Full-automatic gluing device

The fully automated adhesive bonding device automatically controls the application of adhesive tape, solving the problem of tape breakage during electrode rolling, improving electrode strength and production efficiency, and enhancing battery quality.

CN224036350UActive Publication Date: 2026-03-24XINGTAI NAKNOR TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

During the rolling process, local weak points can easily appear on the electrode sheets, leading to breakage and affecting production efficiency and battery quality.

Method used

Design a fully automatic adhesive bonding device, including an adhesive supply unit, a buffer unit, an adsorption unit, an adhesive pressing unit, and a feeding unit. By automating the adhesive tape bonding process, the electrode strength is increased and tape breakage is avoided.

Benefits of technology

This improved the strength of the electrode sheets, reduced the occurrence of breakage, and enhanced production efficiency and battery quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a full-automatic gluing device, which belongs to the technical field of pole piece gluing and comprises a main plate body, and a glue supply unit, a cache unit, a feeding unit, an adsorption unit and a glue pressing unit are sequentially arranged on the main plate body. The glue supply unit is arranged at one end of the main plate body; the cache unit comprises a plurality of upper cache rollers and a plurality of lower cache rollers; the adsorption unit comprises a suction cup and a longitudinal driving piece, the longitudinal driving piece is installed on the upper portion of the front side face of the main plate body, and the suction cup is installed at the lower end of the longitudinal driving piece. The glue pressing unit is arranged at the other end of the main plate body; the feeding unit comprises a feeding plate, a transverse driving part, a pressing assembly and a cutting assembly, the feeding plate is arranged on the front side face of the main plate body, the transverse driving part is arranged on the rear side of the main plate body, and the pressing assembly and the cutting assembly are arranged on the front side face of the feeding plate. According to the full-automatic gluing device provided by the utility model, the automatic gluing operation on the pole piece can be automatically completed, and the phenomenon of belt breakage when the pole piece is rolled is greatly reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of electrode adhesive technology, and more specifically, it relates to a fully automatic adhesive device. Background Technology

[0002] In modern battery manufacturing processes, the preparation of battery electrodes is a crucial step. Electrodes typically require a rolling process to achieve precise thickness control, increase the compaction density of the electrodes, and thus optimize battery performance.

[0003] However, in the actual rolling process, electrode sheets often encounter the thorny problem of strip breakage. The inherent characteristics of the electrode raw materials, such as differences in material toughness and the inhomogeneity of their internal microstructure, can cause localized weak points to appear when subjected to the strong pressure of rolling, leading to strip breakage. Once the electrode strip breaks, it not only interrupts the production process and causes a significant drop in production efficiency, but also may introduce impurities due to frequent equipment start-ups and shutdowns and the need to deal with the strip breakage problem, affecting battery quality. Utility Model Content

[0004] The purpose of this invention is to provide a fully automatic adhesive bonding device, which aims to solve the problem of local weak points appearing on the electrode sheet when subjected to strong rolling pressure, which in turn leads to tape breakage.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is: to provide a fully automatic adhesive bonding device, including a main board body, on which an adhesive supply unit, a buffer unit, a feeding unit, an adsorption unit and an adhesive pressing unit are sequentially arranged;

[0006] The adhesive supply unit is located at one end of the main body and is used to hold the tape roll;

[0007] The cache unit includes multiple upper cache rollers and multiple lower cache rollers. The multiple upper cache rollers are rotatably mounted on the upper front side of the motherboard body, and the multiple lower cache rollers are rotatably mounted on the lower front side of the motherboard body. The multiple upper cache rollers and multiple lower cache rollers are arranged alternately.

[0008] The adsorption unit includes a suction cup and a longitudinal drive component. The longitudinal drive component is installed on the upper front side of the main body, and the suction cup is installed at the lower end of the longitudinal drive component to adsorb the tape.

[0009] The adhesive pressing unit is located at the other end of the main body and is used to press the end of the adhesive tape.

[0010] The feeding unit includes a feeding plate, a lateral drive component, a pressing component, and a cutting component. The feeding plate is disposed on the front side of the main body, the lateral drive component is disposed on the rear side of the main body, the pressing component and the cutting component are disposed on the front side of the feeding plate. The pressing component is used to press or release the tape, the lateral drive component drives the feeding plate to move laterally, and the cutting component is used to cut the tape in the pressing state of the pressing unit.

