Rapid UV mould pressing plate seam processing device and using method thereof
The automated processing of the rapid UV molding die seam treatment device solves the problem of unstable quality caused by adhesive sticking at the die seam in the UV molding process, achieving efficient and stable die seam treatment and improving production efficiency and quality consistency.
Patent Information
- Application Number
- CN202510910992.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2025-10-31
AI Technical Summary
In existing UV molding processes, the adhesion at the seams of the printing plate leads to unstable printing quality. Manually handling the seams is inefficient and produces inconsistent quality, and novice operators are prone to scrapping the laser plate.
The rapid UV molding die seam treatment device includes a leveling and fixing slide rail, a filling component, a curing component, and a scraper component. It automates the filling, curing, and removal of die seam adhesive, reducing the operational threshold and ensuring the stability and standardization of die seam results.
It improves the production efficiency of UV molding plate seam treatment, reduces product variability caused by manual operation, saves time and labor, and ensures the stability and standardization of plate seam effect.
Smart Images

Figure CN120863231A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of UV molding technology, and in particular to a rapid UV molding die seam treatment device and its usage method. Background Technology
[0002] In UV molding, to avoid adhesive buildup at the seams (where UV adhesive adheres to and accumulates at the seams), which would result in a rough surface on the printed UV laser film, multiple manual seam filling operations are typically required during production. However, manually filling seams demands a high level of experience from workers, requiring extensive practice to achieve a clean seam. This not only leads to low production efficiency but also results in inconsistent seam quality in the printed films.
[0003] Manually handling the laser plate seams involves several steps, including filling the seam with adhesive, covering with a film, curing with a UV lamp, and cleaning the seam with a scraper. These steps need to be repeated multiple times until the seam is completely filled. The two main challenges are filling the seam with adhesive and cleaning with a scraper. Beginners often make mistakes such as applying too much adhesive, resulting in a dirty laser plate, scratching the surface with the scraper, and not completely removing excess adhesive. These problems can lead to the laser plate being scrapped, requiring an additional hour or more to re-mount, which is not only time-consuming and labor-intensive but also affects production efficiency. Summary of the Invention
[0004] In view of the above-mentioned shortcomings, the present invention provides a rapid UV molding plate seam treatment device and its usage method, which can reduce the operation threshold of UV molding plate seam filling, ensure the stability and standardization of plate seam effect, reduce product variability caused by manual operation, save time and labor, and improve production efficiency.
[0005] To achieve the above objectives, the embodiments of the present invention adopt the following technical solutions: A rapid UV molding die seam treatment device, comprising: The leveling and fixing slide rail is used for supporting and sliding the glue filling assembly, curing assembly, and scraper assembly; A sealant filling component, used to approximate and fill the sealant gap with sealant; Curing components, used to cure the adhesive in the printing plates; The scraper assembly is used to scrape off the protruding adhesive at the seams of the printing plate.
[0006] According to one aspect of the present invention, the leveling and fixing slide rail includes: Guide rails are used for guiding and sliding the filling components, curing components, and scraper components; Support legs are used to support the guide rail.
[0007] According to one aspect of the present invention, the leveling and fixing slide rail further includes: The first slider is used to support the axial sliding of the leg relative to the guide rail; A scale is used to indicate the height distance of the support leg relative to the guide rail for vertical adjustment.
[0008] According to one aspect of the present invention, the leveling and fixing slide rail further includes: Protective pads are used to prevent the support legs from scratching the printing rollers; A fixing device used to secure the support leg.
[0009] According to one aspect of the invention, the fixing device employs a magnet, which is rotatably fixed inside the support leg by operating a knob.
[0010] According to one aspect of the present invention, the filler assembly includes: The second slider is used to slide together with the glue injection assembly and the second height adjustment device on the leveling and fixing slide rail; The glue injection assembly is used to fill the gaps between the printing plates with glue. The second height adjustment device is used to adjust the height distance between the glue injection assembly and the second slider.
[0011] According to one aspect of the invention, the scraper assembly includes: The fourth slider is used for the scraper assembly to slide on the leveling fixed slide rail; A scraper fixing device, used to fix the scraper blade; A scraper blade is used to scrape off the protruding adhesive at the seams of the printing plate.
[0012] According to one aspect of the invention, the scraper assembly further includes a fourth height adjustment device for adjusting the height distance between the scraper fixing device and the fourth slider.
