Anode titanium basket air suction module
By incorporating suction holes and suction pipes on the outer periphery of the anode titanium basket, the problem of vapor corrosion was solved, thus extending the service life of the centrifugal electroplating equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHAOQING YINGTUO AUTOMATION EQUIP TECH CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-04-24
AI Technical Summary
In the prior art, during the centrifugal electroplating process, the anode titanium basket is prone to corrosion because the steam directly acts on the relevant components.
An anode titanium basket air intake module was designed, including an air intake hood, an air intake pipe, a mounting assembly, and a driving device. Multiple air intake holes are set on the outer periphery of the anode titanium basket, and the steam is drawn away through the air intake pipe to prevent steam from corroding the parts.
It effectively prevents steam corrosion of relevant components of centrifugal electroplating equipment, thus improving the service life of the equipment.
Smart Images

Figure CN224160727U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of centrifugal electroplating technology, and in particular to an anode titanium basket air intake module. Background Technology
[0002] Electroplating technology, as a core process in surface treatment, is widely used in the electronics, automotive, aerospace, and decorative industries. With increasing industrial demands for coating quality and production efficiency, electroplating processes are gradually evolving towards higher current density, lower energy consumption, and environmental friendliness. In centrifugal electroplating, anode materials are typically loaded into titanium baskets.
[0003] However, in the existing technology, during the centrifugal electroplating process, the anode titanium basket is generally placed directly inside the cathode electroplating tank. The generated steam will directly act upward on the relevant components of the anode titanium basket, making the relevant components of the anode titanium basket susceptible to steam corrosion. Utility Model Content
[0004] The purpose of this invention is to propose an anode titanium basket air intake module to solve the problem in the prior art where, during the centrifugal electroplating process, the anode titanium basket is generally placed directly inside the cathode electroplating tank, and the generated steam directly acts upward on the relevant components of the anode titanium basket, causing the relevant components of the anode titanium basket to be easily corroded by the steam.
[0005] To achieve this objective, the present invention adopts the following technical solution:
[0006] An anode titanium basket air intake module includes an anode titanium basket, an air intake hood, an air intake pipe, a mounting assembly, a fixing plate, and a driving device;
[0007] The driving device is mounted on the fixed plate, and the output end of the driving device is connected to the top of the mounting assembly. The anode titanium basket and the suction hood are respectively mounted on the bottom of the mounting assembly. The suction hood is located on the outer periphery of the anode titanium basket. The suction hood has multiple suction holes, which are evenly spaced along the circumference of the suction hood. The suction pipe is mounted on the mounting assembly and communicates with the multiple suction holes.
[0008] Furthermore, the mounting assembly includes a titanium basket top seat, a water distribution ring, a friction pad, a slot seat, a conductive plate, a conductive cover, and connectors;
[0009] The water distribution ring is installed inside the titanium basket top seat, the titanium basket top seat and the air suction hood are respectively installed on the bottom surface of the friction pad, and the air suction hood is located on the outer periphery of the titanium basket top seat;
[0010] The card slot is mounted on the top surface of the friction pad, the conductive plate is mounted on the top surface of the card slot, the conductive cover is mounted on the top surface of the friction pad, the conductive cover covers the card slot and the conductive plate, the conductive cover has a first through hole, and the output end of the driving device is connected to the conductive cover;
[0011] The friction pad is provided with a second through hole, the air suction pipe is installed on the conductive cover, and the air suction pipe is connected to the air suction cover through the first through hole and the second through hole;
[0012] One end of the connector is connected to the anode titanium basket, and the other end of the connector passes through the water distribution ring, the top seat of the titanium basket, the friction pad and the slot seat in sequence, and can be detachably installed on the conductive plate.
[0013] Specifically, the connector includes a main rod, a connecting strip, a connecting rod, and a threaded rod;
[0014] One end of the main rod is connected to one end of a plurality of connecting strips, and the other end of the plurality of connecting strips is connected to the inner bottom surface of the anode titanium basket. The plurality of connecting strips are evenly spaced along the outer periphery of the main rod.
