Curing device with adjusting function for antibacterial coating
By using servo motor-driven airflow heating and a rubber roller structure design, the problem of existing devices only being able to cure on one side has been solved, enabling rapid and uniform curing and safe purification of double-sided coatings on the board, thus improving the efficiency and safety of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-03-31
AI Technical Summary
Existing antibacterial coating curing devices can only cure the coating on one side of the board, and cannot achieve rapid curing on both sides of the board, which reduces the applicability and efficiency of the device.
An antibacterial coating curing device with adjustable function was designed. The device uses a servo motor-driven drive rod and rotating gear structure to heat and uniformly spray the airflow. Combined with a rubber roller structure driven by forward and reverse motors, it achieves double-sided coating curing and uniform conveying of the board. It is equipped with a filter screen and activated carbon filter plate for air purification.
It enables rapid drying and curing of antibacterial coatings on board surfaces, improves coating curing efficiency and equipment flexibility, ensures uniform coating distribution, reduces harmful gas pollution, and enhances safety and applicability.
Smart Images

Figure CN224057924U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of plate coating curing technology, specifically to a curing device for an antibacterial coating with adjustable function. Background Technology
[0002] In special environments such as hospitals and food processing workshops, where hygiene requirements are extremely high, all surfaces of boards exposed to the air may need to be coated with antibacterial coatings to reduce the growth and spread of microorganisms. Therefore, workers need to apply antibacterial coatings and perform drying and curing processes on the surfaces of these boards during the production process.
[0003] Publication No. CN216323091U discloses a curing device for an antibacterial coating on an aluminum panel surface. This device uses a first motor to drive a screw, which, in conjunction with a limiting rod, moves a movable plate between the screw and the limiting rod. The movable plate then moves a support frame, adjusting the distance between the two conveying components. This allows the device to be adjusted according to the width of the aluminum panel, enabling the conveying of panels of different specifications and increasing its applicability. A heating wire generates heat, raising the temperature of the surrounding gas. This high-temperature gas is then evenly ejected through an outlet, uniformly curing the coating on the aluminum panel without requiring rework. This significantly reduces the drying difficulty of the aluminum panel and improves both drying and curing efficiency. However, this patent still has the following problems in practical use:
[0004] The device generates heat through a heating wire, raising the temperature of the surrounding gas. The high-temperature gas is then evenly sprayed out through the vent, thus uniformly curing the coating on the aluminum panel. However, the device can only cure the coating on one side of the panel. When workers need to apply antibacterial coating and perform drying and curing on both sides of the panel, it cannot achieve the effect of rapid curing of the coating on both sides, which greatly reduces the applicability of the device and imposes limitations on its use.
[0005] A curing device for an antibacterial coating with adjustable function is proposed to address the problems mentioned above. Utility Model Content
[0006] The purpose of this invention is to provide a curing device for antibacterial coatings with adjustable function, in order to solve the problem mentioned in the background art. The current method uses a heating wire to generate heat, which raises the temperature of the surrounding gas. The high-temperature gas is then evenly sprayed out through the vent to uniformly cure the coating on the aluminum panel. However, this device can only cure the coating on one side of the panel. When workers need to apply antibacterial coating and dry and cure it on both sides of the panel, it cannot achieve the effect of rapid curing of the coating on both sides of the panel, which greatly reduces the applicability of the device and brings limitations to the workers when using it.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a curing device for an antibacterial coating with adjustable function, comprising a base, wherein a box is mounted on the top of the base; a drying mechanism is provided inside the top of the box, and a conveying component is provided inside the box;
[0008] The drying mechanism includes an air pipe installed inside the top of the housing, with a strip frame installed at the bottom of the air pipe and a strip-shaped annular groove inside the strip frame. Spray pipes are installed on the inner side of the strip frame, and a mounting frame is installed at the top of the air pipe. Pipes are symmetrically installed inside the top of the housing, with a first fixing box installed inside the air pipe and a second fixing box installed inside the pipe. A drive rod is rotatably connected between the housing, air pipe, pipe, first fixing box, and second fixing box. A rotating rod is rotatably connected inside the top of the first fixing box, with a first fan blade installed on the outer side of the rotating rod. A first rotating tooth is installed on the outer side of the drive rod, and a second rotating tooth is installed at the bottom of the rotating rod. A servo motor is installed at one end of the drive rod, and a dustproof net is installed inside the top of the mounting frame.
