Coating machine target position moving baffle equipment with high flexibility
By designing a straight plate and components in the coating machine, the shielding plate can be easily moved and its position adjusted, solving the problem of inconvenience in existing devices and improving the practicality and flexibility of the coating machine.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-03-31
AI Technical Summary
The existing moving baffle device for coating machines is not convenient to move and is not easy to adjust, which reduces the practicality and flexibility of the device.
A target-position moving baffle device for a coating machine, comprising a straight plate, a displacement component, and a fixing component, is designed. Through the cooperation of components such as a drive motor, a rotating shaft, a bevel gear, a threaded rod, and gears, the baffle can be moved and its position adjusted conveniently.
This improves the practicality and flexibility of the target position moving baffle equipment for coating machines, ensuring that the baffle can be easily opened, closed, and its position adjusted to meet the needs of multilayer film coating.
Smart Images

Figure CN224062870U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coating machine technology, and in particular to a highly flexible coating machine target position moving baffle device. Background Technology
[0002] When a coating machine is coating, it usually does not just coat one layer of film, but multiple layers of different types of film. However, the number and position of the target positions of the coating machine are fixed. During the coating process, a movable baffle device is needed to shield the target positions that are not being coated.
[0003] However, existing movable baffle devices are inconvenient to move and shield, and their position is difficult to adjust, thus reducing the practicality and flexibility of the entire device. Therefore, those skilled in the art have provided a highly flexible movable baffle device for the target position of a coating machine to solve the problems mentioned in the background art. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a highly flexible target position moving baffle device for a coating machine, which solves the problems mentioned in the background technology, such as the inconvenience of moving the baffle for shielding and the difficulty in adjusting the position of the baffle, thereby reducing the practicality and flexibility of the entire device.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a highly flexible target position moving baffle device for a coating machine, comprising a straight plate, with square cavities opened at both the left and right ends of the inner side of the straight plate, and symmetrically through openings that communicate with the two square cavities on the outer wall of the front side of the straight plate, with baffles provided on the inner side of the two openings, and a displacement component for driving the two baffles to move relative to each other inside the square cavities on the top surface of the straight plate, and fixing components provided on the outer walls of the left and right sides of the straight plate;
[0006] The displacement assembly includes two square cavities symmetrically located at the upper and lower ends of the center of the inner side of the straight plate. A rotating shaft is rotatably mounted inside both square cavities, and a bevel gear is fixed to the outer wall of the rotating shaft. Threaded rods are rotatably mounted on the left and right inner walls of both square cavities. A bevel gear is fixed to one end of each pair of threaded rods, while the opposite ends pass through the square cavities and are rotatably connected to the inner walls of the two square cavities. Moving blocks are threadedly fitted inside the two square cavities and onto the outer walls of the two pairs of threaded rods. One end of each pair of moving blocks is fixedly connected to the outer walls of the two baffle plates.
[0007] As a further technical solution of this utility model, the fixing component includes vertical sleeve plates fixed on the outer walls of the left and right sides of the straight plate. Connecting blocks are symmetrically fixed on the outer walls of the upper and lower ends of the straight plate. Two pairs of connecting blocks have through square openings on their outer walls. Horizontal plates are slidably connected to the inner sides of the four square openings.
[0008] As a further technical solution of this utility model, slot 1 is provided on the outer top surface of each of the four horizontal plates in a linear array and in a through-type manner, and slot 2 is provided on the outer top surface of each of the two pairs of connecting blocks in a through-type manner and communicating with the square opening. The inner sides of the four slot 1 and slot 2 are slidably inserted with a limiting square rod, and a round rod is rotatably installed inside the two vertical sleeve plates, and a gear is fixed on the outer wall of the round rod.
[0009] As a further technical solution of this utility model, the two vertical sleeve plates are symmetrically slidably connected by parallel vertical connecting bars inside. The opposite ends of the four sets of vertical connecting bars are fixedly connected to the limiting square rod through connecting blocks. At the same time, racks are fixed to the outer walls of the four sets of vertical connecting bars and the ends of the corresponding gears, and the racks and gears are meshed.
[0010] As a further technical solution of this utility model, one end of the two round rods extends rotatably to the front outer wall of the two vertical sleeve plates, and a knob is fixed on the outer peripheral surface.
