Anti-deviation feeding mechanism and square aluminum shell PACK automatic production line

Through the design of anti-offset components and installation components, the problem of material offset in the loading mechanism is solved, stable material transportation and rapid installation and disassembly are achieved, and the efficiency and convenience of the automated production line are improved.

CN223059869UActive Publication Date: 2025-07-04YOUDONGNENG AUTOMATION TECH (JIANGSU) CO LTD
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Patent Information

Application Number
CN202421830616.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-04
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing feeding mechanism does not have a limit structure, which causes the material to easily shift position during the feeding process, increases the difficulty of manual correction and reduces the efficiency of use.

Method used

Anti-offset components are adopted, including electric telescopic rods, stopper plates, limit through holes and limit cross rods. The electric telescopic rods drive the shift of the gear plates, and cooperate with limit through holes and limit cross rods to ensure stable material transportation; at the same time, the installation components are quickly installed and disassembled through limit cylinders, limit rods and return springs.

Benefits of technology

Effectively avoid material position deviation, improve processing accuracy, reduce manual labor intensity, and improve the efficiency and flexibility of automated production lines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-deviation feeding mechanism and a square aluminum shell PACK automatic production line, and relates to the field of square aluminum shell PACK production, the anti-deviation feeding mechanism comprises a mounting frame and an anti-deviation assembly, the inner side of the mounting frame is provided with a conveying belt, the upper end of the mounting frame is provided with the anti-deviation assembly, and the conveying belt is provided with a conveying belt. The anti-deviation assembly comprises a mounting block, an electric telescopic rod, a material blocking plate, a cleaning brush, a limiting through hole and a limiting cross rod, the electric telescopic rod is mounted on the inner side of the mounting block, the material blocking plate is mounted at the front end of the electric telescopic rod, the cleaning brush is arranged at the lower end of the material blocking plate, and meanwhile the limiting through hole is formed in the upper end of the interior of the material blocking plate; and a limiting cross rod is connected into the limiting through hole. According to the anti-deviation feeding mechanism and the square aluminum shell PACK automatic production line, position deviation of materials in the feeding process can be avoided, the precision and convenience of subsequent material machining are improved, the labor intensity of workers is relieved, and meanwhile the overall use efficiency of the automatic production line is improved.
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Description

Technical Field

[0001] The utility model relates to the field of square aluminum shell PACK production, in particular to a feeding mechanism for preventing deviation and an automatic production line for square aluminum shell PACK. Background Technique

[0002] Square aluminum shell PACK refers to a new type of battery with high energy density, long service life and low self-discharge rate, which is widely used in many fields such as electric vehicles, electric tools, and drones. As the core component of the battery system, the selection of production line equipment for square aluminum shell PACK is directly related to product quality, production efficiency and cost control. The square aluminum shell PACK production line is a dedicated automatic production line for assembling single batteries into battery packs, which covers the complete process from single battery testing, sorting, welding, insulation, packaging to finished product inspection. The feeding mechanism is one of the important components of the automatic production line for square aluminum shell PACK.

[0003] However, there are still some deficiencies in the current feeding mechanism. For example, the existing feeding mechanism does not have a structure for limiting the position of materials, resulting in the easy deviation of materials during the feeding and conveying process. At the same time, manual correction is required later, which increases the labor intensity of workers, causing the practicality of the feeding mechanism to decline and the use efficiency to decrease, thus having certain use defects.

[0004] Therefore, it is urgent to improve this shortcoming. The utility model researches and improves the existing structural deficiencies, and provides a feeding mechanism for preventing deviation and an automatic production line for square aluminum shell PACK. Content of the Utility Model

[0005] The purpose of the utility model is to provide a feeding mechanism for preventing deviation and an automatic production line for square aluminum shell PACK to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A feeding mechanism for preventing deviation and an automatic production line for square aluminum shell PACK, including a mounting frame and an anti-deviation component. A conveyor belt is arranged inside the mounting frame, and an anti-deviation component is arranged at the upper end of the mounting frame. The anti-deviation component includes a mounting block, an electric telescopic rod, a baffle plate, a cleaning brush, a limiting through hole and a limiting cross bar. The electric telescopic rod is installed inside the mounting block, the baffle plate is installed at the front end of the electric telescopic rod, a cleaning brush is arranged at the lower end of the baffle plate, a limiting through hole is opened at the upper end inside the baffle plate, and the limiting cross bar is connected inside the limiting through hole. Mounting components are arranged on both sides outside the mounting frame.