[0011] In one possible implementation, the adhesive supply unit includes an adhesive tape feeder, and a horizontally extending connecting plate is provided at one end of the main body, with the adhesive tape feeder located at the end of the connecting plate away from the main body.

[0012] In one possible implementation, the cache unit further includes:

[0013] The mounting top plate is fixed to the upper front side of the main body, and multiple upper buffer rollers are rotatably mounted side by side on the upper front side of the mounting top plate;

[0014] Mounting base plate, the mounting base plate is fixed to the lower front side of the main body;

[0015] Multiple longitudinal guide posts are connected side-by-side between the mounting top plate and the mounting bottom plate;

[0016] A lifting seat is slidably disposed on a plurality of longitudinal guide columns, and a plurality of lower buffer rollers are rotatably mounted side by side on the front side of the lifting seat;

[0017] The first lifting cylinder is fixed to the top of the main body and is used to drive the lifting seat to rise and fall.

[0018] In one possible implementation, the lower end of the suction cup has an elongated suction port.

[0019] In one possible implementation, the adhesive pressing unit includes a first adhesive pressing drive and a first rotating arm. The first rotating arm is arranged laterally and rotatably mounted in the middle on the lower front side of the other end of the main body. The first adhesive pressing drive is located above the first rotating arm and its lower driving end is rotatably connected to the end of the first rotating arm away from the suction cup. An adhesive pressing strip is provided at the end of the first rotating arm near the suction cup.

[0020] In one possible implementation, a movable plate is provided on the front side of the other end of the main board body, the first pressure adhesive drive and the first rotating arm are both provided on the front side of the movable plate, and a lateral adjustment cylinder is provided on the rear side of the other end of the main board body, the lateral adjustment cylinder being used to drive the movable plate to move laterally.

[0021] In one possible implementation, the feeding unit further includes a second lifting cylinder, which is installed on the upper part of the front side of the feeding plate. The front side of the feeding plate is provided with a lifting plate, and the pressing assembly is installed on the front side of the lifting plate. The second lifting cylinder is used to drive the lifting plate to move up and down.

[0022] In one possible implementation, the pressing assembly includes a second pressing drive and a second rotating arm. The second rotating arm is arranged laterally and rotatably mounted in the middle on the lower part of the front side of the lifting plate. The second pressing drive is fixed to the upper part of the front side of the lifting plate, and its lower driving end is rotatably connected to the end of the second rotating arm away from the suction cup. A pressing block is provided at the end of the second rotating arm near the suction cup, and a pressing plate fixed to the lifting plate is provided above the pressing block.

[0023] In one possible implementation, the lower part of the front side plate of the lifting plate is provided with multiple rollers, which are located on the side of the second rotating arm away from the suction cup and are arranged alternately up and down.

[0024] In one possible implementation, the cutting assembly includes a cutting cylinder and a cutter. The cutting cylinder is fixedly disposed on the upper front side of the feeding plate near the suction cup, and the cutter is mounted on the drive end of the lower part of the cutting cylinder.

[0025] The advantages of this fully automatic adhesive bonding device are as follows: Compared with the prior art, the tape roll is placed on the adhesive supply unit, and the end of the tape alternately passes around multiple upper and lower buffer rollers, extending to the pressing component to press the end of the tape. A lateral drive unit moves the feeding plate laterally, passing under the suction cup and reaching the pressing unit. The pressing unit presses the end of the tape. The pressing component releases the end of the tape and returns to the initial position from under the suction cup using the lateral drive unit. At this point, one section of the tape is below the suction cup. The pressing component presses the tape again, and a cutting component cuts the tape pressed by the pressing unit. The cut section of tape is adsorbed onto the lower port of the suction cup. A longitudinal drive unit drives the suction cup downwards, adhering the tape to the surface of the electrode. This fully automatic adhesive bonding device can automatically complete the adhesive bonding operation on the electrode, increasing the strength of the electrode, significantly reducing the occurrence of tape breakage when the electrode is subjected to rolling, improving production efficiency, and enhancing battery quality. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] Figure 1 A perspective view of a fully automatic adhesive device provided by this utility model;

[0028] Figure 2 A front view of a fully automatic adhesive device provided by this utility model;

[0029] Figure 3 Rear view of a fully automatic adhesive device provided by this utility model.

