Titanium anode coating spraying device capable of achieving comprehensive spraying
By designing an all-around mobile spraying device and an automatic flipping clamping mechanism, the complex problem of manual flipping spraying required in existing technologies has been solved, realizing efficient all-around spraying of titanium anode plates, improving operational efficiency and simplifying the operation process.
Patent Information
- Application Number
- CN202423303560.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing spraying equipment for coating titanium anodes requires manual flipping for spraying, which is complicated, cumbersome, time-consuming, and labor-intensive.
A spraying device was designed, comprising a left-right moving mechanism, a front-back moving mechanism, a lifting mechanism, a flipping clamping mechanism, and a conveying mechanism, to achieve omnidirectional movement of the sprayer and automatic flipping of the titanium anode plate, thus simplifying the operation process.
It enables all-around spraying of titanium anode plates, improving work efficiency, simplifying operation procedures, and reducing manual labor intensity.
Smart Images

Figure CN223733047U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of spraying device technology, and in particular to a spraying device for a titanium anodized coating that can be sprayed all over the surface. Background Technology
[0002] Titanium anodes are the anodes in titanium-based metal oxide coatings. Depending on the surface catalytic coating, they can perform oxygen evolution or chlorine evolution reactions. Generally, electrode materials need to have good conductivity, small electrode distance variation, strong corrosion resistance, good mechanical strength and processing performance, long lifespan, low cost, and good electrocatalytic performance for the electrode reactions. Currently, titanium is the metal that best meets these comprehensive requirements, and industrially pure titanium is generally used. The metal oxide coating on the titanium anode serves to: reduce resistivity, provide good conductivity, ensure stable chemical composition and crystal structure of the noble metal coating, maintain stable electrode dimensions, provide good corrosion resistance, extend lifespan, and provide good electrocatalytic performance. This helps reduce the overpotential of the oxygen and chlorine evolution reactions, thus saving energy.
[0003] Existing spraying equipment for coating titanium anodes requires the titanium anode plate to be fixed first, and then the operator holds the spraying equipment to spray the titanium anode plate. During the spraying process, only one side can be sprayed first, and then the plate is flipped and fixed for mechanical spraying. The operation is complicated, cumbersome, time-consuming and labor-intensive. Utility Model Content
[0004] The purpose of this invention is to provide a spraying device for titanium anode coating that can be sprayed all over, solving the problems of existing spraying devices for coating titanium anodes, where operators hold the spraying equipment to spray the titanium anode plate by hand, and during the spraying process, only one side can be sprayed first, and then the machine is flipped and fixed for mechanical spraying, which is complicated, cumbersome, time-consuming and labor-intensive.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] This utility model discloses a spraying device for a titanium anode coating capable of comprehensive spraying, comprising a frame, a first support and a second support on the top surface of the frame, a left-right moving mechanism on the top surface of the first support, a front-back moving mechanism above the left-right moving mechanism and the second support, a lifting mechanism on the right side of the front-back moving mechanism, a sprayer on the right side of the lifting mechanism, and a flipping clamping mechanism for holding a titanium anode plate on the top surface of the frame and below the sprayer, with conveying mechanisms on both the left and right sides of the flipping clamping mechanism.
[0007] Furthermore, the left and right moving mechanism includes a first motor, which is disposed on the top surface of the first bracket. A first mounting box is disposed on the left side of the first motor, and a first cover plate is disposed on the top surface of the first mounting box. A first lead screw is disposed inside the first mounting box, and the first lead screw is connected to the output end of the first motor. A first movable seat is threadedly connected to the first lead screw, and a first sliding groove matching the first cover plate is provided on the first movable seat.
[0008] Furthermore, the forward and backward moving mechanism includes a first mounting frame, the rear end of which is disposed on the top surface of the first movable seat, the front end of which is slidably connected to the second bracket, a second motor is disposed on the right side of the first mounting frame, a second mounting box is disposed on one side of the second motor, a second cover plate is disposed on the right side of the second mounting box, a second lead screw is disposed inside the second mounting box, a second movable seat is threadedly connected to the second lead screw, and a second sliding groove matching the second cover plate is disposed on the second movable seat.
