A paint curing device for high light wallboard processing
By introducing ventilation and exhaust, convenient maintenance, and efficient curing mechanisms into the paint curing device, the problems of poor ventilation and exhaust, low curing efficiency, and inconvenient maintenance of UV lamps have been solved, achieving a safe and efficient paint curing process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU OUSHENG WOOD
- Filing Date
- 2025-07-29
- Publication Date
- 2026-08-04
AI Technical Summary
The existing paint curing equipment has poor ventilation and exhaust, low curing efficiency, and is inconvenient to inspect and replace UV lamps, affecting equipment safety and ease of operation.
A paint curing device for high-gloss wall panel processing was designed, which includes a ventilation and exhaust mechanism, a convenient maintenance mechanism, and a high-efficiency curing mechanism. Harmful gases are extracted by a blower, and a shielding curtain is fixed by magnets and nails to facilitate the disassembly and installation of UV lamps.
It achieves effective treatment of harmful gases, improves curing efficiency and equipment safety, reduces the health impact of ultraviolet leakage, and simplifies the maintenance process of UV lamps.
Smart Images

Figure CN224586292U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of high-gloss wall panel processing technology, specifically to a paint curing device for high-gloss wall panel processing. Background Technology
[0002] High-gloss wall panels are a new type of environmentally friendly decorative material. They are mainly made of medium-density fiberboard or MDF as the base material, with polyvinyl chloride film or UV-cured paint applied to the surface, and then hot-pressed at high temperature. High-gloss wall panels require a paint curing device for processing high-gloss wall panels. However, the existing paint curing devices have some shortcomings. In order to meet the needs of the market, a paint curing device for processing high-gloss wall panels is needed.
[0003] Existing paint curing equipment suffers from low curing efficiency and is not conducive to assembly line operations. Inadequate ventilation and exhaust prevent harmful gases generated during curing from reaching external processing equipment, potentially leading to overheating and impacting curing efficiency and equipment performance. Furthermore, the slow curing speed of existing equipment increases the risk of adverse health effects from UV radiation, compromising safety. Finally, the inconvenience of repairing and replacing UV lamps hinders user operation and maintenance. Utility Model Content
[0004] The purpose of this utility model is to provide a paint curing device for high-gloss wall panel processing, so as to solve the problems mentioned in the background art, such as poor ventilation and exhaust effect, slow curing efficiency, and inconvenience in maintenance and replacement of UV lamps.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a paint curing device for high-gloss wall panel processing, comprising a device frame, a support base mounted on the bottom surface of the device frame, a controller mounted on the surface of the support base, a curing chamber mounted on the surface of the device frame, a conveying assembly mounted on the surface of the device frame, a high-gloss wall panel body placed on the surface of the conveying assembly, an installation plate disposed inside the curing chamber, mounting seats disposed on the inner walls of the installation plate, an assembly seat mounted on the bottom surface of the mounting seats, a high-efficiency curing mechanism disposed on the inner wall of the curing chamber, a convenient maintenance mechanism disposed on the inner wall of the assembly seat and the surface of the UV lamp, and a ventilation and exhaust mechanism disposed on the surface of the curing chamber.
[0006] Preferably, a feed inlet is provided on one side of the curing chamber, and a door is provided on the surface of the curing chamber. The door rotates and engages with the surface of the curing chamber. Mounting studs are threaded onto both sides of the mounting plate. One end of each mounting stud penetrates the mounting plate and is threadedly fastened to the inner wall of the curing chamber. UV lamps are provided on the surface of the mounting plate. The input end of each UV lamp is electrically connected to the output end of the controller. Connecting wires are installed on the surface of each UV lamp. One side of each connecting wire extends to the outside of the curing chamber. A voltage regulator is installed on the surface of each connecting wire. A temperature sensor is installed inside the curing chamber. The output end of each temperature sensor is electrically connected to the input end of the controller. Fastening bolts are threaded onto the surface of the mounting base. One end of each fastening bolt penetrates the mounting base and is threadedly fastened to the inner wall of the mounting plate. Activated carbon mesh plates are installed on the inner wall of the curing chamber using screws.
