Surface coating device for anchor bolt machining
By designing a surface coating device that includes rotating components, spraying components, cleaning components and drying components, the problem that traditional devices cannot remove burrs and oil stains on the anchor bolt surface is solved, efficient coating treatment and rapid drying are achieved, and coating quality and efficiency are improved.
Patent Information
- Application Number
- CN202421722920.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-20
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-20
AI Technical Summary
Traditional surface coating devices cannot effectively remove burrs and oil stains on the surface of the anchor bolt, affecting the adhesion and quality of the coating.
A surface coating device including a coating box, a rotating assembly, a spray assembly, a cleaning assembly and a drying assembly is designed. The rotating assembly drives the anchor bolt rotation, and the spray assembly and cleaning assembly clean the surface of the surface during rotation, and the drying assembly quickly drys the surface.
It effectively removes burrs and oil stains on the surface during anchor slab coating, improves the adhesion and quality of the coating, and quickly drys the surface, improving the overall coating efficiency.
Smart Images

Figure CN222931112U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of anchor bolt processing equipment, in particular to a surface coating device for anchor bolt processing. Background Technique
[0002] The purpose of anchor bolt processing and coating is to improve the performance of anchor bolts such as corrosion resistance, wear resistance, and aesthetics. Surface pretreatment is a very important step in the coating process, and its purpose is to ensure that the surface of the workpiece to be coated is clean, free of oil and rust, so as to improve the adhesion of the coating.
[0003] At present, the functions of traditional surface coating devices are single, and they cannot remove burrs, oil and other substances on the surface of bolts. Therefore, the utility model proposes a surface coating device for anchor bolt processing that is different from the prior art to solve the above technical problems. Content of the Utility Model
[0004] In order to improve the problem that the traditional surface coating device mentioned above cannot remove burrs, oil and other substances on the surface of bolts, the utility model provides a surface coating device for anchor bolt processing.
[0005] The utility model provides a surface coating device for anchor bolt processing, and adopts the following technical scheme:
[0006] A surface coating device for anchor bolt processing includes a coating box body. A first rotating component is fixed on the top wall of the coating box body. A second rotating component is installed on the first rotating component. A bracket is fixed on the outer wall of one side of the coating box body. A spraying component extending into the inner cavity of the coating box body is fixed at the top wall position of the bracket. A cleaning component extending into the inner cavity of the coating box body is fixed at the bottom position of the outer wall of the coating box body. A coating spray head extending into the inner cavity of the coating box body is installed on the outer wall of the other side of the coating box body. A drying component is installed at the middle position of the bottom wall of the coating box body.
[0007] By adopting the above technical scheme, start the first rotating component and the second rotating component to drive the anchor bolt to be coated to rotate, start the spraying component and the cleaning component to clean and remove burrs and oil on the surface during the rotation of the anchor bolt to be coated, and start the drying component to quickly dry the surface of the anchor bolt to be coated.
[0008] Optionally, the first rotating component includes a second forward and reverse motor, which is fixed at the middle position of the top wall of the coating box body. The output end of the second forward and reverse motor is provided with a second rotating shaft extending into the inner cavity of the coating box body. A second fixed cross plate is fixed at the bottom position of the second rotating shaft.
[0009] By adopting the above technical scheme, start the second forward and reverse motor to drive the second rotating shaft and the second fixed cross plate to rotate, and then the robotic arm can be driven to rotate synchronously.
[0010] Optionally, the second rotating assembly includes a first forward and reverse motor fixed at one end of the top wall of the second fixed horizontal plate. A first rotating shaft penetrating the second fixed horizontal plate is installed at the output end of the first forward and reverse motor. A first fixed horizontal plate is fixed at the bottom end position of the first rotating shaft, and a robotic arm is fixed at the bottom wall position of the first fixed horizontal plate.