[0030] In the diagram: 1. Tape feeder; 2. Connecting plate; 3. Upper buffer roller; 4. Lower buffer roller; 5. Mounting top plate; 6. Mounting bottom plate; 7. Longitudinal guide column; 8. Lifting seat; 9. First lifting cylinder; 10. Feeding plate; 11. Lifting plate; 12. Second lifting cylinder; 13. Second pressing drive component; 14. Second rotating arm; 15. Through roller; 16. Pressing block; 17. Pressing plate; 18. Cutting cylinder; 19. Cutter; 20. Suction cup; 21. Longitudinal drive component; 22. First pressing drive component; 23. First rotating arm; 24. Lateral adjustment cylinder; 25. Lateral drive component; 26. Pressing tape rod; 27. Movable plate; 28. Main body. Detailed Implementation

[0031] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0032] Unless otherwise explicitly specified, the use of terms such as "first," "second," or "third" is intended to distinguish different objects, not to describe a specific order.

[0033] Unless otherwise expressly defined, the use of directional terms such as “center,” “lateral,” “longitudinal,” “horizontal,” “vertical,” “top,” “bottom,” “inner,” “outer,” “upper,” “lower,” “front,” “back,” “left,” “right,” “clockwise,” “counterclockwise,” “high,” and “low” to indicate orientation or positional relationships is based on the orientation and positional relationships shown in the accompanying drawings and is only for the convenience of describing the present invention and simplifying the description. It is not intended to indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the specific protection scope of the present invention.

[0034] Please see Figures 1 to 3 The present invention provides a fully automatic adhesive bonding device. The fully automatic adhesive bonding device includes a main board 28, on which a glue supply unit, a buffer unit, a feeding unit, an adsorption unit, and a pressing unit are sequentially arranged. The glue supply unit is located at one end of the main board 28 and is used to hold the tape roll. The buffer unit includes multiple upper buffer rollers 3 and multiple lower buffer rollers 4. The upper buffer rollers 3 are rotatably mounted on the upper front side of the main board 28, and the lower buffer rollers 4 are rotatably mounted on the lower front side of the main board 28. The upper buffer rollers 3 and lower buffer rollers 4 are arranged alternately. The adsorption unit includes a suction cup 20 and a longitudinal drive component 21, which is mounted on the main board. On the upper front side of the main body 28, a suction cup 20 is installed at the lower end of the longitudinal drive member 21 to adsorb the tape; the pressing unit is located at the other end of the main body 28 and is used to press the end of the tape; the feeding unit includes a feeding plate 10, a transverse drive member 25, a pressing assembly, and a cutting assembly. The feeding plate 10 is located on the front side of the main body 28, the transverse drive member 25 is located on the rear side of the main body 28, the pressing assembly and the cutting assembly are located on the front side of the feeding plate 10. The pressing assembly is used to press or release the tape, the transverse drive member 25 drives the feeding plate 10 to move laterally, and the cutting assembly is used to cut the tape in the pressing state of the pressing unit.

[0035] This utility model provides a fully automatic adhesive bonding device. Compared with the prior art, the tape roll is placed on the adhesive supply unit, and the end of the tape is alternately wrapped around multiple upper buffer rollers 3 and multiple lower buffer rollers 4, extending to the pressing component to press the end of the tape. The lateral drive 25 drives the feeding plate 10 to move laterally, passing under the suction cup 20 and reaching the pressing unit. The pressing unit presses the end of the tape. The pressing component releases the end of the tape and returns to the initial position from under the suction cup 20 using the lateral drive 25. At this time, one section of the tape is located under the suction cup 20. The pressing component presses the tape again, and the cutting component cuts the tape under the pressing unit. The cut section of tape is adsorbed on the lower port of the suction cup 20. The longitudinal drive 21 drives the suction cup 20 to move downward and stick the tape to the surface of the electrode. This utility model provides a fully automatic adhesive bonding device that can automatically complete the adhesive bonding operation of the electrode sheets, increasing the strength of the electrode sheets, significantly reducing the occurrence of electrode sheet breakage when subjected to rolling, improving production efficiency, and enhancing battery quality.

