A mirror titanium gold plate titanium plating mechanism
By combining the felt cleaning belt and the self-cleaning mechanism, the problem of the rag rack being easily soiled in the titanium plating mechanism of the mirror titanium plate is solved, achieving efficient cleaning and high-quality titanium plating processing.
Patent Information
- Application Number
- CN202521643036.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2026-07-31
- Estimated Expiration
- 2035-08-04
AI Technical Summary
The cloth holders of traditional mirror-finish titanium plate plating machines are prone to accumulating dirt, affecting the cleaning effect, and are inconvenient to disassemble, increasing costs and reducing production efficiency.
The system uses a felt cleaning belt in conjunction with a self-cleaning mechanism to continuously scrub the mirror titanium plate. A scraper and cleaning brush are used to clean the felt belt in real time. Combined with a dual-nozzle rinsing design, the system ensures effective cleaning.
It significantly improves cleaning performance, enhances the quality and uniformity of titanium plating, extends equipment lifespan, reduces maintenance costs, and increases production efficiency.
Smart Images

Figure CN224574215U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of titanium plate processing technology, and in particular to a titanium plating mechanism for mirror titanium plates. Background Technology
[0002] In the titanium plating process of mirror-finish titanium plates, the initial cleaning step is crucial, as its effectiveness directly affects the quality of subsequent titanium plating. A search revealed that patent CN219253402U discloses a titanium plating mechanism for mirror-finish titanium plates, which uses a vertically lifting cloth rack in conjunction with rinsing to clean the mirror-finish titanium plates.
[0003] However, this cleaning method has many problems in practical applications. Because the cleaning cloth holder is constantly in contact with stains on the surface of the mirror titanium plate during long-term use, it easily accumulates a lot of dirt. As the dirt gradually increases, the cleaning effect of the cloth holder on the mirror titanium plate will significantly decrease, failing to effectively remove residual stains, thus affecting the quality of subsequent titanium plating processes and potentially causing problems such as uneven titanium plating and poor adhesion.
[0004] Furthermore, cleaning the cloth holder is extremely inconvenient. The existing mechanism design makes the disassembly process of the cloth holder cumbersome, requiring a significant amount of time and manpower, which not only increases production costs but also reduces production efficiency. Moreover, the disassembly and installation process may damage the cloth holder, further affecting its service life and cleaning effect.
[0005] To address the aforementioned issues, this utility model document proposes a titanium plating mechanism for mirror-finish titanium plates. Utility Model Content
[0006] The purpose of this invention is to address the shortcomings of existing technologies, such as the easy accumulation of dirt in traditional fixed cleaning structures, which affects the cleaning effect, and the inconvenience of disassembling and cleaning fixed structures, which increases equipment costs and reduces work efficiency. Therefore, this invention proposes a titanium plating mechanism for mirror-finished titanium plates.
[0007] To achieve the above objectives, the present invention adopts the following technical solution:
[0008] A titanium plating mechanism for mirror-finish titanium plates includes:
[0009] A support frame, the inside of which is equipped with a conveyor belt, which is driven by a motor to transport the mirror titanium plate;
[0010] A fixed plate is located above the conveyor belt, and multiple support plates are fixedly connected to the bottom of the fixed plate. The multiple support plates are located on both sides of the conveyor belt and fixed to the top of the support frame.
[0011] A water storage tank is fixed to the top of the fixing plate;
[0012] The flushing assembly, including water pipes and multiple nozzles, is used to rinse the mirror-finished titanium plates on the conveyor belt.
[0013] The cleaning assembly includes two rotating rollers and a felt cleaning belt, the felt cleaning belt being driven to the rotating rollers for continuous cleaning of the mirror titanium plate; the cleaning assembly also includes a self-cleaning mechanism for automatically cleaning the felt cleaning belt.
[0014] During operation, the felt cleaning belt moves to wipe the mirror titanium plate, while the self-cleaning mechanism cleans the felt cleaning belt at the same time.
[0015] In one possible design, the flushing assembly further includes a water pump fixed to the bottom inner wall of the water storage tank, and one end of the water delivery pipe is fixedly connected to the outlet of the water pump.
[0016] In one possible design, the cleaning assembly further includes a lifting plate located below a fixed plate, with a cylinder connected to the top of the lifting plate and fixed to the fixed plate for driving the lifting plate to move up and down.
