Environment-friendly copper plate surface coloring treatment device
By introducing a mixing mechanism and a conveying mechanism into an environmentally friendly copper plate surface coloring treatment device, the problem of uneven coloring was solved, and the uniformity and aesthetics of copper plate surface coloring were improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN HUARU COPPER
- Filing Date
- 2025-04-02
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional environmentally friendly copper plate surface coloring treatment devices have a simple coloring pool structure design, which leads to incomplete chemical reagent reactions, resulting in uneven coloring of the copper plate surface, lack of aesthetics, and affecting subsequent use.
The system employs a mixing and conveying mechanism, including a circulation pipe, a water pump, a return pipe, a water outlet, an electric slide rail, and a drying box. Through water circulation and air drying, it ensures uniform mixing of the coloring liquid and uniform coloring of the copper plate surface.
The coloring liquid was mixed evenly, which improved the uniformity and aesthetics of the copper plate coloring and increased processing efficiency.
Smart Images

Figure CN224127634U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of copper plate surface coloring technology, and in particular to an environmentally friendly copper plate surface coloring treatment device. Background Technology
[0002] Environmentally friendly copper plate surface coloring equipment refers to devices specifically designed for copper plate surface coloring, which reduce environmental pollution, conserve resources, and improve processing efficiency during the process. This type of equipment typically combines advanced process technology with environmental protection concepts. It is usually equipped with an automated control system, aiming to achieve high efficiency, energy saving, low pollution, and sustainable development in copper plate surface coloring. It is a device that integrates advanced technology, environmental protection and energy saving, high automation, and ease of operation and maintenance, providing a more efficient, environmentally friendly, and sustainable solution for copper plate surface coloring.
[0003] However, when using traditional environmentally friendly copper plate surface coloring treatment equipment, the structure of the coloring pool is relatively simple, which may result in incomplete reaction of internal chemical reagents, leading to uneven coloring of the copper plate surface, lack of aesthetics, and potentially affecting the subsequent use of the environmentally friendly copper plate.
[0004] For example, traditional environmentally friendly copper plate surface coloring treatment devices mostly put the copper plate directly into a coloring pool containing chemical reagents and wait for the coloring to be completed before taking it out. However, there may be some chemical reagent sediment at the bottom of the coloring pool, which will result in uneven coloring of the copper plate. Utility Model Content
[0005] This utility model discloses an environmentally friendly copper plate surface coloring treatment device, which aims to solve the technical problem that the traditional environmentally friendly copper plate surface coloring treatment device has a simple structure design of the coloring pool, which may result in incomplete reaction of internal chemical reagents, leading to uneven coloring of the copper plate surface, lack of aesthetics, and potential impact on the subsequent use of the environmentally friendly copper plate.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] An environmentally friendly copper plate surface coloring treatment device includes a liquid storage tank and a circulation pipe disposed inside the liquid storage tank, and further includes:
[0008] Mixing mechanism: The mixing mechanism includes a water pump disposed on one side of the storage tank, a return pipe disposed at the bottom of the water pump, one end of the water pump passing through the inner wall of one side of the storage tank and connected to the circulation pipe, the outer circumference of the circulation pipe being provided with radially distributed water outlets, a connector being connected to the inner wall of one side of the storage tank, and the end of the return pipe away from the water pump communicating with the inside of the storage tank;
[0009] Delivery mechanism: The delivery mechanism is located inside the liquid storage tank.
[0010] In this design, the circulation pipe and water pump installed inside the storage tank can draw water from inside the storage tank through a connector, then return it to the circulation pipe through a return pipe, and finally spray it out from multiple outlets on the outer circumference of the circulation pipe. Through continuous internal water circulation and water spraying from the outlets, the coloring liquid inside the storage tank is activated, thus preventing incomplete reaction and sedimentation of the coloring liquid. This achieves a uniform mixing effect of the coloring liquid, making the coloring treatment on the copper plate surface more uniform and aesthetically pleasing.