[0007] Preferably, the high-efficiency curing mechanism consists of a shielding curtain, a plate, a first magnet, a second magnet, and a nail. The inner wall of the curing chamber is provided with a plate, and the surface of the plate is threaded with a nail. One end of the nail penetrates the plate and is threadedly fastened to the inner wall of the curing chamber.
[0008] Preferably, a second magnet is installed on the surface of the plate, and a first magnet is installed on the inner wall of the curing box. The surfaces of the first magnet and the second magnet are magnetically attracted to each other, and a shielding curtain is installed on the surface at the bottom of the plate.
[0009] Preferably, the convenient maintenance mechanism consists of a positioning block, a fastening stud, a guide groove, and a guide block. Guide blocks are installed on the surface of the UV lamp, and a guide groove is provided on the inner wall of the assembly base. The guide groove and the surface of the guide block slide against each other.
[0010] Preferably, the inner wall of the assembly base is equipped with positioning blocks, which engage with the surface of the UV lamp. The surface of the assembly base is threaded with a fastening stud, one end of which passes through the assembly base and is threadedly fastened to the surface of the UV lamp.
[0011] Preferably, the ventilation and exhaust mechanism consists of mounting screws, mounting covers, air outlet pipes, exhaust pipes, a housing, and a blower. Mounting covers are provided on the surface of the top position of the curing chamber. The mounting covers are connected to the interior of the curing chamber. Mounting screws are threadedly connected to the surfaces on both sides of the mounting covers. One end of the mounting screw passes through the mounting cover and is threadedly fastened to the surface of the curing chamber. A housing is installed on the inner wall of the mounting covers.
[0012] Preferably, a blower is installed inside the chassis. The input end of the blower is electrically connected to the output end of the controller. The input end of the blower extends to the inner wall of the curing chamber. The output end of the blower passes through the chassis and the mounting cover in sequence and extends to the top of the mounting cover. An exhaust pipe is installed at the output end of the mounting cover. An exhaust pipe is installed on the surface of the exhaust pipe by screws. The exhaust pipe is connected to the interior of the exhaust pipe.
[0013] Compared with the prior art, the beneficial effects of this utility model are: the paint curing device for high-gloss wall panel processing not only allows the harmful gases generated during the curing process inside the curing chamber to be discharged into the external processing equipment for treatment, but also maintains air circulation inside the curing chamber, preventing excessive temperature from affecting curing efficiency and equipment performance. Furthermore, it effectively blocks ultraviolet leakage, reducing the adverse effects of ultraviolet radiation on the health of workers, making the paint curing device safer to use. Moreover, it makes it convenient for users to inspect and maintain the UV lamps, making the paint curing device more convenient to operate. By incorporating a ventilation and exhaust system, the blower inside the chassis is controlled to extract harmful gases from the curing chamber. As the harmful gases pass through the activated carbon mesh, they undergo preliminary adsorption. The extracted harmful gases then enter external processing equipment through the exhaust pipe for further treatment. This system enables the paint curing device to exhaust harmful gases generated during the curing process, allowing them to be processed in external equipment. It also maintains air circulation inside the curing chamber, preventing excessively high temperatures from affecting curing efficiency and equipment performance.