[0017] In one possible design, the bottom of the lifting plate is fixedly connected to two mounting brackets, and the two rotating rollers are rotatably mounted on the mounting brackets. One of the mounting brackets is fixed with a motor, and the output shaft of the motor is connected to the rotating roller to drive it to rotate.
[0018] In one possible design, the self-cleaning mechanism includes two fixed frames, which are fixed to both ends of the lifting plate. Each fixed frame is equipped with a scraper that engages with the outer surface of the felt cleaning belt to remove impurities.
[0019] In one possible design, the self-cleaning mechanism further includes two mounting plates fixed to the bottom of the lifting plate, each mounting plate having a cleaning brush attached to it. The cleaning brush engages with the outer surface of the felt cleaning belt to scrub away impurities.
[0020] In one possible design, the water supply pipe includes a connecting pipe and four horizontal pipes, the four horizontal pipes being fixedly connected to the connecting pipe, and multiple nozzles being fixedly grouped to the horizontal pipes, with the nozzles being inclined to rinse the mirror titanium plate and the felt cleaning belt respectively.
[0021] In one possible design, inclined blocks are also included, two of which are fixed to both sides of the support frame, located below the scraper, for guiding impurities out of the container.
[0022] In one possible design, a guide rod is fixed to the top of the lifting plate, and the guide rod slides through the fixed plate to guide the lifting movement.
[0023] In this application, when the equipment starts running, the conveyor belt, driven by its built-in motor, smoothly feeds the mirror-finished titanium plate to be processed into the working area inside the support frame. Clean water for cleaning can be added to the water tank via the top water inlet pipe.
[0024] As the titanium alloy sheet to be processed is transported by the conveyor belt, the water pump at the bottom of the water tank located above the fixed plate is activated. The water pump pressurizes clean water into the water supply pipe, and the water flow is distributed to four horizontal pipes through the connecting structure of the water supply pipe, and then sprayed out from the corresponding nozzles. The multiple nozzles are set at an angle; one set of nozzles mainly sprays water towards the surface of the titanium alloy sheet to be processed on the conveyor belt below, while the other set of nozzles mainly sprays water towards the outer surface of the felt cleaning belt in the cleaning assembly.
[0025] Simultaneously, the cylinders on the extension plates on both sides of the fixed plate activate, pushing the piston rod downwards. The piston rod drives the lifting plate downwards along the guide rod, ensuring proper contact pressure between the felt cleaning belt mounted at the bottom of the lifting plate and the upper surface of the mirror-finish titanium plate to be processed on the conveyor belt below. A motor mounted on one of the mounting brackets starts, driving the rotating rollers connected to its output shaft to rotate. The rotation of the two rotating rollers drives the felt cleaning belt in a cyclical motion. As the conveyor belt continuously transports the mirror-finish titanium plate to be processed forward, the moving felt cleaning belt continuously scrubs and cleans the surface of the plate, removing residual stains.
[0026] During the cleaning process of the felt cleaning belt's cyclical movement, its self-cleaning mechanism also operates continuously. The scrapers fixed to the frames at both ends of the lifting plate maintain constant contact between their working surfaces and the outer surface of the felt cleaning belt. As the felt cleaning belt passes the rotating rollers, the scrapers initially remove most of the impurities adhering to the surface of the felt belt. The cleaning brushes installed at the bottom of the lifting plate also contact the outer surface of the felt cleaning belt. During the movement of the felt cleaning belt, the cleaning brushes further scrub the surface, removing residual impurities and maintaining the belt's cleaning ability. The impurities removed by the scrapers and cleaning brushes fall off under gravity. Inclined blocks installed on both sides of the support frame, located below the scrapers, allow these falling impurities to fall onto the inclined blocks, be discharged along their inclined surfaces, and fall into designated collection areas, preventing accumulation inside the equipment.
[0027] As the conveyor belt continues to operate, the cleaned mirror titanium plate continues to move. After another round of rinsing, it is ensured that no impurities cleaned from the felt cleaning belt remain on it. Subsequently, under the continued conveyor belt transport, the mirror titanium plate moves from the equipment, where it can be received by the operator for subsequent titanium plating processing.