[0013] According to one aspect of the invention, the curing component includes: The third slider is used for the UV curing lamp to slide on the leveling and fixing slide rail; UV curing lamps are used to cure the adhesive in the printing plates.
[0014] A method of using a rapid UV molding die seam treatment device includes the following steps: Place the support legs of the leveling and fixing slide rail on both sides of the laser-free plate area of the printing roller, so that the guide rail of the leveling and fixing slide rail is completely parallel to the plate seam. Adjust the filling assembly, curing assembly, and scraper assembly to the appropriate height position relative to the plate seam; Move the glue-filling component at a constant speed and repeatedly fill the gaps in the printing plate with glue. The UV curing lamp of the movable curing component cures the adhesive in the printing plate seams; The movable scraper assembly scrapes away the protruding adhesive at the seam until the seam is smooth and free of protrusions.
[0015] Advantages of this invention: This invention can lower the operational threshold for UV molding plate seam filling, ensure the stability and standardization of the plate seam effect, reduce product variability caused by manual operation, save time and labor, and improve production efficiency. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the structure of the rapid UV molding plate seam treatment device described in this invention.
[0018] The names corresponding to the markings in the diagram are as follows: 1. Leveling and fixing slide rail; 11. Guide rail; 12. Support leg; 13. First slider; 14. Ruler; 15. First locking hole; 2. Filling assembly; 21. Second slider; 22. Injection assembly; 23. Second height adjustment device; 24. Second locking hole; 25. Injector; 26. Injection head; 3. Curing assembly; 31. Third slider; 32. UV curing lamp; 33. Third locking hole; 4. Scraper assembly; 41. Fourth slider; 42. Scraper fixing device; 43. Fourth height adjustment device; 44. Fourth locking hole; 45. Elastic buffer structure; 46. Industrial macro lens; 47. Pressure sensor; 5. Horizontal laser. Detailed Implementation
[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0020] Example 1
[0021] like Figure 1As shown, a rapid UV molding die seam treatment device includes a leveling and fixing slide rail 1, an adhesive filling component 2, a curing component 3, and a scraper component 4. The leveling and fixing slide rail 1 is used to support and slide the adhesive filling component 2, the curing component 3, and the scraper component 4. The leveling and fixing slide rail 1 includes a guide rail 11 and support legs 12. The guide rail 11 is used to guide the sliding of the adhesive filling component 2, the curing component 3, and the scraper component 4. The guide rail 11 is a strip rail with a smooth and flat surface. The support legs 12 are used to support the guide rail 11. The two can be directly fixed, which simplifies the structure. They can also be connected by telescopic means, which facilitates adjustment. There are two support legs 12, which are respectively set at both ends of the guide rail 11. The support legs 12 are perpendicular to the guide rail 11. The glue-filling component 2 is used to approach and fill the gaps with glue. The glue-filling component 2 includes a second slider 21, a glue-injection component 22, and a second height adjustment device 23. The second slider 21 is used for sliding the glue-injection component 22 and the second height adjustment device 23 together on the leveling and fixing slide rail 1. The glue-injection component 22 is used to fill the gaps with glue. The second height adjustment device 23 is used to adjust the height distance between the glue-injection component 22 and the second slider 21. The curing component 3 is used to cure the gap glue. The curing component 3 includes a third slider 31 and a UV curing lamp 32. The third slider 31 is used for sliding the UV curing lamp 32 on the leveling and fixing slide rail 1. The UV curing lamp 32 is used to cure the gap glue. The scraper assembly 4 is used to scrape off the protruding seam adhesive at the seam. The scraper assembly 4 includes a fourth slider 41, a scraper fixing device 42, and a scraper blade, which are connected in sequence. The fourth slider 41 is used for the scraper assembly 4 to slide on the leveling fixing slide rail 1, and the fourth slider 41 is slidably connected to the guide rail 11. The scraper fixing device 42 is used to fix the scraper blade, and the scraper blade is used to scrape off the protruding seam adhesive at the seam.