[0009] Furthermore, the lifting mechanism includes a second mounting frame connected to the second movable seat. A third lead screw is provided on the right side of the second mounting frame, with its top end extending above the second mounting frame and connected to a first driven wheel. A third motor is provided on the left side of the second mounting frame, with its output shaft extending above the second mounting frame and connected to a first driving wheel. The first driving wheel and the first driven wheel are connected by a first synchronous belt. A third movable seat is threaded onto the third lead screw. The sprayer is provided on the right side of the third movable seat. Third slide rails are provided on both the front and rear sides of the third lead screw. A third slider matching the third slide rails is provided on the left outer wall of the sprayer.
[0010] Furthermore, the flipping clamping mechanism includes two mounting plates arranged side by side, with a flipping seat connected to the opposite surfaces of the two mounting plates via a flipping shaft. A clamping assembly is provided on the flipping seat, and a first rotating shaft is provided below the two mounting plates. A fourth motor for driving the first rotating shaft to rotate is provided on one side of the first rotating shaft, and the first rotating shaft drives the flipping shaft to rotate via a transmission assembly.
[0011] Furthermore, the clamping assembly includes a fixed clamping plate connected to the flipping seat. A support plate is provided on the top surface of the fixed clamping plate, and a first threaded seat is provided on the support plate. A first adjusting screw is threadedly connected to the inside of the first threaded seat, and a movable clamping plate is provided at the bottom end of the first adjusting screw. A through groove is provided on the support plate, and a limit rod is provided inside the through groove. A limit part is provided on one side of the movable clamping plate, and the limit part moves along the through groove. A through hole matching the limit rod is provided on the limit part.
[0012] Furthermore, the conveying mechanism includes two conveying frames arranged symmetrically front to back. A second rotating shaft is provided below the conveying frame. A fifth motor for driving the second rotating shaft to rotate is provided on one side of the second rotating shaft. A first conveying wheel is provided on the second rotating shaft near the conveying frame. Second conveying wheels are provided at the left and right ends of the conveying frame. The first conveying wheel and the two second conveying wheels are connected by a conveyor belt.
[0013] Compared with the prior art, the beneficial technical effects of this utility model are as follows:
[0014] This invention uses a left-right moving mechanism and a front-back moving mechanism to drive the sprayer to move in all directions, making it convenient for the sprayer to perform spraying work; and uses a flipping clamping mechanism to flip the titanium anode plate, which is simple to operate, easy to use, and improves work efficiency. Attached Figure Description
[0015] The present invention will be further described below with reference to the accompanying drawings.
[0016] Figure 1 This is a front view of the spraying device for the titanium anodized coating that can be sprayed all over the surface according to this utility model;
[0017] Figure 2 This is a side view of the spraying device for the titanium anodized coating that can be sprayed all over the surface according to this utility model;
[0018] Figure 3 This is a top view of the spraying device for the titanium anodized coating that can be sprayed all over the surface according to this utility model;
[0019] Figure 4 This is a three-dimensional structural diagram of the left and right moving mechanism of this utility model;
[0020] Figure 5 This is a three-dimensional structural diagram of the forward and backward moving mechanism of this utility model;
[0021] Figure 6 This is a three-dimensional structural diagram of the lifting mechanism of this utility model;
[0022] Figure 7This is a three-dimensional structural diagram of the flipping clamping mechanism and conveying mechanism of this utility model;
[0023] Figure 8 for Figure 2 Enlarged view of point A in the middle;
[0024] Figure 9 for Figure 1 Enlarged view of point B in the middle.
