Lithium battery positioning and transferring device

By designing a lithium battery positioning and transfer device, and utilizing components such as bending plates, limiting plates, and hooks, a steady-state and precise transfer of lithium batteries from a rotary table to a linear conveyor line is achieved. This solves the problem of inaccurate position and posture control in traditional methods and improves production efficiency and stability.

CN223560601UActive Publication Date: 2025-11-18WUXI BOAO PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202423277693.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-18
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Traditional lithium battery transfer methods fail to precisely control the orientation, resulting in low production efficiency, high costs, and poor stability.

Method used

A lithium battery positioning and transfer device is adopted, which includes a bending plate, a limiting plate, a pushing linear module and a hook. Through the sliding connection between the arc-shaped protrusion and the groove, combined with the pushing linear module and the hook, the precise transfer of lithium batteries from the turntable to the linear conveyor line is achieved under steady-state control.

Benefits of technology

Stable posture control of lithium batteries during transfer was achieved, which improved production efficiency, reduced the need for adjustment in subsequent processes, and enhanced processing accuracy and stability.

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Abstract

The utility model relates to the technical field of lithium battery processing, in particular to a lithium battery positioning and transferring device which comprises a rotary disc, a linear conveying line, a carrying piece used for carrying a lithium battery and a transferring piece connected between the rotary disc and the linear conveying line, and the transferring piece comprises a bent plate and limiting plates fixed to the edges of the two sides of the upper portion of the bent plate. The two ends of the bent plate are connected to an outlet of the rotary disc and an inlet of the linear conveying line respectively. The transferring piece further comprises a support fixed to the upper portion of the side face of the bent plate, a pushing linear module is fixedly connected to the support, a hook piece is fixedly connected to a sliding block of the pushing linear module, and the hook piece pushes the lithium battery or the carrier from the side close to the rotary disc; the hook piece drives the lithium battery and the carrying piece to move, the bent plate and the limiting piece can guide and accurately control the moving direction, and steady-state control in the process of moving from the rotary disc to the linear conveying line is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lithium battery processing technical field, concretely relates to a lithium battery positioning transfer device. BACKGROUND

[0002] In modern industrial production, as an important part of new energy, the automation, precision and efficiency of the processing and assembly process of lithium batteries are the key to improve production competitiveness. In the processing and assembly process of lithium batteries, an important link is to accurately transfer the lithium battery from the processing position to the conveying line so as to facilitate the subsequent process. The traditional transfer mode only makes directional guidance, and does not control the pose of the lithium battery and its carrier, so it needs to be adjusted again in the subsequent process, thereby increasing the production cost and time, causing low efficiency, low precision and poor stability and other problems. UTILITY MODEL CONTENTS

[0003] I. Technical problems to be solved

[0004] The utility model aims at providing a lithium battery positioning transfer device, which can stably control the transfer process of lithium batteries from the rotary disc to the straight line conveying line.

[0005] II. Technical scheme

[0006] The utility model realizes the following technical scheme:

[0007] The utility model provides a lithium battery positioning transfer device, which comprises a rotary disc, a straight line conveying line, a carrier for carrying lithium batteries, and a transfer piece connected between the rotary disc and the straight line conveying line. The transfer piece comprises a bent plate and limiting plates fixed on the two side edges above the bent plate. The two ends of the bent plate are connected to the outlet of the rotary disc and the inlet of the straight line conveying line respectively. The transfer piece further comprises a bracket fixed on the side surface above the bent plate. A pushing straight line module is fixedly connected to the bracket. A hook piece is fixedly connected to the sliding block of the pushing straight line module. The hook piece pushes the lithium battery or the carrier from the side close to the rotary disc.

[0008] Further, the inner surface of the limiting plate on the outer side is provided with an arc-shaped convex rib. The top of the carrier is provided with a hole for carrying the lithium battery, and recesses are formed on the two sides. The arc-shaped convex rib is in sliding connection with the recess.

[0009] Further, the rotary disc surface is fixed with a plurality of positioning pieces. The positioning piece comprises a positioning block. The two sides of the outer side of the positioning block are rotatably connected with rollers. The rollers are in contact with the surface of the lithium battery.

