Corrosion-resistant coating coating device convenient to use
By designing a coating device with an adjustment and transmission mechanism, the problem of poor adaptability of the pillar spraying device was solved, achieving stable clamping and uniform spraying of pillars with different shapes and diameters, thus improving spraying efficiency and paint utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YUNNAN JINGBANG TOWER MANUFACTURING CO LTD
- Filing Date
- 2025-03-14
- Publication Date
- 2026-05-26
AI Technical Summary
In the existing technology, the column spraying device is difficult to adapt to columns of different shapes and diameters, resulting in inconvenience in clamping and difficulty in adjusting the spraying coverage area, which affects the spraying efficiency.
A coating device including an adjustment mechanism and a transmission mechanism was designed. The adjustment mechanism enables stable clamping of pillars with different shapes, and the transmission mechanism adjusts the vertical distance between the spray plate and the pillar to adapt to pillars with different diameters and improve the ability to adjust the spray coverage area.
It achieves stable clamping and uniform spraying of supports with different shapes and diameters, improving spraying efficiency and paint conservation.
Smart Images

Figure CN224271617U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coating application devices, and in particular to a convenient anti-corrosion coating application device. Background Technology
[0002] Currently, the mainstream photovoltaic pillars are aluminum alloy supports and steel structure pillars. Aluminum alloy supports form a dense protective film on their surface, which has excellent corrosion resistance, but they are expensive and have low strength. Steel structure pillars have high strength and low price and are used more frequently, but steel structures will undergo accelerated electrochemical corrosion in humid and hot and oxygen-containing environments, which will cause material failure. Therefore, it is necessary to coat the photovoltaic pillars with anti-corrosion coatings.
[0003] In the process of developing this application, the inventors discovered the following problems with the prior art:
[0004] In the prior art, the fixing device required to fix the support during the spraying process of the support is usually of a fixed shape. Since most supports are cylindrical or prismatic, it is inconvenient to clamp supports of different shapes. In addition, the position of the spraying device in the prior art is mostly at a fixed height, which is not convenient to adjust the coverage of the anti-corrosion coating according to the different diameters of different supports.
[0005] Therefore, those skilled in the art have provided a convenient anti-corrosion coating application device to solve the problems mentioned in the background art. Utility Model Content
[0006] The purpose of this invention is to address the shortcomings of existing technologies by proposing a convenient anti-corrosion coating device that can maintain a good clamping effect on supports of different shapes and can change the coverage area during spraying according to supports of different diameters, thereby improving spraying efficiency.
[0007] To achieve the above objectives, the present invention provides the following technical solution:
[0008] A user-friendly anti-corrosion coating application device includes a base, a transmission mechanism, and eight sliders. An adjustment mechanism is located at the front end of the base, comprising two transverse bevel gears and a rotating shaft. A No. 2 threaded rod is fixedly installed at the center of the upper surface of each of the two transverse bevel gears. Longitudinal bevel gears are fixedly sleeved on both sides of the outer wall of the rotating shaft. Outer plates are fixedly installed on both sides of the upper surface of the base. Inner plates are slidably installed inside each of the two outer plates. A transmission mechanism is located at the upper center of the two inner plates on opposite sides. The transmission mechanism includes a motor and two connecting shafts. The motor is fixedly installed on the upper side of one of the inner plates. A rotating disk is rotatably installed at the upper center of the two inner plates on opposite sides.
[0009] Both rotating disks include a housing. A first threaded rod is rotatably mounted at the center of the upper and lower ends and the center of the front and rear ends of the inner walls of both housings. A first bevel gear is fixedly mounted at one end of each of the eight first threaded rods. A second bevel gear is rotatably mounted at the center of one side of each of the two housings. An outer rod is fixedly mounted at the center of one side of each of the eight sliders. A limit plate is slidably mounted inside each of the eight outer rods. Multiple limit rods are fixedly mounted on the outer ring of one side of each of the eight limit plates. An inner rod is fixedly mounted at the center of one side of each of the eight limit plates. A clamping plate is fixedly mounted at one end of each of the eight inner rods.
[0010] Furthermore, springs are movably sleeved on the outer walls of the plurality of limiting rods, and the limiting rods located inside the same clamping block slide through one side of the outer rod inside the same clamping block. One side of the eight clamping plates is set as a curved surface, and the other side of the eight clamping plates is set as a flat surface.
[0011] Furthermore, the eight threaded rods are threaded through the eight sliders respectively, and the four bevel gears located inside the same housing are all meshed with the second bevel gear located inside the same housing.