[0007] Furthermore, the electric telescopic rod and the baffle plate are vertically distributed, and the electric telescopic rod and the baffle plate are fixedly connected by bolts.

[0008] Furthermore, the internal dimension of the limiting through-hole is adapted to the external dimension of the limiting cross-bar, and the limiting cross-bar is embedded in connection with the material blocking plate through the limiting through-hole.

[0009] Furthermore, the installation assembly includes a limiting cylinder, a limiting rod and a return spring. The limiting rod is connected inside the limiting cylinder, and a return spring is arranged inside the limiting cylinder outside the limiting rod.

[0010] Furthermore, the installation assembly further includes a docking through-channel, a docking block and a limiting through-channel. A docking through-channel is opened at the upper end inside the installation frame, a docking block is connected inside the docking through-channel, and a limiting through-channel is opened in the middle of the docking block.

[0011] Furthermore, the limiting rod is embedded in connection with the limiting cylinder, and the limiting rod is elastically connected with the limiting cylinder through the return spring.

[0012] Furthermore, the internal dimension of the limiting through-channel is adapted to the external dimension of the limiting rod, and the limiting rod is connected with the docking block through the limiting through-channel.

[0013] The utility model provides an anti-offset feeding mechanism and a square aluminum shell PACK automatic production line, which have the following beneficial effects:

[0014] 1. Through the setting of the anti-offset assembly, when the anti-offset feeding mechanism and the square aluminum shell PACK automatic production line are used, the electric telescopic rod operates to drive the material blocking plate to move in position, so that the material blocking plate conveys the square aluminum shell PACK to be processed. At the same time, the limiting through-hole is used in cooperation with the limiting cross-bar to increase the stability of the material blocking plate during the moving process, thereby avoiding the position offset during the feeding process of the square aluminum shell PACK. The cleaning brush added at the bottom of the material blocking plate reduces the friction between the bottom of the material blocking plate and the conveyor belt, prolongs the overall service life of the conveyor belt, and improves the use efficiency of the automatic production line at the same time.

[0015] 2. Through the setting of the installation assembly, when the anti-offset feeding mechanism and the square aluminum shell PACK automatic production line are used, the return spring installed inside the limiting cylinder makes the limiting rod elastically connected with the limiting cylinder. At the same time, the docking block is installed inside the installation frame through the docking through-channel, and the internal dimension of the limiting through-channel opened inside the docking block matches the external dimension of the limiting rod. Therefore, after the docking block enters the docking through-channel, it is limited and installed through the limiting rod, so that the installation block can be quickly installed and disassembled, reducing the manual labor intensity and improving the overall flexibility and initiative of the square aluminum shell PACK automatic production line at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a three-dimensional structural schematic diagram of an anti-offset feeding mechanism and a square aluminum shell PACK automatic production line of the utility model;

[0017] Figure 2 Schematic diagram of the three-dimensional unfolded structure of a feeding mechanism for preventing deviation and a square aluminum shell PACK automatic production line of the present utility model;

[0018] Figure 3 For a feeding mechanism for preventing deviation and a square aluminum shell PACK automatic production line of the present utility model Figure 2 Enlarged structure schematic diagram at position A in

[0019] Figure 4 Schematic diagram of the three-dimensional unfolded structure of the deviation prevention component of a feeding mechanism for preventing deviation and a square aluminum shell PACK automatic production line of the present utility model.

[0020] In the figure: 1, mounting frame; 2, conveyor belt; 3, deviation prevention component; 301, mounting block; 302, electric telescopic rod; 303, baffle plate; 304, cleaning brush; 305, limit through hole; 306, limit cross bar; 4, mounting component; 401, limit cylinder; 402, limit rod; 403, return spring; 404, docking through groove; 405, docking block; 406, limit through groove. Specific embodiments