[0011] In a preferred embodiment, the conveying mechanism includes a first electric slide rail formed on the inner wall of the opposite side of the liquid storage tank, two sliding frames are provided inside each of the two first electric slide rails, and a second electric slide rail is formed on the outer wall of the opposite side of each of the four sliding frames, and two movable frames are respectively provided on the inner wall of the opposite side of the four second electric slide rails.
[0012] By using two first electric slide rails set on the inner wall of opposite sides of the liquid storage tank, and a sliding frame and a second electric slide rail set inside the first electric slide rails, the two moving frames can be moved upward to transport copper plates of different sizes after coloring. The mounting slots set inside the two moving frames and the nozzles inside the mounting slots can reduce the contact area between the colored copper plate and the bottom moving frame by spraying liquid, so that the coloring effect on the surface of the copper plate is more uniform.
[0013] In a preferred embodiment, two mounting brackets are also provided on the top outer wall of the storage tank. Each of the two mounting brackets is equipped with an electric telescopic rod on its top outer wall. The piston end of each of the two electric telescopic rods is connected to a triangular block. The same drying box is installed on the outer wall of the opposite side of the two triangular blocks.
[0014] By using a drying box controlled by two electric telescopic rods installed on top of the storage tank, the surface of the environmentally friendly copper plate can be dried after the coloring process is completed inside the storage tank and then raised to the top of the storage tank by a moving frame, thus improving the efficiency of copper plate coloring.
[0015] As described above, an environmentally friendly copper plate surface coloring treatment device includes a storage tank and a circulation pipe disposed inside the storage tank. It further includes: a mixing mechanism: the mixing mechanism includes a water pump disposed on one side of the storage tank, a return pipe disposed at the bottom of the water pump, one end of the water pump passing through the inner wall of one side of the storage tank and connected to the circulation pipe, and radially distributed water outlets disposed on the outer circumference of the circulation pipe; a connector is connected to the inner wall of one side of the storage tank, and the end of the return pipe away from the water pump communicates with the interior of the storage tank; and a conveying mechanism: the conveying mechanism is disposed inside the storage tank. The environmentally friendly copper plate surface coloring treatment device provided by this utility model has the technical effect of increasing the mixing mechanism, avoiding bottom sedimentation, and improving coloring uniformity. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of an environmentally friendly copper plate surface coloring treatment device proposed in this utility model.
[0017] Figure 2 This is a schematic diagram of the circulation pipe structure of an environmentally friendly copper plate surface coloring treatment device proposed in this utility model.
[0018] Figure 3 This is a schematic diagram of the first electric slide rail structure of an environmentally friendly copper plate surface coloring treatment device proposed in this utility model.
[0019] Figure 4 This is a schematic diagram of the movable frame structure of an environmentally friendly copper plate surface coloring treatment device proposed in this utility model.
[0020] In the attached diagram: 1. Liquid storage tank; 2. Circulation pipe; 3. Support frame; 4. Mounting frame; 5. Sliding frame; 6. Drying box; 7. Water outlet; 8. Water pump; 9. First electric slide rail; 10. Return pipe; 11. Connector; 14. Moving frame; 15. Mounting slot; 16. Nozzle. Detailed Implementation
[0021] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and marked in the accompanying drawings can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely represents selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0022] The environmentally friendly copper plate surface coloring treatment device disclosed in this utility model is mainly used in scenarios where the coloring pool of the traditional environmentally friendly copper plate surface coloring treatment device has a relatively simple structural design, which may result in incomplete reaction of internal chemical reagents, leading to uneven coloring of the copper plate surface, lack of aesthetics, and potentially affecting the subsequent use of the environmentally friendly copper plate.
