and the top of the buffer plate (502) is fixedly connected with the baffle (503).
4. The battery delivery arrangement of claim 1, wherein: The top conveying heights of the first conveyor (2) and the second conveyor (6) are the same.
5. The battery delivery arrangement of claim 1, wherein: The stroke of the first linear driving device (3) is within the width range of the second conveyor (6).
6. The battery delivery arrangement of claim 1, wherein: The second conveyor (6) is a roller conveyor.
7. The battery delivery arrangement of claim 1, wherein: The first linear driving device (3) and the second linear driving device (4) are linear motors or air cylinders.
8. A battery delivery arrangement according to any one of claims 1 to 7, wherein: The first conveyor (2), the second conveyor (6) and the first linear driving device (3) are all fixed on the frame (1).