[0009] Preferably, a transmission rod is rotatably connected to the top of the second fixed box, and a second fan blade is installed on the outer side of the top of the transmission rod. A third rotating tooth is installed on the outer side of both ends of the drive rod, and a fourth rotating tooth is installed at the bottom of the transmission rod. A frame is inserted into the top of the pipe, and filter screens are symmetrically installed inside both ends of the frame. An activated carbon filter plate is installed inside the frame.
[0010] Preferably, the conveying assembly includes a first rubber roller and a second rubber roller, which are symmetrically rotatably connected inside the housing. A first sprocket is mounted on one end of the first rubber roller, and a first chain is meshed between the outer sides of the first sprocket. A second sprocket is mounted on one end of the second rubber roller, and a second chain is meshed between the outer sides of the second sprocket. A forward and reverse motor is mounted on one end of the first rubber roller and the second rubber roller.
[0011] Preferably, support plates are symmetrically installed at both ends of the box body, and a retractable rod is installed on the corresponding side of the support plate. A telescopic spring is sleeved on the outside of the retractable rod, and a fixed plate is installed at one end of the retractable rod. A transmission roller is rotatably connected between the fixed plates.
[0012] Preferably, the outer sides of the drive rods are symmetrically engaged and rotatably connected to limit sleeves, and the top of the limit sleeves is fixedly connected to the inner side of the housing.
[0013] Preferably, the first rotating tooth and the second rotating tooth are meshed together, and the third rotating tooth and the fourth rotating tooth are meshed together.
[0014] Preferably, the two ends of the strip frame are fixedly connected to the inner side of the box.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: A curing device for an antibacterial coating with adjustable function is described below: A servo motor drives the rotation of a drive rod, which in turn drives the rotation of a first rotating tooth, which in turn drives the rotation of a second rotating tooth. The rotation of the rotating rod drives the rotation of a first fan blade, allowing outdoor air to pass through a dustproof net and enter the air pipe. At this time, a heating element heats the airflow, which then enters the spray nozzle through a strip-shaped annular groove. Finally, the hot air is blown onto the surface of the board through multiple sets of spray nozzles, thus achieving rapid drying and curing of the antibacterial coating on the board surface. This significantly improves the curing efficiency of the antibacterial coating compared to existing technologies. The technology that can only cure the coating on one side of the board is more efficient and can improve the overall flexibility of the device. It can meet the needs of various board coating curing and adjustment processing effects. The operation of the forward and reverse motor drives the rotation of the first and second rubber rollers. Through the cooperation between the first sprocket and the first chain, and then through the cooperation between the second sprocket and the second chain, the two sets of first and second rubber rollers rotate in opposite directions, thereby achieving the effect of fixing, processing and conveying the board coating. In addition, the first and second rubber rollers can squeeze and smooth the coating on the board surface, which can ensure the uniform distribution of the coating on the board surface. This method avoids the problems of uneven coating and missed coating that may occur in traditional manual coating.
