Anode plate mounting structure of electrochemical water treatment equipment
By using inverted T-shaped groove design and insulating pads, the problem of unstable anode plate installation was solved, enhancing the stability and corrosion resistance of the electrochemical water treatment equipment and extending its service life.
Patent Information
- Application Number
- CN202520142320.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-21
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Figure CN223766161U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of water treatment equipment, specifically to an anode plate mounting structure for an electrochemical water treatment device. Background Technology
[0002] Scale is a thick layer of impurities that builds up on the inner walls of containers that frequently come into direct contact with water over time. Scale is generally white or yellowish-white and is commonly found on the surfaces of water-using appliances or inside pipes. Its main components are water-insoluble compounds such as calcium carbonate, calcium sulfate, magnesium hydroxide, and magnesium carbonate. Therefore, removing scale requires appropriate descaling equipment.
[0003] Therefore, the inventor has applied for an electrochemical automatic vibration descaling device (application number: CN202420342768.6), which includes a processing box. An electrochemical buffer component is installed inside the processing box. The electrochemical buffer component includes multiple vertically distributed electrode groups. A vibration motor is installed at the top of the processing box. A high-strength reinforcing pad is installed at the top of each electrode group. A cathode beam plate located inside the high-strength reinforcing pad is also installed at the top of each electrode group. A high-strength reinforcing rod is installed through the inside of each electrode group. This invention, by incorporating a vibration motor, can vibrate and clean the scale adhering to the surface of the electrode groups, allowing the scale to peel off and detach from the electrode groups. This facilitates the subsequent re-adsorption of impurities from the water onto the surface of the electrode groups, achieving a high reuse rate for electrochemical descaling equipment and increasing the descaling effect and efficiency of the electrode group surface.
[0004] During the use of this utility model, the dirt is all attached to the cathode plate, so only the cathode plate needs to be vibrated. Since the vibration of the cathode plate will affect the vibration of the anode plate, and there is no dirt on the anode plate, the anode plate does not need to be vibrated. The vibration force transmitted from the cathode plate to the anode plate will affect the installation and fixation of the anode plate. Therefore, the installation of the anode plate needs to be sufficiently stable. Utility Model Content
[0005] In view of this, the purpose of this utility model is to overcome the shortcomings of the prior art and provide an anode plate mounting structure for an electrochemical water treatment device. This application provides the following technical solution:
[0006] It includes several anode plates and anode plate mounting beams. The top of the anode plate has an inverted T-shaped groove, and a connecting screw is engaged in the inverted T-shaped groove. The connecting screw is welded to the anode plate, and after passing through the anode plate mounting beam, a fastening nut is connected to install the anode plate onto the anode plate mounting beam.
[0007] Since the anode plate needs to be immersed in sewage, electroplating is required to enhance its corrosion resistance. Therefore, connectors need to be fixed to the anode plate and then connected to the anode plate mounting beam. By opening an inverted T-groove on the anode plate, the connecting screws are engaged in the inverted T-groove before welding, making the connection between the connecting screws and the anode plate more stable; that is, the connection between the anode plate and the anode plate mounting beam is more stable.
[0008] Fastening washers and insulating pads are sequentially fitted onto the connecting screws between the top of the anode plate and the mounting beam of the anode plate, as well as between the fastening nut and the mounting beam of the anode plate.
[0009] By placing shims and insulating pads, the nuts are tightened to make the structure more stable and less prone to shaking.
[0010] It also includes a copper plate, which has a through hole corresponding to the connecting screw. The connecting screw passes through the through hole, and the copper plate is placed on the connecting screw to connect several anode plates in series.
[0011] By placing an insulating pad between the connecting screws and the anode plate mounting beam, the connecting screws and the anode plate mounting beam are insulated and separated. Then, a copper plate is used to connect several connecting screws and the anode plate in series. When the anode plate is connected to the circuit, the current passes through the copper plate and not through the anode plate mounting beam, thus preventing the current from accelerating the oxidation of the anode plate mounting beam.
[0012] The anode plate mounting beam is L-shaped, resulting in a stronger load-bearing capacity.
[0013] The anode plate mounting beam is coated with potting compound. This sealant is used to seal the connecting bolts, fastening nuts, copper plates, etc. on the anode plate to prevent corrosion and also to enhance the load-bearing capacity of the anode plate mounting beam.
[0014] It also includes a mounting pad, with limit holes provided at both ends of the anode plate mounting beam, and limit blocks provided on the mounting pad. The two ends of the anode plate mounting beam are engaged with the limit blocks through the limit holes and are mounted on the mounting pad.
[0015] The limiting block is provided with a fixing bolt, and a fixing washer is fitted on the fixing bolt. The fixing bolt is used to lock the fixing washer to press and fix the anode plate mounting beam onto the mounting block.
[0016] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:
[0017] The anode plate and connecting screws are first engaged and then welded together, ensuring a secure connection. An insulating pad is placed between the connecting screws and the anode plate mounting beam to prevent corrosion caused by electrical conduction. The insulating pad is also tightened by the fastening nut, making the anode plate installation more stable and less prone to loosening.
[0018] To make the above-mentioned objectives, features and advantages of this application more apparent and understandable, preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the anode plate installation structure of an electrochemical water treatment device.
[0021] Figure 2 This is a schematic diagram of the anode plate in the anode plate mounting structure of an electrochemical water treatment device.
[0022] Figure 3 This is a cross-sectional view of the anode plate installation structure of an electrochemical water treatment device.
[0023] Figure 4 This is an enlarged view of point A in the cross-sectional view of the anode plate installation structure of an electrochemical water treatment device.
