Cathode electrophoretic coating electrophoresis tank cleaning device

Through the built-in cleaning structure and liquid conduction structure, combined with the wave generator, the problem of low integration of the cleaning device of the cathode electrophoresis coating electrophoresis tank and the electrophoresis tank is solved, and convenient cleaning of floating objects on the surface of the electrophoresis liquid and circulating cleaning of the bottom of the tank is achieved, improving the cleaning efficiency.

CN223145443UActive Publication Date: 2025-07-25武汉华富远科技有限公司
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Patent Information

Application Number
CN202421846843.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-07-25
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing cathode electrophoresis coating electrophoresis tank cleaning device and electrophoresis tank have low integration, and the cleaning process is complicated.

Method used

A built-in cleaning structure and liquid conduction structure are designed. Combined with a wave generator, floating objects on the surface of the electrophoretic liquid are introduced into the liquid conduction structure through the introduction tank of the tank body structure, and centralized treatment is carried out through the cleaning device. Impurity filtration and sewage discharge are achieved using water pumps and filters to improve cleaning efficiency.

Benefits of technology

It realizes convenient cleaning of floating objects on the surface of the electrophoretic liquid and circulating cleaning of the bottom of the tank, improves the integration of the cleaning device and the electrophoretic tank, and simplifies the cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cathode electrophoretic coating electrophoresis tank cleaning device which comprises a tank body structure, a cleaning structure is installed on one side of the tank body structure, a guide-in tank is formed in the tank body structure, the cleaning structure is connected with a liquid guide structure, and the guide-in tank is provided with a wave generator in a matched mode. The groove body structure comprises an electrophoresis groove, a first mounting groove, a second mounting groove, an embedded groove and a butt joint opening, the cleaning structure comprises a cleaning device and a liquid guide opening, and the liquid guide structure comprises a liquid guide bottom groove, a first liquid inlet, a connecting pipe and a second liquid inlet. The tank body structure has the beneficial effects that the cleaning structure is matched with the liquid guide structure, the wave generator and the lead-in tank, so that floating objects on the surface of electrophoresis liquid are cleaned, the tank bottom of the electrophoresis tank is conveniently and circularly cleaned, the cleaning effect is improved, and the integration degree of the cleaning device and the electrophoresis tank is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of machinery, and specifically, to a cleaning device for a cathodic electrophoretic coating electrophoretic tank. Background Art

[0002] The electrophoretic tank is the core part of the gel electrophoresis system, and the rapid development of its system is mainly reflected in the electrophoretic tank. According to the principle of electrophoresis, the gel is placed between two buffer chambers, and the electric field connects the two buffer chambers through the gel. The contact between the buffer solution and the gel can be direct liquid contact or indirect through gel strips or filter paper strips. Most of the tubular gel electrophoresis and vertical slab electrophoresis adopt the direct liquid contact method.

[0003] The existing cathodic electrophoretic coating electrophoretic tank cleaning generally uses an external cleaning device for cleaning. However, during the cleaning process of the external cleaning device, the electrophoretic solution needs to be drained out before the overall tank body is cleaned, and the process is relatively cumbersome. Therefore, there is an urgent need for a cathodic electrophoretic coating electrophoretic tank cleaning device with a high degree of integration with the electrophoretic tank.

[0004] In response to the problems in the related art, no effective solution has been proposed yet. Summary of the Utility Model

[0005] In response to the problems in the related art, the utility model proposes a cleaning device for a cathodic electrophoretic coating electrophoretic tank to overcome the above technical problems existing in the related art.

[0006] For this purpose, the specific technical solution adopted by the utility model is as follows:

[0007] A cleaning device for a cathodic electrophoretic coating electrophoretic tank includes a tank body structure. A cleaning structure is installed on one side of the tank body structure. An introduction groove is provided in the tank body structure. The cleaning structure is connected with a liquid guiding structure, and a wave generator is arranged in a matching manner in the introduction groove.

[0008] Further, the tank body structure includes an electrophoretic tank, a first installation groove, a second installation groove, an embedded groove, and a docking port. A first installation groove is provided on one side wall of the electrophoretic tank. A second installation groove is provided on the other side wall of the electrophoretic tank. An embedded groove is provided at the bottom end of the second installation groove. A docking port is provided at the bottom end of the wall of the electrophoretic tank. An introduction groove is provided in a matching manner on the first installation groove.

[0009] Further, the cleaning structure includes a cleaning device and a liquid guiding port. The liquid guiding port is installed on the second installation groove. The cleaning device is internally provided with a water pump, a filter, and a liquid discharge port.