[0016] 1. A servo motor drives a drive rod to rotate, which in turn drives a first rotating gear, which in turn drives a second rotating gear, which in turn drives a rotating rod, which in turn drives a first fan blade. The rotation of the first fan blade creates negative pressure inside the air pipe and mounting frame, forcing outdoor air through the dust filter into the air pipe. The heating element heats the airflow, which then enters the nozzle through a strip-shaped groove. Finally, multiple nozzles blow the hot air onto the surface of the board, achieving rapid drying and curing of the antibacterial coating. This significantly improves the curing efficiency of the antibacterial coating compared to existing technologies that only cure coatings on one side of the board, thus enhancing the overall efficiency of the device. The device offers overall flexibility, meeting the needs of various board coating curing and adjustment processes, and providing convenience for operators. The rotation of the drive rod drives the third rotating gear, which in turn drives the fourth rotating gear, which in turn drives the transmission rod. The transmission rod then drives the second fan blade, creating negative pressure inside the pipe. Because the blade angle of the second fan blade is opposite to that of the first fan blade, air inside the chamber is expelled through the pipe. At this time, the filter screen and activated carbon filter plate filter out odors and harmful gases from the air, ensuring the safe expulsion of air from inside the chamber. This significantly reduces the environmental pollution caused by harmful gases generated during the curing of antibacterial coatings, improving the safety of the device during use.
[0017] 2. Two sets of forward and reverse motors are activated by the operator. The operation of the motors drives the rotation of the first and second rubber rollers. The rotation of the first rubber rollers drives the rotation of the first sprocket. Through the cooperation between the first sprocket and the first chain, the two sets of first rubber rollers rotate forward. Then, through the cooperation between the second sprocket and the second chain, the two sets of second rubber rollers rotate in reverse. Through the forward and reverse rotation of the two sets of first and second rubber rollers, the effect of fixing and conveying the coating on the board is achieved. The first and second rubber rollers can also squeeze and smooth the coating on the board surface, ensuring uniform distribution of the coating. This method avoids the problems of uneven coating and missed coating that may occur with traditional manual coating, bringing convenience to the operator. When the operator places the board inside the box, the two sets of drive rollers first come into contact with the board. At this time, the two sets of drive rollers drive the movement of four fixed plates. The movement of the fixed plates causes the retraction rod and telescopic spring to retract. The retraction or extension of the telescopic spring automatically adjusts the drive rollers, thereby meeting the processing effect of various specifications of boards, improving the flexibility of the device during use, and bringing convenience to the operator. Attached Figure Description
[0018] Figure 1 This is a cross-sectional view of the overall structure of this utility model;
[0019] Figure 2 This is a partially enlarged structural diagram of the drying mechanism in this utility model;
[0020] Figure 3 This is an enlarged schematic diagram of the overall structure of the pipeline in this utility model;
[0021] Figure 4 This is a schematic diagram of the overall structure of this utility model;
[0022] Figure 5 This is an enlarged structural diagram of part A in this utility model.
[0023] In the diagram: 1. Base; 101. Box body; 2. Drying mechanism; 201. Air pipe; 202. Strip frame; 203. Strip annular groove; 204. Spray pipe; 205. Mounting frame; 206. Pipe; 207. First fixing box; 2071. Second fixing box; 208. Drive rod; 209. Rotating rod; 210. First fan blade; 211. First rotating gear; 212. Second rotating gear; 213. Servo motor; 214. Dustproof net; 215. Transmission rod; 2151. Second fan blade 216. Leaf; 217. Third rotating tooth; 218. Fourth rotating tooth; 219. Frame; 220. Filter screen; 221. Activated carbon filter plate; 222. Limiting sleeve; 3. Conveying assembly; 301. First rubber roller; 302. Second rubber roller; 303. First sprocket; 304. First chain; 305. Second sprocket; 306. Second chain; 307. Forward and reverse motor; 308. Support plate; 309. Retraction rod; 310. Telescopic spring; 311. Fixing plate; 312. Transmission roller. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figure 1-5 The present invention provides a technical solution: a curing device for an antibacterial coating with adjustable function, including a base 1, a box 101 installed on the top of the base 1; a drying mechanism 2 is provided inside the top of the box 101, and a conveying component 3 is provided inside the box 101.
