Stainless steel plate surface coloring device

By designing a stainless steel plate surface coloring device, which uses a gear and rack structure and cylinder drive to achieve automatic flipping, the problems of product damage and low efficiency caused by manual flipping are solved, and a highly efficient and precise stainless steel plate coloring process is achieved.

CN224167762UActive Publication Date: 2026-04-28HENAN TIANHONG METAL MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN TIANHONG METAL MATERIALS CO LTD
Filing Date
2025-04-17
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In the existing technology, the process of coloring stainless steel plates involves manual flipping, which consumes a lot of manpower and time and is difficult to guarantee in terms of precision and consistency. This results in product quality damage and low production efficiency, which cannot meet the needs of large-scale and efficient production.

Method used

Design a stainless steel plate surface coloring device that uses a gear and rack structure and cylinder drive to realize the automatic flipping of stainless steel plates. The meshing of gears and racks drives the stainless steel plates to flip, ensuring the accuracy and stability of the flipping process and avoiding damage caused by manual operation.

Benefits of technology

It improves the coloring efficiency of stainless steel sheets, ensures that product quality is not damaged, reduces labor intensity and production costs, and meets the needs of modern production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stainless steel machining equipment, and discloses a stainless steel plate surface coloring device which comprises a spraying frame, supporting columns are fixedly connected to the outer walls of the two sides of the spraying frame, moving seats are movably installed on the outer walls of the two supporting columns, and fixing assemblies are movably installed on the outer walls of the moving seats. A gear is rotatably connected to the outer wall of the moving seat, an inner groove is formed in one side of the supporting column, limiting grooves are formed in the outer walls of the two sides of the inner groove, racks are slidably connected to the inner groove through the two limiting grooves, a second air cylinder is fixedly connected to the side outer wall of the supporting column, a sliding frame is slidably connected to the supporting column, and a stabilizing assembly is fixedly connected to the outer wall of the gear. According to the stainless steel plate turnover device, a stainless steel plate can be turned over along with rotation of the gear, the stainless steel plate is prone to scraping and colliding with surrounding objects due to misoperation, unnecessary contact between the stainless steel plate and other objects is eradicated, and the whole turnover process is stable and accurate.
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Description

Technical Field

[0001] This utility model application relates to the field of stainless steel processing equipment technology, and in particular to a device for coloring the surface of stainless steel plates. Background Technology

[0002] In the processing of stainless steel sheets, surface coloring plays a crucial role. It not only significantly enhances the aesthetics of products and gives them a unique visual effect, but also greatly increases their added value. With the booming development of various industries such as architectural decoration, home furnishings, and electronic equipment, the market demand for surface coloring of stainless steel sheets is showing a rapid growth trend. In the field of architectural decoration, designers often hope to create unique architectural appearances and interior spaces through the rich and diverse colors of stainless steel sheets, which places extremely high demands on the richness, durability, and uniformity of the coloring.

[0003] Regarding the aforementioned technologies, the inventors believe that when it comes to coloring both sides of stainless steel plates, operators mainly rely on manual flipping of the stainless steel plates. This method not only consumes a lot of manpower and time, greatly increasing labor intensity, but also, due to the unavoidable uncertainty of manual operation, it is difficult to ensure that each flipping achieves a precise and consistent effect. During frequent flipping, the surface of the stainless steel plate is easily damaged by scratches, collisions, etc. due to improper operation, which undoubtedly seriously affects the quality of the product. More importantly, the low efficiency of manual flipping seriously restricts the production progress and cannot meet the needs of large-scale, high-efficiency modern production, thus leading to a significant increase in enterprise production costs. In the fierce market competition, the enterprise's competitiveness is also weakened. Therefore, a stainless steel plate surface coloring device is proposed to solve the above problems.

[0004] The information disclosed in this background section is only intended to enhance the understanding of the background technology of this application, and therefore may include prior art that is not known to those skilled in the art. Utility Model Content

[0005] To address the aforementioned problems, this application provides a coloring device for stainless steel sheet surfaces.