[0022] In this embodiment, the leveling and fixing slide rail 1 further includes a first slider 13 and a scale 14. The first slider 13 is used for the axial sliding of the support leg 12 relative to the guide rail 11. One end of the first slider 13 is slidably connected to the guide rail 11, that is, one end of the first slider 13 is sleeved on the guide rail 11, and the other end of the first slider 13 is telescopically connected to the support leg 12. The first slider 13 and the support leg 12 are adapted in terms of quantity and arrangement. The scale 14 is used to indicate the height distance of the vertical adjustment of the support leg 12 relative to the guide rail 11, and the scale 14 is provided on the support leg 12. The end of the first slider 13 is provided with a first locking hole 15. When the first slider 13 telescopically moves up and down relative to the support leg 12, the first slider 13 and the support leg 12 are locked and fixed by inserting bolt-like fasteners into the first locking hole 15. The support leg 12 has an inverted Y-shaped structure and can be placed directly on the ground or a flat surface, placed on the two sides of the printing roller in the area without the laser plate.
[0023] Furthermore, the leveling and fixing slide rail is a modular slide rail that supports splicing, with a length ranging from 0.5m to 3m. High-precision small laser level 5 is installed at both ends of the slide rail. The laser level 5 adjustment device makes the laser line parallel to the plate seam, and the height of the support legs is adjusted to make the height of both sides of the slide rail consistent.
[0024] In this embodiment, the second slider 21 of the glue filling assembly 2 is slidably connected to the guide rail 11, and the end of the second slider 21 is provided with a second locking hole 24. The second height adjustment device 23 is a height adjustment rod, which is telescopically connected to the second slider 21 and is perpendicular to the guide rail 11. When the height adjustment rod telescopically moves up and down relative to the second slider 21, the second slider 21 and the height adjustment rod are locked and fixed by inserting bolt-like fasteners into the second locking hole 24. The glue injection assembly 22 includes a micro-glue dispenser 25 and a glue injection head 26, which can be snapped together. The flow rate accuracy of the micro-glue dispenser is ±0.01ml / s, and it supports PID closed-loop control. The switch is located on the slider. The micro-glue dispenser 25 is used for the glue (i.e., the seam glue) to flow in, and the glue injection head 26 is used for the seam glue to flow out. The glue injection assembly 22 is installed on the second height adjustment device 23, that is, installed at the bottom of the height adjustment rod.
[0025] In this embodiment, the third slider 31 of the curing component 3 is slidably connected to the guide rail 11, and the end of the third slider 31 is provided with a third locking hole 33. The UV curing lamp 32 is telescopically connected to the third slider 31, and the UV curing lamp 32 is vertically arranged with the guide rail 11; when the UV curing lamp 32 telescopically moves up and down relative to the third slider 31, the third slider 31 and the UV curing lamp 32 are locked and fixed by inserting bolt-like fasteners into the third locking hole 33; the curing lamp is a UV-LED array with a wavelength of 365-405nm and a power density ≥100mW / cm².
[0026] In this embodiment, the scraper assembly 4 further includes a fourth height adjustment device 43, which is used to adjust the height distance between the scraper fixing device 42 and the fourth slider 41. The fourth height adjustment device 43 is a lifting rod, which is telescopically connected to the fourth slider 41 and is perpendicular to the guide rail 11; the scraper fixing device 42 is fixedly or rotatably connected to the bottom of the lifting rod. The end of the fourth slider 41 is provided with a fourth locking hole 44. When the lifting rod telescopically moves up and down relative to the fourth slider 41, the fourth slider 41 and the lifting rod are locked and fixed by inserting bolt-like fasteners into the fourth locking hole 44. The scraper assembly also includes an elastic buffer structure and a pressure sensor. The pressure sensor integrates an industrial macro lens, which is used to observe whether the adhesive in the die seam is full and flat.
[0027] In this embodiment, the sliding of the support leg 12, the filling component 2, the curing component 3, and the scraper component 4 relative to the guide rail 11 can be achieved manually or by using any structure that can drive translation. That is, any structure that can drive translation is connected to the first slider 13 of the support leg 12, the second slider 21 of the filling component 2, the third slider 31 of the curing component 3, and the fourth slider 41 of the scraper component 4, respectively.
