A gluing device for graphite sheet
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-12
- Publication Date
- 2026-08-11
AI Technical Summary
然而,传统的涂胶方式存在诸多弊端
提高涂胶质量与稳定性
Smart Images

Figure CN224614217U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of graphite plate processing equipment, and in particular to a coating device for graphite plate sheets. Background Technology
[0002] In the production and processing of graphite sheets, adhesive coating is a crucial step, and its quality directly affects the performance and quality of subsequent products. However, traditional adhesive coating methods have many drawbacks.
[0003] Previously, manual glue application was the primary method, which was not only inefficient but also made it difficult to ensure uniform glue application. This resulted in significant differences in glue thickness across different parts of the graphite sheet, affecting the overall quality stability of the product. Furthermore, manual glue application is physically demanding, and prolonged operation can lead to fatigue, further reducing the accuracy of the glue application.
[0004] With technological advancements, while some simple adhesive coating equipment has emerged, these devices suffer from limited structure and incomplete functionality. For instance, some equipment only possesses basic adhesive coating capabilities, lacking effective handling of excess adhesive after coating. This leads to adhesive buildup on the graphite sheet surface, affecting product appearance and subsequent processing. Furthermore, existing equipment lacks precise control over adhesive dispensing during the coating process, easily resulting in adhesive waste or insufficient dispensing, thus increasing production costs.
[0005] Furthermore, existing adhesive coating devices are not convenient to clean and maintain. Impurities and residual adhesive generated during the coating process are difficult to remove in a timely manner, and long-term accumulation can affect the normal operation and service life of the equipment. Therefore, developing a highly efficient, precise, and fully functional adhesive coating device for graphite sheets is of significant practical importance. Utility Model Content
[0006] To address some of the problems existing in the prior art, this invention provides a gluing device for graphite sheet films. This invention achieves efficient and automated gluing of graphite sheet films by setting mutually perpendicular main transport tracks and support transport tracks, in conjunction with a slidingly arranged gluing station, gluing components, and a scraping component. Excess glue can be scraped off promptly after gluing, ensuring the uniformity and smoothness of the coating, effectively improving the gluing quality and meeting the requirements of high-precision production.
[0007] To achieve the above objectives, this utility model provides a coating device for graphite sheet, comprising a coating device body, the coating device body including a main transport track and a support transport track arranged perpendicularly to each other, a coating station slidably disposed on the main transport track, a coating component disposed on the support transport track on one side of the main transport track, and a scraping component disposed on the support transport track on the other side of the main transport track, the coating component and the scraping component being slidably disposed with the support transport track.
[0008] As a further improvement of this utility model, in order to facilitate the flexible movement of the glue application assembly on the transport support rail to adapt to the glue application needs of graphite sheet sheets of different positions and sizes, a stable support structure and power source are provided for the glue application operation. The glue application telescopic cylinder can realize the telescopic movement during the glue application process, which facilitates precise control of the glue application position and range. The glue application assembly includes a glue application support base set on the transport support rail. A glue application moving slider is set below the glue application support base. The glue application support base is slidably connected to the transport support rail through the glue application moving slider. A glue application bearing plate is connected above the glue application support base on both sides. A glue application mounting plate is set on the glue application bearing plate. A glue application telescopic cylinder is set on the glue application mounting plate. The glue application mounting plate is configured to cooperate with the glue scraping assembly.
[0009] As a further improvement of this utility model, in order to clarify the working space of the glue-applying telescopic cylinder, ensure the accurate relative position of each component during the glue-applying and scraping process, avoid mutual interference, ensure the precise execution of the glue-applying and scraping actions, and improve the consistency of glue-applying quality, the scraping assembly includes a scraping support base set on the transport support rail, a scraping working platform set on the top of the scraping support base, a scraping limiting plate set on one side of the scraping working platform, and the scraping limiting plate and the glue-applying mounting plate forming an area for the glue-applying telescopic cylinder to extend and retract.
[0010] As a further improvement of this utility model, in order to collect excess glue generated during the glue scraping process in a timely manner, avoid glue flowing randomly and causing waste and environmental pollution, and also facilitate centralized recycling of glue, a recycling trough is provided on one side of the glue scraping work platform, and a glue application cleaning component is provided on the other side of the glue scraping work platform. The glue application cleaning component includes a cleaning support base set on the transport support rail, a cleaning telescopic cylinder is connected above the cleaning support base, and a glue scraper is connected to the output end of the cleaning telescopic cylinder.