[0006] The stainless steel plate surface coloring device provided in this utility model application adopts the following technical solution:

[0007] A stainless steel plate surface coloring device includes a spraying frame. Support columns are fixedly connected to the outer walls of both sides of the spraying frame. Movable seats are movably mounted on the outer walls of both support columns. Fixed components are movably mounted on the outer walls of the movable seats. A gear is rotatably connected to the outer wall of one of the movable seats. An inner groove is formed inside one side of the support column. Limiting grooves are formed on both outer walls of the inner groove. A rack is slidably connected to the inner groove through the two limiting grooves. The gear is adapted to the rack. A second cylinder is fixedly connected to the outer wall of the support column, and the output end of the second cylinder is fixedly connected to the rack. A sliding frame is slidably connected to the support column, and the gear rotates through the sliding frame and is fixedly connected to a stabilizing component.

[0008] Preferably, the fixing component includes a fixing frame, and the fixing frame is fixedly connected to the gear. The outer walls on both sides of the fixing frame are rotatably connected to rotating frames, and the outer wall of the rotating frame is threadedly connected to a threaded rod. The outer wall of the threaded rod is rotatably connected to a fixing suction cup.

[0009] Preferably, the stabilizing component includes a rotating rod, which rotates through the sliding frame and is fixedly connected to the gear. An extension frame is fixedly connected to the bottom outer wall of the sliding frame, and a spring is installed between the extension frame and the rotating rod. The two ends of the spring are movably installed with the rotating rod and the extension frame, respectively. Two stop bars are fixedly connected to the outer walls on both sides of the sliding frame, and the two stop bars are horizontally symmetrically distributed.

[0010] Preferably, a cylinder is fixedly connected to the top outer wall of the support column, and the output end of the cylinder is fixedly connected to the movable seat.

[0011] Preferably, two sliders are fixedly connected to the outer walls on both sides of the movable seat, and the movable seat is slidably connected to the movable seat through the two sliders.

[0012] In summary, this application includes the following beneficial technical effects:

[0013] This device uses a movable base to move a gear downwards, causing the rack and gear to mesh and rotate 180 degrees. Because the gear is tightly connected to the fixed frame, which firmly holds the stainless steel plate, the plate flips as the gear rotates. Throughout the process, the plate is securely fixed to the frame. Compared to manual flipping, where the stainless steel plate is prone to scratching or colliding with surrounding objects due to improper operation, this device, with its precise mechanical control, eliminates unnecessary contact between the stainless steel plate and other objects. The entire flipping process is smooth and accurate, effectively preventing damage to the plate surface, ensuring product quality is not affected by the flipping operation, and improving coloring efficiency. Attached Figure Description

[0014] Figure 1This is an overall schematic diagram of Embodiment 1 of the application;

[0015] Figure 2 This is a three-dimensional structural schematic diagram of Embodiment 1 of the application;

[0016] Figure 3 This is a partial structural cross-sectional view of Embodiment 1 of the application;

[0017] Figure 4 This is a partial structural schematic diagram of Embodiment 1 of the application.

[0018] Explanation of reference numerals in the attached drawings: 1. Spraying frame; 2. Support column; 3. Cylinder 1; 4. Fixed frame; 5. Moving seat; 7. Cylinder 2; 8. Inner groove; 9. Rack; 10. Limiting groove; 11. Extension frame; 12. Spring component; 13. Rotating rod; 14. Stop bar; 15. Sliding frame; 16. Gear; 17. Sliding block; 18. Rotating frame; 19. Threaded rod; 20. Fixed suction cup. Detailed Implementation

[0019] The following is in conjunction with the appendix Figure 1 - Figure 4 This application will be described in further detail.