[0014] Equipped with a high-efficiency curing mechanism, the user places the shielding curtain and the panel on the inner wall of the curing chamber. Under the combined action of the first and second magnets, the panel and the shielding curtain are positioned and installed, initially fixing them to the inner wall of the curing chamber. When the high-gloss wall panel moves out of the curing chamber through the shielding curtain, the curtain blocks the ultraviolet light emitted from inside the curing chamber, preventing the ultraviolet light from spreading. This allows for efficient irradiation and curing of the surface of the high-gloss wall panel, achieving the high-efficiency curing function of the paint curing device. This effectively blocks ultraviolet leakage during use, reducing the adverse effects of ultraviolet radiation on the health of workers and making the paint curing device safer to use. With a convenient maintenance mechanism, users can loosen the fastening studs on the surface of the assembly base, remove the studs from the assembly base, and then pull down the UV lamp to move the positioning block away from the surface of the UV lamp. At this time, the UV lamp drives the guide block to slide inside the guide groove. Under the combined action of the guide groove and the guide block, the UV lamp is guided and removed from the surface of the assembly base for maintenance and replacement. This realizes the function of convenient maintenance and replacement of UV lamps in the paint curing device, making it easier for users to maintain and repair the UV lamps during use, and making the paint curing device more convenient to operate. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the front cross-sectional structure of this utility model; Figure 3 For the present utility model Figure 2 Enlarged structural diagram of a medium-to-high efficiency curing mechanism; Figure 4 For the present utility model Figure 2 An enlarged structural diagram of the convenient maintenance mechanism; Figure 5 For the present utility model Figure 2 Enlarged structural diagram of the central ventilation and exhaust mechanism.
[0016] In the diagram: 1. Device frame; 101. Controller; 102. Support base; 103. Curing chamber; 104. Door; 105. Feed inlet; 106. Conveying assembly; 107. High-gloss wall panel body; 108. Mounting studs; 109. Mounting plate; 110. UV lamp; 111. Connecting wire; 112. Voltage regulator; 113. Temperature sensor; 114. Mounting base; 115. Fastening bolts; 116. Assembly. 1. Seat; 2. Activated carbon layer mesh plate; 3. High-efficiency curing mechanism; 4. Shielding curtain; 5. Plate body; 6. First magnet; 7. Second magnet; 8. Nail body; 9. Convenient maintenance mechanism; 10. Positioning block; 11. Fastening stud; 22. Guide groove; 33. Guide block; 44. Ventilation and exhaust mechanism; 11. Mounting screw; 12. Mounting cover; 13. Air outlet pipe; 14. Exhaust pipe; 15. Chassis; 16. Blower. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0018] The structure of the paint curing device for high-gloss wall panel processing provided by this utility model is as follows: Figure 1 and Figure 2 As shown, the device includes a frame 1, a support base 102 mounted on the bottom surface of the frame 1, a controller 101 (e.g., LA series) mounted on the surface of the support base 102, a curing chamber 103 mounted on the surface of the frame 1, a feed inlet 105 on one side of the curing chamber 103, a door 104 on the surface of the curing chamber 103 that rotates with the surface of the curing chamber 103, a conveying assembly 106 mounted on the surface of the frame 1, a high-gloss wall panel body 107 placed on the surface of the conveying assembly 106, a mounting plate 109 inside the curing chamber 103, mounting studs 108 threadedly connected to both sides of the mounting plate 109, one end of the mounting studs 108 penetrating the mounting plate 109 and threadedly fastened to the inner wall of the curing chamber 103, and UV ultraviolet light emitted from the surface of the mounting plate 109. Lamp 110, the model of which can be GB series, is electrically connected to the input terminal of the UV lamp 110 and the output terminal of the controller 101. A connecting wire 111 is installed on the surface of the UV lamp 110, and one side of the connecting wire 111 extends to the outside of the curing chamber 103. A voltage regulator 112 is installed on the surface of the connecting wire 111. A temperature sensor 113 is installed inside the curing chamber 103. The model of the temperature sensor 113 can be HE series. The output terminal of the temperature sensor 113 is electrically connected to the input terminal of the controller 101. The inner wall of the mounting plate 109 is provided with a mounting seat 114. The surface of the mounting seat 114 is threaded with a fastening bolt 115. One end of the fastening bolt 115 passes through the mounting seat 114 and is threadedly fastened to the inner wall of the mounting plate 109. The inner wall of the curing chamber 103 is installed with an activated carbon layer mesh plate 117 by screws.