[0012] Furthermore, the two connecting shafts are rotatably mounted at the upper center of opposite sides of the two inner plates and are fixedly connected to the two rotating disks respectively. Synchronous pulleys are fixedly mounted on the motor output end and one end of the connecting shaft located on the same side as the motor. Synchronous belts are movably mounted on the outer walls of the two synchronous pulleys.
[0013] Furthermore, a rotating rod is rotatably provided at the center of each of the two connecting shafts on opposite sides, and the two rotating rods are respectively fixedly connected to two second bevel gears.
[0014] Furthermore, the two longitudinal bevel gears are respectively meshed with the two transverse bevel gears, and the two second threaded rods are respectively threaded through the center of the lower end face of the two inner plates.
[0015] Furthermore, a bracket is fixedly installed at the center of the rear end of the upper surface of the base, and a spray plate is fixedly installed at the upper end of the bracket.
[0016] This utility model has the following beneficial effects:
[0017] 1. This utility model proposes a convenient anti-corrosion coating application device. Pressing the clamping plate on one side of the outer rod drives the inner rod to push the limiting plate to slide inside the outer rod, thereby causing multiple limiting rods to disengage from one side of the outer rod. Then, the clamping plate is rotated to clamp the photovoltaic pillar through a curved surface or a flat surface according to the shape of the photovoltaic pillar. Then, the No. 2 bevel gear is rotated to drive the four No. 1 threaded rods to rotate through the four No. 1 bevel gears, which in turn drive the four sliders to slide towards the center of the outer shell, thereby clamping the photovoltaic pillar and improving the clamping effect on photovoltaic pillars of different shapes.
[0018] 2. This utility model proposes a convenient anti-corrosion coating application device. By rotating the shaft, two longitudinal bevel gears drive two transverse bevel gears to rotate, which in turn drive two No. 2 threaded rods to rotate synchronously. This achieves the synchronous adjustment of the position of the two inner plates inside the two outer plates, thereby enabling the adjustment of the vertical distance between the two rotating disks and the spraying plate. This allows for the adjustment of the coating area of the anti-corrosion coating sprayed by the spraying plate, and enables the spraying of photovoltaic pillars of different diameters, thus saving paint and improving spraying efficiency. Attached Figure Description
[0019] Figure 1 This is an overall isometric schematic diagram of the present invention;
[0020] Figure 2 This is an isometric half-section diagram of the clamping block of this utility model;
[0021] Figure 3 This is a side sectional view of the rotating disk of this utility model;
[0022] Figure 4 This is a schematic diagram of the overall orthographic section of this utility model.
[0023] Legend:
[0024] 1. Base; 2. Clamping block; 3. Transmission mechanism; 4. Spray plate; 5. Bracket; 6. Rotating disk; 7. Inner plate; 8. Outer plate; 9. Adjustment mechanism; 10. Slider; 201. Limiting rod; 202. Spring; 203. Inner rod; 204. Limiting plate; 205. Outer rod; 206. Clamping plate; 301. Motor; 302. Synchronous pulley; 303. Synchronous belt; 304. Connecting shaft; 601. Outer shell; 602. First bevel gear; 603. Second bevel gear; 604. First threaded rod; 901. Transverse bevel gear; 902. Rotating shaft; 903. Longitudinal bevel gear; 904. Second threaded rod. Detailed Implementation
[0025] 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.
[0026] Reference Figures 1 to 4 One embodiment provided by this utility model:
[0027] A convenient anti-corrosion coating application device includes a base 1, a transmission mechanism 3, and eight sliders 10. An adjustment mechanism 9 is provided at the front end of the base 1. The adjustment mechanism 9 includes two transverse bevel gears 901 and a rotating shaft 902. A No. 2 threaded rod 904 is fixedly provided at the center of the upper end face of each of the two transverse bevel gears 901. Longitudinal bevel gears 903 are fixedly sleeved on both sides of the outer wall of the rotating shaft 902. Outer plates 8 are fixedly provided on both sides of the upper end face of the base 1. Inner plates 7 are slidably provided inside each of the two outer plates 8. A transmission mechanism 3 is provided at the upper center of the two inner plates 7 on opposite sides. The transmission mechanism 3 includes a motor 301 and two connecting shafts 304. The motor 301 is fixedly provided at the upper side of one of the two inner plates 7. A rotating disk 6 is rotatably provided at the upper center of the two inner plates 7 on opposite sides.