[0021] The following further describes in detail the embodiments of the present utility model in conjunction with the drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0022] Such as Figure 1 、 Figure 2 And Figure 4As shown in the figure, an anti-offset feeding mechanism and a square aluminum shell PACK automatic production line include a mounting frame 1 and an anti-offset component 3. A conveyor belt 2 is arranged inside the mounting frame 1, and an anti-offset component 3 is arranged at the upper end of the mounting frame 1. The anti-offset component 3 includes a mounting block 301, an electric telescopic rod 302, a baffle plate 303, a cleaning brush 304, a limit through hole 305, and a limit cross bar 306. An electric telescopic rod 302 is installed inside the mounting block 301, and a baffle plate 303 is installed at the front end of the electric telescopic rod 302. A cleaning brush 304 is arranged at the lower end of the baffle plate 303. At the same time, a limit through hole 305 is opened at the upper end inside the baffle plate 303, and a limit cross bar 306 is connected inside the limit through hole 305. The electric telescopic rod 302 and the baffle plate 303 are vertically distributed, and the electric telescopic rod 302 and the baffle plate 303 are fixedly connected by bolts. The internal dimension of the limit through hole 305 is adapted to the external dimension of the limit cross bar 306, and the limit cross bar 306 is embedded in the baffle plate 303 through the limit through hole 305. The electric telescopic rod 302 is fixedly installed inside the mounting block 301 through a fastening bolt, and the baffle plate 303 is fixedly installed at the front end of the electric telescopic rod 302 by cooperating with the fastening bolt. The operation of the electric telescopic rod 302 drives the baffle plate 303 to move in position, so that the baffle plate 303 conveys the square aluminum shell PACK to be processed. At the same time, the internal dimension of the limit through hole 305 opened at the upper end inside the baffle plate 303 matches the external dimension of the limit cross bar 306, so as to increase the stability of the baffle plate 303 during the movement process through the cooperation of the limit through hole 305 and the limit cross bar 306, thereby avoiding the position offset during the feeding process of the square aluminum shell PACK. The cleaning brush 304 added at the bottom of the baffle plate 303 is used to reduce the friction between the bottom of the baffle plate 303 and the conveyor belt 2, extend the overall service life of the conveyor belt 2, and improve the use efficiency of the automatic production line at the same time.

[0023] As Figures 1 to 4As shown in the figure, installation components 4 are provided on both outer sides of the mounting bracket 1. The installation components 4 include a limiting cylinder 401, a limiting rod 402, and a return spring 403. The limiting rod 402 is connected inside the limiting cylinder 401, and a return spring 403 is arranged inside the limiting cylinder 401 outside the limiting rod 402. The installation components 4 further include a docking through groove 404, a docking block 405, and a limiting through groove 406. A docking through groove 404 is opened at the upper end inside the mounting bracket 1, and a docking block 405 is connected inside the docking through groove 404. A limiting through groove 406 is opened in the middle of the docking block 405. The limiting rod 402 is embedded in the limiting cylinder 401, and the limiting rod 402 is elastically connected to the limiting cylinder 401 through the return spring 403. The internal size of the limiting through groove 406 is adapted to the external size of the limiting rod 402, and the limiting rod 402 is connected to the docking block 405 through the limiting through groove 406. The limiting cylinder 401 is fixedly installed on both outer sides of the mounting bracket 1 through fastening bolts, and the return spring 403 installed inside the limiting cylinder 401 enables the limiting rod 402 to be elastically connected to the limiting cylinder 401. At the same time, the internal size of the docking through groove 404 opened at the upper end inside the mounting bracket 1 matches the external size of the docking block 405 added at the lower end of the mounting block 301. Thus, the docking block 405 is installed inside the mounting bracket 1 through the docking through groove 404, and the internal size of the limiting through groove 406 opened inside the docking block 405 matches the external size of the limiting rod 402. Thus, after the docking block 405 enters the docking through groove 404, it is limited and installed by the limiting rod 402. Furthermore, the mounting block 301 can be quickly installed and disassembled, reducing the labor intensity of workers while improving the overall flexibility and initiative of the square aluminum shell PACK automatic production line.

[0024] A square aluminum shell PACK automatic production line is equipped with the above-mentioned anti-offset feeding mechanism, which can avoid the position offset of materials during the feeding process, increase the accuracy and convenience of subsequent material processing, reduce the labor intensity of workers while improving the overall use efficiency of the automatic production line.