[0036] Please see Figures 1 to 3 The adhesive supply unit includes a tape feeder 1. A horizontally extending connecting plate 2 is provided at one end of the main board 28, and the tape feeder 1 is located at the end of the connecting plate 2 away from the main board 28. The connecting plate 2 is fixed to one end of the main board 28, and the tape feeder 1 is installed at the end of the connecting plate 2 away from the main board 28. The tape roll is placed on the tape feeder 1. When tape is needed, the tape feeder 1 can easily deliver the tape. The tape feeder 1 has a corresponding rotating structure inside, which ensures that the tape roll rotates smoothly, so that the tape can be stably pulled out for use. The connecting plate 2 plays a good connecting and supporting role. It firmly connects the tape feeder 1 to the main board 28, ensuring that the tape feeder 1 will not shake or shift during operation, thereby ensuring that the entire adhesive supply unit can operate continuously and efficiently.

[0037] Please see Figure 1 and Figure 2The buffer unit also includes a mounting top plate 5, a mounting bottom plate 6, multiple longitudinal guide pillars 7, a lifting seat 8, and a first lifting cylinder 9. The mounting top plate 5 is fixed to the upper front side of the main body 28, and multiple upper buffer rollers 3 are rotatably mounted side-by-side on the upper front side of the mounting top plate 5; the mounting bottom plate 6 is fixed to the lower front side of the main body 28; multiple longitudinal guide pillars 7 are connected side-by-side between the mounting top plate 5 and the mounting bottom plate 6; the lifting seat 8 is slidably mounted on the multiple longitudinal guide pillars 7, and multiple lower buffer rollers 4 are rotatably mounted side-by-side on the front side of the lifting seat 8; the first lifting cylinder 9 is fixed to the top of the main body 28 and is used to drive the lifting seat 8 to rise and fall. When the first lifting cylinder 9 is filled with air, the gas pressure pushes the piston downwards. Since the piston is connected to the lifting seat 8, the downward movement of the piston causes the lifting seat 8 to slide downwards along the multiple longitudinal guide pillars 7. Conversely, when the cylinder is exhausted, under the action of external pressure, the piston moves upwards, thereby causing the lifting seat 8 to slide upwards. For the buffer rollers, when the lifting seat 8 descends, the multiple lower buffer rollers 4 also descend accordingly. This changes the distance between the lower buffer rollers 4 and the upper buffer rollers 3. If the lower buffer rollers 4 rise before the buffering operation begins, increasing the distance, it is easier to place the tape to be buffered between the upper and lower buffer rollers 4; while during the buffering process, the lower buffer rollers 4 descend, decreasing the distance, which allows for proper clamping or positioning of the buffered tape, ensuring the stability and accuracy of the buffering operation.

[0038] Please see Figure 2 A limit bolt is vertically installed at the center of the upper end face of the mounting base plate 6. The limit bolt is used to limit the downward displacement distance of the lifting seat 8. When the lifting seat 8 moves downward during operation, it can no longer descend once its bottom contacts the top of the limit bolt. This not only effectively prevents the lifting seat 8 from collided and being damaged by other components due to excessive downward movement, but also precisely controls the lowest position of the lifting seat 8 in the vertical direction. By adjusting the height of the limit bolt on the upper end face of the mounting base plate 6, the lower limit position of the lifting seat 8 can be flexibly changed to adapt to different production needs or equipment debugging requirements.

[0039] Specifically, the lower end of the suction cup 20 has an elongated suction port. This increases the contact area with the suction surface, making the suction cup 20 more stable during adhesion. The elongated suction port fits the tape well, generating a stable adhesion force. Furthermore, the elongated suction port facilitates flexible layout and combination. If multiple suction cups 20 need to work together, they can be combined in different shapes or arrangements, with the elongated ports adapting to each other to meet various specific adhesion needs.

