Storage battery PE partition plate encapsulating machine

By introducing an adjustment mechanism into the battery PE separator sealing machine, the motor drives the sleeve and push rod to move the annular block, thereby adjusting the mounting roller shaft. This solves the problem of incompatible material roll sizes, improves the applicability of the equipment, and reduces costs.

CN223501937UActive Publication Date: 2025-10-31JIANGSU MINGGUAN POWER TECH CO LTD
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Patent Information

Application Number
CN202422920398.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-31
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

Existing battery PE separator sealing machines cannot be adjusted according to the size of the material roll after it is fixed, resulting in reduced equipment applicability.

Method used

A structure including a mounting housing, mounting rollers, an adjusting mechanism, a conveying roller, a sealing wheel, a conveyor belt, a push rod, and a motor is designed. The motor drives the sleeve to rotate, which in turn moves the push rod and the annular block to adjust the mounting roller. In conjunction with gears and a toothed synchronous belt, the threaded sleeve moves, thereby adjusting the position of the mounting roller.

Benefits of technology

This improved the applicability of the equipment, reduced the number of devices required, and lowered manufacturing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of storage battery production equipment, and discloses a storage battery PE (Poly Ethylene) partition plate encapsulating machine. The edge sealing device comprises a mounting box body, and further comprises a mounting roll shaft rotationally mounted in the mounting box body, an adjusting mechanism arranged in the mounting box body, a plurality of groups of conveying roll shafts rotationally mounted in the mounting box body, two groups of edge sealing wheels symmetrically and rotationally mounted in the mounting box body, and a conveying belt rotationally mounted in the mounting box body, the conveying belt is arranged at the bottom of the edge sealing wheel; the motor drives the mounting cylinder to rotate, the second push rod drives the annular block to move, the mounting cylinder extrudes the sliding block to make contact with the surface of the second sleeve, the second transmission wheel is driven to rotate, the second transmission wheel is matched with the transmission belt to drive the first transmission wheel to move, and then the first gear is driven to move; and then the threaded rod is driven to rotate, the threaded sleeve is driven to move, the installation roller shaft is adjusted, and the applicability of the equipment is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of storage battery production equipment, specifically a storage battery PE separator encapsulation machine. Background Technology

[0002] PE sheet is a highly crystalline, non-polar thermoplastic resin. In its original state, HDPE is milky white in appearance and semi-transparent in thin sections. It has excellent low-temperature resistance, good chemical stability, low water absorption, excellent electrical insulation properties, low density, and good toughness.

[0003] When assembling batteries, the plates need to be bagged and sealed with PE separators. The equipment used in the sealing process is a PE separator sealing machine. When using the equipment, the material roll needs to be fixedly installed on the surface of the installation roller. Although the existing equipment can fix the material roll, it is not convenient to adjust it according to the size of the material roll after fixing, which reduces the applicability of the equipment. Utility Model Content

[0004] In view of the shortcomings of the prior art, this utility model provides a battery PE separator encapsulation machine, which solves the problems mentioned in the background.

[0005] This utility model provides the following technical solution:

[0006] This utility model is a battery PE separator sealing machine, including a mounting box, and further including: mounting rollers rotatably mounted inside the mounting box, an adjustment mechanism provided inside the mounting box, multiple sets of conveyor rollers rotatably mounted inside the mounting box, two sets of sealing wheels symmetrically rotatably mounted inside the mounting box, a conveyor belt rotatably mounted inside the mounting box and the conveyor belt being located at the bottom of the sealing wheels, a push rod fixedly mounted inside the mounting box, a mounting plate fixedly connected to one side of the push rod, and a shelf slidably mounted inside the mounting plate.

[0007] Furthermore, the adjustment mechanism includes a threaded sleeve, a screw, a first gear, and a toothed synchronous belt. The threaded sleeve is rotatably mounted on the surface of the mounting roller shaft. The screw is symmetrically threaded and connected inside the two sets of threaded sleeves, and is rotatably mounted inside the mounting housing. The first gear is fixedly connected to one side of the screw, and the toothed synchronous belt is sleeved on the surface of the first gear.