[0028] Beneficial effects: In this utility model, the titanium plating mechanism for mirror titanium plates uses a felt cleaning belt to continuously wipe and clean the mirror titanium plate to be processed. The felt material has good adsorption and softness, which can better fit the surface of the mirror titanium plate, effectively remove residual stains, significantly improve the cleaning effect, and provide better surface conditions for subsequent titanium plating processing. This helps to improve the quality and uniformity of the titanium plating layer and enhance the adhesion between the titanium plating layer and the titanium plate.
[0029] In this invention, the titanium plating mechanism for a mirror-finish titanium plate incorporates a self-cleaning mechanism. This mechanism operates continuously during the cyclical cleaning of the felt cleaning belt, ensuring its self-cleaning function. Scrapers fixed to the brackets at both ends of the lifting plate maintain constant contact with the outer surface of the felt cleaning belt. As the belt passes the rotating roller, the scrapers remove most of the impurities adhering to its surface. Simultaneously, a cleaning brush installed at the bottom of the lifting plate also contacts the outer surface of the felt cleaning belt, further scrubbing and removing residual impurities as the belt moves. This self-cleaning mechanism maintains the cleanliness of the felt cleaning belt in real time, preventing a decline in cleaning effectiveness due to dirt accumulation. It eliminates the need for frequent disassembly of cleaning components, significantly improving cleaning efficiency and ease of use.
[0030] In this invention, the titanium plating mechanism for mirror-finish titanium plates has the following advantages in terms of impurity handling: impurities removed by the scraper and cleaning brush can fall off under gravity, making them easy to collect; the inclined blocks installed on both sides of the support frame are located below the scraper, and these falling impurities fall onto the inclined blocks, are discharged along their inclined surfaces, and fall into the designated collection area, effectively avoiding the accumulation of a large number of impurities inside the equipment, reducing the probability of equipment failure, extending the service life of the equipment, and also reducing the maintenance cost of the equipment.
[0031] In this invention, the titanium plating mechanism for mirror titanium plates features a water spray assembly with multiple nozzles arranged at an angle. One set of nozzles primarily sprays water towards the surface of the mirror titanium plate to be processed on the lower conveyor belt, while the other set of nozzles primarily sprays water towards the outer surface of the felt cleaning belt in the cleaning assembly. This design allows for simultaneous rinsing of both the mirror titanium plate and the felt cleaning belt, further improving the cleaning effect. The dual-rinsing structure also ensures that no impurities removed from the felt cleaning belt remain on the mirror titanium plate after wiping and cleaning, providing a reliable guarantee for subsequent titanium plating processing.
[0032] In this invention, the mechanism continuously scrubs the surface of the titanium plate with a felt cleaning belt, improving the cleaning quality and providing a good base for titanium plating; the self-cleaning mechanism, through the cooperation of a scraper and a cleaning brush, can remove impurities on the felt belt in real time, avoiding the accumulation of dirt, reducing the number of disassembly and maintenance, and improving work efficiency; multiple sets of nozzles simultaneously rinse the titanium plate and the felt belt, and the titanium plate is rinsed twice, which can ensure a good cleaning effect on the titanium plate. Attached Figure Description
[0033] Figure 1 This is a three-dimensional structural diagram of a titanium plating mechanism for a mirror-finish titanium plate proposed in this utility model.
[0034] Figure 2 This is a cross-sectional structural schematic diagram of a titanium plating mechanism for a mirror-finish titanium plate proposed in this utility model.
[0035] Figure 3 This is a schematic diagram of the cylinder connection structure of a titanium plating mechanism for a mirror titanium plate proposed in this utility model.
[0036] Figure 4 This is a schematic diagram of the cleaning component structure of a titanium plating mechanism for a mirror-finish titanium plate proposed in this utility model.
[0037] In the diagram: 1. Support frame; 2. Conveyor belt; 3. Support plate; 4. Fixing plate; 5. Water tank; 6. Water pump; 7. Water pipe; 8. Nozzle; 9. Cylinder; 10. Lifting plate; 11. Guide rod; 12. Mounting bracket; 13. Rotating roller; 14. Felt cleaning belt; 15. Motor; 16. Fixing frame; 17. Scraper; 18. Mounting plate; 19. Cleaning brush; 20. Inclined block. Detailed Implementation
[0038] 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.