[0015] The other end of the main rod is connected to one end of the connecting rod, and the other end of the connecting rod is connected to the threaded rod.
[0016] Preferably, it further includes an elastic element, a sliding bar, and a locking element;
[0017] The sliding bar is slidably mounted on the slot seat. The sliding bar has a third through hole and a fourth through hole. The first through hole communicates with the second through hole. The locking member is detachably mounted on the conductive cover. One end of the elastic member abuts against the locking member, and the other end of the elastic member abuts against one end of the sliding bar. The other end of the sliding bar can protrude from the outer periphery of the conductive cover.
[0018] The diameter of the threaded rod is greater than the diameter of the third through hole, the diameter of the threaded rod is less than or equal to the diameter of the fourth through hole, and the diameter of the connecting rod is less than or equal to the diameter of the third through hole.
[0019] In some embodiments, the card slot is provided with a travel groove, and the sliding bar is provided with a protrusion located within the travel groove.
[0020] Furthermore, it also includes conductive rods, guide rods, and connecting plates;
[0021] The conductive rod and the guide rod are movably mounted on the fixed plate. One end of the conductive rod and one end of the guide rod are respectively connected to the two ends of the connecting plate, and the other end of the conductive rod and the other end of the guide rod are respectively connected to the conductive plate.
[0022] Specifically, it also includes a chemical tube, which is movably installed on the fixed plate and is connected to the interior of the anode titanium basket through the water distribution ring.
[0023] Preferably, the top of the water distribution ring is provided with a water distribution groove, the water distribution groove is provided with a plurality of water distribution holes, the plurality of water distribution holes are evenly spaced along the circumferential direction of the water distribution groove, and the plurality of water distribution holes are directly facing the interior of the anode titanium basket.
[0024] Compared with the prior art, one of the above technical solutions has the following beneficial effects:
[0025] By using an anode titanium basket, a suction hood, suction holes, suction pipes, mounting components, a fixing plate, and a drive device, multiple suction holes are set on the outer periphery of the anode titanium basket to efficiently remove the steam generated during the centrifugal electroplating process, preventing steam corrosion of related components inside the centrifugal electroplating equipment and thus improving the service life of the centrifugal electroplating equipment. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of the anode titanium basket air intake module according to one embodiment of the present invention;
[0027] Figure 2 This is a schematic diagram of the installation component according to one embodiment of the present invention;
[0028] Figure 3 This is a schematic diagram of the structure of the elastic member and the locking member according to one embodiment of the present utility model;
[0029] Figure 4 yes Figure 3 A magnified view of point A;
[0030] Figure 5 This is a schematic diagram of the structure of the connector according to one embodiment of the present utility model;
[0031] Figure 6 This is a schematic diagram of the structure of a sliding bar according to one embodiment of the present invention;
[0032] The components include: 1. Anode titanium basket; 2. Suction hood; 21. Suction hole; 3. Suction pipe; 4. Mounting assembly; 41. Titanium basket top seat; 42. Water distribution ring; 421. Water distribution groove; 422. Water distribution hole; 43. Friction pad; 431. Second through hole; 44. Slot seat; 441. Stroke groove; 45. Conductive plate; 46. Conductive cover; 461. First through hole; 47. Connector; 471. Main rod; 472. Connecting strip; 473. Connecting rod; 474. Threaded rod; 5. Fixing plate; 6. Driving device; 71. Elastic element; 72. Sliding strip; 721. Third through hole; 722. Fourth through hole; 723. Protrusion; 73. Locking element; 81. Conductive rod; 82. Guide rod; 83. Connecting plate; 9. Chemical pipe. Detailed Implementation
[0033] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0034] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "left," "right," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," "outer," "inner side," "outer side," "inner end," "outer end," "axial," "radial," and "circumferential," etc., indicating the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined with "first" and "second" may explicitly or implicitly include one or more of these features, used to distinguish descriptive features, without any order or emphasis. In the description of this utility model, unless otherwise stated, "multiple" means two or more.