[0008] Furthermore, a motor is fixedly installed on one side of the mounting box, and a mounting cylinder is slidably engaged with the output end surface of the motor. Multiple sets of sliding blocks are symmetrically slidably connected inside the mounting cylinder, and sliding cylinders are slidably connected to the surfaces of the sliding blocks, with the sliding cylinders slidably connected to the surface of the mounting cylinder.

[0009] Furthermore, a snap-fit ​​post is fixedly connected to one side of the mounting roller shaft, and a sleeve is slidably snapped onto the surface of the snap-fit ​​post, with the sleeve being rotatably connected inside the sliding cylinder.

[0010] Furthermore, a second sleeve is rotatably connected inside the other side of the sliding cylinder, a second transmission wheel is fixedly connected to the top of the second sleeve, and the second transmission wheel is slidably connected to the surface of the motor output end. A transmission belt is sleeved on the surface of the second transmission wheel, and a first transmission wheel is sleeved inside the other side of the transmission belt, and the first transmission wheel is fixedly connected to the toothed synchronous belt.

[0011] Furthermore, an annular block is rotatably mounted on the surface of the mounting cylinder, and a push rod two is fixedly connected to one side of the annular block, and the push rod two is fixedly connected inside the mounting box.

[0012] Furthermore, the interior of the sliding cylinder is symmetrically connected with guide pillars, and springs are provided on the surface of the guide pillars.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. This utility model uses a motor to drive the installation cylinder to rotate, and then push rod two drives the annular block to move. The installation cylinder then presses the sliding block into contact with the surface of sleeve two, thereby driving transmission wheel two to rotate. Transmission wheel two, in conjunction with the transmission belt, drives transmission wheel one to move, which in turn drives gear one to move, which in turn drives the screw to rotate, which in turn drives the threaded sleeve to move, thus achieving adjustment of the installation roller shaft and increasing the applicability of the equipment.

[0015] 2. This utility model uses a push rod 2 to move the annular block, which in turn causes the mounting cylinder to contact the surface of the sleeve 1. The sleeve 1 cooperates with the snap-fit ​​post, which in turn drives the mounting roller to rotate, reducing the number of devices used and thus reducing the manufacturing cost of the device. Attached Figure Description

[0016] Figure 1 This is a top view of the present invention;

[0017] Figure 2 This is a cross-sectional view of the present invention;

[0018] Figure 3 This is a schematic diagram of the adjustment mechanism of this utility model;

[0019] Figure 4 This is a cross-sectional schematic diagram of the adjustment mechanism of this utility model;

[0020] Figure 5 This is a schematic diagram of the threaded sleeve of this utility model;

[0021] Figure 6 This is a schematic diagram of the sleeve of this utility model;

[0022] Figure 7 This utility model Figure 4 A magnified view of a portion of point A in the middle.