[0026] The drying mechanism 2 includes an air pipe 201 installed inside the top of the housing 101, with a strip frame 202 installed at the bottom of the air pipe 201. Both ends of the strip frame 202 are fixedly connected to the inner side of the housing 101. A strip-shaped annular groove 203 is formed inside the strip frame 202, and spray pipes 204 are installed on the inner side of each strip frame 202. A mounting frame 205 is installed at the top of the air pipe 201. Pipes 206 are symmetrically installed inside the top of the housing 101. A first fixing box 207 is installed inside the air pipe 201, and a second fixing box 2071 is installed inside the pipe 206. A drive rod 20 is rotatably connected between the housing 101, the air pipe 201, the pipe 206, the first fixing box 207, and the second fixing box 2071. 8. Moreover, a rotating rod 209 is rotatably connected to the top of the first fixed box 207, and a first fan blade 210 is installed on the outside of the rotating rod 209. A first rotating tooth 211 is installed on the outside of the drive rod 208, and a second rotating tooth 212 is installed at the bottom of the rotating rod 209. A servo motor 213 is installed at one end of the drive rod 208, and a dustproof net 214 is installed inside the top of the mounting frame 205. This enables the rapid drying and curing of the antibacterial coating on the board surface, thereby greatly improving the curing efficiency of the antibacterial coating. Compared with the existing technology that can only cure the coating on one side of the board, this method is more efficient and can improve the overall flexibility of the device. It can meet the curing and adjustment of various board coatings, bringing convenience to the staff during use.
[0027] The top of the second fixed box 2071 is rotatably connected to a transmission rod 215, and a second fan blade 2151 is installed on the outer top of the transmission rod 215. Both ends of the drive rod 208 are equipped with third rotating teeth 216, and the bottom of the transmission rod 215 is equipped with a fourth rotating tooth 217. The first rotating tooth 211 and the second rotating tooth 212 are meshed together, and the third rotating tooth 216 and the fourth rotating tooth 217 are meshed together. A frame 218 is inserted into the top of the pipe 206, and filter screens 219 are symmetrically installed at both ends of the frame 218. Activated carbon is installed inside the frame 218. The filter plate 220 allows the air inside the housing 101 to be discharged through the pipe 206. At this time, the filter screen 219 and the activated carbon filter plate 220 filter the odors and harmful gases in the air, thereby achieving the effect of safe discharge of the air inside the housing 101. This greatly reduces the phenomenon of harmful gas pollution to the environment generated during the curing of antibacterial coating and improves the safety of the device during use. The outer side of the drive rod 208 is symmetrically engaged and rotated with the limit sleeve 221, and the top of the limit sleeve 221 is fixedly connected to the inner side of the housing 101. Through the design of the limit sleeve 221, the rotation of the drive rod 208 can be made more stable.
[0028] The conveying assembly 3 includes a first rubber roller 301 and a second rubber roller 302, which are symmetrically rotatably connected inside the housing 101. A first sprocket 303 is mounted on one end of the first rubber roller 301, and a first chain 304 is meshed between the outer sides of the first sprocket 303. A second sprocket 305 is mounted on one end of the second rubber roller 302, and a second chain 306 is meshed between the outer sides of the second sprocket 305. A forward and reverse motor 307 is mounted on one end of the first rubber roller 301 and the second rubber roller 302, thereby achieving the effect of conveying and fixing the coating on the sheet material. The first rubber roller 301 and the second rubber roller 302 can extrude the coating on the surface of the sheet material. The smoothing and leveling action ensures uniform distribution of the coating on the board surface. This method avoids problems such as uneven application and missed areas that may occur with traditional manual application, making it more convenient for workers to use. Support plates 308 are symmetrically installed at both ends of the box 101, and a retractable rod 309 is installed on the corresponding side of the support plate 308. A telescopic spring 310 is sleeved on the outside of the retractable rod 309, and a fixing plate 311 is installed at one end of the retractable rod 309. A transmission roller 312 is rotatably connected between the fixing plates 311. The retraction or extension of the telescopic spring 310 automatically adjusts the transmission roller 312, thereby meeting the processing effect of various specifications of boards, improving the flexibility of the device during use, and making it more convenient for workers to use.