[0011] As a further improvement of this utility model, in order to make the glue spray gun more flexible and stable during the extension and retraction process, and to adjust the glue application position more accurately to adapt to the glue application needs of graphite sheet sheets of different shapes and sizes, and to further improve the accuracy and quality of glue application, a connecting column is provided between the glue scraping limit plate and the glue application mounting plate, and a sliding mounting block is connected to the output end of the glue application telescopic cylinder, and the sliding mounting blocks are slidably arranged with each other.
[0012] As a further improvement of this utility model, the sliding mounting block is provided with a glue spray gun, and a glue feeding hole is provided on one side of the glue spray gun. The glue feeding hole is equipped with a one-way valve, and a soft perforated plate is provided at the bottom of the glue spray gun for glue to flow out.
[0013] In operation, the graphite sheet to be coated is first precisely placed on the coating station. The coating station then slides smoothly along the main transport track, transporting the graphite sheet to the pre-designated coating area, preparing it for subsequent coating processes.
[0014] The adhesive application assembly begins operation. The adhesive application support base slides flexibly on the transport track via an adhesive application slider, moving the adhesive application carrier plate and adhesive application mounting plate to the appropriate position. At this point, the adhesive application telescopic cylinder activates, and the sliding mounting block connected to its output end slides on the connecting column, accurately moving the adhesive spray gun above the graphite sheet. Adhesive enters the adhesive spray gun through an adhesive inlet with a one-way valve, then flows evenly from the soft perforated plate at the bottom, spraying onto the surface of the graphite sheet to ensure uniformity and stability of the adhesive application.
[0015] After the adhesive application is completed, the adhesive application telescopic cylinder is activated again, transporting the soft perforated plate that has just been coated to the corresponding position of the adhesive scraping assembly. At this time, the cleaning telescopic cylinder on the cleaning support base of the adhesive cleaning assembly is activated, and the scraper connected to its output end extends, approaching the soft perforated plate at the bottom of the adhesive spray gun. With the continuous action of the cleaning telescopic cylinder, the scraper removes excess adhesive from the soft perforated plate. The scraped adhesive is shoveled into a recycling tank set on one side of the adhesive scraping work platform. After the scraping operation is completed, the adhesive application station continues to slide along the main transport track, conveying the coated graphite sheet, which has been cleaned of excess adhesive, to the next process.
[0016] The beneficial effects of this utility model are as follows: Improve the quality and stability of adhesive coating This adhesive coating device ensures high-quality coating through a series of precise designs. The coating station accurately transports the graphite sheet to the preset working area, providing a stable foundation for coating. In the coating assembly, the coating support base moves flexibly on the support track with the help of a sliding slider, moving the coating mounting plate to the appropriate position. Then, the coating telescopic cylinder accurately positions the coating spray gun above the graphite sheet, ensuring precise coating positioning. Simultaneously, the adhesive enters the spray gun through a feeding port with a one-way valve and flows out evenly from the bottom soft perforated plate, effectively ensuring the uniformity and stability of the coating, greatly improving the coating quality of the graphite sheet and meeting the requirements of high-precision production.
[0017] Automated operations improve production efficiency The entire adhesive coating process is highly automated, reducing manual intervention. From the placement and transportation of graphite sheet sheets at the coating station, to the automatic operation of the coating assembly to complete the coating, and then to the subsequent automatic removal of excess adhesive by the adhesive cleaning assembly, each step is closely linked and carried out in an orderly manner. This automated operation mode not only significantly shortens the coating cycle of a single graphite sheet but also enables continuous and uninterrupted operation, significantly improving production efficiency, reducing labor costs, and making it suitable for large-scale industrial production.
[0018] It has complete glue cleaning and recycling functions. The device is equipped with a dedicated adhesive application and cleaning component. After adhesive application, the adhesive application telescopic cylinder transports the flexible perforated plate to the corresponding position, and the cleaning telescopic cylinder drives the adhesive scraper to extend, precisely approach the flexible perforated plate, and scrape off excess adhesive. The scraped adhesive is promptly shoveled into a recycling tank, avoiding waste and environmental pollution caused by indiscriminate dripping of adhesive. Attached Figure Description
[0019] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings: Figure 1 This is a structural diagram of the present invention.