[0011] By adopting the above technical solution, starting the first forward and reverse motor drives the first rotating shaft and the first fixed horizontal plate to rotate, and then the robotic arm can be driven to rotate synchronously.
[0012] Optionally, the spraying assembly includes a water tank fixed on the top wall of the bracket. A pluggable soft plug is arranged at the top wall position of the water tank. A submersible pump is fixed at the bottom wall position of the inner cavity of the water tank, and a spray pipe extending into the inner cavity of the coating box is installed at the output end of the submersible pump.
[0013] Optionally, the cleaning assembly includes a cylinder. There are multiple groups of cylinders fixed on the outer wall of the coating box. At the end of the horizontal output shafts of the multiple groups of cylinders, an installation vertical plate extending into the inner cavity of the coating box is fixed, and a brush is fixed on the outer wall of the installation vertical plate.
[0014] By adopting the above technical solution, synchronously starting the multiple groups of cylinders to extend drives the installation vertical plate and the brush to move synchronously and contact the anchor bolts to be coated. Starting the submersible pump to draw the clear water in the inner cavity of the water tank and spraying it onto the surface of the brush through the spray pipe, so that the burrs and oil stains on the surface can be cleaned and removed during the rotation of the anchor bolts to be coated.
[0015] Optionally, the drying assembly includes an installation frame fixedly embedded in the bottom wall of the coating box. Multiple groups of high-temperature resistant fans are evenly fixed on the inner wall of the installation frame, and multiple groups of electric heating tubes are evenly fixedly embedded on the outer wall of the installation frame.
[0016] By adopting the above technical solution, starting the second forward and reverse motor drives the robotic arm to rotate synchronously to the position directly behind the installation frame. Starting the electric heating tubes to generate heat can heat the air in the inner cavity of the installation frame. Starting the multiple groups of high-temperature resistant fans to generate air currents and blowing them onto the surface of the anchor bolts to be coated, so that the surface of the anchor bolts to be coated can be quickly dried.
[0017] Optionally, multiple groups of discharge pipes are evenly fixed on one side of the bottom wall of the coating box.
[0018] By adopting the above technical solution, opening the control valve on the discharge pipe allows the sewage to be discharged through the discharge pipe.
[0019] Optionally, multiple groups of support plates in contact with the bottom wall position of the second fixed horizontal plate are evenly fixed at the top wall position of the inner cavity of the coating box.
[0020] By adopting the above technical solution, the second fixed cross plate can move synchronously on multiple groups of supporting plates during the rotation process, so that the stability of the second fixed cross plate can be improved under the supporting action of multiple groups of supporting plates.
[0021] Optionally, a switch door body is hinged to the front side wall of the coating box body through a hinge.
[0022] By adopting the above technical solution, it is convenient to take and place the anchor bolts by opening and closing the switch door body.
[0023] In summary, the present utility model has at least one of the following beneficial effects:
[0024] Start the first forward and reverse motor to drive the first rotating shaft, the first fixed cross plate and the robotic arm to rotate synchronously. Synchronously start multiple groups of cylinders to extend, drive the installation vertical plate and the brush to move synchronously and contact the anchor bolts to be coated. Start the submersible pump to draw the clear water in the inner cavity of the water tank and spray it onto the surface of the brush through the spray pipe, so that the burrs and oil stains on the surface can be cleaned and removed during the rotation of the anchor bolts to be coated;
[0025] Start the electric heating tube to generate heat, so as to heat the air in the inner cavity of the installation frame. Start multiple groups of high-temperature resistant fans to generate horizontal air flows and blow them onto the surface of the electric heating tube and the anchor bolts to be coated, so that the surface of the anchor bolts to be coated can be quickly dried. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a front view sectional structure schematic diagram of the present utility model;
[0027] Figure 2 It is a front view structure schematic diagram of the present utility model;
[0028] Figure 3 It is a top view sectional structure schematic diagram of the present utility model.
