Anode titanium basket capable of being opened, closed and reset
By designing anode titanium baskets that can be opened and closed and reset, the problem of low conductivity of traditional titanium baskets is solved, the regularity of anode dissolution and the stability of coating quality are achieved, and the phenomenon of suspension and bypass are avoided.
Patent Information
- Application Number
- CN202422206976.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The conductive efficiency of traditional titanium baskets is easily affected by contact breaks, resulting in uneven appearance of sulfur-containing nickel buckles, and the electrolysis process is prone to suspending materials and bypassing, affecting the quality of the nickel plating layer.
Design an anode titanium basket that can be opened and closed and reset, including a rectangular basket, vertical and horizontal plate bodies, staggered copper rows and lock structures, increase the conductive area, and allow rapid adjustment of the anode material to control the potential difference.
The regularity of anode dissolution is achieved, suspended materials and bypass phenomena, stabilizes the quality of sulfur-containing nickel buckle plating, and ensures conductive efficiency.
Smart Images

Figure CN223134632U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of sulfur-containing nickel button production, and relates to an anodic titanium basket that can be opened, closed and reset. Background Art
[0002] Electrolytic sulfur-containing nickel buttons, as an important electroplating industrial material, are usually produced with a relatively high current density. Affected by the power line distribution of the anodic titanium basket, there are potential differences in the anodic dissolution, and the anodic dissolution process shows the characteristics of irregular dissolution. If the anodic titanium basket cannot be opened and adjusted in time during the dissolution process, problems such as suspended materials and bridging are likely to occur in the electrolysis process, affecting the quality of the nickel plating layer of the sulfur-containing nickel button and the normal electro-deposition process.
[0003] Traditional titanium baskets usually adopt the form of "standard regular square columns". The contact area of the two groups of parallel conductive copper lugs is relatively small, and the conductive efficiency is easily affected by the disconnection of the contact points, resulting in the reverse dissolution of the nickel plating layer and unevenness on the surface of the sulfur-containing nickel button. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an anodic titanium basket that can be opened, closed and reset in view of the problems existing in the prior art, and solves the problem that the conductive efficiency of the traditional titanium basket is easily affected by the disconnection of the contact points, resulting in an unattractive appearance of the sulfur-containing nickel button.
[0005] To this end, the utility model adopts the following technical solutions:
[0006] An anodic titanium basket that can be opened, closed and reset, including a basket body. The basket body is in a cuboid shape, with an opening at its top. The basket body includes two first plate bodies and two second plate bodies arranged vertically, and a third plate body arranged horizontally.
[0007] The first plate body is square, the second plate body and the third plate body are both rectangular. A number of mesh holes are provided in the middle of the first plate body, the second plate body and the third plate body. A number of copper bars are provided at the top of the first plate body, a number of first locks are provided on both sides, and a number of second locks are provided at the bottom.
[0008] Further, two copper bars are provided at the top edges of the first plate body, and they are arranged vertically. The copper bars on the two first plate bodies are arranged staggeredly.
[0009] Further, the mesh holes are circular, and their aperture is 5 - 15 mm.
[0010] Further, there are two first locks in total, and they are symmetrically arranged at the central positions on both sides of the edge of the first plate body.
[0011] Further, there are two second locks in total, and they are respectively located at the one-third position and the two-thirds position of the bottom edge of the first plate body.
[0012] Further, there are 4 copper bars in total, with a length of 600 - 650 mm. Lifting lugs are provided at the top of the copper bars, and the inner diameter of the lifting lugs is 42 - 45 mm.
[0013] Further, the first plate body, the second plate body, the third plate body, the first locking device and the second locking device are all made of titanium.
[0014] The beneficial effects of the present utility model are as follows:
[0015] When fluctuations occur during the electrolytic anode dissolution process, the present utility model can conveniently and quickly adjust the anode material, thereby adjusting the anode potential difference. Under the condition that the anode is not passivated, the anode dissolution shows a regular dissolution trend, eliminating the phenomena of hanging materials and bridging, and stabilizing the quality of the sulfur-containing nickel button coating. Specifically, by arranging a number of parallel and aligned copper bars, the present utility model increases the contact area between the conductive copper lifting lugs and the titanium basket body, reduces the influence of poor contact conductivity at the contact points, and ensures the uniformity of the anode dissolution process. Description of the Drawings
[0016] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0017] Figure 2 is a front-view structural schematic diagram of the present utility model;
[0018] Figure 3 is a top-view structural schematic diagram of the present utility model;
[0019] Figure 4 is a side-view structural schematic diagram of the present utility model.