[0039] In one embodiment: Refer to Figure 1-4 A titanium plating mechanism includes: a support frame 1, a conveyor belt 2, a fixing plate 4, a water storage tank 5, a flushing assembly, a cleaning assembly, etc.
[0040] In this embodiment, the support frame 1 serves as the main support structure of the entire mechanism, and a conveyor belt 2 is installed inside it. The conveyor belt 2 is driven by its own motor to transport the mirror titanium plate to be processed.
[0041] In this embodiment, the fixing plate 4 is located above the conveyor belt 2, and multiple support plates 3 are fixedly installed on its bottom. These support plates 3 are respectively arranged on both sides of the conveyor belt 2, and are all fixedly connected to the top of the support frame 1, thereby stably supporting the fixing plate 4 above the conveyor belt 2.
[0042] In this embodiment, the water storage tank 5 is fixedly installed on the top of the fixed plate 4. Its function is to store the clean water required for cleaning the mirror titanium plate to be processed. The top of the water storage tank 5 is provided with a corresponding water injection pipe, and a corresponding flip-plate level gauge is provided on one side of it.
[0043] In this embodiment, the flushing assembly includes a water supply pipe 7 and multiple nozzles 8. A water pump 6 is fixedly installed on the bottom inner wall of the water storage tank 5. One end of the water supply pipe 7 is fixedly connected to the bottom of the water storage tank 5 through the fixing plate 4 and the water outlet of the water pump 6. The water supply pipe 7 consists of a connecting pipe and four horizontal pipes, all of which are fixedly connected to the connecting pipe. The multiple nozzles 8 are divided into four groups, with each group of nozzles 8 evenly distributed on the outer wall of adjacent horizontal pipes and fixedly connected to the adjacent horizontal pipes. The four horizontal pipes are arranged in pairs, with the two groups of horizontal pipes located on both sides of the cleaning assembly. The multiple nozzles 8 on the corresponding horizontal pipes are all inclined, and the multiple nozzles 8 on the two horizontal pipes in the same group face opposite directions. This arrangement ensures that the nozzles 8 simultaneously flush the outer surface of the felt cleaning belt 14 in the cleaning assembly and the mirror titanium plate to be processed below it.
[0044] In this embodiment, the cleaning assembly includes two rotating rollers 13 and a felt cleaning belt 14 connected to them for continuous wiping and cleaning of the mirror-finished titanium plate to be processed. The cleaning assembly also includes a lifting plate 10 located below the fixed plate 4. Two guide rods 11 are fixedly installed on the top of the lifting plate 10, and the top ends of the two guide rods 11 slide through the extension plates on both sides of the fixed plate 4. Cylinders 9 are fixedly installed on the top of the extension plates on both sides of the fixed plate 4, and one end of the piston rod of each cylinder 9 slides through the fixed plate 4 and is fixedly connected to the top of the lifting plate 10. The lifting plate 10 can be moved up and down by extending and retracting the piston rods of the cylinders 9. Two mounting brackets 12 are fixedly installed at the bottom of the lifting plate 10, and the two rotating rollers 13 are rotatably installed inside the corresponding mounting brackets 12. A motor 15 is fixedly installed on one side of one of the mounting brackets 12, and one end of the output shaft of the motor 15 rotatably passes through one side of the adjacent mounting bracket 12 and is fixedly connected to one end of the adjacent rotating roller 13. When the motor 15 is working, it drives the rotating roller 13 to rotate, thereby realizing the continuous transmission and movement of the felt cleaning belt 14, and completing the continuous wiping and cleaning of the mirror titanium plate to be processed passing below it.
[0045] In this embodiment, the cleaning assembly is also equipped with a self-cleaning mechanism for automatically cleaning the felt cleaning belt 14 in use. The self-cleaning mechanism includes two fixed brackets 16 fixedly installed at both ends of the lifting plate 10. Each of the two fixed brackets 16 has a scraper 17 fixedly installed on one side near the felt cleaning belt 14. Each scraper 17 corresponds to an adjacent rotating roller 13, and one side of each scraper 17 engages with the outer surface of the felt cleaning belt 14. When the felt cleaning belt 14 moves, the scraper 17 can initially scrape away impurities from the outer surface of the felt cleaning belt 14. The self-cleaning mechanism also includes two mounting plates 18 fixedly installed at the bottom of the lifting plate 10. Each of the two mounting plates 18 has a cleaning brush 19 fixedly installed at its bottom, and the bottom of each cleaning brush 19 engages with the outer surface of the felt cleaning belt 14. During the movement of the felt cleaning belt 14, the cleaning brush 19 can scrub and clean the outer surface of the felt cleaning belt 14.