[0019] Furthermore, such as Figure 2 and Figure 3As shown, an assembly base 116 is installed on the surface of the bottom position of the mounting base 114. The inner wall of the curing box 103 is provided with a high-efficiency curing mechanism 2. The high-efficiency curing mechanism 2 is composed of a shielding curtain 21, a plate 22, a first magnet 23, a second magnet 24, and a nail 25. The inner wall of the curing box 103 is provided with a plate 22. The surface of the plate 22 is threadedly connected with a nail 25. One end of the nail 25 passes through the plate 22 and is threadedly fastened to the inner wall of the curing box 103. The surface of the plate 22 is provided with a second magnet 24. The inner wall of the curing box 103 is provided with a first magnet 23. The surfaces of the first magnet 23 and the second magnet 24 are magnetically attracted to each other. The surface of the bottom position of the plate 22 is provided with a shielding curtain 21.
[0020] During implementation, the user places the shielding curtain 21 and the panel 22 on the inner wall of the curing chamber 103, causing the panel 22 to move the second magnet 24 to contact the surface of the first magnet 23. Under the combined action of the first magnet 23 and the second magnet 24, the panel 22 and the shielding curtain 21 are positioned and installed, initially fixing the shielding curtain 21 and the panel 22 to the inner wall of the curing chamber 103. The user then tightens the nails 25 on the surface of the panel 22, and under the action of the nails 25, the panel 22 and the shielding curtain 21 are installed on the inner wall of the curing chamber 103. After the high-gloss wall panel body 107 moves out of the curing chamber 103 through the shielding curtain 21, the ultraviolet light emitted from inside the curing chamber 103 can be blocked under the action of the shielding curtain 21, so that the ultraviolet light will not be diffused, and the surface of the high-gloss wall panel body 107 can be irradiated and cured efficiently, so as to realize the function of efficient curing of the paint curing device.
[0021] Furthermore, such as Figure 2 and Figure 4 As shown, the inner wall of the assembly base 116 and the surface of the UV lamp 110 are provided with a convenient maintenance mechanism 3. The convenient maintenance mechanism 3 consists of a positioning block 31, a fastening stud 32, a guide groove 33, and a guide block 34. The surface of the UV lamp 110 is equipped with guide blocks 34. The inner wall of the assembly base 116 is provided with a guide groove 33. The guide groove 33 and the surface of the guide block 34 slide against each other. The inner wall of the assembly base 116 is equipped with a positioning block 31. The positioning block 31 and the surface of the UV lamp 110 engage with each other. The surface of the assembly base 116 is threadedly connected with a fastening stud 32. One end of the fastening stud 32 passes through the assembly base 116 and is threadedly fastened to the surface of the UV lamp 110.
[0022] During implementation, loosen the fastening studs 32 on the surface of the assembly base 116, remove the fastening studs 32 from the surface of the assembly base 116, and then pull the UV lamp 110 downwards to move the positioning block 31 away from the surface of the UV lamp 110. At this time, the UV lamp 110 drives the guide block 34 to slide inside the guide groove 33. Under the combined action of the guide groove 33 and the guide block 34, the UV lamp 110 is guided, and the UV lamp 110 is removed from the surface of the assembly base 116. For maintenance and replacement, place the repaired or replaced UV lamp 110 on the surface of the assembly base 116. The user pushes the UV lamp 110 upward, causing the UV lamp 110 to drive the guide block 34 to slide inside the guide groove 33. At this time, the positioning block 31 automatically locks onto the surface of the UV lamp 110. When in use, tighten the fastening stud 32. Under the action of the fastening stud 32, the UV lamp 110 is installed on the surface of the assembly base 116, so as to realize the function of convenient maintenance and replacement of the UV lamp 110 in the paint curing device.