[0040] Please see Figures 1 to 2The adhesive pressing unit includes a first adhesive pressing drive 22 and a first rotating arm 23. The first rotating arm 23 is horizontally positioned and rotatably mounted on the lower front side of the other end of the main body 28. The first adhesive pressing drive 22 is located above the first rotating arm 23, and its lower drive end is rotatably connected to the end of the first rotating arm 23 away from the suction cup 20. An adhesive pressing rod 26 is provided at the end of the first rotating arm 23 near the suction cup 20. The end of the adhesive pressing rod 26 is flat or cylindrical, which allows for better contact with the adhesive tape and ensures uniform pressure is applied to the tape during the adhesive pressing process. The first adhesive pressing drive 22 can be an electric push rod or a cylinder, which can precisely control the rotation amplitude of the first rotating arm 23. When performing the adhesive pressing operation, the drive end of the first adhesive pressing drive 22 extends, pushing the first rotating arm 23 to rotate around the central rotating mounting point, causing the adhesive pressing rod 26 to gradually approach the adhesive tape. After the tape pressing rod 26 contacts the tape, the first tape pressing drive 22 maintains a certain thrust according to the set pressure value to ensure that the tape is tightly adhered to the corresponding object surface. Simultaneously, a pressure sensor can be installed on the main board 28, which is connected to the control system of the first tape pressing drive 22. Once the pressure sensor detects that the pressure applied by the tape pressing rod 26 exceeds the set safety range, it immediately sends a signal to the control system of the first tape pressing drive 22. The control system then adjusts the extension and retraction of the drive end of the first tape pressing drive 22 to prevent damage to the tape or the adhered object due to excessive pressure. Furthermore, the first rotating arm 23 is designed using a high-strength, lightweight alloy material. This material ensures that the first rotating arm 23 has sufficient strength to withstand the pressure during the tape pressing process while reducing the weight of the entire tape pressing unit, making the equipment more stable and efficient during operation.

[0041] Please see Figures 1 to 3 A movable plate 27 is provided on the front side of the other end of the main body 28. The first adhesive pressing drive 22 and the first rotating arm 23 are both located on the front side of the movable plate 27. A lateral adjustment cylinder 24 is provided on the rear side of the other end of the main body 28. The lateral adjustment cylinder 24 is used to drive the movable plate 27 to move laterally, so that the adhesive tape rod 26 presses the end of the adhesive tape tightly against one end of the suction cup 20. The lateral displacement of the movable plate 27 can precisely control the position of the adhesive tape rod 26, ensuring that the end of the adhesive tape is tightly attached to one end of the suction cup 20.

[0042] Please see Figure 1 and Figure 2The feeding unit also includes a second lifting cylinder 12, which is installed on the upper front side of the feeding plate 10. A lifting plate 11 is located on the front side of the feeding plate 10, and a pressing assembly is installed on the front side of the lifting plate 11. The second lifting cylinder 12 drives the lifting plate 11 to move up and down. When the feeding plate 10 needs to reach the adhesive pressing unit via the suction cup 20, the second lifting cylinder 12 drives the lifting plate 11 downwards, thus passing over the suction cup 20 to reach the adhesive pressing unit. After the feeding plate 10 reaches the adhesive pressing unit, the adhesive pressing unit presses the end of the tape, and the second lifting cylinder 12 drives the lifting plate 11 upwards, thus adhering the tape to the lower end of the suction cup 20. Then, the second lifting cylinder 12 drives the lifting plate 11 downwards, returning from below the suction cup 20. Throughout the process, the precise control of the second lifting cylinder 12 plays a crucial role; each movement of the cylinder needs to be precisely coordinated with the operating status of the feeding plate 10 and the workflow of the adhesive pressing unit. After the tape is applied to the lower end of the suction cup 20, the process of the second lifting cylinder 12 driving the lifting plate 11 to move downwards and return also needs to be strictly controlled. It must ensure that the lifting plate 11 does not touch the already applied tape during its return, to avoid displacement or damage to the tape. At the same time, the second lifting cylinder 12 also needs to have good repeatability, because in multiple loading operations, the above actions must be completed accurately each time. This ensures the continuous and stable operation of the entire loading and pressing process, thereby improving production quality and efficiency.