[0029] Working principle: Before using this antibacterial coating curing device with adjustable function, it is necessary to check the overall condition of the device to ensure it can operate normally. Figure 1 - Figure 5As shown, the operator first pushes the board material into the housing 101 through the inlet. The board material is then transferred via the conveyor assembly 3. Next, the operator activates the servo motor 213 and the heating element inside the air pipe 201. The servo motor 213 drives the drive rod 208 to rotate, which in turn drives the first rotating gear 211. This rotation in turn drives the second rotating gear 212, which in turn drives the rotating rod 209. The rotating rod 209 then drives the first fan blade 210. The rotation of the first fan blade 210 creates a negative pressure inside the air pipe 201 and the mounting frame 205, allowing outdoor air to enter the air pipe 201 through the dustproof net 214. The heating element heats the airflow, which then enters the spray nozzle 204 through the strip-shaped annular groove 203. Finally, the hot air is blown onto the surface of the board material through multiple spray nozzles 204, achieving rapid drying and curing of the antibacterial coating on the board surface, thus significantly improving the curing efficiency of the antibacterial coating. Compared to existing technologies that can only cure coatings on one side of the board, this method is more efficient, improving the overall flexibility of the device and meeting the needs of various board coating curing and adjustment processes. It also brings convenience to the operators. The rotation of the drive rod 208 drives the rotation of the third rotating tooth 216, which in turn drives the rotation of the fourth rotating tooth 217. The rotation of the fourth rotating tooth 217 drives the rotation of the transmission rod 215, which in turn drives the rotation of the second fan blade 2151. The rotation of the second fan blade 2151 creates negative pressure inside the pipe 206. Since the blade angle of the second fan blade 2151 is opposite to that of the first fan blade 210, the air inside the box 101 is discharged through the pipe 206. At this time, the filter screen 219 and the activated carbon filter plate 220 filter odors and harmful gases in the air, thereby achieving the effect of safe air discharge from the box 101. This greatly reduces the environmental pollution caused by harmful gases generated during the curing of antibacterial coatings and improves the safety of the device during use.
[0030] By having staff activate two sets of forward and reverse motors 307, the operation of these motors drives the rotation of the first rubber roller 301 and the second rubber roller 302. The rotation of the first rubber roller 301 drives the rotation of the first sprocket 303. Through the interaction between the first sprocket 303 and the first chain 304, the two sets of first rubber rollers 301 rotate forward. Then, through the interaction between the second sprocket 305 and the second chain 306, the two sets of second rubber rollers 302 rotate in reverse. This forward and reverse rotation of the first and second rubber rollers 301 and 302 achieves the effect of fixing and conveying the coating on the sheet material. Furthermore, the first and second rubber rollers 301 and 302 can process the coating on the surface of the sheet material. The squeezing and smoothing action ensures a uniform distribution of coating on the board surface. This method avoids problems such as uneven coating and missed areas that may occur with traditional manual coating, bringing convenience to the operator. When the operator places the board inside the box 101, the two sets of drive rollers 312 first come into contact with the board. At this time, the two sets of drive rollers 312 drive the four fixed plates 311 to move. The movement of the fixed plates 311 causes the retraction rod 309 and the telescopic spring 310 to retract. At this time, the retraction or extension of the telescopic spring 310 automatically adjusts the drive rollers 312, thereby meeting the processing effect of various specifications of boards, improving the flexibility of the device during use, and bringing convenience to the operator.