[0020] In the figure, 1 - basket body, 1a - first plate body, 1b - second plate body, 1c - third plate body, 2 - mesh holes, 3 - first locking device, 4 - second locking device, 5 - copper bar. Specific Embodiments
[0021] The technical solutions of the present utility model will be described in detail below in conjunction with the drawings and embodiments.
[0022] As Figures 1 to 4 shown, an anode titanium basket capable of opening, closing and resetting includes a basket body 1. The basket body 1 is in a cuboid shape with an opening provided at the top. The basket body 1 includes two vertically arranged first plate bodies 1a and two second plate bodies 1b, and a horizontally arranged third plate body 1c. The first plate body 1a, the second plate body 1b, the third plate body 1c, the first locking device 3 and the second locking device 4 are all made of titanium.
[0023] Specifically, the first plate body 1a is square, the second plate body 1b and the third plate body 1c are both rectangular, and a plurality of mesh holes 2 are provided in the middle of the first plate body 1a, the second plate body 1b and the third plate body 1c. The mesh holes 2 are circular, and their aperture is 5-15 mm.
[0024] Four copper bars 5 are provided at the top edges of the first plate body 1a, and the two are arranged vertically. The copper bars 5 on the two first plate bodies 1a are arranged staggeredly. Specifically, the length of the copper bar 5 is 600-650 mm, and a lifting lug is provided at the top of the copper bar 5, and the inner diameter of the lifting lug is 42-45 mm.
[0025] Two first locks 3 are provided on both sides of the first plate body 1a, and two second locks 4 are provided at the bottom; wherein, the two first locks 3 are symmetrically arranged at the central positions of the two side edges of the first plate body 1a; the two second locks 4 are respectively located at the one-third position and the two-thirds position of the bottom edge of the first plate body 1a.
[0026] The working principle of the present utility model is as follows:
[0027] When it is judged that there is a fault in the dissolution process of the titanium basket anode, the silicon rectifier does not stop running, and the anode titanium basket is adjusted separately. Any one of the locks on the main surface is disassembled, and by adding and replacing the anode material at any corner, the dissolution area of any corner of the titanium basket can be adjusted; at the same time, the two second locks 4 on the main surface are disassembled, and the adjustment of the anode dissolution area on the upper or lower main surface of the titanium basket can be realized; at the same time, the two first locks 3 on the main surface are disassembled, and the adjustment of the anode dissolution area on the left or right half of the titanium basket can be realized; by disassembling different numbers of the main surface titanium locks, the purpose of adjusting the anode material is achieved, and the cathode-anode area ratio is dynamically adjusted during the nickel plating process to ensure that the cathode-anode area ratio remains within the optimal range and ensure the physical appearance of the sulfur-containing nickel button.
Claims
1. An anodic titanium basket that can be opened, closed and reset, characterized in that It includes a basket body (1), the basket body (1) is in a cuboid shape, with an opening at its top, and the basket body (1) includes two first plate bodies (1a) and two second plate bodies (1b) arranged vertically, and a third plate body (1c) arranged horizontally; The first plate body (1a) is square, the second plate body (1b) and the third plate body (1c) are both rectangular, and a number of mesh holes (2) are provided in the middle of the first plate body (1a), the second plate body (1b), and the third plate body (1c). A number of copper bars (5) are provided at the top of the first plate body (1a), a number of first locks (3) are provided on both sides, and a number of second locks (4) are provided at the bottom.
2. The anode titanium basket capable of opening, closing and resetting according to claim 1, wherein Two copper bars (5) are provided at the top edges of the first plate body (1a), and they are arranged vertically, and the copper bars (5) on the two first plate bodies (1a) are arranged staggeredly.
3. A closable and resetable anodic titanium basket according to claim 1, characterized in that, The mesh hole (2) is circular, and its aperture is 5 - 15 mm.
4. A closable and resetable anode titanium basket according to claim 1, characterized in that, There are two first locks (3) in total, and they are symmetrically arranged at the central positions on both side edges of the first plate body (1a).
5. A closable and resetable anodic titanium basket according to claim 1, characterized in that, There are two second locks (4) in total, and they are respectively located at the one-third position and the two-thirds position of the bottom edge of the first plate body (1a).
6. The anodic titanium basket capable of opening, closing and resetting according to claim 1, characterized in that, There are 4 copper bars (5) in total, and their length is 600 - 650 mm. A lifting lug is provided at the top of the copper bar (5), and the inner diameter of the lifting lug is 42 - 45 mm.
7. A closable and resetable anode titanium basket according to claim 1, characterized in that, The first plate body (1a), the second plate body (1b), the third plate body (1c), the first lock (3), and the second lock (4) are all made of titanium.