[0028] In use, place the support legs 12 of this device on the non-laser plate areas on both sides of the printing roller. Adjust the support legs 12 using the scale 14 on the support legs 12 so that the guide rail 11, i.e., this device, is completely parallel to the plate seam (the height on both sides is consistent). Adjust the height of the glue filling head of the glue filling component 2 from the plate seam so that it is close to but does not touch the plate seam. Adjust the height of the UV curing lamp 32. Install and lock the scraper blade. Adjust the height of the scraper blade. Move the glue filling component 2 slowly and evenly to perform the glue filling operation. Repeat the process multiple times to fill the plate seam with glue without overflowing. Move the curing component 3 to cure the plate seam glue. Move the scraper component 4 to scrape away the raised glue at the plate seam until it feels smooth to the touch without any bumps. Observe whether there are any gaps in the plate seam. If so, repeat the above steps until the plate seam is filled.
[0029] The beneficial effects of this embodiment are as follows: the present invention can reduce the operational threshold of UV molding plate seam filling, ensure the stability and standardization of plate seam effect, reduce product variability caused by manual operation, save time and effort, and improve production efficiency.
[0030] Example 2
[0031] like Figure 1As shown, a rapid UV molding die seam treatment device includes a leveling and fixing slide rail 1, an adhesive filling component 2, a curing component 3, and a scraper component 4. The leveling and fixing slide rail 1 supports and slides the adhesive filling component 2, the curing component 3, and the scraper component 4. The leveling and fixing slide rail 1 includes a guide rail 11, support legs 12, protective pads, and a fixing device. The guide rail 11 guides the sliding movement of the adhesive filling component 2, the curing component 3, and the scraper component 4. The guide rail 11 is a strip rail with a smooth and flat surface. The support legs 12 support the guide rail 11, and the two are connected by a telescopic mechanism for easy adjustment. There are two support legs 12, respectively located at both ends of the guide rail 11. The support legs 12 are perpendicular to the guide rail 11. The protective pads prevent the support legs 12 from scratching the UV molding rollers, and the fixing device secures the support legs 12. The glue-filling component 2 is used to approach and fill the gaps with glue. The glue-filling component 2 includes a second slider 21, a glue-injection component 22, and a second height adjustment device 23. The second slider 21 is used for sliding the glue-injection component 22 and the second height adjustment device 23 together on the leveling and fixing slide rail 1. The glue-injection component 22 is used to fill the gaps with glue. The second height adjustment device 23 is used to adjust the height distance between the glue-injection component 22 and the second slider 21. The curing component 3 is used to cure the gap glue. The curing component 3 includes a third slider 31 and a UV curing lamp 32. The third slider 31 is used for sliding the UV curing lamp 32 on the leveling and fixing slide rail 1. The UV curing lamp 32 is used to cure the gap glue. The scraper assembly 4 is used to scrape off the protruding seam adhesive at the seam. The scraper assembly 4 includes a fourth slider 41, a scraper fixing device 42, and a scraper blade, which are connected in sequence. The fourth slider 41 is used for the scraper assembly 4 to slide on the leveling fixing slide rail 1, and the fourth slider 41 is slidably connected to the guide rail 11. The scraper fixing device 42 is used to fix the scraper blade, and the scraper blade is used to scrape off the protruding seam adhesive at the seam.
[0032] In this embodiment, the leveling and fixing slide rail 1 further includes a first slider 13 and a scale 14. The first slider 13 is used for the axial sliding of the support leg 12 relative to the guide rail 11. One end of the first slider 13 is slidably connected to the guide rail 11, that is, one end of the first slider 13 is sleeved on the guide rail 11, and the other end of the first slider 13 is telescopically connected to the support leg 12. The first slider 13 and the support leg 12 are adapted in terms of quantity and arrangement. The scale 14 is used to indicate the height distance of the vertical adjustment of the support leg 12 relative to the guide rail 11, and the scale 14 is provided on the support leg 12. The end of the first slider 13 is provided with a first locking hole 15. When the first slider 13 telescopically moves up and down relative to the support leg 12, the first slider 13 and the support leg 12 are locked and fixed by inserting bolt-like fasteners into the first locking hole 15. The support leg 12 has an inverted Y-shaped structure; the protective pad is made of silicone and is fitted onto the support leg 12 to prevent it from scratching the UV machine roller; the fixing device uses a magnet, which can be flipped and fixed inside the support leg 12 by operating a knob. When the operating knob is turned, the magnet flips inside the support leg 12, allowing the bottom of the support leg 12 to be magnetically attracted to or disconnected from other structures; the fixing device can also adopt a flange-like structure, using bolts to fix the fixing device to other structures, thereby fixing the support leg 12, but this solution is not as convenient to operate as the magnetic solution described above.
