Electrolytic tank for aluminum alloy mirror surface oxidation
By introducing sliding and disassembly components and installation drive components into the electrolytic cell, the problem of inconvenient disassembly of the existing electrolytic cell cleaning structure is solved, achieving efficient cleaning of the inner wall of the electrolytic cell and convenient use.
Patent Information
- Application Number
- CN202520116690.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The cleaning structure of existing electrolytic cells for aluminum alloy mirror oxidation is not easy to disassemble, which affects the efficiency of use.
An electrolytic cell structure was designed, comprising a sliding assembly, an installation drive assembly, and a cleaning assembly. The sliding assembly facilitates the installation and disassembly of the cleaning structure, while a dual-axis motor drives a bevel gear to drive a cleaning brush to clean the inner wall of the electrolytic cell.
It enables rapid installation and disassembly of the cleaning structure, improves the efficiency of the electrolytic cell, and ensures comprehensive cleaning of the inner wall of the electrolytic cell body.
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Figure CN223705783U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of electrolytic cells, in particular to an electrolytic cell for mirror surface oxidation of aluminum alloy. BACKGROUND
[0002] Aluminum alloy is an alloy with aluminum as the base and a certain amount of other alloying elements, and is one of light metal materials. The mirror surface of aluminum alloy is a mirror surface produced by using aluminum alloy as a material. In order to color the mirror surface of aluminum alloy, the mirror surface of aluminum alloy needs to be placed in an electrolytic cell for oxidation.
[0003] According to the search, the Chinese patent with the publication number CN213172634U discloses an electrolytic cell for aluminum alloy oxidation and dyeing which is convenient to clean. The electrolytic cell comprises an electrolytic cell body, supporting legs, an adjusting rod and a second stop block. The bottom of the electrolytic cell body is fixedly provided with supporting legs, and the rear side of the supporting legs is fixedly connected with a motor. The output end of the motor is fixedly provided with a short rod. The bottom of the electrolytic cell body is provided with a connecting block. The inside of the connecting block is provided with a liquid guide groove. The lower side of the liquid guide groove is communicated with a spray hole. The right side of the connecting block is penetratedly connected with the adjusting rod. The rear end of the adjusting rod is fixedly provided with the second stop block. The lower side of the electrolytic cell body is penetratedly connected with a sewage discharge pipe. The utility model avoids direct contact with artificial, guarantees safety, has good cleaning effect, is high in efficiency, and enables waste water to easily gather at the bottom, so that the efficiency of waste water discharge is improved, thereby improving work efficiency.
[0004] According to the related technology in the above, the applicant believes that the cleaning structure is directly arranged in the inside of the electrolytic cell body, which is inconvenient to disassemble, and causes certain inconvenience in use of the electrolytic cell body. Therefore, the application provides an electrolytic cell for mirror surface oxidation of aluminum alloy. Content of the utility model
[0005] In order to solve the above problems, the application provides an electrolytic cell for mirror surface oxidation of aluminum alloy, which adopts the following technical scheme:
[0006] The electrolytic cell for mirror surface oxidation of aluminum alloy comprises a basic module and a cleaning module. The basic module comprises an electrolytic cell body. The bottom of the electrolytic cell body is fixedly connected with a plurality of supporting blocks. The cleaning module is arranged on the inner side of the electrolytic cell body. The cleaning module comprises a sliding disassembly assembly arranged on the top of the electrolytic cell body. The bottom of the sliding disassembly assembly and the inner side of the electrolytic cell body are provided with a mounting driving assembly. The mounting driving assembly is provided with a cleaning assembly.
[0007] By adopting the above technical scheme, the cleaning structure can be conveniently mounted or disassembled, so that the cleaning structure can be disassembled after the electrolytic cell body is cleaned, and the use of the electrolytic cell body can be avoided.
[0008] Further, the sliding disassembly component comprises an n-shaped block, and a ring-shaped handle is fixedly connected to the top of the n-shaped block.
[0009] By adopting the above technical scheme, the ring-shaped handle is convenient to install.
[0010] Further, the sliding disassembly component further comprises two F-shaped blocks fixedly connected to the two sides of the n-shaped block respectively, and the two F-shaped blocks are movably clamped to the top of the electrolytic cell body, and pulleys are rotatably connected to the inner sides of the two F-shaped blocks, and the two pulleys are in contact with the top of the electrolytic cell body.