[0029] In the figure: 1, electric heating tube; 2, high-temperature resistant fan; 3, coating nozzle; 4, installation frame; 5, coating box body; 6, discharge pipe; 7, brush; 8, cylinder; 9, installation vertical plate; 10, spray pipe; 11, bracket; 12, submersible pump; 13, robotic arm; 14, first fixed cross plate; 15, soft plug; 16, water tank; 17, first rotating shaft; 18, first forward and reverse motor; 19, second forward and reverse motor; 20, second rotating shaft; 21, second fixed cross plate; 22, supporting plate; 23, switch door body. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0030] The following is a further detailed description of the present utility model in conjunction with the attached Figures 1 - 3 figures.
[0031] Please refer to the drawings in the specification Figure 1 and2 , an embodiment provided by the present utility model: a surface coating device for anchor bolt processing, including a coating box body 5. The front side wall of the coating box body 5 is hinged with a switch door body 23 through a hinge. A vertical handle and a lock body are installed on the outside of the switch door body 23. A first rotating component is fixed on the top wall of the coating box body 5. The first rotating component includes a second forward and reverse motor 19. The second forward and reverse motor 19 is fixed at the middle position of the top wall of the coating box body 5. The output end of the second forward and reverse motor 19 is installed with a second rotating shaft 20 extending into the inner cavity of the coating box body 5. The bottom end of the second rotating shaft 20 is fixed with a second fixed cross plate 21. A second rotating component is installed on the second fixed cross plate 21. The second rotating component includes a first forward and reverse motor 18. The first forward and reverse motor 18 is fixed at one end of the top wall of the second fixed cross plate 21.
[0032] Please refer to the attached drawings in the specification Figure 1 , the output end of the first forward and reverse motor 18 is installed with a first rotating shaft 17 passing through the second fixed cross plate 21. The bottom end of the first rotating shaft 17 is fixed with a first fixed cross plate 14. A robotic arm 13 is fixed at the bottom wall position of the first fixed cross plate 14. A bracket 11 is fixed on the outer wall of one side of the coating box body 5. A spraying component is fixed at the top wall position of the bracket 11. The spraying component includes a water tank 16. The water tank 16 is fixed on the top wall of the bracket 11. A pluggable soft plug 15 is arranged at the top wall position of the water tank 16.
[0033] Please refer to the attached drawings in the specification Figure 1 and 3 , a submersible pump 12 is fixed at the bottom wall position of the inner cavity of the water tank 16. The output end of the submersible pump 12 is installed with a spray pipe 10 extending into the inner cavity of the coating box body 5. A cleaning component is fixed at the bottom end position of the outer wall of the coating box body 5. The cleaning component includes a cylinder 8. Multiple groups of cylinders 8 are fixed on the outer wall of the coating box body 5. The end of the horizontal output shaft of multiple groups of cylinders 8 is fixed with an installation vertical plate 9 extending into the inner cavity of the coating box body 5. A brush 7 is fixed on the outer wall of the installation vertical plate 9.
[0034] Start the first forward and reverse motor 18 to drive the first rotating shaft 17, the first fixed cross plate 14 and the robotic arm 13 to rotate synchronously. Synchronously start multiple groups of cylinders 8 to extend to drive the installation vertical plate 9 and the brush 7 to move synchronously. Start the submersible pump 12 to draw the clear water in the inner cavity of the water tank 16 and spray it onto the surface of the brush 7 through the spray pipe 10, so that the burrs and oil stains on the surface can be cleaned and removed during the rotation of the anchor bolt to be coated.
[0035] Please refer to the attached drawings in the specification Figure 1 , 2As shown in FIGS. 2 and 3, multiple groups of coating nozzles 3 are installed on the outer wall of the other side of the coating box body 5. The end of the coating nozzle 3 is communicated with the material spraying equipment of the prior art. A drying component is installed at the middle position of the bottom wall of the coating box body 5. The drying component includes a mounting frame 4. The mounting frame 4 is fixedly embedded in the bottom wall of the coating box body 5. Multiple groups of high-temperature resistant fans 2 are evenly fixed on the inner wall of the mounting frame 4. Multiple groups of electric heating tubes 1 are evenly fixedly embedded on the outer wall of the mounting frame 4.