[0033] In this embodiment, the second slider 21 of the glue filling assembly 2 is slidably connected to the guide rail 11, and the end of the second slider 21 is provided with a second locking hole 24. The second height adjustment device 23 is a height adjustment rod, which is telescopically connected to the second slider 21 and is perpendicular to the guide rail 11. When the height adjustment rod extends or retracts relative to the second slider 21, the second slider 21 and the height adjustment rod are locked and fixed by inserting bolt-like fasteners into the second locking hole 24. The glue injection assembly 22 includes a micro-glue dispenser and a glue injection head, which are connected. The micro-glue dispenser is used for the glue (i.e., the seam glue) to flow in, and the glue injection head is used for the seam glue to flow out. The glue injection assembly 22 is installed on the second height adjustment device 23, that is, installed at the bottom of the height adjustment rod.
[0034] In this embodiment, the third slider 31 of the curing component 3 is slidably connected to the guide rail 11, and the end of the third slider 31 is provided with a third locking hole 33. The UV curing lamp 32 is telescopically connected to the third slider 31, and the UV curing lamp 32 is vertically arranged with the guide rail 11; when the UV curing lamp 32 telescopically moves up and down relative to the third slider 31, the third slider 31 and the UV curing lamp 32 are locked and fixed by inserting bolt-like fasteners into the third locking hole 33.
[0035] In this embodiment, the scraper assembly 4 further includes a fourth height adjustment device 43, which is used to adjust the height distance between the scraper fixing device 42 and the fourth slider 41. The fourth height adjustment device 43 is a lifting rod, which is telescopically connected to the fourth slider 41 and is perpendicular to the guide rail 11; the scraper fixing device 42 is fixedly or rotatably connected to the bottom of the lifting rod. The end of the fourth slider 41 is provided with a fourth locking hole 44. When the lifting rod telescopically moves up and down relative to the fourth slider 41, the fourth slider 41 and the lifting rod are locked and fixed by inserting bolt-like fasteners into the fourth locking hole 44. The scraper assembly also includes an elastic buffer structure and a pressure sensor, the pressure sensor integrating an industrial macro lens.
[0036] In this embodiment, the sliding of the support leg 12, the filling component 2, the curing component 3, and the scraper component 4 relative to the guide rail 11 can be achieved manually or by using any structure that can drive translation. That is, any structure that can drive translation is connected to the first slider 13 of the support leg 12, the second slider 21 of the filling component 2, the third slider 31 of the curing component 3, and the fourth slider 41 of the scraper component 4, respectively.
[0037] In use, place the support legs 12 of this device on the non-laser plate areas on both sides of the printing roller. Adjust the support legs 12 using the scale 14 on the support legs 12 so that the guide rail 11, i.e., this device, is completely parallel to the plate seam (the height on both sides is consistent). Rotate the magnet to fix the support legs 12, thus fixing the entire device. Adjust the height of the glue filling head of the glue filling component 2 from the plate seam, so that it is close to but does not touch the plate seam. Adjust the height of the UV curing lamp 32. Install and lock the scraper blade. Adjust the height of the scraper blade. Move the glue filling component 2 slowly and evenly to perform the glue filling operation. Repeat several times to fill the plate seam with glue without overflowing. Move the curing component 3 to cure the plate seam glue. Move the scraper component 4 to scrape away the raised glue at the plate seam until it is smooth to the touch without any bumps. Observe whether there are any gaps in the plate seam. If there are, repeat the above steps until the plate seam is filled.
[0038] The beneficial effects of this embodiment are as follows: the present invention can reduce the operational threshold of UV molding plate seam filling, ensure the stability and standardization of plate seam effect, reduce product variability caused by manual operation, save time and effort, and improve production efficiency.