[0020] Figure 2 This is a structural diagram of the adhesive coating assembly.
[0021] Figure 3 This is a structural diagram of the adhesive scraper assembly.
[0022] The components include: 1. Main transport track; 2. Support transport track; 3. Glue application station; 4. Glue application assembly; 5. Glue scraping assembly; 6. Glue application support base; 7. Glue application moving slider; 8. Glue application bearing plate; 9. Glue application mounting plate; 10. Glue application telescopic cylinder; 11. Glue scraping support base; 12. Glue scraping work platform; 13. Glue scraping limit plate; 14. Recycling tank; 15. Glue application cleaning assembly; 16. Cleaning support base; 17. Cleaning telescopic cylinder; 18. Glue scraper; 19. Connecting column; 20. Sliding mounting block; 21. Glue application spray gun; 22. Glue feeding hole; 23. Soft perforated plate. Detailed Implementation
[0023] To enable those skilled in the art to better understand the technical solutions in this application, the following description is provided in conjunction with the appendix. Figure 1-3 The present invention will be further described below. The following embodiments are only used to illustrate the technical solution of the present invention more clearly, and should not be used to limit the protection scope of the present invention.
[0024] like Figure 1-3The illustrated adhesive coating device for graphite sheet includes an adhesive coating device body, which includes a main transport track 1 and a support transport track 2 arranged perpendicularly to each other. An adhesive coating station 3 is slidably arranged on the main transport track 1. An adhesive coating component 4 is arranged on the support transport track 2 on one side of the main transport track 1, and an adhesive scraping component 5 is arranged on the support transport track 2 on the other side of the main transport track 1. The adhesive coating component 4 and the adhesive scraping component 5 are slidably arranged with the support transport track 2.
[0025] The adhesive application assembly 4 includes an adhesive application support base 6 mounted on the transport support rail 2. An adhesive application sliding block 7 is mounted below the adhesive application support base 6, and the adhesive application support base 6 is slidably connected to the transport support rail 2 via the adhesive application sliding block 7. An adhesive application bearing plate 8 is connected above the adhesive application support base 6 on both sides. An adhesive application mounting plate 9 is mounted on the adhesive application bearing plate 8, and an adhesive application telescopic cylinder 10 is mounted on the adhesive application mounting plate 9. The adhesive application mounting plate 9 is configured to cooperate with the adhesive scraping assembly 5.
[0026] The scraping assembly 5 includes a scraping support base 11 mounted on the transport support rail 2. A scraping working platform 12 is mounted on the top of the scraping support base 11. A scraping limiting plate 13 is mounted on one side of the scraping working platform 12. The scraping limiting plate 13 and the glue application mounting plate 9 form an area for the glue application telescopic cylinder 10 to extend and retract.
[0027] A recycling trough 14 is provided on one side of the glue scraping work platform 12, and a glue application and cleaning assembly 15 is provided on the other side of the glue scraping work platform 12. The glue application and cleaning assembly 15 includes a cleaning support base 16 provided on the transport support rail 2. A cleaning telescopic cylinder 17 is connected above the cleaning support base 16, and a glue scraper 18 is connected to the output end of the cleaning telescopic cylinder 17.
[0028] A connecting column 19 is provided between the glue scraping limiting plate 13 and the glue application mounting plate 9. A sliding mounting block 20 is connected to the output end of the glue application telescopic cylinder 10. The sliding mounting blocks 20 are slidably arranged with each other.
[0029] The sliding mounting block 20 is equipped with a glue spray gun 21. A glue feeding hole 22 is provided on one side of the glue spray gun 21. The glue feeding hole 22 is equipped with a one-way valve. A soft perforated plate 23 is provided at the bottom of the glue spray gun 21 for glue to flow out.
[0030] In operation, the graphite sheet to be coated is first precisely placed on the coating station 3. The coating station 3 then slides smoothly along the main transport track 1, transporting the graphite sheet to the pre-set coating area, preparing it for subsequent coating processes.