[0046] This application can be used in the field of titanium plate processing technology, or in other fields applicable to this application.
[0047] In another embodiment: Reference Figure 1 , 4 A titanium plating mechanism for mirror-finish titanium plates, which is applied to the field of titanium plate processing technology.
[0048] In this embodiment, inclined blocks 20 are fixedly installed on both sides of the support frame 1. These two inclined blocks 20 are located below the two scrapers 17 respectively. They are used to stably guide the impurities scraped off by the scrapers 17 so that they can be smoothly discharged to both sides. With the setting of the collection container, it is convenient to collect the cleaned impurities.
[0049] In this embodiment, the bottom of the support frame 1 is provided with multiple hollow holes, which are used to ensure that the sewage generated during the cleaning process will not accumulate in the support frame 1, so as to ensure the stable operation of the equipment.
[0050] In this embodiment, the multiple motors and corresponding electrical equipment inside the device are all equipped with waterproof housings to ensure the stable operation of the multiple electrical devices.
[0051] However, as is well known to those skilled in the art, the working principles and wiring methods of the water pump 6, cylinder 9 and motor 15 are conventional methods or common knowledge, and will not be described in detail here. Those skilled in the art can make any selections according to their needs or convenience.
[0052] The working principle and usage process of this technical solution are as follows: When the equipment starts running, the conveyor belt 2 is driven by its built-in motor to smoothly feed the mirror titanium plate to be processed into the working area inside the support frame 1. Clean water for cleaning can be added to the water storage tank 5 through the water inlet pipe at the top.
[0053] As the mirror-finished titanium plate to be processed is transported by the conveyor belt 2, the water pump 6 at the bottom of the water tank 5 located above the fixed plate 4 is activated. The water pump 6 pressurizes clean water into the water supply pipe 7, and the water flow is distributed to four horizontal pipes through the connecting structure of the water supply pipe 7, and then sprayed out from the corresponding nozzles 8. The multiple nozzles 8 are set at an angle. The water flow from one set of nozzles 8 is mainly directed towards the surface of the mirror-finished titanium plate to be processed on the conveyor belt 2 below, while the water flow from another set of nozzles 8 is mainly directed towards the outer surface of the felt cleaning belt 14 in the cleaning assembly.
[0054] Simultaneously, the cylinders 9 on the extension plates on both sides of the fixed plate 4 begin to operate, pushing the piston rod downwards. The piston rod drives the lifting plate 10 to move downwards along the guide rod 11, ensuring that the felt cleaning belt 14 installed at the bottom of the lifting plate 10 maintains appropriate contact pressure with the upper surface of the mirror titanium plate to be processed on the conveyor belt 2 below. The motor 15 installed on one of the mounting brackets 12 starts, driving the rotating roller 13 connected to its output shaft to rotate. The rotation of the two rotating rollers 13 drives the felt cleaning belt 14 to move in a cyclic transmission. As the conveyor belt 2 continues to transport the mirror titanium plate to be processed forward, the moving felt cleaning belt 14 continuously wipes and cleans the surface of the mirror titanium plate to be processed, removing residual stains.
[0055] During the cleaning process of the felt cleaning belt 14, its self-cleaning mechanism also operates continuously. The scraper 17, fixed to the brackets 16 at both ends of the lifting plate 10, always maintains contact with the outer surface of the felt cleaning belt 14. When the felt cleaning belt 14 passes the rotating roller 13, the scraper 17 initially scrapes away most of the impurities adhering to the surface of the felt belt. The cleaning brush 19, installed at the bottom of the lifting plate 10, also contacts the outer surface of the felt cleaning belt 14. As the felt cleaning belt 14 moves, the cleaning brush 19 further scrubs the surface of the felt belt, removing residual impurities and maintaining the cleaning ability of the felt belt. The impurities removed by the scraper 17 and cleaning brush 19 fall off under gravity. The inclined blocks 20 installed on both sides of the support frame 1 are located below the scraper 17. These falling impurities fall onto the inclined blocks 20, are discharged along their inclined surfaces, and fall into the designated collection area, preventing accumulation inside the equipment.