[0025] In summary, for the anti-offset loading mechanism and the square aluminum shell PACK automatic production line, firstly, the conveyor belt 2 arranged at the upper end inside the mounting frame 1 is used to load and convey the square aluminum shell PACK to be processed. The limiting cylinder 401 is fixedly installed on both outer sides of the mounting frame 1 through fastening bolts, and the limiting rod 402 is elastically connected to the limiting cylinder 401 through the return spring 403 installed inside the limiting cylinder 401. At the same time, the internal dimension of the docking through groove 404 opened at the upper end inside the mounting frame 1 matches the outer dimension of the docking block 405 added at the lower end of the mounting block 301. Thus, the docking block 405 is installed inside the mounting frame 1 through the docking through groove 404, and the internal dimension of the limiting through groove 406 opened inside the docking block 405 matches the outer dimension of the limiting rod 402. Therefore, after the docking block 405 enters the docking through groove 404, it is limited and installed by the limiting rod 402, so that the mounting block 301 can be quickly installed and disassembled, reducing the labor intensity of workers. Then, the electric telescopic rod 302 is fixedly installed inside the mounting block 301 through fastening bolts, and the baffle plate 303 is fixedly installed at the front end of the electric telescopic rod 302 in cooperation with the fastening bolts. The operation of the electric telescopic rod 302 drives the baffle plate 303 to move in position, so that the baffle plate 303 conveys the square aluminum shell PACK to be processed. The limiting through hole 305 and the limiting cross bar 306 are used to increase the stability of the baffle plate 303 during the movement process, thereby avoiding the position offset during the loading process of the square aluminum shell PACK. The cleaning brush 304 added at the bottom of the baffle plate 303 is used to reduce the friction between the bottom of the baffle plate 303 and the conveyor belt 2, extending the overall service life of the conveyor belt 2 and improving the use efficiency of the automatic production line at the same time.

[0026] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better illustrate the principles and practical applications of the present invention, and enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes.

Claims

1. A feeding mechanism for preventing deviation, comprising a mounting frame (1) and a deviation prevention component (3), characterized in that, Inside the mounting bracket (1), a conveyor belt (2) is provided. At the upper end of the mounting bracket (1), an anti-offset component (3) is provided, and the anti-offset component (3) includes a mounting block (301), an electric telescopic rod (302), a baffle plate (303), a cleaning brush (304), a limit through hole (305), and a limit cross bar (306). Inside the mounting block (301), an electric telescopic rod (302) is installed. At the front end of the electric telescopic rod (302), a baffle plate (303) is installed. And at the lower end of the baffle plate (303), a cleaning brush (304) is provided. At the same time, a limit through hole (305) is opened at the upper end inside the baffle plate (303). Inside the limit through hole (305), a limit cross bar (306) is connected. On both outer sides of the mounting bracket (1), a mounting component (4) is provided.

2. The feeding mechanism for preventing deviation according to claim 1, wherein The electric telescopic rod (302) and the baffle plate (303) are vertically distributed, and the electric telescopic rod (302) and the baffle plate (303) are fixedly connected by bolts.

3. The feeding mechanism for preventing deviation according to claim 1, characterized in that, The internal dimension of the limit through hole (305) is adapted to the external dimension of the limit cross bar (306), and the limit cross bar (306) is embedded in the baffle plate (303) through the limit through hole (305).

4. The feeding mechanism for preventing deviation according to claim 1, characterized in that, The mounting component (4) includes a limit cylinder (401), a limit rod (402), and a return spring (403). Inside the limit cylinder (401), a limit rod (402) is connected. And inside the limit cylinder (401) outside the limit rod (402), a return spring (403) is provided.

5. The feeding mechanism for preventing deviation according to claim 4, characterized in that, The mounting component (4) further includes a docking through groove (404), a docking block (405), and a limit through groove (406). At the upper end inside the mounting bracket (1), a docking through groove (404) is opened. And inside the docking through groove (404), a docking block (405) is connected. And at the middle end inside the docking block (405), a limit through groove (406) is opened.

6. The feeding mechanism for preventing deviation according to claim 5, characterized in that, The limit rod (402) is embedded in the limit cylinder (401), and the limit rod (402) is elastically connected to the limit cylinder (401) through the return spring (403).

7. An anti-offset feeding mechanism according to claim 5, characterized in that, The internal dimension of the limit through groove (406) is adapted to the external dimension of the limit rod (402), and the limit rod (402) is connected to the docking block (405) through the limit through groove (406).

8. A square aluminum shell PACK automatic production line, characterized in that, The automatic production line of the square aluminum shell PACK is equipped with a feeding mechanism for preventing offset as described in any one of claims 1-7.