[0020] A stainless steel sheet surface coloring device includes a spray frame 1. Support columns 2 are fixedly connected to the outer walls of both sides of the spray frame 1. The spray frame 1 serves as the core carrier for the coloring operation, providing a stable mounting position for the spraying tools and ensuring smooth coloring operations. The painting device, which is existing technology, is installed above the spray frame 1 and is not shown in the figure. Movable seats 5 are movably installed on the outer walls of both support columns 2. Driving the movable seats 5 to move up and down along the support columns 2 facilitates subsequent flipping operations on the stainless steel sheet. Fixing components are movably installed on the outer walls of the movable seats 5. The stainless steel plate can be fixed by the fixing components on both sides of the support column 2, which facilitates the coloring process and subsequent flipping. A gear 16 is rotatably connected to the outer wall of one of the movable seats 5. An inner groove 8 is formed inside one side of the support column 2, and limit grooves 10 are formed on both outer walls of the inner groove 8. A rack 9 is slidably connected to the inner groove 8 through the two limit grooves 10. The inner groove 8 and the limit grooves 10 provide a track for the precise sliding of the rack 9, ensuring its smooth operation. The gear 16 is compatible with the rack 9, and the outer wall of the support column 2 is fixedly connected. There is a second cylinder 7, and the output end of the second cylinder 7 is fixedly connected to the rack 9. The extension and retraction of the rack 9 are controlled by the second cylinder 7, thus facilitating the flipping of the stainless steel plate. When the stainless steel plate needs to be flipped, the moving seat 5 is moved downward. At this time, the rack 9 is in an extended state. During the downward movement, the gear 16 engages with the rack 9, causing the gear 16 to rotate. This provides power for the rotation of the fixed component, which drives the stainless steel plate to flip, thereby improving the flipping efficiency. After the flipping is completed, the moving seat 5 is moved upward, causing the second cylinder 7 to extend and retract. 7 drives the rack 9 to retract, thus preventing the gear 16 from rotating, thereby moving the stainless steel plate to the top to complete the coloring operation on the other side. The support column 2 is slidably connected to the sliding frame 15, which provides support for the gear 16 and the stabilizing component, ensuring that the gear 16 rotates smoothly and plays a guiding role during the operation of the device, ensuring that each component moves according to the designed trajectory. The gear 16 rotates through the sliding frame 15 and is fixedly connected to the stabilizing component. The stabilizing component ensures the safe and stable operation of the device, ensuring that the gear 16 is unlikely to rotate when flipping the plate, thus affecting the coloring operation.

[0021] The fixing assembly includes a fixing frame 4, which is fixedly connected to a gear 16. Rotating frames 18 are rotatably connected to both outer walls of the fixing frame 4, and threaded rods 19 are threadedly connected to the outer walls of the rotating frames 18. A fixed suction cup 20 is rotatably connected to the outer wall of the threaded rod 19. By placing a stainless steel plate on the fixing frame 4 and rotating the rotating frames 18, the operator brings the fixed suction cup 20 closer to the stainless steel plate. This allows the threaded rod 19 to rotate, and since the fixed suction cup 20 is rotatably connected to the outer wall of the threaded rod 19, when the threaded rod 19 contacts the surface of the stainless steel plate, the suction force firmly fixes the stainless steel plate to the device, preventing displacement of the plate during the coloring process and ensuring coloring accuracy.

[0022] The stabilizing component includes a rotating rod 13, which rotates through the sliding frame 15 and is fixedly connected to the gear 16. An extension frame 11 is fixedly connected to the bottom outer wall of the sliding frame 15, and a spring 12 is installed between the extension frame 11 and the rotating rod 13. The two ends of the spring 12 are movably installed with the rotating rod 13 and the extension frame 11, respectively. Two stop bars 14 are fixedly connected to the outer walls of both sides of the sliding frame 15, and the two stop bars 14 are horizontally symmetrically distributed. After the flipping is completed, the spring 12 pulls the rotating rod 13 to keep the gear 16 stable and prevent it from rotating accidentally. The stop bars 14 are fixed on both sides of the sliding frame 15. During the rotation of the rotating rod 13, the stop bars 14 limit its rotation range to prevent the rotating rod 13 from rotating excessively, ensuring the safe operation of the device and ensuring the stability of the stainless steel plate throughout the coloring process.

[0023] A cylinder 3 is fixedly connected to the top outer wall of the support column 2, and the output end of the cylinder 3 is fixedly connected to the movable seat 5. When the cylinder 3 is activated, its output shaft precisely pushes the movable seat 5 to move up and down along the support column 2. After one side of the stainless steel plate is colored, the cylinder 3 pushes the movable seat 5 downward, and the stainless steel plate is flipped over by the transmission of the gear 16 and the rack 9. After the flipping is completed, the cylinder 3 pushes the movable seat 5 upward again, so that the stainless steel plate reaches the appropriate position for coloring the other side. The vertical position of the stainless steel plate is precisely controlled to meet different coloring requirements.

[0024] Two sliders 17 are fixedly connected to the outer walls on both sides of the movable base 5, and the movable base 5 is slidably connected to the movable base 5 through the two sliders 17. The sliders 17 ensure the stability and accuracy of the movable base 5 during the movement process, prevent the movable base 5 from shaking or shifting, and ensure that the stainless steel plate fixed on the movable base 5 can accurately reach the designated position, thus providing a guarantee for the smooth progress of coloring and flipping operations.