[0025] Explanation of reference numerals in the attached drawings: 1. Frame; 2. First support; 3. Second support; 4. Left-right moving mechanism; 5. Front-back moving mechanism; 6. Lifting mechanism; 7. Sprayer; 8. Tilting and clamping mechanism; 9. Conveying mechanism; 10. Titanium anode plate;
[0026] 4-1. First motor; 4-2. First lead screw; 4-3. First movable seat; 4-4. First cover plate;
[0027] 5-1. First mounting bracket; 5-2. Second motor; 5-3. Second lead screw; 5-4. Second movable seat; 5-5. Second cover plate; 5-6. First slide rail; 5-7. First slider; 5-8. Second slide rail; 5-9. Second slider;
[0028] 6-1. Second mounting bracket; 6-2. Third motor; 6-3. First drive pulley; 6-4. First driven pulley; 6-5. First timing belt; 6-6. Third lead screw; 6-7. Third moving seat; 6-8. Third slide rail; 6-9. Third slider;
[0029] 8-1. Fourth motor; 8-2. Second driving pulley; 8-3. Second driven pulley; 8-4. Second synchronous belt; 8-5. First rotating shaft; 8-6. Third driving pulley; 8-7. Third driven pulley; 8-8. Third synchronous belt; 8-9. Tilting shaft; 8-10. Tilting seat; 8-11. Clamping assembly; 8-11-1. Fixed clamping plate; 8-11-2. Support plate; 8-11-3. First threaded seat; 8-11-4. First adjusting screw; 8-11-5. Movable clamping plate; 8-11-5-1. Limiting part; 8-11-6. Limiting rod; 8-12. Mounting plate;
[0030] 9-1, Fifth motor; 9-2, Second rotating shaft; 9-3, First conveyor wheel; 9-4, Conveyor frame; 9-4-1, Material support section; 9-5, Second conveyor wheel. Detailed Implementation
[0031] like Figure 1-9As shown, a spraying device for a titanium anode coating capable of full coverage includes a frame 1. A first support 2 and a second support 3 are connected to the top surface of the frame 1. A left-right moving mechanism 4 is installed on the top surface of the first support 2. A front-back moving mechanism 5 is arranged above the left-right moving mechanism 4 and the second support 3. A lifting mechanism 6 is installed on the right side of the front-back moving mechanism 5. A sprayer 7 is installed on the right side of the lifting mechanism 6. A flipping clamping mechanism 8 for holding a titanium anode plate 10 is arranged on the top surface of the frame 1 and below the sprayer 7. Conveying mechanisms 9 are arranged on both the left and right sides of the flipping clamping mechanism 8. The sprayer 7 is an externally purchased component and is existing technology. Its specific structure and operation will not be described in detail here.
[0032] like Figure 4 As shown, the left and right moving mechanism 4 includes a first motor 4-1, which is mounted on the top surface of the first bracket 2. A first mounting box is mounted on the left side of the first motor 4-1, and a first cover plate 4-4 is mounted on the top surface of the first mounting box. A first lead screw 4-2 is rotatably mounted inside the first mounting box. The first lead screw 4-2 is connected to the output end of the first motor 4-1. A first moving seat 4-3 is threaded onto the first lead screw 4-2. The first moving seat 4-3 has a first sliding groove that matches the first cover plate 4-4. The longitudinal section of the first moving seat 4-3 is U-shaped. During the left and right movement of the first moving seat 4-3, the first cover plate 4-4 is always in the first sliding groove, which plays a limiting role and prevents the first moving seat 4-3 from rotating together with the first lead screw 4-2, ensuring that the first moving seat 4-3 always moves in the left and right direction.
[0033] In use, the first motor 4-1 drives the first lead screw 4-2 to rotate, and the rotation of the first lead screw 4-2 drives the first moving seat 4-3 to move in the left and right directions, thereby driving the front and rear moving mechanism 5 to move in the left and right directions.
[0034] like Figure 4 , 5As shown, the forward and backward moving mechanism 5 includes a first mounting bracket 5-1. The rear end of the first mounting bracket 5-1 is connected to the top surface of the first moving seat 4-3. First slide rails 5-6 are mounted on the top surface of the first bracket 2 and on both the front and rear sides of the first mounting box. A first slider 5-7 matching the first slide rail 5-6 is mounted on the bottom surface of the rear end of the first mounting bracket 5-1. The front end of the first mounting bracket 5-1 is slidably connected to the second bracket 3. A second slide rail 5-8 is mounted on the top surface of the second bracket 3, and a slider 5-7 matching the second slide rail 5-7 is mounted on the bottom surface of the front end of the first mounting bracket 5-1. The slide rail 5-8 is matched with the second slider 5-9. The first mounting bracket 5-1 is equipped with the second motor 5-2 on the right side. The second motor 5-2 is equipped with the second mounting box on one side. The second mounting box is equipped with the second cover plate 5-5 on the right side. The second mounting box is rotatably equipped with the second lead screw 5-3. The second lead screw 5-3 is threadedly connected to the second moving seat 5-4. The second moving seat 5-4 is provided with the second slide groove that matches the second cover plate 5-5. The second moving seat 5-4 has the same structure as the first moving seat 4-3.