[0028] Both rotating disks 6 include a housing 601. A first threaded rod 604 is rotatably mounted at the center of the upper and lower ends and the center of the front and rear ends of the inner wall of both housings 601. A first bevel gear 602 is fixedly mounted at one end of each of the eight first threaded rods 604. A second bevel gear 603 is rotatably mounted at the center of one side of each of the two housings 601. An outer rod 205 is fixedly mounted at the center of one side of each of the eight sliders 10. A limit plate 204 is slidably mounted inside each of the eight outer rods 205. Multiple limit rods 201 are fixedly mounted on the outer ring of one side of each of the eight limit plates 204. An inner rod 203 is fixedly mounted at the center of one side of each of the eight limit plates 204. A clamping plate 206 is fixedly mounted at one end of each of the eight inner rods 203.
[0029] Specifically, the adjustment mechanism 9 can adjust the position of the inner plate 7 on the inner wall of the outer plate 8, thereby adjusting the vertical distance between the two rotating disks 6 and the spraying plate 4, and thus adjusting the coverage area of the coating sprayed by the spraying plate 4. The transmission mechanism 3 can drive one of the rotating disks 6 to rotate, making the anti-corrosion coating sprayed more evenly. The rotating disk 6 can adjust the position of the clamping block 2, thereby achieving the clamping and fixing effect of the support column, and the clamping block 2 can achieve the stable clamping effect of supports of different shapes.
[0030] Reference Figure 1 , Figure 2 Multiple limiting rods 201 are movably sleeved with springs 202 on their outer walls. Among the multiple limiting rods 201, the limiting rods 201 located inside the same clamping block 2 slide through one side of the outer rod 205 inside the same clamping block 2. One side of the eight clamping plates 206 is set as a curved surface, and the other side of the eight clamping plates 206 is set as a flat surface.
[0031] Specifically, the spring 202 can pull the limiting plate 204 upward, thereby fixing the rotation angle of the clamping plate 206. This allows for easy selection of the orientation of the curved and flat surfaces of the clamping plate 206 according to the shape of the support column, thus improving the clamping and fixing effect on supports with different shapes.
[0032] Reference Figure 2 , Figure 3 Eight No. 1 threaded rods 604 are threaded through eight sliders 10 respectively. Among the eight No. 1 bevel gears 602, four No. 1 bevel gears 602 located inside the same housing 601 are all meshed with No. 2 bevel gears 603 located inside the same housing 601.
[0033] Specifically, rotating the second bevel gear 603 drives the four first bevel gears 602 inside the same housing 601 to rotate, which in turn drives the four first threaded rods 604 to rotate synchronously, thereby achieving the effect of adjusting the position of the slider 10.
[0034] Reference Figure 1 , Figure 4 Two connecting shafts 304 are respectively rotatably set at the upper center of the opposite side of the two inner plates 7 and are respectively fixedly connected to the two rotating disks 6. The output end of the motor 301 and one end of the connecting shaft 304 located on the same side as the motor 301 are both fixedly provided with synchronous pulleys 302. Synchronous belts 303 are movably provided on the outer wall of the two synchronous pulleys 302.
[0035] Specifically, the motor 301 drives the upper synchronous pulley 302 to rotate, and the synchronous belt 303 drives the lower synchronous pulley 302 to rotate, thereby achieving the rotation effect of the connecting shaft 304.
[0036] Reference Figure 1 , Figure 3 , Figure 4 Two rotating rods are rotatably installed at the center of one side of the two connecting shafts 304, and the two rotating rods are fixedly connected to two second bevel gears 603 respectively.
[0037] Specifically, rotating the two rotating rods can drive the two second bevel gears 603 to rotate, thereby achieving the effect of adjusting the position of the slider 10.
[0038] Reference Figure 3 , Figure 4Two longitudinal bevel gears 903 are respectively meshed with two transverse bevel gears 901, and two threaded rods 904 are respectively threaded through the center of the lower end face of the two inner plates 7.
[0039] Specifically, the rotating shaft 902 drives two transverse bevel gears 901 to rotate via two longitudinal bevel gears 903, which in turn drives two threaded rods 904 to rotate synchronously, thereby achieving the effect of adjusting the height of the inner plate 7.
[0040] Reference Figure 1 , Figure 4 A bracket 5 is fixedly installed at the center of the rear end of the upper surface of the base 1, and a spray plate 4 is fixedly installed on the upper end of the bracket 5.
[0041] Specifically, the base 1 supports the spray plate 4, thereby spraying the support column through the spray plate 4.