[0011] As a further technical solution of this utility model, mounting plates with screw holes are fixed on the front and rear outer walls of the four horizontal plates.
[0012] As a further technical solution of this utility model, one end of the rotating shaft extends to the outer top surface of the straight plate, and a drive motor is fixed on the outer top surface of the straight plate. The output end of the drive motor is fixedly connected to the rotating shaft.
[0013] This invention provides a highly flexible target position moving baffle device for a coating machine, which has the following advantages compared with the prior art:
[0014] 1. This design provides a highly flexible target position moving baffle device for a coating machine. Through the cooperation of a drive motor, a rotating shaft, bevel gear one, bevel gear two, and a threaded rod, it can easily move two baffles within a square cavity one, thereby facilitating the opening and closing of the target position and improving the practicality of the entire device.
[0015] 2. This design provides a highly flexible target position moving baffle device for a coating machine. Through the interaction of a round rod, gear, rack, vertical connecting bar, and limiting square rod, a straight plate can be moved, thereby adjusting the position of the baffle and improving the flexibility of the entire device during use. Attached Figure Description
[0016] Figure 1 A three-dimensional structural diagram of a highly flexible target position moving baffle device for a coating machine;
[0017] Figure 2 A cross-sectional three-dimensional structural diagram of a highly flexible target position moving baffle device for a coating machine;
[0018] Figure 3 A three-dimensional structural diagram of the displacement component of a highly flexible target position moving baffle device for a coating machine;
[0019] Figure 4 This is a three-dimensional structural diagram of the fixed component of a highly flexible target position moving baffle device for a coating machine.
[0020] In the picture:
[0021] 1. Straight plate; 101. Square cavity one; 102. Opening; 103. Cover plate; 104. Mounting plate;
[0022] 2. Displacement assembly; 201. Square cavity two; 202. Rotating shaft; 203. Bevel gear one; 204. Threaded rod; 205. Bevel gear two; 206. Moving block; 207. Drive motor;
[0023] 3. Fixing components; 301. Vertical sleeve plate; 302. Connecting block; 303. Square opening; 304. Horizontal plate; 305. Slot one; 306. Slot two; 307. Limiting square rod; 308. Round rod; 309. Gear; 310. Vertical connecting bar; 311. Connecting block; 312. Rack; 313. Knob. 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 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.
[0025] Please see Figure 1-4 This utility model provides a highly flexible target position moving baffle device for a coating machine: it includes a straight plate 1, with square cavities 101 at both ends of the inner side of the straight plate 1, and symmetrically arranged openings 102 on the outer front wall of the straight plate 1 that are connected to the two square cavities 101 and are in a through-type manner. Both openings 102 are provided with baffle plates 103 on their inner sides. The outer top surface of the straight plate 1 is provided with a displacement component 2 for driving the two baffle plates 103 to move relative to each other inside the square cavities 101.
[0026] The displacement component 2 includes two square cavities 201 symmetrically located at the upper and lower ends of the center of the inner side of the straight plate 1. A rotating shaft 202 is rotatably mounted inside both square cavities 201, and a bevel gear 203 is fixed to the outer wall of the rotating shaft 202. Threaded rods 204 are rotatably mounted on the inner walls of both sides of the two square cavities 201. A bevel gear 205 is fixed to one end of each pair of threaded rods 204, while the opposite ends pass through the inner walls of the two square cavities 201 and the two square cavities 101. The walls are rotatably connected. Inside the two square cavities 101 and on the outer walls of the two pairs of threaded rods 204, there are threaded moving blocks 206. One end of each pair of moving blocks 206 is fixedly connected to the outer walls of the two baffle plates 103. One end of the rotating shaft 202 extends to the outer top surface of the straight plate 1. The outer top surface of the straight plate 1 is fixed with a drive motor 207. The output end of the drive motor 207 is fixedly connected to the rotating shaft 202. The two bevel gears 1 203 and the two pairs of bevel gears 205 are meshed.