[0023] Furthermore, such as Figure 2 and Figure 5 As shown, the surface of the curing chamber 103 is provided with a ventilation and exhaust mechanism 4. The ventilation and exhaust mechanism 4 consists of mounting screws 41, mounting covers 42, air outlet pipes 43, exhaust pipes 44, a casing 45, and a blower 46. Mounting covers 42 are provided on the top surface of the curing chamber 103, and the mounting covers 42 are connected to the interior of the curing chamber 103. Mounting screws 41 are threaded onto both sides of the mounting covers 42, with one end of each screw penetrating the mounting cover 42 and being threadedly fastened to the surface of the curing chamber 103. The inner walls of the mounting covers 42 are all fitted with... There is a housing 45, and a blower 46 is installed inside the housing 45. The blower 46 can be of the HC series. The input end of the blower 46 is electrically connected to the output end of the controller 101. The input end of the blower 46 extends to the inner wall of the curing chamber 103. The output end of the blower 46 passes through the housing 45 and the mounting cover 42 in sequence and extends to the top of the mounting cover 42. An exhaust pipe 43 is installed at the output end of the mounting cover 42. An exhaust pipe 44 is installed on the surface of the exhaust pipe 43 by screws. The exhaust pipe 44 is connected to the interior of the exhaust pipe 43.
[0024] During implementation, the user installs the mounting covers 42 at designated positions on the surface of the curing chamber 103 by tightening the mounting screws 41. The user then controls the blower 46 inside the casing 45 to operate. Under the action of the blower 46, harmful gases inside the curing chamber 103 are extracted. When the harmful gases pass through the activated carbon layer mesh plate 117, they are initially adsorbed by the activated carbon layer mesh plate 117. Subsequently, the harmful gases are discharged from the interior of the curing chamber 103 through the exhaust pipe 43 and the exhaust pipe 44. If the activated carbon layer mesh plate 117 needs to be replaced or cleaned, the extracted harmful gases enter the external processing equipment through the exhaust pipe 44 for treatment, thereby realizing the ventilation and exhaust function of the paint curing device.
[0025] Working Principle: In use, first place the device frame 1 in the designated position. The user installs the mounting plate 109 onto the inner wall of the curing chamber 103 by tightening the mounting studs 108 on its surface. Then, place the mounting bases 114 onto the inner wall of the mounting plate 109. The user tightens the fastening bolts 115 on the surface of the mounting bases 114. Under the action of the fastening bolts 115, the mounting bases 114 and assemblies 116 are respectively installed onto the inner wall of the mounting plate 109. The high-gloss wall panel body 107 to be cured is sprayed with paint on its surface by an external painting device and then transported to the surface of the conveying assembly 106. Under the action of the conveying assembly 106, the high-gloss wall panel body 107 is conveyed and enters the interior of the curing chamber 103 through the feed inlet 105. The connecting line 111... The UV lamp 110 is wired and powered on. The voltage is stabilized by the voltage regulator 112. The controller 101 turns on the UV lamp 110, which irradiates the paint on the surface of the high-gloss wall panel 107. The UV irradiation triggers a reaction in the photoinitiator in the paint, causing the paint to cure quickly. The temperature sensor 113 monitors the temperature inside the curing chamber 103 in real time to prevent overheating and ensure the curing quality of the paint on the high-gloss wall panel 107 is maintained. After curing, the high-gloss wall panel 107 is conveyed out of the curing chamber 103 by the conveying assembly 106. The specific structure and working principle of the conveying assembly 106 are existing technologies and will not be described further here.
[0026] Subsequently, the user tightens the mounting screws 41 to install the mounting covers 42 at designated positions on the surface of the curing chamber 103. Then, the user operates the controller 101, which controls the blower 46 inside the casing 45 to operate. The blower 46 extracts harmful gases from inside the curing chamber 103. When the harmful gases pass through the activated carbon mesh 117, the activated carbon mesh 117 performs initial adsorption. The harmful gases are then discharged from the curing chamber 103 through the outlet pipe 43 and exhaust pipe 44. If the activated carbon mesh 117 needs to be replaced or cleaned, the user loosens the mounting screws 41. Remove the mounting cover 42 from the surface of the curing chamber 103, then loosen the screws on the surface of the activated carbon layer mesh plate 117, and remove the activated carbon layer mesh plate 117 from the inner wall of the curing chamber 103. Clean or replace the surface of the activated carbon layer mesh plate 117. The extracted harmful gases enter the external processing equipment through the exhaust pipe 44 for treatment, thereby realizing the ventilation and exhaust function of the paint curing device. This allows the paint curing device to discharge the harmful gases generated inside the curing chamber 103 during the curing process and enter the external processing equipment for treatment, while maintaining air circulation inside the curing chamber 103, which can prevent excessive temperature from affecting curing efficiency and equipment performance. The installation of the casing 45 and the mounting cover 42 does not affect the normal heat dissipation of the blower 46 during operation. According to the prior art, the inner walls of both the casing 45 and the mounting cover 42 are provided with holes for heat dissipation of the blower 46.