[0036] Start the second forward and reverse motor 19 to drive the robotic arm 13 to rotate synchronously to the position directly behind the mounting frame 4. Start the electric heating tube 1 to generate heat, thereby heating the air in the inner cavity of the mounting frame 4. Start multiple groups of high-temperature resistant fans 2 to generate a horizontal air flow and blow it towards the electric heating tube 1 and the surface of the anchor bolts to be coated.
[0037] Please refer to the attached drawings in the specification Figure 1 、 2 As shown in FIGS. 2 and 3, multiple groups of discharge pipes 6 are evenly fixed on one side position of the bottom wall of the coating box body 5. The discharge pipes 6 are arranged on the side close to the brush 7. A control valve is installed outside the discharge pipes 6. Open the control valve on the discharge pipes 6 to discharge the sewage through the discharge pipes 6.
[0038] Please refer to the attached drawings in the specification Figure 1 As shown in FIG. 2, multiple groups of support plates 22 that are in contact with the bottom wall of the second fixed cross plate 21 are evenly fixed at the position of the top wall of the inner cavity of the coating box body 5. The longitudinal section of the support plate 22 is set in an L shape. During the rotation process of the second fixed cross plate 21, it can move synchronously on multiple groups of support plates 22, thereby improving the stability of the second fixed cross plate 21 under the support of multiple groups of support plates 22.
[0039] Working principle: When using the surface coating device for anchor bolts, open the switch door body 23 and fix the anchor bolts to be coated on the robotic arm 13. Start the first forward and reverse motor 18 to drive the first rotating shaft 17 and the first fixed cross plate 14 to rotate, and then drive the robotic arm 13 to rotate synchronously. Synchronously start multiple groups of cylinders 8 to extend, driving the mounting vertical plate 9 and the brush 7 to move synchronously and contact the anchor bolts to be coated. Pull out the soft plug 15 and inject an appropriate amount of clean water into the inner cavity of the water tank 16. Start the submersible pump 12 to draw the clean water in the inner cavity of the water tank 16 and spray it onto the surface of the brush 7 through the spray pipe 10, so as to clean and remove the burrs and oil stains on the surface during the rotation of the anchor bolts to be coated. Open the control valve on the discharge pipes 6 to discharge the sewage through the discharge pipes 6.
[0040] Start the second forward and reverse motor 19 to drive the second rotating shaft 20 and the second fixed cross plate 21 to rotate, and then the robotic arm 13 can be driven to rotate synchronously to the position directly behind the mounting bracket 4. Start the electric heating tube 1 to generate heat, thereby heating the air inside the mounting bracket 4. Start multiple groups of high-temperature resistant fans 2 to generate horizontal air currents and blow them towards the electric heating tube 1 and the surface of the anchor bolts to be coated, so as to quickly dry the surface of the anchor bolts to be coated.
[0041] Continue to start the second forward and reverse motor 19 to drive the second fixed cross plate 21 and the anchor bolts to be coated to rotate to the position directly in front of multiple groups of coating nozzles 3. Start the spraying equipment of the prior art and use multiple groups of coating nozzles 3 to perform coating treatment on the surface of the anchor bolts to be coated. The second fixed cross plate 21 can move synchronously on multiple groups of support plates 22 during the rotation process, so as to improve the stability of the second fixed cross plate 21 under the support of multiple groups of support plates 22.
[0042] The standard parts used in this utility model document can all be purchased from the market. Each component in this utility model document can be customized according to the description in the specification and the drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts, and equipment all adopt conventional models in the prior art. Coupled with the circuit connection adopting the conventional connection method in the prior art, no specific description will be made here.