[0042] Working principle: Rotating the rotating shaft 902 drives the two No. 2 threaded rods 904 to rotate synchronously, thereby adjusting the height of the inner plate 7, which in turn adjusts the vertical distance between the two rotating disks 6 and the spray plate 4, thus adjusting the coating coverage area. Then, pressing the clamping plate 206 causes the limiting rod 201 to disengage from the outer rod 205 and rotate, thereby adjusting the orientation of the curved and flat surfaces of the clamping plate 206. Then, rotating the rotating rod drives the No. 1 threaded rod 604 to rotate through the No. 2 bevel gear 603 and the No. 1 bevel gear 602, thereby adjusting the position of the slider 10 and the clamping block 2, thus achieving the clamping effect on pillars of different shapes.
[0043] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model 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 utility model should be included within the protection scope of the present utility model.
Claims
1. A convenient anti-corrosion coating application device, comprising a base (1), a transmission mechanism (3), and eight sliders (10), characterized in that: The base (1) is provided with an adjustment mechanism (9) at its front end. The adjustment mechanism (9) includes two transverse bevel gears (901) and a rotating shaft (902). A second threaded rod (904) is fixedly provided at the center of the upper end face of each of the two transverse bevel gears (901). A longitudinal bevel gear (903) is fixedly sleeved on both sides of the outer wall of the rotating shaft (902). An outer plate (8) is fixedly provided on both sides of the upper end face of the base (1). An inner plate (7) is slidably provided inside each of the two outer plates (8). A transmission mechanism (3) is provided at the upper end of the center of the two inner plates (7) on opposite sides. The transmission mechanism (3) includes a motor (301) and two connecting shafts (304). The motor (301) is fixedly provided on the upper end of one of the inner plates (7). A rotating disk (6) is rotatably provided at the upper end of the center of the opposite side of the two inner plates (7). Both of the rotating disks (6) include a housing (601). A first threaded rod (604) is rotatably arranged at the center of the upper and lower ends and the center of the front and rear ends of the inner wall of the two housings (601). A first bevel gear (602) is fixedly arranged at one end of each of the eight first threaded rods (604). A second bevel gear (603) is rotatably arranged at the center of one side of the two housings (601). An outer rod (205) is fixedly arranged at the center of one side of each of the eight sliders (10). A limit plate (204) is slidably arranged inside each of the eight outer rods (205). Multiple limit rods (201) are fixedly arranged at the outer ring of one side of each of the eight limit plates (204). An inner rod (203) is fixedly arranged at the center of one side of each of the eight limit plates (204). A clamping plate (206) is fixedly arranged at one end of each of the eight inner rods (203). A spring (202) is movably sleeved on the outer wall of each of the multiple limiting rods (201). The limiting rods (201) located inside the same clamping block (2) slide through one side of the outer rod (205) inside the same clamping block (2). One side of each of the eight clamping plates (206) is set as a curved surface, and the other side of each of the eight clamping plates (206) is set as a flat surface.
2. The easy-to-use anti-corrosion coating application device according to claim 1, characterized in that: The eight threaded rods (604) are threaded through the eight sliders (10) respectively. The four bevel gears (602) located inside the same housing (601) of the eight bevel gears (602) are all meshed with the second bevel gear (603) located inside the same housing (601).
3. The easy-to-use anti-corrosion coating application device according to claim 1, characterized in that: The two connecting shafts (304) are respectively rotatably set at the upper center of the opposite side of the two inner plates (7) and are respectively fixedly connected to the two rotating disks (6). The output end of the motor (301) and one end of the connecting shaft (304) located on the same side as the motor (301) are both fixedly provided with synchronous pulleys (302). The outer walls of the two synchronous pulleys (302) are movably provided with synchronous belts (303).
4. The easy-to-use anti-corrosion coating application device according to claim 1, characterized in that: Each of the two connecting shafts (304) has a rotating rod rotatably mounted at the center of one side away from each other, and the two rotating rods are respectively fixedly connected to two second bevel gears (603).
5. The easy-to-use anti-corrosion coating application device according to claim 1, characterized in that: The two longitudinal bevel gears (903) are respectively meshed with the two transverse bevel gears (901), and the two threaded rods (904) are respectively threaded through the center of the lower end face of the two inner plates (7).
6. The easy-to-use anti-corrosion coating application device according to claim 1, characterized in that: A bracket (5) is fixedly installed at the center of the rear end of the upper surface of the base (1), and a spray plate (4) is fixedly installed on the upper end of the bracket (5).