[0024] Reference numerals: 1. Anode plate; 11. Inverted T-groove; 2. Anode plate mounting beam; 21. Limiting hole; 3. Connecting screw; 4. Fastening nut; 5. Fastening washer; 6. Insulating soft pad; 7. Copper plate; 71. Perforation; 8. Encapsulating glue; 9. Mounting pad; 91. Limiting block; 92. Fixing bolt; 93. Fixing washer. Detailed Implementation
[0025] The embodiments of this application 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 application, and should not be construed as limiting this application.
[0026] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0027] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0028] Please refer to Figure 1-4 As shown, this utility model provides an anode plate mounting structure for an electrochemical water treatment device.
[0029] It includes several anode plates 1 and anode plate mounting beam 2. The top of the anode plate 1 is provided with an inverted T-shaped groove 11. A connecting screw 3 is engaged in the inverted T-shaped groove 11. The connecting screw 3 is welded to the anode plate 1. After the connecting screw 3 passes through the anode plate mounting beam 2, a fastening nut 4 is connected to install the anode plate 1 on the anode plate mounting beam 2.
[0030] Fastening washers 5 and insulating pads 6 are sequentially fitted onto the connecting screws 3 between the top of the anode plate 1 and the anode plate mounting beam 2, as well as between the fastening nut 4 and the anode plate mounting beam 2.
[0031] It also includes a copper plate 7, which has a through hole 71 corresponding to the connecting screw 3. The connecting screw 3 passes through the through hole 71, and the copper plate 7 is placed on the connecting screw 3 to connect several anode plates 1 in series.
[0032] The anode plate mounting beam 2 is L-shaped.
[0033] A potting compound 8 is applied to the anode plate mounting beam 2.
[0034] It also includes mounting pads 9, with limit holes 21 at both ends of the anode plate mounting beam 2, and limit blocks 91 on the mounting pads 9. The anode plate mounting beam 2 is mounted on the mounting pads 9 by engaging with the limit blocks 91 through the limit holes 21.
[0035] A fixing bolt 92 is provided on the limiting block 91, and a fixing washer 93 is fitted on the fixing bolt 92. The fixing bolt 92 is used to lock the fixing washer 93 to press and fix the anode plate mounting beam 2 onto the mounting block 9.
[0036] In practice, the connecting screw 3 is engaged in the inverted T-groove 11 and welded. Then, a fastening washer 5 and an insulating soft pad 6 are fitted onto the connecting screw 3. After the connecting screw 3 passes through the anode plate mounting beam 2, the insulating soft pad 6 and the fastening washer 5 are fitted onto the connecting screw 3 again, and then the fastening nut 4 is used to lock it, so that the anode plate 1 is installed on the anode plate mounting beam 2. Then, the copper plate 7 is placed on the connecting screw 3, and the connecting screw 3 passes through the through hole 71 during placement. Then, the upper part of the anode plate mounting beam 2 is potted with potting compound 8. After the limiting holes 21 at both ends of the anode plate mounting beam 2 are engaged with the limiting blocks 91 of the mounting pad 9, the anode plate mounting beam 2 and the mounting pad 9 are fixed with fixing bolts 92 with fixing washers 93.
[0037] It should be noted that the cathode plate beam needs to be installed on the mounting pad 9 before the mounting pad 9 is installed on the sewage tank.
[0038] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.
Claims
1. An anode plate mounting structure of an electrochemical water treatment apparatus, characterized by: The application relates to anode plate mounting beam (2) and anode plate (1) comprising a plurality of anode plates (1), wherein a reverse T-shaped slot (11) is formed on the top of the anode plate (1), a connecting screw (3) is clamped in the reverse T-shaped slot (11), the connecting screw (3) is welded with the anode plate (1), and the connecting screw (3) is connected with a fastening nut (4) after penetrating through the anode plate mounting beam (2) to mount the anode plate (1) on the anode plate mounting beam (2).
2. The anode plate mounting structure of an electrochemical water treatment apparatus according to claim 1, wherein: The connecting screw (3) between the top of the anode plate (1) and the anode plate mounting beam (2) and between the fastening nut (4) and the anode plate mounting beam (2) is sequentially sleeved with a fastening gasket (5) and an insulating soft cushion block (6).
3. The anode plate mounting structure of an electrochemical water treatment apparatus according to claim 2, wherein: The application further comprises a copper plate (7), wherein a through hole (71) corresponding to the connecting screw (3) is arranged on the copper plate (7), the connecting screw (3) penetrates through the through hole (71), and the copper plate (7) is arranged on the connecting screw (3) to connect the plurality of anode plates (1) in series.
4. The anode plate mounting structure of an electrochemical water treatment apparatus as recited in claim 1, wherein: The anode plate mounting beam (2) is L-shaped.
5. The anode plate mounting structure of an electrochemical water treatment apparatus as recited in claim 1, wherein: The anode plate mounting beam (2) is provided with potting glue (8).
6. The anode plate mounting structure of an electrochemical water treatment apparatus as recited in claim 1, wherein: The application further comprises a mounting cushion block (9), wherein limit holes (21) are arranged at the two ends of the anode plate mounting beam (2), limit clamping blocks (91) are arranged on the mounting cushion block (9), and the anode plate mounting beam (2) is clamped and mounted on the mounting cushion block (9) through the limit holes (21) and the limit clamping blocks (91).
7. The anode plate mounting structure of a chemical water treatment apparatus as recited in claim 6, wherein: A fixing bolt (92) is arranged on the limit clamping block (91), a fixing gasket (93) is sleeved on the fixing bolt (92), and the fixing bolt (92) is used for locking the fixing gasket (93) to press and fix the anode plate mounting beam (2) on the mounting cushion block (9).
Citation Information
Patent Citations
Electrochemical automatic vibration descaling device
CN222058249U