[0035] In one embodiment of this utility model, such as Figure 1-6As shown, an anode titanium basket air intake module includes an anode titanium basket 1, an air intake hood 2, an air intake pipe 3, a mounting assembly 4, a fixing plate 5, and a driving device 6. The driving device 6 is mounted on the fixing plate 5, and its output end is connected to the top of the mounting assembly 4. The anode titanium basket 1 and the air intake hood 2 are respectively mounted on the bottom of the mounting assembly 4. The air intake hood 2 is located on the outer periphery of the anode titanium basket 1, and it has a plurality of air intake holes 21. The plurality of air intake holes 21 are evenly spaced along the circumferential direction of the air intake hood 2. The air intake pipe 3 is mounted on the mounting assembly 4 and communicates with the plurality of air intake holes 21. In this embodiment, the driving device 6 is a cylinder, which is mounted on the fixed plate 5. The output end of the driving device 6 passes through the fixed plate 5 and is connected to the top of the mounting assembly 4. The top of the anode titanium basket 1 and the suction hood 2 are both mounted on the bottom of the mounting assembly 4. The suction hood 2 is located on the outer periphery of the top of the anode titanium basket 1. The multiple suction holes 21 of the suction hood 2 are vertically downward. The suction pipe 3 is mounted on the mounting assembly 4. One end of the suction pipe 3 is connected to an external fan, and the other end of the suction pipe 3 is connected to the multiple suction holes 21. During operation, the moving module carrying the cathode electroplating tank moves to the anode titanium basket. After the basket 1 is positioned below, the output shaft of the drive device 6 extends, thereby placing the anode titanium basket 1 inside the cathode electroplating tank for centrifugal electroplating. The steam generated during the electroplating process is drawn away by the suction hood 2. Specifically, the steam is drawn away by the suction pipe 3 through multiple annularly arranged suction holes 21 to prevent steam from corroding the components. This application uses the anode titanium basket 1, suction hood 2, suction holes 21, suction pipe 3, mounting assembly 4, fixing plate 5, and drive device 6 to provide multiple suction holes 21 on the outer periphery of the anode titanium basket 1, which efficiently draws away the steam generated during the centrifugal electroplating process, preventing steam from corroding the relevant components inside the centrifugal electroplating equipment and thus improving the service life of the centrifugal electroplating equipment.
[0036] like Figure 2-5As shown, the mounting assembly 4 includes a titanium basket top seat 41, a water-dividing ring 42, a friction pad 43, a slot seat 44, a conductive plate 45, a conductive cover 46, and a connector 47. The water-dividing ring 42 is installed inside the titanium basket top seat 41. The titanium basket top seat 41 and the suction hood 2 are respectively installed on the bottom surface of the friction pad 42, and the suction hood 2 is located on the outer periphery of the titanium basket top seat 41. The slot seat 44 is installed on the top surface of the friction pad 43, the conductive plate 45 is installed on the top surface of the slot seat 44, and the conductive cover 46 is installed on the top surface of the friction pad 43, covering the... The card slot seat 44 and the conductive plate 45 are provided. The conductive cover 46 is provided with a first through hole 461. The output end of the driving device 6 is connected to the conductive cover 46. The friction pad 43 is provided with a second through hole 431. The suction pipe 3 is installed on the conductive cover 46. The suction pipe 3 communicates with the suction hood 2 through the first through hole 461 and the second through hole 431. One end of the connector 47 is connected to the anode titanium basket 1. The other end of the connector 47 passes through the water distribution ring 42, the titanium basket top seat 41, the friction pad 43 and the card slot seat 44 in sequence, and is detachably installed on the conductive plate 45. In this embodiment, during installation, the water-dividing ring 42 is installed inside the bottom of the titanium basket top seat 41, and then the top of the titanium basket top seat 41 is installed on the friction pad 43. The suction hood 2 is installed on the bottom surface of the friction pad 43, and the suction hood 2 is located on the outer periphery of the titanium basket top seat 41. The bottom surface of the slot seat 44 is installed on the friction pad 43, the bottom surface of the conductive plate 45 is installed on the top surface of the slot seat 44, and the conductive cover 46 is installed on the top surface of the friction pad 43. The conductive cover 46 covers the conductive plate 45 and the slot seat 44, providing protection. The output end of the drive device 6 is connected to the top surface of the conductive cover 46. Preferably, the titanium basket top seat 41, the friction pad 43, and the water-dividing ring 42 are installed on the bottom of the titanium basket top seat 41, and the friction pad 43 are installed on the bottom surface of the titanium basket top seat 41. The bottom surface of the titanium basket top seat 41, the friction pad 43, and the water-dividing ring 42 are installed on the bottom surface ... The pad 43, the slot seat 44, and the