[0010] Further, the liquid guiding structure includes a liquid guiding bottom groove, a first liquid inlet, a connecting pipe, and a second liquid inlet. A first liquid inlet is connected to one side of the liquid guiding bottom groove. The first liquid inlet is connected with the connecting pipe. The connecting pipe is communicated with the second liquid inlet.

[0011] Further, the second liquid inlet is installed on the first installation groove, and the horizontal position of the first installation groove is lower than that of the second installation groove.

[0012] Further, the wave generator includes a mounting plate, a mounting strip, a driving plate, a guide rod, a pressing convex plate, and an electromagnet. The middle section of the mounting plate is flatly embedded with the mounting strip. The bottom end of the mounting strip is provided with the driving plate, and the guide rod is inserted through the driving plate.

[0013] Further, the guide rod is fixedly installed on the mounting plate. The driving plate is fixedly connected with the pressing convex plate. The mounting strip is provided with an electromagnet, and a magnetic block is flatly embedded on the surface of the end of the driving plate opposite to the mounting strip.

[0014] The beneficial effects of the present utility model are as follows: The tank body structure of the present utility model realizes the cleaning of floating substances on the surface of the electrophoretic solution and the convenient cyclic cleaning of the bottom of the electrophoretic tank through the cleaning structure, the liquid guiding structure, the wave generator, and the introduction groove, improves the cleaning effect, and improves the integration degree of the cleaning device and the electrophoretic tank. Description of the Drawings

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0016] Figure 1 is a schematic diagram of the main structure of a cathode electrophoretic coating electrophoretic tank cleaning device according to an embodiment of the present utility model;

[0017] Figure 2 is a schematic diagram of the tank body structure of a cathode electrophoretic coating electrophoretic tank cleaning device according to an embodiment of the present utility model;

[0018] Figure 3 is a schematic diagram of the cleaning structure of a cathode electrophoretic coating electrophoretic tank cleaning device according to an embodiment of the present utility model;

[0019] Figure 4 is a schematic diagram of the introduction groove of a cathode electrophoretic coating electrophoretic tank cleaning device according to an embodiment of the present utility model;

[0020] Figure 5 is a schematic diagram of the wave generator of a cathode electrophoretic coating electrophoretic tank cleaning device according to an embodiment of the present utility model;

[0021] Figure 6 is a schematic diagram of the mounting strip of a cathode electrophoretic coating electrophoretic tank cleaning device according to an embodiment of the present utility model;

[0022] Figure 7 It is a bottom view of the liquid guide bottom tank of a cleaning device for a cathode electrophoresis coating electrophoresis tank according to an embodiment of the present invention;

[0023] Figure 8 It is a bottom view of the cleaning structure of a cleaning device for a cathode electrophoresis coating electrophoresis tank according to an embodiment of the present invention;

[0024] Figure 9 It is a sectional view of the cleaning structure of a cleaning device for a cathode electrophoresis coating electrophoresis tank according to an embodiment of the present invention.

[0025] In the figure:

[0026] 1. Tank body structure; 101. Electrophoresis tank; 102. First installation groove; 103. Second installation groove; 104. Embedded groove; 105. Docking port; 2. Cleaning structure; 201. Cleaning device; 202. Liquid guide port; 3. Introduction groove; 4. Liquid guide structure; 401. Liquid guide bottom tank; 402. First liquid inlet; 403. Connecting pipe; 404. Second liquid inlet; 5. Wave generator; 501. Installation plate; 502. Installation strip; 503. Driving plate; 504. Guide rod; 505. Pressing convex plate; 506. Electromagnet. Detailed implementation manners

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0028] According to an embodiment of the present invention, a cleaning device for a cathode electrophoresis coating electrophoresis tank is provided.

[0029] Embodiment 1;

[0030] As Figures 1-9 shown, the cleaning device for a cathode electrophoresis coating electrophoresis tank according to an embodiment of the present invention includes a tank body structure 1, a cleaning structure 2 is installed on one side of the tank body structure 1, an introduction groove 3 is opened in the tank body structure 1, the cleaning structure 2 is connected with a liquid guide structure 4, and a wave generator 5 is arranged in a matching manner in the introduction groove 3.

[0031] The tank body structure 1 cooperates with the wave generator 5 to generate waves and the introduction groove 3 to introduce the floating substances on the surface of its electrophoresis solution into the liquid guide structure 4, and then performs centralized treatment through the cleaning structure 2.