[0043] The above are all the preferred embodiments of this utility model, and the protection scope of this utility model is not limited hereby. Therefore, all equivalent changes made according to the structure, shape, and principle of this utility model should be covered within the protection scope of this utility model.
Claims
1. A surface coating device for anchor bolt processing, comprising a coating box (5), characterized in that: A first rotating component is fixed to the top wall of the coating box (5), a second rotating component is mounted on the first rotating component, a bracket (11) is fixed to the outer wall of one side of the coating box (5), a spray component extending into the inner cavity of the coating box (5) is fixed to the top wall of the bracket (11), a cleaning component extending into the inner cavity of the coating box (5) is fixed to the bottom end of the outer wall of the coating box (5), a coating nozzle (3) extending into the inner cavity of the coating box (5) is mounted on the outer wall of the other side of the coating box (5), and a drying component is mounted at the middle position of the bottom wall of the coating box (5).
2. The surface coating device for anchor bolt processing according to claim 1, characterized in that: The first rotating assembly comprises a second forward and reverse motor (19), the second forward and reverse motor (19) is fixed at the middle position of the top wall of the coating box (5), the output end of the second forward and reverse motor (19) is equipped with a second rotating shaft (20) extending into the inner cavity of the coating box (5), and the bottom end of the second rotating shaft (20) is fixed with a second fixed horizontal plate (21).
3. The surface coating device for anchor bolt processing according to claim 2, characterized in that: The second rotating assembly comprises a first forward and reverse motor (18), the first forward and reverse motor (18) being fixed to one end of the top wall of the second fixed horizontal plate (21), a first rotating shaft (17) penetrating the second fixed horizontal plate (21) being installed at the output end of the first forward and reverse motor (18), a first fixed horizontal plate (14) being fixed to the bottom end of the first rotating shaft (17), and a mechanical arm (13) being fixed to the bottom wall of the first fixed horizontal plate (14).
4. The surface coating device for anchor bolt processing according to claim 1, characterized in that: The spray assembly comprises a water tank (16), the water tank (16) being fixed on the top wall of the bracket (11), a pluggable soft plug (15) being provided on the top wall of the water tank (16), a submersible pump (12) being fixed on the bottom wall of the inner cavity of the water tank (16), and a nozzle (10) extending into the inner cavity of the coating box (5) being installed at the output end of the submersible pump (12).
5. The surface coating device for anchor bolt processing according to claim 1, characterized in that: The cleaning component comprises a cylinder (8), and the cylinder (8) is provided in a plurality of groups. The plurality of groups of the cylinder (8) are fixed on the outer wall of the coating box (5), and the ends of the horizontal output shafts of the plurality of groups of the cylinder (8) are fixed with mounting vertical plates (9) extending into the inner cavity of the coating box (5), and the outer walls of the mounting vertical plates (9) are fixed with brushes (7).
6. The surface coating device for anchor bolt processing according to claim 1, characterized in that: The drying component comprises a mounting frame (4), wherein the mounting frame (4) is fixedly embedded on the bottom wall of the coating box (5), a plurality of groups of high temperature resistant fans (2) are evenly fixed on the inner wall of the mounting frame (4), and a plurality of groups of electric heating tubes (1) are evenly fixedly embedded on the outer wall of the mounting frame (4).
7. The surface coating device for anchor bolt processing according to claim 1, characterized in that: A plurality of groups of discharge pipes (6) are evenly fixed at one side of the bottom wall of the coating box (5).
8. The surface coating device for anchor bolt processing according to claim 2, characterized in that: A plurality of groups of support plates (22) in contact with the bottom wall of the second fixed transverse plate (21) are evenly fixed on the top wall of the inner cavity of the coating box (5).
9. The surface coating device for anchor bolt processing according to claim 1, characterized in that: The front side wall of the coating box (5) is hingedly connected with a switch door (23) via a hinge.