[0027] When the target needs to be shielded, the drive motor 207 can be controlled and started to drive the rotating shaft 202 to drive the bevel gear 203 to rotate inside the square cavity 201. Under the meshing connection characteristics of the bevel gear 203, the two pairs of bevel gears 205 drive the threaded rod 204 to rotate on the inner wall of the square cavity 201. This allows the moving block 206 to drive the shielding plate 103 to move closer to each other inside the square cavity 101, and to seal the opening 102 during the movement. After sealing, the drive motor 207 stops rotating (the rotating shaft 202 is locked by the shaft locking device fixed on the outer top surface of the straight plate 1 to prevent self-rotation). When the target does not need to be shielded, the drive motor 207 can be started in reverse to drive the rotating shaft 202 to rotate in the opposite direction, which can separate the two shielding plates 103, thereby improving the practicality of the entire device.
[0028] Fixing components 3 are provided on the left and right outer walls of the straight plate 1. The fixing components 3 include vertical sleeve plates 301 fixed on the left and right outer walls of the straight plate 1. Connecting blocks 302 are symmetrically fixed on the outer walls of the upper and lower ends of the straight plate 1. Square openings 303 are opened on the outer walls of the two pairs of connecting blocks 302. Horizontal plates 304 are slidably connected to the inner sides of the four square openings 303. Slots 305 are linearly arrayed and through the top surface of the four horizontal plates 304. Slots 306 are opened on the outer top surface of the two pairs of connecting blocks 302 and are through the square openings 303. Limiting square rods 307 are slidably inserted into the inner sides of the four slots 305 and slots 306. Inside each of the shaped sleeve plates 301, round rods 308 are rotatably mounted, and gears 309 are fixed to the outer walls of the round rods 308. The interiors of the two vertical sleeve plates 301 are symmetrically connected by parallel vertical connecting bars 310. The opposite ends of the four sets of vertical connecting bars 310 are fixedly connected to the limiting square rods 307 through connecting blocks 311. At the same time, racks 312 are fixed to the outer walls of the four sets of vertical connecting bars 310 and to the ends of the corresponding gears. The racks 312 and gears 309 are meshed. One end of each of the two round rods 308 extends rotatably to the front outer walls of the two vertical sleeve plates 301, and knobs 313 are fixed to the outer circumference. Mounting plates 104 with screw holes are fixed to the front and rear outer walls of the four horizontal plates 304.
[0029] The horizontal plate 304 is fixedly installed on the inner wall of the coating machine by the mounting plate 104, and the positions of the vertical plate 1 and the target position are aligned (multiple vertical plates 1 are sleeved on the horizontal plate 304 and aligned with multiple target positions according to the actual use). When it is necessary to move the baffle plate 103 on the vertical plate 1, the knob 313 can be turned to drive the round rod 308 to drive the gear 309 to rotate. Under the meshing connection characteristics of the gear 309, the rack 312 is driven to drive the vertical connecting bar 310 to move closer to each other inside the vertical sleeve plate 301, thereby allowing the limiting square rod 307 to move from the slot 1 305 and the slot. The internal part of the second 306 is disengaged and stored inside the vertical sleeve plate 301. Then, the connecting block 302 can be pushed to slide on the horizontal plate 304, thereby adjusting the position of the shield plate 103 to correspond with the position of the target. When the appropriate position is reached, the knob 313 is turned in the opposite direction to allow the limiting square rod 307 to be re-inserted into the inside of the slot one 305 and the slot two 306, and the connecting block 302 is fixed again (the round rod 308 is a damping rotating shaft 202, which can remain fixed after rotation to ensure stability after fixing), thereby improving the flexibility of the entire device during use.
[0030] The working principle of this utility model is as follows: When in use, the horizontal plate 304 is first fixed on the inner wall of the coating machine by the mounting plate 104, and then the vertical plate 1 is pushed to move on the horizontal plate 304 through the connecting block 302 to reach the position corresponding to the target.
[0031] At the same time, turn the knob 313 to drive the round rod 308 to drive the gear 309 to rotate, and drive the rack 312 to drive the vertical connecting bar 310 to move relative to each other inside the vertical sleeve plate 301, so that the limiting square rod 307 is inserted into the slot one 305 and slot two 306 to fix the straight plate 1.