[0039] Example 3
[0040] This embodiment provides a method for using a rapid UV molding die seam treatment device, including the following steps: Step 1: Place and fix the leveling and fixing slide rail 1 on the non-laser plate area on both sides of the printing roller, and make the entire device completely parallel to the plate seam; that is, place the support leg 12 on both sides of the printing roller in the non-laser plate area, and adjust the support leg 12 with the ruler 14 to make the guide rail 11 completely parallel to the plate seam (the two ends of the guide rail 11 or the two sides of the entire device are at the same height), and rotate the magnet to fix the entire device. Step 2: Adjust the glue filling component 2, curing component 3, and scraper component 4 to a suitable height position relative to the plate seam; that is, adjust the height of the glue filling head of the glue filling component 2 from the plate seam so that it is close to but does not touch the plate seam, adjust the height of the UV curing lamp 32, install and lock the scraper blade, and adjust the height of the scraper blade. Step 3: Move the glue filling component 2 slowly and evenly to fill the gaps with glue, repeating the process multiple times without overflowing. Step 4: Move the UV curing lamp 32 of the curing component 3 to cure the adhesive in the joints; Step 5: Move the scraper assembly 4 to scrape away the protruding adhesive at the seam until the seam feels smooth to the touch. Step Six: Observe whether there are any gaps in the seams. If so, repeat Steps Three to Five until the seams are filled.
[0041] The beneficial effects of this embodiment are as follows: the present invention can reduce the operational threshold of UV molding plate seam filling, ensure the stability and standardization of plate seam effect, reduce product variability caused by manual operation, save time and effort, and improve production efficiency.
[0042] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A rapid UV molding die seam treatment device, characterized in that, include: The leveling and fixing slide rail (1) is used for the support and sliding of the glue filling assembly (2), the curing assembly (3), and the scraper assembly (4); A filling component (2) is used to approach the seam and fill the seam with seam glue; Curing component (3), which is used to cure the sealant; Scraper assembly (4), which is used to scrape off the protruding sealant at the seam.
2. The rapid UV molding die seam treatment device according to claim 1, characterized in that, The leveling fixed slide rail (2) includes: Guide rail (11) is used for guiding and sliding the glue filling assembly (2), curing assembly (3) and scraper assembly (4); Support leg (12) is used to support guide rail (11).
3. The rapid UV molding die seam treatment device according to claim 2, characterized in that, The leveling fixed slide rail (2) also includes: The first slider (13) is used to support the axial sliding of the leg (12) relative to the guide rail (11); A scale (14) is used to indicate the height distance of the support leg (12) relative to the guide rail (11) for vertical adjustment.
4. The rapid UV molding die seam treatment device according to claim 2, characterized in that, The leveling and fixing slide rail (1) also includes: Protective pads are used to prevent the support legs (12) from scratching the printing rollers; A fixing device for fixing the support leg (12).
5. The rapid UV molding die seam treatment device according to claim 4, characterized in that, The fixing device uses a magnet, which is fixed inside the support leg (12) by rotating an operating knob.
6. The rapid UV molding die seam treatment device according to claim 1, characterized in that, The filler component (2) includes: The second slider (21) is used to slide together with the glue injection assembly (22) and the second height adjustment device (23) on the leveling fixed slide rail (1); The glue injection assembly (22) is used to fill the gaps in the printing plate with glue. The second height adjustment device (23) is used to adjust the height distance between the glue injection assembly (22) and the second slider (21).
7. The rapid UV molding die seam treatment device according to claim 1, characterized in that, The scraper assembly (4) includes: The fourth slider (41) is used for the scraper assembly (4) to slide on the leveling fixed slide rail (1); Scraper fixing device (42), which is used to fix the scraper blade; A scraper blade is used to scrape off the protruding adhesive at the seams of the printing plate.
8. The rapid UV molding die seam treatment device according to claim 7, characterized in that, The scraper assembly (4) also includes a fourth height adjustment device (43) for adjusting the height distance between the scraper fixing device (42) and the fourth slider (41).
9. The rapid UV molding die seam treatment device according to claim 1, characterized in that, The curing component (3) includes: The third slider (31) is used for the UV curing lamp (32) to slide on the leveling and fixing slide rail (1); UV curing lamp (32), which is used to cure the adhesive in the printing plate.
10. A method of using a rapid UV molding die seam treatment device, characterized in that, Includes the following steps: Place the support leg (12) of the leveling and fixing slide rail (1) on both sides of the laser-free plate area of the plate roller, so that the guide rail (11) of the leveling and fixing slide rail (1) is completely parallel to the plate seam. Adjust the glue filling assembly (2), curing assembly (3), and scraper assembly (4) to a suitable height position relative to the plate seam; Move the glue filling component (2) at a constant speed and repeatedly fill the gaps with glue. The UV curing lamp (32) of the movable curing component (3) cures the sealant. The movable scraper assembly (4) scrapes away the protruding adhesive at the seam until the seam is smooth and without protrusions.