[0035] In use, the second motor 5-2 drives the second lead screw 5-3 to rotate, and the rotation of the second lead screw 5-3 drives the second moving seat 5-4 to move in the front-back direction, thereby driving the lifting mechanism 6 to move in the front-back direction.
[0036] like Figure 6 As shown, the lifting mechanism 6 includes a second mounting bracket 6-1, which is connected to the second movable seat 5-4. A third lead screw 6-6 is rotatably mounted on the right side of the second mounting bracket 6-1. The top end of the third lead screw 6-6 extends above the second mounting bracket 6-1 and is connected to the first driven wheel 6-4. A third motor 6-2 is mounted on the left side of the second mounting bracket 6-1. The output shaft of the third motor 6-2 extends above the second mounting bracket 6-1 and is connected to the first driving wheel 6-3. The first driving wheel 6-3 and the first driven wheel 6-4 are connected by a first synchronous belt 6-5. A third movable seat 6-7 is threaded onto the third lead screw 6-6. The sprayer 7 is mounted on the right side of the third movable seat 6-7. Third slide rails 6-8 are mounted on both the front and rear sides of the third lead screw 6-6. A third slider 6-9 matching the third slide rail 6-8 is mounted on the left outer wall of the sprayer 7.
[0037] In use, the third motor 6-2 drives the first drive wheel 6-3 to rotate. The first drive wheel 6-3 drives the first driven wheel 6-4 to rotate via the first synchronous belt 6-5. The rotation of the first driven wheel 6-4 drives the third lead screw 6-6 to rotate. The rotation of the third lead screw 6-6 drives the third moving seat 6-7 to move up and down, thereby driving the sprayer 7 to move up and down and adjusting the height of the sprayer 7 to place it in the optimal spraying position.
[0038] like Figure 7-9 As shown, the flipping clamping mechanism 8 includes two mounting plates 8-12 arranged side-by-side on the top surface of the frame 1. A flipping seat 8-10 is connected to the opposite surfaces of the two mounting plates 8-12 via a flipping shaft 8-9. A clamping assembly 8-11 is mounted on the flipping seat 8-10. A first rotating shaft 8-5 is located below the two mounting plates 8-12. A fourth motor 8-1 is located on one side of the first rotating shaft 8-5 to drive its rotation. The first rotating shaft 8-5 drives the clamping assembly 8-11 via a transmission assembly. The rotating shaft 8-9 rotates; specifically, the output shaft of the fourth motor 8-1 is equipped with a second driving wheel 8-2, and the rear end of the first rotating shaft 8-5 is equipped with a second driven wheel 8-3. The second driving wheel 8-2 and the second driven wheel 8-3 are connected by a second synchronous belt 8-4. The transmission assembly includes a third driving wheel 8-6, which is mounted on the first rotating shaft 8-5. The rotating shaft 8-9 is equipped with a third driven wheel 8-7, and the third driving wheel 8-6 and the third driven wheel 8-7 are connected by a third synchronous belt 8-8.
[0039] In use, the fourth motor 8-1 drives the second driving wheel 8-2 to rotate. The second driving wheel 8-2 drives the second driven wheel 8-3 to rotate via the second synchronous belt 8-4. The rotation of the second driven wheel 8-3 drives the first rotating shaft 8-5 to rotate. The rotation of the first rotating shaft 8-5 drives the third driving wheel 8-6 to rotate. The third driving wheel 8-6 drives the third driven wheel 8-7 to rotate via the third synchronous belt 8-8. The third driven wheel 8-7 drives the flipping shaft 8-9 and the flipping seat 8-10 to rotate. The rotation of the flipping seats 8-10 on both sides drives the titanium anode plate 10 to flip.
[0040] like Figure 8-9 As shown, the clamping assembly 8-11 includes a fixed clamping plate 8-11-1, which is connected to the flipping seat 8-10. A support plate 8-11-2 is connected to the top surface of the fixed clamping plate 8-11-1. In this embodiment, two support plates 8-11-2 are connected to the top surface of each fixed clamping plate 8-11-1. A first threaded seat 8-11-3 is connected to the support plate 8-11-2, and the first threaded seat 8-11-3 has a first threaded connection inside. The first adjusting screw 8-11-4 has a movable clamping plate 8-11-5 connected to its bottom end. The support plate 8-11-2 has a through groove, and a limiting rod 8-11-6 is connected inside the through groove. A limiting part 8-11-5-1 is connected to one side of the movable clamping plate 8-11-5. The limiting part 8-11-5-1 moves along the through groove, and a through hole matching the limiting rod 8-11-6 is provided on the limiting part 8-11-5-1.