conductive plate 45 are integrated into a single structure, as are the conductive cover 46, the friction pad 43, and the suction hood 2. This makes the connection structure more compact, stable, and integrated. The suction pipe 3 is installed on the conductive cover 46 and communicates with multiple suction holes 21 of the suction hood 2 through the first through hole 461 and the second through hole 431. The bottom end of the connector 47 is installed inside the anode titanium basket 1, and the top end of the connector 47 passes through the water distribution ring 42, the titanium basket top seat 41, the friction pad 43, and the slot seat 44 in sequence to connect with the conductive plate 45. Specifically, the top end of the connector 47 and the interior of the conductive plate 45 are connected by a threaded structure for easy disassembly and assembly.
[0037] like Figure 2-5As shown, the connector 47 includes a main rod 471, connecting strips 472, connecting rods 473, and threaded rods 474. One end of each of the connecting strips 472 is connected to the outer periphery of one end of the main rod 471. The other ends of the connecting strips 472 are connected to the inner bottom surface of the anode titanium basket 1. The connecting strips 472 are evenly spaced along the outer periphery of the main rod 471. The other end of the main rod 471 is connected to one end of the connecting rod 473, and the other end of the connecting rod 473 is connected to the threaded rod 474. In this embodiment, there are three connecting strips 472. The bottom end of the main rod 471 is connected to the middle of the inner bottom surface of the anode titanium basket 1 and is reinforced by the three connecting strips 472 to ensure the stability of the connection. The top end of the main rod 471 is connected to the threaded rod 474 via the connecting rod 473. The threaded rod 474 has external threads on its outer periphery, which are adapted to the internal threads of the conductive plate 45.
[0038] like Figure 3-6As shown, it also includes an elastic element 71, a sliding strip 72, and a locking element 73; the sliding strip 72 is slidably mounted on the slot seat 44, and the sliding strip 72 has a third through hole 721 and a fourth through hole 722, the first through hole 721 and the second through hole 722 are connected, the locking element 73 is detachably mounted on the conductive cover 46, one end of the elastic element 71 abuts against the locking element 73, the other end of the elastic element 71 abuts against one end of the sliding strip 72, and the other end of the sliding strip 72 can protrude from the outer periphery of the conductive cover 46; the diameter of the threaded rod 474 is greater than the diameter of the third through hole 721, the diameter of the threaded rod 474 is less than or equal to the diameter of the fourth through hole 722, and the diameter of the connecting rod 473 is less than or equal to the diameter of the third through hole 721. In this embodiment, the locking element 73 is a locking screw for easy assembly and disassembly, the elastic element 71 is a spring, the diameter of the threaded rod 474 is larger than the maximum diameter of the third through hole 721, the diameter of the threaded rod 474 is less than or equal to the minimum diameter of the fourth through hole 722, and the diameter of the connecting rod 473 is less than or equal to the minimum diameter of the third through hole 721. That is, the threaded rod 474 can pass through the fourth through hole 722, but the threaded rod 474 cannot pass through the third through hole 721. The conductive cover 46 has a corresponding clearance area, allowing the sliding strip 72 sufficient space to pass through and protrude from the outer periphery of the conductive cover 46. When disassembling the anode titanium basket 1, first rotate the anode titanium basket 1 to disengage the threaded rod 474 from the bottom of the conductive plate 45. At this time, the connecting rod 473 slides downward in the third through hole 721. When the threaded rod 474 is completely disengaged from the internal threaded hole of the conductive plate 45, because the diameter of the threaded rod 474 is larger than the diameter of the third through hole 721, When the bottom surface of the threaded rod 474 cannot pass through the top surface of the third through hole 721, pressing one end of the sliding bar 72 protruding from the outer periphery of the conductive cover 46 causes the sliding bar 72 to slide within the slot seat 44, compressing the elastic element 71 and moving the fourth through hole 722 directly opposite the threaded rod 474. At this point, the threaded rod 474 can pass through the sliding bar 72 and disengage, thus disassembling the anode titanium basket 1. After releasing the pressing end of the sliding bar 72, the sliding bar 72... The elastic element 71 is reset under the elastic force. In this embodiment, through the elastic element 71, sliding bar 72, third through hole 721, fourth through hole 722 and locking element 73, the phenomenon that the threaded rod 474 of the anode titanium basket 1 suddenly comes out of the conductive plate 45 and falls into the cathode electroplating tank below can be avoided when the employee does not know the number of rotations of the threaded part during disassembly. This is because the anode titanium basket 1 contains nickel balls or tin balls, and if it falls directly into the cathode electroplating tank, it will damage its interior.