[0023] Reference Figure 1 and Figure 2 An environmentally friendly copper plate surface coloring treatment device includes a liquid storage tank 1 and a circulation pipe 2 disposed inside the liquid storage tank 1. It also includes a mixing mechanism: the mixing mechanism includes a water pump 8 disposed on one side of the liquid storage tank 1, a return pipe 10 disposed at the bottom of the water pump 8, one end of the water pump 8 passing through the inner wall of one side of the liquid storage tank 1 and connected to the circulation pipe 2, the outer circumference of the circulation pipe 2 is provided with radially distributed water outlets 7, a connector 11 is connected to the inner wall of one side of the liquid storage tank 1, and the end of the return pipe 10 away from the water pump 8 is connected to the inside of the liquid storage tank 1.
[0024] The end of the circulation pipe 2 furthest from the water pump 8 is a sealed structure.
[0025] Among them, the radially distributed water outlets 7 are located on the top outer wall of the circulation pipe 2.
[0026] Specifically, in this scheme, the circulation pipe 2 and water pump 8 installed inside the liquid storage tank 1 can absorb water from inside the liquid storage tank 1 through the connector 11, and then enter the circulation pipe 2 through the return pipe 10. The water is then sprayed out from the multiple water outlets 7 set on the outer circumference of the circulation pipe 2. Through the continuous internal water circulation and the spraying of water from the water outlets 7, the coloring liquid inside the liquid storage tank 1 is made active as a whole, thereby preventing the coloring liquid from reacting incompletely and settling. This achieves the effect of uniform mixing of the coloring liquid, making the coloring treatment of the copper plate surface more thorough, uniform, and aesthetically pleasing.
[0027] Specifically, by setting multiple water outlets 7 on the outer wall of the circulation pipe 2 and arranging them at different angles, water can be sprayed outward from different angles, and the coloring liquid can be sprayed out evenly in all corners inside the liquid storage tank 1, thus achieving a better effect of uniform mixing of the coloring liquid.
[0028] Reference Figure 1 and Figure 3 In a preferred embodiment, a support frame 3 is also provided on one outer wall of the liquid storage tank 1, and the water pump 8 is located inside the support frame 3.
[0029] Specifically, the water pump 8 can be supported and fixed by the support frame 3 set on one side of the liquid storage tank 1, so that the operation of the water pump 8 and the circulation pipe 2 is more stable.
[0030] Reference Figure 3and Figure 4 In a preferred embodiment, the conveying mechanism includes a first electric slide rail 9 opened on the inner wall of the opposite side of the liquid storage tank 1, two sliding frames 5 are provided inside the two first electric slide rails 9, and a second electric slide rail is opened on the outer wall of the opposite side of the four sliding frames 5, and two movable frames 14 are respectively provided on the inner wall of the opposite side of the four second electric slide rails.
[0031] The two movable frames 14 each have an installation groove 15 on their top outer wall, and each of the two installation grooves 15 has a nozzle 16 that is evenly distributed inside.
[0032] Specifically, by using two first electric slide rails 9 set on the inner wall of opposite sides of the liquid storage tank 1, and a sliding frame 5 and a second electric slide rail set inside the first electric slide rails 9, the two moving frames 14 can be moved upward to transport copper plates of different sizes after coloring. The mounting groove 15 set inside the two moving frames 14 and the nozzle 16 inside the mounting groove 15 can reduce the contact area between the colored copper plate and the bottom moving frame 14 by spraying liquid, so that the coloring effect on the surface of the copper plate is more uniform.
[0033] In actual use, the bottom of the mobile frame 14 is open, and a water suction device (not shown in the figure) is provided at the bottom of the nozzle 16 to facilitate the intake of water and then spray it out from the top.
[0034] Reference Figure 1 and Figure 2 In a preferred embodiment, two mounting brackets 4 are also provided on the top outer wall of the liquid storage tank 1. Each of the two mounting brackets 4 is provided with an electric telescopic rod on its top outer wall. The piston end of each of the two electric telescopic rods is connected to a triangular block. The same drying box 6 is installed on the outer wall of the opposite side of the two triangular blocks.