[0043] Please see Figure 2 The pressing assembly includes a second adhesive pressing drive 13 and a second rotating arm 14. The second rotating arm 14 is horizontally positioned and rotatably mounted at the lower front side of the lifting plate 11. The second adhesive pressing drive 13 is fixed to the upper front side of the lifting plate 11, and its lower drive end is rotatably connected to the end of the second rotating arm 14 away from the suction cup 20. An adhesive pressing block 16 is provided at the end of the second rotating arm 14 near the suction cup 20, and an adhesive pressing plate 17 fixed to the lifting plate 11 is provided above the adhesive pressing block 16. When the pressing assembly starts working, the second adhesive pressing drive 13 is activated, and its drive end pushes the second rotating arm 14 to rotate around the rotatable connection point at the lower front side of the lifting plate 11. Because the second rotating arm 14 is horizontally positioned, as the drive end pushes, the adhesive pressing block 16 near the suction cup 20 gradually approaches the object to be pressed below. The adhesive pressing plate 17 above the adhesive pressing block 16 remains in a fixed position because it is fixed to the lifting plate 11, and it mainly functions to press the adhesive tape. Under the action of the pressure block 16 and the pressure plate 17, the end of the tape is pulled to the pressure unit. After the pressure unit presses the end of the tape, the pressure block 16 and the pressure plate 17 separate, the entire feeding unit is reset, and the tape is pressed again by the pressure block 16 and the pressure plate 17, so that one end of the tape is located below the suction cup 20.

[0044] Furthermore, multiple guide rollers 15 are provided on the lower part of the front side plate of the lifting plate 11. These guide rollers 15 are located on the side of the second rotating arm 14 away from the suction cup 20 and are arranged alternately vertically. The conveyor belt is wound around these guide rollers 15 in an orderly manner. During the operation of the lifting plate 11, the guide rollers 15 play an important role in guiding the direction of the conveyor belt. When the lifting plate 11 moves up and down, these guide rollers 15 located on the lower part of the front side plate will work together with the movement of the overall structure. Because the multiple guide rollers 15 are arranged alternately vertically, the conveyor belt forms a winding trajectory between them, which helps to increase the stability of the conveyor belt during operation. Moreover, the design of the guide rollers 15 being located on the side of the second rotating arm 14 away from the suction cup 20 avoids possible interference with the suction cup 20, ensuring the normal operation of the suction cup 20 when adsorbing objects and the smooth transmission of the conveyor belt throughout the system, thereby ensuring the efficient operation of the entire device.

[0045] Please see Figures 1 to 3 The cutting assembly includes a cutting cylinder 18 and a cutter 19. The cutting cylinder 18 is fixedly mounted on the upper front side of the feeding plate 10 near the suction cup 20, and the cutter 19 is mounted on the drive end of the lower part of the cutting cylinder 18. When the feeding unit reaches the adhesive pressing unit and resets, the cutting cylinder 18 drives the cutter 19 to cut the tape, and the cut tape adheres to the underside of the suction cup 20. After the tape is cut and adhered to the underside of the suction cup 20, the suction cup 20 can move downwards with the tape to adhere to the surface of the electrode sheet. During the movement of the suction cup 20, the cutting assembly stops working, the cutting cylinder 18 remains stationary, and the cutter 19 also remains stable in its original position, waiting for the next cycle of operation between the feeding unit and the adhesive pressing unit. When a new round of operation begins, the cutting assembly will repeat the previous action, continuously providing tape of the appropriate length for the entire production process.

[0046] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A fully automatic adhesive applicator, characterized in that, Includes a main board body (28), on which a glue supply unit, a buffer unit, a feeding unit, an adsorption unit and a pressing unit are sequentially arranged; The adhesive supply unit is located at one end of the main body (28) and is used to hold the tape roll; The cache unit includes multiple upper cache rollers (3) and multiple lower cache rollers (4). The multiple upper cache rollers (3) are rotatably mounted on the upper front side of the main board body (28), and the multiple lower cache rollers (4) are rotatably mounted on the lower front side of the main board body (28). The multiple upper cache rollers (3) and multiple lower cache rollers (4) are arranged alternately. The adsorption unit includes a suction cup (20) and a longitudinal drive member (21). The longitudinal drive member (21) is installed on the upper front side of the main body (28), and the suction cup (20) is installed at the lower end of the longitudinal drive member (21) to adsorb the tape. The adhesive pressing unit is located at the other end of the main body (28) and is used to press the end of the adhesive tape. The feeding unit includes a feeding plate (10), a transverse drive (25), a pressing assembly, and a cutting assembly. The feeding plate (10) is located on the front side of the main body (28), the transverse drive (25) is located on the rear side of the main body (28), the pressing assembly and the cutting assembly are located on the front side of the feeding plate (10). The pressing assembly is used to press or release the tape, the transverse drive (25) drives the feeding plate (10) to move laterally, and the cutting assembly is used to cut the tape in the pressing state of the pressing unit.