[0032] The tank structure 1 includes an electrophoresis tank 101, a first installation tank 102, a second installation tank 103, an embedded tank 104, and a docking port 105. A first installation tank 102 is provided on one side wall of the electrophoresis tank 101, a second installation tank 103 is provided on the other side wall of the electrophoresis tank 101, an embedded tank 104 is provided at the bottom end of the second installation tank 103, a docking port 105 is provided at the bottom end of the wall of the electrophoresis tank 101, and an inlet groove 3 is correspondingly provided on the first installation tank 102.

[0033] The embedded tank 104 is used to install the wave generator 5, and the docking port 105 is matched with the first liquid inlet 402.

[0034] The cleaning structure 2 includes a cleaning device 201 and a liquid guide port 202. The liquid guide port 202 is installed on the second installation tank 103, and the cleaning device 201 is internally provided with a water pump, a filter, and a drain port.

[0035] The inlet of the filter is connected to the outlet of the connecting pipe 403, the filter is connected to the drain port, the outlet of the filter is connected to the inlet of the water pump through a pipeline, the outlet of the water pump is connected to the liquid guide port 202. The water pump built in the cleaning device 201 improves the transmission power in the connecting pipe 403, the filter filters impurities in the circulating electrophoresis liquid, the drain port cooperates with the sewage discharge device to discharge the sewage containing impurities, and the filtered electrophoresis liquid is re-introduced into the electrophoresis tank 101 through the liquid guide port 202.

[0036] The liquid guiding structure 4 includes a liquid guiding bottom tank 401, a first liquid inlet 402, a connecting pipe 403, and a second liquid inlet 404. A first liquid inlet 402 is connected to one side of the liquid guiding bottom tank 401, the first liquid inlet 402 is connected to a connecting pipe 403, the connecting pipe 403 communicates with a second liquid inlet 404, the second liquid inlet 404 is installed on the first installation tank 102, and the horizontal position of the first installation tank 102 is lower than that of the second installation tank 103.

[0037] The liquid guiding bottom tank 401 of the liquid guiding structure 4 is designed as a slope with a higher middle and lower sides, and a corresponding diversion groove is provided at the first liquid inlet 402, which can facilitate the precipitation of impurities to concentrate at the first liquid inlet 402 for suction into the connecting pipe 403 for filtration through the filter. The inlet groove 3 matched with the second liquid inlet 404 is designed with a lower middle and higher sides, which is convenient for the sewage containing floating substances introduced through the wave generator 5 to enter the second liquid inlet 404.

[0038] The wave generator 5 includes a mounting plate 501, a mounting strip 502, a driving plate 503, a guide rod 504, a pressing convex plate 505, and an electromagnet 506. The middle section of the mounting plate 501 is flatly embedded with the mounting strip 502. The bottom end of the mounting strip 502 is provided with the driving plate 503. The guide rod 504 is inserted through the driving plate 503, and the guide rod 504 is fixedly installed on the mounting plate 501. The driving plate 503 is fixedly connected with the pressing convex plate 505. The electromagnet 506 is installed on the mounting strip 502. A magnetic block is flatly embedded on the surface of one end of the driving plate 503 opposite to the mounting strip 502.

[0039] The electromagnet 506 of the wave generator 5 is designed in multiple groups. It is connected with a control circuit, which can control the magnitude and direction of the current of the electromagnet 506. Furthermore, it can control the magnitude and direction of the magnetic force generated by it. At the same time, it can control the number of energized groups of the electromagnet 506. When a larger wave is needed, the current of the electromagnet 506 and the number of energized groups are increased to improve the magnetic force, so that the same magnetic pole as the magnetic block is generated, generating a larger repulsive force, causing the driving plate 503 to drive the pressing convex plate 505 to impact the liquid surface of the electrophoresis solution to generate waves. The waves are transmitted to the inlet groove 3, and the debris on the surface of the electrophoresis solution is pushed to the inlet groove 3 by the thrust of the waves, improving the cleaning efficiency of the surface debris. The inside of the pressing convex plate 505 is designed as a sealed hollow structure, and the overall density is lower than that of the electrophoresis solution, and the average liquid level of the electrophoresis solution is slightly lower than the height of the inlet groove 3.

[0040] To facilitate the understanding of the above technical solution of the present invention, the working principle or operation method of the present invention in the actual process will be described in detail below.