[0035] Specifically, by using the drying box 6, which is set on top of the storage tank 1 and controlled by two electric telescopic rods, the surface of the copper plate after coloring can be dried when the environmentally friendly copper plate is colored inside the storage tank 1 and then raised to the top of the storage tank 1 by the moving frame 14, thus improving the efficiency of copper plate coloring process.
[0036] In actual use, the water spraying effect of nozzle 16 is electrically controlled. After the copper plate surface is dried, nozzle 16 can be turned off, and the environmentally friendly copper plate can be manually flipped over to dry the next side.
[0037] Working principle: In use, the copper plate is first placed inside the liquid storage tank 1. The circulation pipe 2 and water pump 8 set inside the liquid storage tank 1 can draw water from the liquid storage tank 1 through the connector 11, and then enter the circulation pipe 2 through the return pipe 10. Finally, the water is sprayed out from the multiple outlets 7 set on the outer circumference of the circulation pipe 2. After coloring, the colored copper plate is transported upward by two moving frames 14. The mounting groove 15 and the nozzle 16 set inside the mounting groove 14 can reduce the contact area between the colored copper plate and the bottom moving frame 14 by spraying liquid. Finally, the drying box 6 set at the top of the liquid storage tank 1 can dry the surface of the colored copper plate by generating wind.
[0038] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. The substitutions may be replacements of some structures, devices, or method steps, or they may be complete technical solutions. Equivalent substitutions or modifications made based on the technical solution and inventive concept of this utility model should all be covered within the protection scope of this utility model.
Claims
1. An environmentally friendly copper plate surface coloring treatment device, comprising a liquid storage tank (1) and a circulating pipe (2) arranged inside the liquid storage tank (1), characterized in that, Also includes: Mixing mechanism: The mixing mechanism includes a water pump (8) disposed on one side of the storage tank (1), a return pipe (10) disposed at the bottom of the water pump (8), one end of the water pump (8) passing through the inner wall of one side of the storage tank (1) and connected to the circulation pipe (2), the outer circumference of the circulation pipe (2) is provided with radially distributed outlets (7), the inner wall of one side of the storage tank (1) is connected to a connector (11), and the end of the return pipe (10) away from the water pump (8) is connected to the inside of the storage tank (1); Transport mechanism: The transport mechanism is located inside the liquid storage tank (1).
2. The environmentally friendly copper plate surface coloring treatment device according to claim 1, characterized in that, The end of the circulation pipe (2) away from the water pump (8) is a sealed structure.
3. The environmentally friendly copper plate surface coloring treatment device according to claim 1, characterized in that, The outlets (7) are arranged radially and are located on the top outer wall of the circulation pipe (2).
4. The environmentally friendly copper plate surface coloring treatment device according to claim 1, characterized in that, A support frame (3) is also provided on one side of the outer wall of the liquid storage tank (1), and the water pump (8) is located inside the support frame (3).
5. The environmentally friendly copper plate surface coloring treatment device according to claim 1, characterized in that, The transport mechanism includes a first electric slide rail (9) opened on the inner wall of the opposite side of the liquid storage tank (1), and two sliding frames (5) are provided inside the two first electric slide rails (9). A second electric slide rail is opened on the outer wall of the opposite side of the four sliding frames (5), and two movable frames (14) are respectively provided on the inner wall of the opposite side of the four second electric slide rails.
6. The environmentally friendly copper plate surface coloring treatment device according to claim 5, characterized in that, The top outer walls of the two movable frames (14) are provided with mounting slots (15), and the interiors of the two mounting slots (15) are provided with nozzles (16) that are evenly distributed.
7. The environmentally friendly copper plate surface coloring treatment device according to claim 1, characterized in that, Two mounting brackets (4) are also provided on the top outer wall of the liquid storage tank (1). Electric telescopic rods are provided on the top outer walls of the two mounting brackets (4). Triangular blocks are connected to the piston ends of the two electric telescopic rods. The same drying box (6) is installed on the outer wall of the opposite side of the two triangular blocks.