[0041] In use, rotating the first adjusting screw 8-11-4 causes the movable clamping plate 8-11-5 to descend, so that the distance between the movable clamping plate 8-11-5 and the fixed clamping plate 8-11-1 matches the thickness of the titanium anode plate 10.
[0042] like Figure 7 As shown, the conveying mechanism 9 includes two symmetrically arranged conveyor frames 9-4. The conveyor frames 9-4 are connected to the top surface of the frame 1 via vertical plates. A second rotating shaft 9-2 is provided below the conveyor frame 9-4. A fifth motor 9-1 for driving the rotation of the second rotating shaft 9-2 is installed on one side of the second rotating shaft 9-2. A first conveyor wheel 9-3 is installed on the second rotating shaft 9-2 near the conveyor frame 9-4. Second conveyor wheels 9-5 are installed at the left and right ends of the conveyor frame 9-4. The first conveyor wheel 9-3 and the two second conveyor wheels 9-5 are arranged in a triangle. The first conveyor wheel 9-3 and the two second conveyor wheels 9-5 are connected by a conveyor belt. A material support part 9-4-1 for accommodating the conveyor belt is connected to the opposite side of the conveyor frame 9-4.
[0043] In use, the front and rear ends of the titanium anode plate 10 are placed on two conveyor belts respectively. The fifth motor 9-1 drives the second rotating shaft 9-2 to rotate. The rotation of the second rotating shaft 9-2 drives the first conveyor wheel 9-3 to rotate. The first conveyor wheel 9-3 drives the two second conveyor wheels 9-5 to rotate through the conveyor belt. During this process, the conveyor belt moves, thereby driving the titanium anode plate 10 to move and convey the titanium anode plate 10.
[0044] The working process of this utility model is as follows:
[0045] First, the titanium anode plate 10 is placed on the left-side conveying mechanism 9. The left-side conveying mechanism 9 moves the titanium anode plate 10 to the right, so that the titanium anode plate 10 moves between the movable clamping plate 8-11-5 and the fixed clamping plate 8-11-1. Then, the left-right moving mechanism 4 operates, driving the front-back moving mechanism 5, the lifting mechanism 6, and the sprayer 7 to move from left to right. The sprayer 7 sprays the top surface of the titanium anode plate 10 from left to right. After the sprayer 7 moves to the far right, the front-back moving mechanism 5 drives the lifting mechanism 6 and the sprayer 7 to move from back to front, so that the sprayer 7 moves forward and sprays... To apply another layer, the left-right moving mechanism 4 drives the sprayer 7 to spray from right to left, repeating the above process until the top surface of the titanium anode plate 10 is fully coated by the sprayer 7. Then, the flipping clamping mechanism 8 flips the titanium anode plate 10, and the sprayer 7 sprays the other side of the titanium anode plate 10 in the same manner. After the full coating is completed, the left conveying mechanism 9 transports the next titanium anode plate 10, which pushes the coated titanium anode plate 10 onto the right conveying mechanism 9, and the coated titanium anode plate 10 is then transported out by the right conveying mechanism 9.
[0046] The embodiments described above are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.
Claims
1. A spray device for a fully sprayable titanium anode coating, characterized by: The utility model provides a spraying device for titanium anode plate, including frame (1), the top of frame (1) is provided with first support (2) and second support (3), the top of first support (2) is provided with left and right moving mechanism (4), the top of left and right moving mechanism (4) and second support (3) is provided with front and back moving mechanism (5), the right side of front and back moving mechanism (5) is provided with lifting mechanism (6), the right side of lifting mechanism (6) is provided with sprayer (7), the top of frame (1) and be located the below of sprayer (7) is provided with turnover clamping mechanism (8) for clamping titanium anode plate (10), the left and right sides of turnover clamping mechanism (8) are provided with conveying mechanism (9).
2. A sprayable apparatus for a fully sprayable titanium anode coating according to claim 1, characterized in that: The left and right moving mechanism (4) includes a first motor (4-1), the first motor (4-1) is arranged on the top of the first support (2), the left side of the first motor (4-1) is provided with a first mounting box, the top of the first mounting box is provided with a first cover plate (4-4), the inside of the first mounting box is provided with a first lead screw (4-2), the first lead screw (4-2) is connected with the output end of the first motor (4-1), the first lead screw (4-2) is threadedly connected with a first moving seat (4-3), the first moving seat (4-3) is provided with a first sliding groove matched with the first cover plate (4-4).