[0027] Subsequently, the user places the shielding curtain 21 and the plate 22 on the inner wall of the curing chamber 103, causing the plate 22 to move the second magnet 24 until it contacts the surface of the first magnet 23. Under the combined action of the first magnet 23 and the second magnet 24, the plate 22 and the shielding curtain 21 are positioned and installed, initially fixing the shielding curtain 21 and the plate 22 to the inner wall of the curing chamber 103. The user then tightens the nails 25 on the surface of the plate 22, and under the action of the nails 25, the plate 22 and the shielding curtain 21 are installed on the inner wall of the curing chamber 103. When the high light... After the wall panel body 107 moves out of the curing chamber 103 through the shielding curtain 21, the ultraviolet light emitted from inside the curing chamber 103 is blocked by the shielding curtain 21, so that the ultraviolet light is not diffused. This allows for efficient irradiation and curing of the surface of the high-gloss wall panel body 107, thus achieving the function of efficient curing of the paint curing device. This effectively blocks ultraviolet leakage during the use of the paint curing device, reduces the adverse effects of ultraviolet radiation on the health of workers, and makes the paint curing device safer to use.
[0028] Subsequently, after prolonged use, the UV lamp 110 is prone to malfunction and damage. The user opens the door 104 on the surface of the curing box 103, then loosens the fastening studs 32 on the surface of the assembly base 116. After removing the fastening studs 32 from the surface of the assembly base 116, the user pulls the UV lamp 110 downwards, causing the positioning block 31 to move away from the surface of the UV lamp 110. At this time, the UV lamp 110 drives the guide block 34 to slide inside the guide groove 33. Under the combined action of the guide groove 33 and the guide block 34, the UV lamp 110 is guided, allowing it to be removed from the surface of the assembly base 116 for inspection and replacement. Alternatively, the replaced UV lamp 110 can be placed on the surface of the assembly base 116. The user pushes the UV lamp 110 upwards, causing the UV lamp 110 to drive the guide block 34 to slide inside the guide groove 33. At this time, the positioning block 31 automatically locks onto the surface of the UV lamp 110. When in use, tighten the fastening stud 32. Under the action of the fastening stud 32, the UV lamp 110 is installed on the surface of the assembly base 116, so as to realize the function of convenient maintenance and replacement of the UV lamp 110 of the paint curing device. This makes it convenient for the user to maintain the UV lamp 110 during use, making the paint curing device more convenient to operate, and finally completing the use of the paint curing device.
[0029] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A high light wallboard processing paint curing device, comprising a device frame body (1), characterized in that: A support base (102) is installed on the surface of the bottom of the device frame (1). A controller (101) is installed on the surface of the support base (102). A curing box (103) is installed on the surface of the device frame (1). A conveying assembly (106) is installed on the surface of the device frame (1). A high-gloss wall panel body (107) is placed on the surface of the conveying assembly (106). An installation plate (109) is provided inside the curing box (103). An installation seat (114) is provided on the inner wall of the installation plate (109). An assembly seat (116) is installed on the surface of the bottom of the installation seat (114). A high-efficiency curing mechanism (2) is provided on the inner wall of the curing box (103). A convenient maintenance mechanism (3) is provided on the inner wall of the assembly seat (116) and the surface of the UV lamp (110). A ventilation and exhaust mechanism (4) is provided on the surface of the curing box (103).