[0031] The adhesive application assembly 4 begins operation. The adhesive application support base 6 slides flexibly on the transport track 2 via the adhesive application moving slider 7, moving the adhesive application carrier plate 8 and the adhesive application mounting plate 9 to the appropriate position. At this time, the adhesive application telescopic cylinder 10 is activated, and the sliding mounting block 20 connected to its output end slides on the connecting column 19, allowing the adhesive application spray gun 21 to move accurately above the graphite sheet. Adhesive enters the adhesive application spray gun 21 through the adhesive feeding hole 22 with a one-way valve, and then flows out evenly from the soft perforated plate 23 at the bottom, spraying onto the surface of the graphite sheet to ensure uniformity and stability of the adhesive application.
[0032] After the adhesive application is completed, the adhesive application telescopic cylinder 10 is activated again, transporting the soft perforated plate 23, which has just been coated, to the corresponding position of the adhesive scraping assembly 5. At this time, the cleaning telescopic cylinder 17 on the cleaning support base 16 of the adhesive cleaning assembly 15 is activated, and the scraper 18 connected to its output end extends close to the soft perforated plate 23 at the bottom of the adhesive spray gun 21. With the continuous action of the cleaning telescopic cylinder 17, the scraper 18 scrapes off the excess adhesive on the soft perforated plate 23. The scraped adhesive is shoveled into the recycling tank 14 set on one side of the adhesive scraping work platform 12. After the adhesive scraping operation is completed, the adhesive application station 3 continues to slide along the main transport track 1, conveying the graphite sheet that has been coated with adhesive and cleaned of excess adhesive to the next process.
[0033] This utility model is not limited to the above embodiments. Based on the technical solutions disclosed in this utility model, those skilled in the art can make some substitutions and modifications to some of the technical features without creative labor, and these substitutions and modifications are all within the protection scope of this utility model.
Claims
1. A coating apparatus for graphite sheet, comprising a coating apparatus body, characterized in that, The glue application device includes a main transport track (1) and a support transport track (2) arranged perpendicularly to each other. A glue application station (3) is slidably arranged on the main transport track (1). A glue application component (4) is arranged on the support transport track (2) on one side of the main transport track (1), and a glue scraping component (5) is arranged on the support transport track (2) on the other side of the main transport track (1). The glue application component (4), the glue scraping component (5) and the support transport track (2) are slidably arranged.
2. The adhesive coating device for graphite sheet according to claim 1, characterized in that, The adhesive application assembly (4) includes an adhesive application support base (6) set on the transport support rail (2), an adhesive application sliding block (7) is set below the adhesive application support base (6), and the adhesive application support base (6) is slidably connected to the transport support rail (2) through the adhesive application sliding block (7); an adhesive application bearing plate (8) is connected above the adhesive application support base (6) on both sides, an adhesive application mounting plate (9) is set on the adhesive application bearing plate (8), an adhesive application telescopic cylinder (10) is set on the adhesive application mounting plate (9), and the adhesive application mounting plate (9) is configured to cooperate with the adhesive scraping assembly (5).
3. The adhesive coating device for graphite sheet according to claim 2, characterized in that, The scraping assembly (5) includes a scraping support base (11) set on the transport support rail (2), a scraping working platform (12) is set on the top of the scraping support base (11), a scraping limiting plate (13) is set on one side of the scraping working platform (12), and the scraping limiting plate (13) and the glue application mounting plate (9) form an area for the glue application telescopic cylinder (10) to extend and retract.
4. The adhesive coating device for graphite sheet according to claim 3, characterized in that, A recycling tank (14) is provided on one side of the glue scraping work platform (12), and a glue application and cleaning assembly (15) is provided on the other side of the glue scraping work platform (12). The glue application and cleaning assembly (15) includes a cleaning support base (16) provided on the transport support rail (2). A cleaning telescopic cylinder (17) is connected above the cleaning support base (16), and a glue scraper (18) is connected to the output end of the cleaning telescopic cylinder (17).
5. The adhesive coating device for graphite sheet according to claim 3, characterized in that, A connecting column (19) is provided between the glue scraping limiting plate (13) and the glue application mounting plate (9), and a sliding mounting block (20) is connected to the output end of the glue application telescopic cylinder (10), and the sliding mounting block (20) is slidably arranged with the sliding mounting block (20).
6. The adhesive coating apparatus for graphite sheet according to claim 5, characterized in that, The sliding mounting block (20) is equipped with a glue spray gun (21). A glue feeding hole (22) is provided on one side of the glue spray gun (21). The glue feeding hole (22) is equipped with a one-way valve. A soft perforated plate (23) is provided at the bottom of the glue spray gun (21) for glue to flow out.