[0023] The components represented by each number in the attached diagram are listed below: 1. Mounting housing; 2. Mounting roller; 3. Conveyor roller; 4. Sealing wheel; 5. Push rod one; 6. Mounting plate; 7. Storage plate; 8. Conveyor belt; 9. Threaded sleeve; 10. Screw; 11. Gear one; 12. Toothed synchronous belt; 13. Snap-fit ​​post; 14. Sleeve one; 15. Drive wheel one; 16. Drive belt; 17. Drive wheel two; 18. Sleeve two; 19. Sliding block; 20. Mounting cylinder; 21. Annular block; 22. Push rod two; 23. Guide post; 24. Spring; 25. Motor; 26. Sliding cylinder. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figure 1-7This utility model is a battery PE separator sealing machine, including a mounting box 1, and further including: a mounting roller 2 rotatably mounted inside the mounting box 1, an adjustment mechanism inside the mounting box 1, multiple sets of conveyor rollers 3 rotatably mounted inside the mounting box 1, two sets of sealing wheels 4 rotatably mounted inside the mounting box 1, a conveyor belt 8 rotatably mounted inside the mounting box 1 and located at the bottom of the sealing wheels 4, a push rod 5 fixedly mounted inside the mounting box 1, a mounting plate 6 fixedly connected to one side of the push rod 5, and a shelf 7 slidably mounted inside the mounting plate 6; the adjustment mechanism includes a threaded sleeve 9, a screw 10, a gear 11, and a toothed synchronous belt 12, the threaded sleeve 9 rotatably mounted on the surface of the mounting roller 2, the screw 10 symmetrically threadedly connected to the inside of the two sets of threaded sleeves 9 and rotatably mounted inside the mounting box 1, the gear 11 fixedly connected to one side of the screw 10, and the toothed synchronous belt 12 sleeved on the surface of the gear 11; the mounting box 1... A motor 25 is fixedly mounted on one side. A mounting cylinder 20 is slidably engaged with the output end of the motor 25. Multiple sets of sliding blocks 19 are symmetrically slidably connected inside the mounting cylinder 20. A sliding cylinder 26 is slidably connected to the surface of each sliding block 19, and the sliding cylinder 26 is slidably connected to the surface of the mounting cylinder 20. A locking post 13 is fixedly connected to one side of the mounting roller 2. A sleeve 14 is slidably engaged with the surface of the locking post 13, and the sleeve 14 is rotatably connected inside the sliding cylinder 26. The other side of the sliding cylinder 26 is rotatably connected to... A sleeve 28 is attached, and a transmission wheel 27 is fixedly connected to the top of the sleeve 28. The transmission wheel 27 is slidably connected to the surface of the output end of the motor 25. A transmission belt 16 is sleeved on the surface of the transmission wheel 27. A transmission wheel 15 is sleeved inside the other side of the transmission belt 16. The transmission wheel 15 is fixedly connected to the toothed synchronous belt 12. An annular block 21 is rotatably mounted on the surface of the mounting cylinder 20. A push rod 22 is fixedly connected to one side of the annular block 21. The push rod 22 is fixedly connected inside the mounting box 1.Inside the sliding cylinder 26, guide posts 23 are symmetrically slidably connected. Springs 24 are mounted on the surfaces of the guide posts 23. A push rod 22 drives the annular block 21 to move. The annular block 21 is fixedly connected to the guide posts 23, and the springs 24 are mounted on the surfaces of the guide posts 23. Simultaneously, the guide posts 23 are slidably connected to the sliding cylinder 26, and the annular block 21 is rotatably connected to the mounting cylinder 20. The mounting cylinder 20 is slidably connected to the sliding block 19, which in turn is slidably connected to the sliding cylinder 26. This slidably pushes the sliding block 19 into contact with the surface of the sleeve 18, which is fixedly connected to the transmission wheel 17. The second transmission wheel 17 is connected to the first transmission wheel 15 via the transmission belt 16. The first transmission wheel 15 is fixedly connected to the first gear 11, and the first gear 11 is connected via the toothed synchronous belt 12. The first gear 11 is connected to the screw 10, and the screw 10 is threadedly connected to the threaded sleeve 9. The threaded sleeve 9 is rotatably connected to the mounting roller shaft 2, thereby driving the mounting roller shaft 2 to adjust. Then, by moving the annular block 21 in the opposite direction, the first sleeve 14 is squeezed by the sliding block 19. The first sleeve 14 is slidably engaged with the locking post 13, and the locking post 13 is fixedly connected to the mounting roller shaft 2, thereby driving the mounting roller shaft 2 to rotate.

[0026] In use, the motor 25 drives the sleeve 14 to rotate the locking post 13, which in turn drives the mounting roller 2 to rotate synchronously. At the same time, the push rod 22 drives the annular block 21 to move. Simultaneously, the guide post 23, in cooperation with the annular block 21, drives the sliding cylinder 26 to reset, which in turn drives the mounting cylinder 20 to push the sliding block 19 into contact with the sleeve 18, thereby driving the transmission wheel 17 to rotate. The transmission wheel 17, in cooperation with the transmission belt 16, drives the transmission wheel 15 to rotate synchronously, which in turn drives the gear 11 to rotate. The gear 11, in cooperation with the toothed synchronous belt 12, drives the threaded sleeve 9 to move along the surface of the screw 10, and simultaneously drives the locking post 13 to move along the surface of the sleeve 14. This allows for the adjustment of the mounting roller 2, increasing the applicability of the equipment and reducing its manufacturing cost.