[0039] like Figure 3-6As shown, the card slot 44 is provided with a travel groove 441, and the sliding bar 72 is provided with a protrusion 723, which is located within the travel groove 441. In this embodiment, the travel groove 441 is provided inside the card slot 44, so that the protrusion 723 of the sliding bar 72 is located within the travel groove 441. When the sliding bar 72 slides, the protrusion 723 slides within the travel groove 441. The travel groove 441 can play a limiting role, which can prevent the sliding bar 72 from excessively compressing the elastic element 71 and causing it to break, and can also prevent the sliding bar 72 from coming out of the card slot 44 under the action of elastic force.
[0040] like Figure 1-3 As shown, the device also includes a conductive rod 81, a guide rod 82, and a connecting plate 83. The conductive rod 81 and the guide rod 82 are movably mounted on the fixed plate 5. One end of the conductive rod 81 and one end of the guide rod 82 are respectively connected to the two ends of the connecting plate 83, and the other end of the conductive rod 81 and the other end of the guide rod 82 are respectively connected to the conductive plate 45. In this embodiment, the conductive rod 81 and the guide rod 82 are located on both sides of the driving device 6. The conductive rod 81 is a prior art device, and its interior is provided with a copper strip for conducting electricity with the conductive plate 45, thereby energizing the anode titanium basket 1. The conductive rod 81 and the guide rod 82 also serve a guiding function to ensure that the anode titanium basket 1 does not deviate when it is raised or lowered.
[0041] like Figure 1-3 As shown, it also includes a chemical solution pipe 9, which is movably installed on the fixing plate 5. The chemical solution pipe 9 communicates with the interior of the anode titanium basket 1 through the water distribution ring 42. In this embodiment, the water distribution ring 42 is installed at the bottom of the titanium basket top seat 41, and the water distribution ring 42 is directly opposite the interior of the anode titanium basket 1. The chemical solution pipe 9 is installed on the fixing plate 5, and the top of the chemical solution pipe 9 communicates with the chemical solution tank. The other end of the chemical solution pipe 9 passes sequentially through the conductive cover 46, the conductive plate 45, the slot seat 44, the friction pad 43, and the titanium basket top seat 41, and communicates with the water distribution ring 42, and then delivers electroplating solution into the interior of the anode titanium basket 1 through the water distribution ring 42.
[0042] like Figure 1-3As shown, the top of the water-distributing ring 42 is provided with a water-distributing groove 421, and the water-distributing groove 421 is provided with a plurality of water-distributing holes 422. The plurality of water-distributing holes 422 are evenly spaced along the circumference of the water-distributing groove 421, and the plurality of water-distributing holes 422 are directly opposite the interior of the anode titanium basket 1. In this embodiment, the chemical pipe 9 is connected to the water-distributing groove 421 of the water-distributing ring 42. The water-distributing groove 421 is provided with four water-distributing holes 422. The chemical pipe 9 delivers electroplating solution to the water-distributing groove 421 of the water-distributing ring 42, and then the electroplating solution is evenly poured into the interior of the anode titanium basket 1 below through the four water-distributing holes 422.