2. The high light wallboard processing paint curing device according to claim 1, characterized in that: A feed inlet (105) is provided on one side of the curing chamber (103). A door (104) is provided on the surface of the curing chamber (103). The door (104) rotates with the surface of the curing chamber (103). Mounting studs (108) are threaded onto both sides of the mounting plate (109). One end of each mounting stud (108) passes through the mounting plate (109) and is threadedly fastened to the inner wall of the curing chamber (103). UV lamps (110) are provided on the surface of the mounting plate (109). The input end of each UV lamp (110) is electrically connected to the output end of the controller (101). A connecting line (111) is mounted on the surface, one side of which extends to the outside of the curing chamber (103). A voltage regulator (112) is mounted on the surface of the connecting line (111). A temperature sensor (113) is installed inside the curing chamber (103). The output end of the temperature sensor (113) is electrically connected to the input end of the controller (101). A fastening bolt (115) is threaded onto the surface of the mounting base (114). One end of the fastening bolt (115) passes through the mounting base (114) and is threadedly fastened to the inner wall of the mounting plate (109). Activated carbon layer mesh plates (117) are installed on the inner wall of the curing chamber (103) by screws.
3. The paint curing device for high-gloss wall panel processing according to claim 1, characterized in that: The high-efficiency curing mechanism (2) is composed of a shielding curtain (21), a plate (22), a first magnet (23), a second magnet (24), and a nail (25). The inner wall of the curing box (103) is provided with a plate (22). The surface of the plate (22) is threaded with a nail (25). One end of the nail (25) penetrates the plate (22) and is threadedly fastened to the inner wall of the curing box (103).
4. The high light wallboard processing paint curing device according to claim 3, characterized in that: The surface of the plate (22) is equipped with a second magnet (24), and the inner wall of the curing box (103) is equipped with a first magnet (23). The surfaces of the first magnet (23) and the second magnet (24) are magnetically attracted to each other. A shielding curtain (21) is installed on the surface at the bottom of the plate (22).
5. The high light wallboard processing paint curing device according to claim 1, characterized in that: The convenient maintenance mechanism (3) consists of a positioning block (31), a fastening stud (32), a guide groove (33) and a guide block (34). The UV lamp (110) is equipped with guide blocks (34) on its surface. The inner wall of the assembly base (116) is provided with a guide groove (33). The surfaces of the guide groove (33) and the guide block (34) slide against each other.
6. The high light wallboard processing paint curing device according to claim 1, characterized in that: The inner wall of each assembly base (116) is equipped with a positioning block (31), which engages with the surface of the UV lamp (110). The surface of the assembly base (116) is threaded with a fastening stud (32), one end of which passes through the assembly base (116) and is threadedly fastened to the surface of the UV lamp (110).
7. The paint curing device for high-gloss wall panel processing according to claim 1, characterized in that: The ventilation and exhaust mechanism (4) consists of mounting screws (41), mounting covers (42), air outlet pipes (43), exhaust pipes (44), a housing (45), and a blower (46). Mounting covers (42) are provided on the surface of the top position of the curing box (103). The mounting covers (42) are connected to the interior of the curing box (103). Mounting screws (41) are threadedly connected to the surfaces on both sides of the mounting covers (42). One end of the mounting screws (41) passes through the mounting covers (42) and is threadedly fastened to the surface of the curing box (103). A housing (45) is installed on the inner wall of the mounting covers (42).
8. The high light wallboard processing paint curing device according to claim 7, characterized in that: A blower (46) is installed inside the chassis (45). The input end of the blower (46) is electrically connected to the output end of the controller (101). The input end of the blower (46) extends to the inner wall of the curing chamber (103). The output end of the blower (46) passes through the chassis (45) and the mounting cover (42) in sequence and extends to the top of the mounting cover (42). An exhaust pipe (43) is installed at the output end of the mounting cover (42). An exhaust pipe (44) is installed on the surface of the exhaust pipe (43) by screws. The exhaust pipe (44) is connected to the inside of the exhaust pipe (43).