[0025] The implementation principle of the stainless steel plate surface coloring device according to the present invention is as follows: First, the stainless steel plate to be colored is placed on the fixed frame 4. Then, by rotating the rotating frame 18, the fixed suction cup 20 is moved above the stainless steel plate. The operator rotates the threaded rod 19, which drives the fixed suction cup 20 to move downward, so that the fixed suction cup 20 comes into contact with the surface of the stainless steel plate, thus completing the fixing of the stainless steel plate.

[0026] After the stainless steel plate is fixed, it is colored using a spraying tool. After one side of the stainless steel plate is colored, the other side needs to be colored. The operator activates cylinder 3, causing its output shaft to move the moving base 5 downwards along the support column 2. Before this downward movement, the operator activates cylinder 7, causing its output end to move the rack 9 along the limiting groove 10, positioning it to mesh with gear 16. As the moving base 5 moves downwards, the meshing of gear 16 and rack 9 causes gear 16 to rotate 180 degrees. When the moving base 5 reaches the bottom, the stainless steel... The rotation of gear 16 causes the fixed frame 4 to rotate 180 degrees, achieving synchronous 180-degree rotation of the stainless steel plate and completing the flipping process. After the stainless steel plate is flipped, the rotating rod 13 is pulled by spring 12 to stabilize it, thus preventing gear 16 from rotating. At the same time, the output end of cylinder 2 7 drives rack 9 to move back, which in turn drives cylinder 1 3 to move moving seat 5 upward. Since rack 9 is in a retracted state, gear 16 cannot rotate, allowing moving seat 5 to move the stainless steel plate upward for coloring on the other side, improving the coloring efficiency of both sides of the stainless steel plate.

Claims

1. A stainless steel sheet surface coloring device, comprising a spraying rack (1), characterized in that: The spraying frame (1) is fixedly connected to the outer walls of both sides with support columns (2), and the outer walls of both support columns (2) are movably mounted with movable seats (5). The outer walls of the movable seats (5) are movably mounted with fixed components. The outer walls of one of the movable seats (5) are rotatably connected with a gear (16). An inner groove (8) is opened inside one side of the support column (2). The outer walls of both sides of the inner groove (8) are opened with limit grooves (10). The inner groove (8) is slidably connected to a rack (9) through the two limit grooves (10). The gear (16) is adapted to the rack (9). The outer walls of the support column (2) are fixedly connected with a cylinder (7), and the output end of the cylinder (7) is fixedly connected to the rack (9). The support column (2) is slidably connected with a sliding frame (15), and the gear (16) rotates through the sliding frame (15) and is fixedly connected with a stabilizing component.

2. The stainless steel plate surface coloring device according to claim 1, characterized in that: The fixing component includes a fixing frame (4), and the fixing frame (4) is fixedly connected to the gear (16). The outer walls on both sides of the fixing frame (4) are rotatably connected to a rotating frame (18), and the outer wall of the rotating frame (18) is threadedly connected to a threaded rod (19). The outer wall of the threaded rod (19) is rotatably connected to a fixing suction cup (20).

3. The stainless steel plate surface coloring device according to claim 1, characterized in that: The stabilizing component includes a rotating rod (13), which rotates through the sliding frame (15) and is fixedly connected to the gear (16). An extension frame (11) is fixedly connected to the bottom outer wall of the sliding frame (15), and a spring (12) is installed between the extension frame (11) and the rotating rod (13). The two ends of the spring (12) are movably installed with the rotating rod (13) and the extension frame (11), respectively. Two stop bars (14) are fixedly connected to the outer walls on both sides of the sliding frame (15), and the two stop bars (14) are horizontally symmetrically distributed.

4. The stainless steel plate surface coloring device according to claim 1, characterized in that: A cylinder (3) is fixedly connected to the top outer wall of the support column (2), and the output end of the cylinder (3) is fixedly connected to the movable seat (5).

5. A stainless steel plate surface coloring device according to claim 1, characterized in that: Two sliders (17) are fixedly connected to the outer walls on both sides of the movable seat (5), and the movable seat (5) is slidably connected to the movable seat (5) through the two sliders (17).