[0056] As conveyor belt 2 continues to operate, the cleaned mirror titanium plate continues to move. After another round of rinsing, it is ensured that no impurities cleaned from the felt cleaning belt 14 remain on it. Subsequently, under the continued conveying of conveyor belt 2, the mirror titanium plate moves from the equipment, where it can be received by the operator for subsequent titanium plating processing.
[0057] The accompanying drawings in this application are for illustrative purposes only. The dimensions and shapes of the components shown are not actual limitations but are merely schematic representations. In actual implementation, the components can be reasonably configured and adjusted according to specific needs and actual conditions.
[0058] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A mirror titanium gold plate titanium plating mechanism, characterized by, include: A support frame (1) is provided inside the support frame (1), and the conveyor belt (2) is driven by a motor to transport the mirror titanium plate. A fixing plate (4) is located above the conveyor belt (2). Multiple support plates (3) are fixedly connected to the bottom of the fixing plate (4). The multiple support plates (3) are located on both sides of the conveyor belt (2) and fixed to the top of the support frame (1). The water storage tank (5) is fixed to the top of the fixing plate (4); The flushing assembly includes a water supply pipe (7) and multiple nozzles (8) for flushing the mirror titanium plate on the conveyor belt (2); The cleaning assembly includes two rotating rollers (13) and a felt cleaning belt (14), the felt cleaning belt (14) being driven to the rotating rollers (13) for continuously wiping the mirror titanium plate; the cleaning assembly also includes a self-cleaning mechanism for automatically cleaning the felt cleaning belt (14). During operation, the felt cleaning belt (14) moves to wipe the mirror titanium plate, while the self-cleaning mechanism cleans the felt cleaning belt (14).
2. The mirror titanium plating mechanism according to claim 1, wherein The flushing assembly also includes a water pump (6), which is fixed to the bottom inner wall of the water storage tank (5), and one end of the water supply pipe (7) is fixedly connected to the outlet of the water pump (6).
3. The titanium plating mechanism for mirror-finish titanium plates according to claim 1, characterized in that, The cleaning assembly also includes a lifting plate (10), which is located below the fixed plate (4). A cylinder (9) is connected to the top of the lifting plate (10), which is fixed to the fixed plate (4) and is used to drive the lifting plate (10) to rise and fall.
4. The mirror surface titanium plating mechanism according to claim 3, wherein The bottom of the lifting plate (10) is fixedly connected to two mounting brackets (12), and two rotating rollers (13) are rotatably mounted on the mounting brackets (12). One of the mounting brackets (12) is fixed with a motor (15), and the output shaft of the motor (15) is connected to the rotating roller (13) to drive it to rotate.
5. The mirror surface titanium plating mechanism according to claim 3, wherein The self-cleaning mechanism includes two fixed frames (16), which are fixed to both ends of the lifting plate (10). Each fixed frame (16) is fixed with a scraper (17), which cooperates with the outer surface of the felt cleaning belt (14) to scrape off impurities.
6. The mirror surface titanium plating mechanism according to claim 5, wherein The self-cleaning mechanism also includes two mounting plates (18), which are fixed to the bottom of the lifting plate (10). Each mounting plate (18) is fixed with a cleaning brush (19), which cooperates with the outer surface of the felt cleaning belt (14) to brush away impurities.
7. The mirror surface titanium plating mechanism according to claim 1, wherein The water supply pipe (7) includes a connecting pipe and four horizontal pipes. The four horizontal pipes are fixedly connected to the connecting pipe. Multiple nozzles (8) are fixed in groups to the horizontal pipes. The nozzles (8) are set at an angle to rinse the mirror titanium plate and the felt cleaning belt (14) respectively.
8. The mirror surface titanium plating mechanism according to claim 5, wherein It also includes inclined blocks (20), two of which are fixed to both sides of the support frame (1) and located below the scraper (17) for guiding impurities out.
9. The mirror surface titanium plating mechanism according to claim 3, wherein A guide rod (11) is fixed to the top of the lifting plate (10), and the guide rod (11) slides through the fixed plate (4) to guide the lifting movement.