[0032] Meanwhile, when it is necessary to shield the target position, the drive motor 207 is started to drive the rotating shaft 202 to drive the bevel gear 203 to rotate inside the square cavity 201, and simultaneously the two pairs of bevel gears 205 drive the threaded rod 204 to rotate on the inner wall of the square cavity 201, so that the moving block 206 drives the baffle plate 103 to move relative to each other inside the square cavity 101, and seals the opening 102 during the movement.
[0033] Finally, when it is not necessary to shield the target position, simply start the drive motor 207 in reverse to drive the rotating shaft 202 to rotate in the opposite direction, so that the two shielding plates 103 can be separated and the opening 102 can be in the open state.
[0034] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model are implemented according to conventional methods in the art, unless otherwise specified or limited.
Claims
1. A flexible coating machine target position moving baffle device, characterized in that, The utility model relates to a straight plate (1), both ends of the inside of straight plate (1) are provided with square cavity no. (101), the outside wall of straight plate (1) front side is provided with the open mouth (102) of the through -type of the square cavity no. (101) of two square cavity no. (101) and is penetrated and is provided with the baffle (103) in the inside of two open mouth (102), the outer top surface of straight plate (1) is provided with the displacement assembly (2) for driving two baffle (103) relative movement in square cavity no. (101) inside, the outside wall of left and right sides of straight plate (1) is provided with fixed assembly (3), Wherein, the displacement assembly (2) includes the square cavity no. (201) of the symmetrically being provided on the inside center position of straight plate (1) upper and lower ends, the inside of two square cavity no. (201) is jointly installed with the rotating shaft (202), and the outer wall of rotating shaft (202) is fixed with bevel gear no. (203), the inside wall of two square cavity no. (201) is rotatably installed with threaded rod (204), and the corresponding one end of two pairs of threaded rod (204) is fixed with bevel gear no. (205), and the opposite end is rotatably connected through the inner wall of square cavity no. (201) and two square cavity no. (101), and the inside of two square cavity no. (101) and the outer wall of two pairs of threaded rod (204) are all threadedly connected with moving block (206), and the corresponding one end of two pairs of moving block (206) is fixedly connected with the outer side wall of two baffle (103) respectively.
2. The flexible target position moving shutter device of claim 1, wherein The fixed assembly (3) includes the vertical sleeve plate (301) of being fixed on the outside wall of left and right sides of straight plate (1), the outside wall of upper and lower ends of straight plate (1) is fixed with the connecting block (302) symmetrically, the outer side wall of two pairs of connecting block (302) is provided with the square mouth (303) of the through -type, the inside of four square mouth (303) is slidably connected with horizontal plate (304).
3. The high flexibility target position moving shutter device of claim 2, wherein, The outer top surface of four horizontal plate (304) is provided with the insertion slot no. (305) of linear array distribution and the through -type, the outer top surface of two pairs of connecting block (302) is provided with the insertion slot no. (306) of the through -type and the square mouth (303) is penetrated, and the inside of four insertion slot no. (305) and insertion slot no. (306) is slidably inserted with the limit square rod (307), the inside of two vertical sleeve plate (301) is rotatably installed with round bar (308), and the outer wall of round bar (308) is fixed with gear (309).
4. The high flexibility target position moving shutter device of claim 3, wherein The inside of two vertical sleeve plate (301) is slidably connected with the vertical connecting strip (310) of mutual parallelism symmetrically, and the opposite end of four groups of vertical connecting strip (310) is fixedly connected with limit square rod (307) through the link block (311), the outer side wall of four groups of vertical connecting strip (310) and the one end of corresponding gear (309) are all fixed with rack (312), and rack (312) and gear (309) are meshed connection.
5. The high flexibility target position moving shutter device of claim 3, wherein, One end of the two round rods (308) rotates to extend to the front outer wall of the two vertical sleeve plates (301), and the outer peripheral surface is fixed with a knob (313).
6. The high flexibility target position moving shutter device of claim 2, wherein, The front and rear outer walls of the four horizontal plates (304) are fixed with mounting plates (104) with screw holes.
7. The high flexibility target position moving shutter device of claim 1, wherein, One end of the rotating shaft (202) extends to the outer top surface of the straight plate (1), the outer top surface of the straight plate (1) is fixed with a driving motor (207), the output end of the driving motor (207) is fixedly connected with the rotating shaft (202), and the two bevel gears (203) and the two pairs of bevel gears (205) are in meshing connection.