2. The fully automatic adhesive device as described in claim 1, characterized in that, The adhesive supply unit includes an adhesive tape feeder (1), and a horizontally extending connecting plate (2) is provided at one end of the main body (28). The adhesive tape feeder (1) is located at the end of the connecting plate (2) away from the main body (28).

3. The fully automatic adhesive device as described in claim 1, characterized in that, The cache unit also includes: Mounting top plate (5), the mounting top plate (5) is fixed to the upper front side of the main body (28), and multiple upper buffer rollers (3) are mounted side by side on the upper front side of the mounting top plate (5); Mounting base plate (6), which is fixed to the lower front side of the main body (28); Multiple longitudinal guide posts (7) are connected side by side between the mounting top plate (5) and the mounting bottom plate (6); The lifting seat (8) is slidably disposed on a plurality of longitudinal guide columns (7), and a plurality of lower buffer rollers (4) are rotatably mounted side by side on the front side of the lifting seat (8); The first lifting cylinder (9) is fixed to the top of the main body (28) and is used to drive the lifting seat (8) to lift.

4. The fully automatic adhesive device as described in claim 1, characterized in that, The lower end of the suction cup (20) has a long strip-shaped suction port.

5. The fully automatic adhesive device as described in claim 1, characterized in that, The adhesive pressing unit includes a first adhesive pressing drive (22) and a first rotating arm (23). The first rotating arm (23) is arranged horizontally and is rotatably mounted on the lower front side of the other end of the main body (28). The first adhesive pressing drive (22) is located above the first rotating arm (23) and its lower driving end is rotatably connected to the end of the first rotating arm (23) away from the suction cup (20). An adhesive pressing strip (26) is provided at the end of the first rotating arm (23) near the suction cup (20).

6. The fully automatic adhesive device as described in claim 5, characterized in that, A movable plate (27) is provided on the front side of the other end of the main board body (28). The first pressure adhesive drive (22) and the first rotating arm (23) are both provided on the front side of the movable plate (27). A lateral adjustment cylinder (24) is provided on the rear side of the other end of the main board body (28). The lateral adjustment cylinder (24) is used to drive the movable plate (27) to move laterally.

7. The fully automatic adhesive device as described in claim 1, characterized in that, The feeding unit also includes a second lifting cylinder (12), which is installed on the upper part of the front side of the feeding plate (10). The front side of the feeding plate (10) is provided with a lifting plate (11), and the pressing assembly is installed on the front side of the lifting plate (11). The second lifting cylinder (12) is used to drive the lifting plate (11) to move up and down.

8. The fully automatic adhesive device as described in claim 7, characterized in that, The pressing assembly includes a second pressing drive (13) and a second rotating arm (14). The second rotating arm (14) is arranged laterally and is rotatably mounted on the lower front side of the lifting plate (11). The second pressing drive (13) is fixed to the upper front side of the lifting plate (11) and its lower driving end is rotatably connected to the end of the second rotating arm (14) away from the suction cup (20). A pressing block (16) is provided at the end of the second rotating arm (14) near the suction cup (20). A pressing plate (17) fixed on the lifting plate (11) is provided above the pressing block (16).

9. The fully automatic adhesive device as described in claim 8, characterized in that, The lower part of the front side plate of the lifting plate (11) is provided with multiple rollers (15), which are located on the side of the second rotating arm (14) away from the suction cup (20) and are arranged alternately up and down.

10. The fully automatic adhesive device as described in claim 1, characterized in that, The cutting assembly includes a cutting cylinder (18) and a cutter (19). The cutting cylinder (18) is fixedly disposed on the upper front side of the feeding plate (10) near the suction cup (20), and the cutter (19) is mounted on the drive end of the lower part of the cutting cylinder (18).