3. A sprayable apparatus for a fully sprayable titanium anode coating according to claim 2, characterized in that: The front and back moving mechanism (5) includes a first mounting frame (5-1), the rear end of the first mounting frame (5-1) is arranged on the top of the first moving seat (4-3), the front end of the first mounting frame (5-1) is slidably connected with the second support (3), the right side of the first mounting frame (5-1) is provided with a second motor (5-2), one side of the second motor (5-2) is provided with a second mounting box, the right side of the second mounting box is provided with a second cover plate (5-5), the inside of the second mounting box is provided with a second lead screw (5-3), the second lead screw (5-3) is threadedly connected with a second moving seat (5-4), the second moving seat (5-4) is provided with a second sliding groove matched with the second cover plate (5-5).
4. A spray apparatus for a fully sprayable titanium anode coating according to claim 3, characterized in that: The lifting mechanism (6) comprises a second mounting frame (6-1), the second mounting frame (6-1) is connected with the second moving seat (5-4), the right side of the second mounting frame (6-1) is provided with a third lead screw (6-6), the top end of the third lead screw (6-6) extends to the upper side of the second mounting frame (6-1) and is connected with a first driven wheel (6-4), the left side of the second mounting frame (6-1) is provided with a third motor (6-2), the output shaft of the third motor (6-2) extends to the upper side of the second mounting frame (6-1) and is connected with a first driving wheel (6-3), the first driving wheel (6-3) and the first driven wheel (6-4) are drivingly connected through a first synchronous belt (6-5), a third moving seat (6-7) is threadedly connected on the third lead screw (6-6), the right side of the third moving seat (6-7) is provided with the sprayer (7), the front and rear sides of the third lead screw (6-6) are provided with third sliding rails (6-8), and the left side outer wall of the sprayer (7) is provided with third sliding blocks (6-9) matched with the third sliding rails (6-8).
5. A sprayable apparatus for a fully sprayable titanium anode coating according to claim 1, characterized in that: The overturning clamping mechanism (8) comprises two mounting plates (8-12) arranged side by side in front and back, and overturning seats (8-10) are connected on the opposite surfaces of the two mounting plates (8-12) through overturning shafts (8-9), clamping assemblies (8-11) are arranged on the overturning seats (8-10), and first rotating shafts (8-5) are arranged below the two mounting plates (8-12).
6. A sprayable apparatus for a fully sprayable titanium anode coating according to claim 5, characterized in that: The clamping assembly (8-11) comprises a fixed clamping plate (8-11-1), the fixed clamping plate (8-11-1) is connected with the overturning seat (8-10), a supporting plate (8-11-2) is arranged on the top surface of the fixed clamping plate (8-11-1), a first threaded seat (8-11-3) is arranged on the supporting plate (8-11-2), a first adjusting screw (8-11-4) is threadedly connected in the first threaded seat (8-11-3), a movable clamping plate (8-11-5) is arranged at the bottom end of the first adjusting screw (8-11-4), a through groove is formed in the supporting plate (8-11-2), a limiting rod (8-11-6) is arranged in the through groove, a limiting portion (8-11-5-1) is arranged on one side of the movable clamping plate (8-11-5), the limiting portion (8-11-5-1) moves along the through groove, and a through hole matched with the limiting rod (8-11-6) is arranged on the limiting portion (8-11-5-1).
7. A sprayable apparatus for a fully sprayable titanium anode coating according to claim 1, characterized in that: The conveying mechanism (9) comprises two conveying frames (9-4) arranged symmetrically front and back, a second rotating shaft (9-2) is arranged below the conveying frame (9-4), one side of the second rotating shaft (9-2) is provided with a fifth motor (9-1) for driving the second rotating shaft (9-2) to rotate, a first conveying wheel (9-3) is arranged on the second rotating shaft (9-2) close to the conveying frame (9-4), and second conveying wheels (9-5) are arranged at the left and right ends of the conveying frame (9-4); the first conveying wheel (9-3) and the two second conveying wheels (9-5) are connected through a conveying belt.