[0010] Further, the positioning member further comprises an angle plate fixed with the rotary disc, and a lifting linear module fixedly connected to the angle plate, and the positioning block is connected with a sliding block of the lifting linear module.

[0011] Further, the hook member comprises a back plate, an upper hook body fixed above the back plate, and a lower hook body fixed below the back plate, the upper hook body abuts against a side surface of the lithium battery, and the lower hook body abuts against a side surface of the carrier.

[0012] Further, the upper hook body and the lower hook body are provided with arc-shaped grooves respectively abutting against the side surface of the lithium battery and the side surface of the carrier.

[0013] III. Advantages

[0014] Compared with the prior art, the utility model has the following advantages:

[0015] In the utility model, the hook member is driven by the pushing linear module, the lithium battery and the carrier are moved and transferred by the hook member, the bending plate and the limiting member can guide and accurately control the moving and transferring direction, and stable control is realized in the moving and transferring process from the rotary disc to the linear conveying line; the arc-shaped convex rib is in sliding connection with the groove, the carrier moves along the extension direction of the arc-shaped convex rib in the moving process, the carrier can be prevented from deviating, the position is stable, the position and posture of the lithium battery transferred to the linear conveying line are consistent, the carrier and the lithium battery do not need to be adjusted, and the efficiency of lithium battery processing in the subsequent process is improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a schematic diagram of the three-dimensional structure of the utility model;

[0017] Figure 2 is a schematic diagram of the three-dimensional structure of the utility model (except the rotary disc);

[0018] Figure 3 is Figure 2 is a partial enlarged view of part A in the utility model;

[0019] Figure 4 is a schematic diagram of the structure of the positioning member cooperating with the lithium battery;

[0020] Figure 5 is a schematic diagram of the structure of the hook member;

[0021] 1, rotary disc; 2, linear conveying line; 3, carrier; 31, groove; 4, moving and transferring member; 41, bending plate; 42, limiting plate; 43, arc-shaped convex rib; 44, support; 45, pushing linear module; 46, hook member; 461, back plate; 462, upper hook body; 463, lower hook body; 464, arc-shaped groove; 5, lithium battery; 6, positioning member; 61, positioning block; 62, roller; 63, angle plate; 64, lifting linear module. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.

[0023] A lithium battery positioning and transferring device, please refer to Figures 1-4 , including rotating disc 1, linear conveying line 2, the carrier 3 for carrying lithium battery 5, and the transfer piece 4 received between rotating disc 1 and linear conveying line 2;The carrier 3 carries lithium battery 5 on rotating disc 1 to perform lithium battery 5 processing procedure, and after processing is completed, the carrier 3 and lithium battery 5 are transferred to linear conveying line 2 through transfer piece 4. The stability of the carrier 3 in the transfer process is controlled and the pose of the carrier 3 is stabilized.

[0024] Wherein, the transfer piece 4 includes a bent plate 41 and a limiting plate 42 fixed to the two side edges above the bent plate 41, and the two ends of the bent plate 41 are received in the outlet of the rotating disc 1 and the inlet of the linear conveying line 2 respectively;The transfer piece 4 further includes a bracket 44 fixed to the side of the bent plate 41, a pushing linear module 45 is fixedly connected to the bracket 44, a hook piece 46 is fixedly connected to the sliding block of the pushing linear module 45, the pushing linear module 45 drives the hook piece 46, the hook piece 46 pushes the lithium battery 5 or the carrier 3 from the side close to the rotating disc 1, and the bent plate 41 and the limiting piece limit the direction of the lithium battery 5 transfer, and play an accurate guiding role.

[0025] Wherein, the inner surface of the limiting plate 42 on the outer side is provided with an arc convex rib 43;The top of the carrier 3 is provided with a hole for carrying lithium battery 5, and grooves 31 are formed on both sides, in the transfer process, the hook piece 46 pushes the carrier 3 and the lithium battery 5, so that the groove 31 of the carrier 3 is embedded on the arc convex rib 43, the arc convex rib 43 and the groove 31 are slidably connected, the carrier 3 moves along the extension direction of the arc convex rib 43 in the movement, which can prevent the carrier 3 from deviating and stabilize the pose, so that the pose of the lithium battery 5 transferred to the linear conveying line 2 is consistent, and the carrier 3 and the lithium battery 5 do not need to be adjusted, thereby improving the efficiency of lithium battery 5 processing in subsequent procedures.