[0043] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0044] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. An anode titanium basket air intake module, characterized in that: Includes an anode titanium basket, a suction hood, a suction pipe, mounting components, a mounting plate, and a drive unit; The driving device is mounted on the fixed plate, and the output end of the driving device is connected to the top of the mounting assembly. The anode titanium basket and the suction hood are respectively mounted on the bottom of the mounting assembly. The suction hood is located on the outer periphery of the anode titanium basket. The suction hood has multiple suction holes, which are evenly spaced along the circumference of the suction hood. The suction pipe is mounted on the mounting assembly and communicates with the multiple suction holes.
2. The anode titanium basket getter module of claim 1, wherein: The installation components include a titanium basket top, a water distribution ring, a friction pad, a card slot, a conductive plate, a conductive cover, and connectors; The water distribution ring is installed inside the titanium basket top seat, the titanium basket top seat and the air suction hood are respectively installed on the bottom surface of the friction pad, and the air suction hood is located on the outer periphery of the titanium basket top seat; The card slot is mounted on the top surface of the friction pad, the conductive plate is mounted on the top surface of the card slot, the conductive cover is mounted on the top surface of the friction pad, the conductive cover covers the card slot and the conductive plate, the conductive cover has a first through hole, and the output end of the driving device is connected to the conductive cover; The friction pad is provided with a second through hole, the air suction pipe is installed on the conductive cover, and the air suction pipe is connected to the air suction cover through the first through hole and the second through hole; One end of the connector is connected to the anode titanium basket, and the other end of the connector passes through the water distribution ring, the top seat of the titanium basket, the friction pad and the slot seat in sequence, and can be detachably installed on the conductive plate.
3. The anode titanium basket getter module of claim 2, wherein: The connector includes a main rod, a connecting strip, a connecting rod, and a threaded rod; One end of the main rod is connected to one end of a plurality of connecting strips, and the other end of the plurality of connecting strips is connected to the inner bottom surface of the anode titanium basket. The plurality of connecting strips are evenly spaced along the outer periphery of the main rod. The other end of the main rod is connected to one end of the connecting rod, and the other end of the connecting rod is connected to the threaded rod.
4. The anode titanium basket getter module of claim 3, wherein: It also includes elastic components, sliding bars, and locking components; The sliding strip is slidably mounted on the slot seat. The sliding strip has a third through hole and a fourth through hole. The first through hole communicates with the second through hole. The locking member is detachably mounted on the conductive cover. One end of the elastic member abuts against the locking member, and the other end of the elastic member abuts against one end of the sliding strip. The other end of the sliding strip can protrude from the outer periphery of the conductive cover. The diameter of the threaded rod is greater than the diameter of the third through hole, the diameter of the threaded rod is less than or equal to the diameter of the fourth through hole, and the diameter of the connecting rod is less than or equal to the diameter of the third through hole.
5. The anode titanium basket getter module of claim 4, wherein: The card slot is provided with a travel groove, and the sliding bar is provided with a protrusion, which is located in the travel groove.
6. The anode titanium basket getter module of claim 2, wherein: It also includes conductive rods, guide rods, and connecting plates; The conductive rod and the guide rod are movably mounted on the fixed plate. One end of the conductive rod and one end of the guide rod are respectively connected to the two ends of the connecting plate, and the other end of the conductive rod and the other end of the guide rod are respectively connected to the conductive plate.
7. The anode titanium basket getter module of claim 2, wherein: It also includes a chemical tube, which is movably installed on the fixed plate and is connected to the interior of the anode titanium basket through the water distribution ring.
8. The anode titanium basket getter module of claim 7, wherein: The top of the water distribution ring is provided with a water distribution groove, and the water distribution groove is provided with multiple water distribution holes. The multiple water distribution holes are evenly spaced along the circumference of the water distribution groove, and the multiple water distribution holes are directly facing the interior of the anode titanium basket.