[0027] Working principle: First, place the equipment in a suitable position, then install the material roll on the surface of the mounting roller 2. Then, the motor 25 drives the sleeve 14 to rotate, which in turn drives the sleeve 2 18 and the transmission wheel 2 17 to rotate. The transmission wheel 2 17, in conjunction with the transmission belt 16, drives the transmission wheel 15 to rotate. The transmission wheel 15 drives the gear 11 to rotate, which in turn drives the screw 10 to rotate synchronously through the toothed synchronous belt 12. This drives the threaded sleeve 9 to rotate, which in turn drives the mounting roller 2 to adjust to a suitable position. Then, the material roll passes through the conveyor roller 3 in sequence. The annular block 21 drives the mounting cylinder 20 and the sliding block 19 to squeeze the sleeve 14. The motor 25, in conjunction with the sleeve 14, drives the clamping column 13 to rotate, which in turn drives the mounting roller 2 to rotate. Then, the push rod 5 drives the mounting plate 6 to move. The material roll is pushed by the placement plate 7 and retreats into the sealing wheel 4 for sealing. Finally, it is output through the conveyor belt 8.

[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A battery PE separator encapsulation machine, comprising: The mounting box (1) is characterized in that it further includes: a mounting roller (2) is rotatably mounted inside the mounting box (1); an adjustment mechanism is provided inside the mounting box (1); multiple sets of conveying rollers (3) are rotatably mounted inside the mounting box (1); two sets of sealing wheels (4) are symmetrically rotatably mounted inside the mounting box (1); a conveyor belt (8) is rotatably mounted inside the mounting box (1), and the conveyor belt (8) is located at the bottom of the sealing wheels (4); a push rod (5) is fixedly mounted inside the mounting box (1); a mounting plate (6) is fixedly connected to one side of the push rod (5); and a storage plate (7) is slidably mounted inside the mounting plate (6).

2. The battery PE separator encapsulation machine according to claim 1, characterized in that, The adjustment mechanism includes a threaded sleeve (9), a screw (10), a gear (11), and a toothed synchronous belt (12). The threaded sleeve (9) is rotatably mounted on the surface of the mounting roller (2). The screw (10) is symmetrically threadedly connected inside the two sets of threaded sleeves (9) and is rotatably mounted inside the mounting housing (1). The gear (11) is fixedly connected to one side of the screw (10), and the toothed synchronous belt (12) is sleeved on the surface of the gear (11).

3. A battery PE separator encapsulation machine according to claim 2, characterized in that, A motor (25) is fixedly installed on one side of the mounting box (1). The output end of the motor (25) is slidably connected to the mounting cylinder (20). The interior of the mounting cylinder (20) is symmetrically connected to multiple sets of sliding blocks (19). The surface of the sliding block (19) is slidably connected to the sliding cylinder (26), and the sliding cylinder (26) is slidably connected to the surface of the mounting cylinder (20).

4. A battery PE separator encapsulation machine according to claim 3, characterized in that, A snap-fit ​​post (13) is fixedly connected to one side of the mounting roller (2), and a sleeve (14) is slidably snapped onto the surface of the snap-fit ​​post (13), and the sleeve (14) is rotatably connected inside the sliding cylinder (26).

5. A battery PE separator encapsulation machine according to claim 4, characterized in that, The other side of the sliding cylinder (26) is rotatably connected to the sleeve two (18). The top of the sleeve two (18) is fixedly connected to the transmission wheel two (17), and the transmission wheel two (17) is slidably connected to the surface of the output end of the motor (25). The surface of the transmission wheel two (17) is fitted with a transmission belt (16), and the other side of the transmission belt (16) is fitted with a transmission wheel one (15), and the transmission wheel one (15) is fixedly connected to the toothed synchronous belt (12).

6. A battery PE separator encapsulation machine according to claim 5, characterized in that, An annular block (21) is rotatably mounted on the surface of the mounting cylinder (20). A push rod (22) is fixedly connected to one side of the annular block (21), and the push rod (22) is fixedly connected inside the mounting box (1).

7. A battery PE separator encapsulation machine according to claim 6, characterized in that, The sliding cylinder (26) has guide posts (23) symmetrically slidably connected inside, and springs (24) are provided on the surface of the guide posts (23).