[0041] The tank structure 1 cooperates with the waves generated by the wave generator 5 and introduces the floating substances on the surface of the electrophoresis solution into the liquid guiding structure 4 through the introduction tank 3, and then conducts centralized treatment through the cleaning structure 2. The embedded tank 104 is used to install the wave generator 5, and the docking port 105 is matched with the first liquid inlet 402. The water pump built in the cleaning device 201 improves the transmission power in the connecting pipe 403. The filter filters the impurities in the circulating electrophoresis solution, and the drain port cooperates with the sewage discharge device to discharge the sewage containing impurities. The filtered electrophoresis solution is re-introduced into the electrophoresis tank 101 through the liquid guiding port 202. The liquid guiding bottom tank 401 of the liquid guiding structure 4 is designed as a slope with a higher middle and lower sides, and a corresponding diversion groove is provided at the first liquid inlet 402, which can facilitate the precipitation of impurities to be concentrated at the first liquid inlet 402 for inhalation into the connecting pipe 403 and filtered through the filter. The introduction tank 3 matched with the second liquid inlet 404 is designed with a lower middle and higher sides, which is convenient for the sewage containing floating substances introduced through the wave generator 5 to enter the second liquid inlet 404. The electromagnets 506 of the wave generator 5 are designed in multiple groups, and are connected with a control circuit, which can control the magnitude and direction of the current of the electromagnet 506, and further can control the magnitude and direction of the magnetic force generated by it. At the same time, the number of energized groups of the electromagnet 506 can be controlled. When a larger wave is required, the current and the number of energized groups of the electromagnet 506 are increased to increase the magnetic force, so that the same magnetic poles as the magnetic blocks are generated, and a larger repulsive force is generated, so that the driving plate 503 drives the pressing convex plate 505 to impact the liquid surface of the electrophoresis solution to generate waves. The waves are transmitted to the introduction tank 3, and the sundries on the surface of the electrophoresis solution are pushed to the introduction tank 3 by the thrust of the waves, improving the cleaning efficiency of the surface sundries.

[0042] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A cleaning device for a cathodic electrophoretic coating electrophoresis tank, characterized in that, It includes a tank structure (1), a cleaning structure (2) is installed on one side of the tank structure (1), an inlet groove (3) is provided in the tank structure (1), the cleaning structure (2) is connected with a liquid guiding structure (4), and a wave generator (5) is arranged in a matching manner in the inlet groove (3).

2. The cathode electrophoresis coating electrophoresis tank cleaning device according to claim 1, wherein The tank structure (1) includes an electrophoresis tank (101), a first installation groove (102), a second installation groove (103), an embedded groove (104), and a docking port (105). A first installation groove (102) is opened on one side wall of the electrophoresis tank (101), a second installation groove (103) is opened on the other side wall of the electrophoresis tank (101), an embedded groove (104) is opened at the bottom end of the second installation groove (103), a docking port (105) is opened at the bottom end of the tank wall of the electrophoresis tank (101), and an inlet groove (3) is opened in a matching manner on the first installation groove (102).

3. The cathodic electrophoretic coating electrophoresis tank cleaning device according to claim 2, characterized in that, The cleaning structure (2) includes a cleaning device (201) and a liquid guiding port (202). The liquid guiding port (202) is installed on the second installation groove (103), and the cleaning device (201) is internally provided with a water pump, a filter, and a liquid discharge port.

4. The cathode electrophoresis coating electrophoresis tank cleaning device according to claim 3, characterized in that, The liquid guiding structure (4) includes a liquid guiding bottom groove (401), a first liquid inlet (402), a connecting pipe (403), and a second liquid inlet (404). A first liquid inlet (402) is connected to one side of the liquid guiding bottom groove (401), the first liquid inlet (402) is connected with a connecting pipe (403), and the connecting pipe (403) is communicated with a second liquid inlet (404).

5. The cathodic electrophoretic coating electrophoresis tank cleaning device according to claim 4, characterized in that, The second liquid inlet (404) is installed on the first installation groove (102), and the horizontal position of the first installation groove (102) is lower than that of the second installation groove (103).

6. The cathode electrophoresis coating electrophoresis tank cleaning device according to claim 5, wherein, The wave generator (5) includes a mounting plate (501), a mounting strip (502), a driving plate (503), a guide rod (504), a pressing convex plate (505), and an electromagnet (506). The mounting strip (502) is horizontally embedded in the middle section of the mounting plate (501), a driving plate (503) is arranged at the bottom end of the mounting strip (502), and a guide rod (504) is inserted through the driving plate (503).

7. A cathode electrophoresis coating electrophoresis tank cleaning device according to claim 6, characterized in that, The guide rod (504) is fixedly installed on the mounting plate (501), the driving plate (503) is fixedly connected with a pressing convex plate (505), an electromagnet (506) is installed on the mounting strip (502), and a magnetic block is horizontally embedded on the surface of the end of the driving plate (503) opposite to the mounting strip (502).