[0026] Wherein, the surface of the rotating disc 1 is fixed with a plurality of positioning pieces 6, the positioning piece 6 includes a positioning block 61, the two sides of the outer side of the positioning block 61 are rotatably connected with rollers 62, the rollers 62 abut against the surface of the lithium battery 5, and the rollers 62 reduce friction when the lithium battery 5 rotates on the surface of the rotating disc 1, thereby reducing the scratch on the surface of the lithium battery 5.

[0027] The positioning member 6 further comprises an angle plate 63 fixed with the rotary disc 1, a lifting linear module 64 fixedly connected to the angle plate 63, and a positioning block 61 connected with a sliding block of the lifting linear module 64. The lifting linear module 64 drives the positioning block 61 to lift and adjust the contact position of the roller 62 with the lithium battery 5, so that the adaptability adjustment can be made according to different models of the lithium battery 5.

[0028] In addition, referring to Figure 5 The hook member 46 comprises a back plate 461, an upper hook body 462 fixed above the back plate 461, and a lower hook body 463 fixed below the back plate 461. The upper hook body 462 abuts against the side surface of the lithium battery 5, and the lower hook body 463 abuts against the side surface of the carrier 3. A through slot is further arranged below the positioning block 61 and capable of allowing the lower hook body 463 to pass through. The upper hook body 462 and the lower hook body 463 are provided with arc-shaped slots 464 respectively abutting against the side surface of the lithium battery 5 and the side surface of the carrier 3. The upper hook body 462 and the lower hook body 463 simultaneously push the carrier 3 and the lithium battery 5, so as to ensure the force balance of the upper and lower positions and improve the stability during the transfer process.

[0029] The above-described embodiments are merely preferred embodiments of the present application, and are not intended to limit the concept and scope of the present application. Any modification and improvement of the technical solution of the present application made by those skilled in the art without departing from the design concept of the present application shall fall within the protection scope of the present application. The technical content of the present application has been fully recorded in the claims.

Claims

1. A lithium battery positioning and transferring device, comprising a rotary disc, a linear conveying line, a carrier for carrying lithium batteries, and a transferring member connected between the rotary disc and the linear conveying line, characterized in that, The transfer piece comprises a bent plate and limiting plates fixed on both side edges of the bent plate, both ends of the bent plate are respectively received in an outlet of a rotary disc and an inlet of a linear conveying line; the transfer piece further comprises a bracket fixed on the side of the bent plate, a pushing linear module is fixedly connected to the bracket, a hook piece is fixedly connected to a sliding block of the pushing linear module, and the hook piece pushes the lithium battery or the carrier from the side close to the rotary disc.

2. The apparatus of claim 1, wherein the at least one protrusion is configured to be positioned in the at least one slot to prevent rotation of the at least one battery. An inner surface of the limiting plate on the outer side is provided with an arc-shaped convex rib; the top of the carrier is provided with an opening for carrying the lithium battery, and grooves are formed in both sides, and the arc-shaped convex rib is in sliding connection with the grooves.

3. A lithium battery positioning and transferring device according to claim 2, wherein, A plurality of positioning pieces are fixed on the surface of the rotary disc, each of the positioning pieces comprises a positioning block, two rollers are rotatably connected to both sides of the outer side of the positioning block, and the rollers are in contact with the surface of the lithium battery.

4. The device of claim 3, wherein the device is a lithium battery positioning and transfer device. The positioning piece further comprises an angle plate for fixing with the rotary disc and a lifting linear module fixedly connected to the angle plate, and the positioning block is connected with a sliding block of the lifting linear module.

5. The apparatus of claim 1, wherein the at least one protrusion is a plurality of protrusions. The hook piece comprises a back plate, an upper hook body fixed on the upper side of the back plate and a lower hook body fixed on the lower side of the back plate, the upper hook body is in contact with the side of the lithium battery, and the lower hook body is in contact with the side of the carrier.

6. A lithium battery positioning and transferring device according to claim 5, wherein, Arc-shaped grooves are formed in the upper hook body and the lower hook body, and the arc-shaped grooves are respectively in contact with the side of the lithium battery and the side of the carrier.