[0031] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A curing device with an antibacterial coating with a regulating function, comprising a base (1), a box (101) is installed at the top end of the base (1); characterized in that Further comprising: The inside of the top end of the box (101) is provided with a drying mechanism (2), and the inside of the box (101) is provided with a conveying assembly (3); Wherein, the drying mechanism (2) comprises an air pipe (201) installed in the inside of the top end of the box (101), and a strip frame (202) is installed at the bottom end of the air pipe (201), and a strip ring groove (203) is formed in the inside of the strip frame (202), and a spray pipe (204) is installed on the inside of the strip frame (202), and an installation frame (205) is installed at the top end of the air pipe (201), and a pipeline (206) is symmetrically installed in the inside of the top end of the box (101), and a first fixed box (207) is installed in the inside of the air pipe (201), and a second fixed box (2071) is installed in the inside of the pipeline (206), and a drive rod (208) is rotatably connected between the box (101), the air pipe (201), the pipeline (206), the first fixed box (207) and the second fixed box (2071), and a rotating rod (209) is rotatably connected in the inside of the top end of the first fixed box (207), and a first fan blade (210) is installed on the outside of the rotating rod (209), and a first rotating tooth (211) is installed on the outside of the drive rod (208), and a second rotating tooth (212) is installed at the bottom end of the rotating rod (209), and a servo motor (213) is installed at one end of the drive rod (208), and a dustproof net (214) is installed in the inside of the top end of the installation frame (205).
2. The curing device of the antibacterial coating with the adjusting function according to claim 1, characterized in that: A transmission rod (215) is rotatably connected in the inside of the top end of the second fixed box (2071), and a second fan blade (2151) is installed on the top outside of the transmission rod (215), and third rotating teeth (216) are installed on the outside of both ends of the drive rod (208), and a fourth rotating tooth (217) is installed at the bottom end of the transmission rod (215), and a frame (218) is inserted into the inside of the top end of the pipeline (206), and filter screens (219) are symmetrically installed in the inside of both ends of the frame (218), and an activated carbon filter plate (220) is installed in the inside of the frame (218).
3. The curing device of the antibacterial coating with the adjusting function according to claim 1, characterized in that: The conveying assembly (3) comprises a first rubber roller (301) and a second rubber roller (302), and the first rubber roller (301) and the second rubber roller (302) are rotatably connected in the inside of the box (101), and a first sprocket (303) is installed at one end of the first rubber roller (301), and a first chain (304) is meshingly connected between the outside of the first sprocket (303), and a second sprocket (305) is installed at one end of the second rubber roller (302), and a second chain (306) is meshingly connected between the outside of the second sprocket (305), and a reversible motor (307) is installed at one end of the first rubber roller (301) and the second rubber roller (302).
4. The curing device of the antibacterial coating with the adjusting function according to claim 3, characterized in that: Both ends of the box (101) are symmetrically provided with support plates (308), and corresponding sides of the support plates (308) are provided with contraction rods (309), and the outer sides of the contraction rods (309) are sleeved with telescopic springs (310), and one end of the contraction rod (309) is provided with a fixed plate (311), and the fixed plates (311) are rotatably connected with transmission rollers (312).
5. The curing device of the antibacterial coating with the adjusting function according to claim 1, characterized in that: The outer sides of the driving rods (208) are symmetrically clamped and rotatably connected with limiting sleeves (221), and the top ends of the limiting sleeves (221) are fixedly connected with the inner sides of the box (101).
6. The curing device of an antibacterial coating with a regulating function according to claim 2, characterized in that: The first rotating teeth (211) and the second rotating teeth (212) are meshingly connected, and the third rotating teeth (216) and the fourth rotating teeth (217) are meshingly connected.
7. The curing device of an antibacterial coating with a regulating function according to claim 1, characterized in that: Both ends of the strip-shaped frame (202) are fixedly connected with the inner sides of the box (101).
Citation Information
Patent Citations
Curing device for antibacterial coating on surface of aluminum veneer
CN216323091U