[0011] By adopting the above technical scheme, the F-shaped block can slide on the top of the electrolytic cell body.
[0012] Further, the installation driving assembly comprises an installation block fixedly connected to the bottom of the n-shaped block, and an installation sleeve is fixedly connected to the top of the installation block.
[0013] By adopting the above technical scheme, the installation sleeve is convenient to install.
[0014] Further, the installation driving assembly further comprises a double-shaft motor fixedly connected to the inside of the installation sleeve, and first bevel gears are fixedly connected to the two output ends of the double-shaft motor.
[0015] By adopting the above technical scheme, the double-shaft motor can drive the two first bevel gears to rotate at the same time.
[0016] Further, the installation driving assembly further comprises two installation grooves respectively formed in the opposite ends of the installation block, and two installation pieces are fixedly connected to the bottom of the installation block.
[0017] By adopting the above technical scheme, the first cleaning brush and the second cleaning brush are convenient to install.
[0018] Further, the cleaning assembly comprises two first cleaning brushes rotatably connected to the inner sides of the two installation grooves respectively, and the top and the bottom of the two first cleaning brushes extend to the top and the bottom of the installation block respectively, and second bevel gears are fixedly connected to the top and the bottom of the two first cleaning brushes, and two of the second bevel gears located at the top of the two first cleaning brushes are in engagement with the two first bevel gears respectively.
[0019] By adopting the above technical scheme, the rotation of the first bevel gear can drive the rotation of the two second bevel gears.
[0020] Further, the cleaning assembly further comprises a second cleaning brush rotatably connected between the two mounting pieces, and the two ends of the second cleaning brush extend to the opposite sides of the two mounting pieces respectively, and the two ends of the second cleaning brush are fixedly connected with third bevel gears, and the other two second bevel gears located at the bottom of the two first cleaning brushes are respectively engaged with the two third bevel gears.
[0021] By adopting the above technical scheme, the rotation of the other two second bevel gears can drive the two third bevel gears to rotate.
[0022] In summary, the present application has the following beneficial technical effects:
[0023] (1) The sliding disassembly assembly is arranged, so that the installation driving assembly and the cleaning assembly can be quickly installed or disassembled, thereby avoiding affecting the use of the electrolytic cell body, and the sliding disassembly assembly can drive the installation driving assembly and the cleaning assembly to slide and adjust the position, so that the inner wall of the electrolytic cell body can be cleaned comprehensively.
[0024] (2) The annular handle is arranged, so that the n-shaped block can be easily taken, the F-shaped block is arranged, can be clamped on the top of the electrolytic cell body, and the pulley can be easily installed, and the pulley is arranged, so that the pulley can slide on the top of the electrolytic cell body.
[0025] (3) The installation sleeve is arranged, so that the double-shaft motor can be installed, the double-shaft motor is arranged, so that the two first bevel gears can be driven to rotate at the same time, the first cleaning brush is arranged, so that the two sides of the inner wall of the electrolytic cell body can be cleaned when rotating, and the second cleaning brush is arranged, so that the bottom of the inner wall of the electrolytic cell body can be cleaned when rotating. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0027] Figure 2 It is an exploded structure schematic diagram of the present application;
[0028] Figure 3 It is an exploded structure schematic diagram of the sliding disassembly assembly of the present application;
[0029] Figure 4 It is an exploded structure schematic diagram of the installation driving assembly and the cleaning assembly of the present application.
[0030] Explanation of reference numerals in the drawing:
[0031] 100, base module; 110, electrolytic cell body; 120, support block;
[0032] 200, cleaning module; 210, sliding dismounting assembly; 211, n-shaped block; 212, annular handle; 213, F-shaped block; 214, pulley; 220, mounting driving assembly; 221, mounting block; 222, mounting sleeve; 223, double-shaft motor; 224, first bevel gear; 225, mounting groove; 226, mounting sheet; 230, cleaning assembly; 231, first cleaning brush; 232, second bevel gear; 233, second cleaning brush; 234, third bevel gear. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, and not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0034] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer", "top / bottom end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0035] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "sleeved / connected", "connected" and the like should be broadly understood, for example, "connected" can be fixedly connected, can be detachably connected, or integrally connected; can be mechanically connected, can be electrically connected; can be directly connected, can be indirectly connected through an intermediate medium, and can be connected inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0036] The following will be described in detail with reference to the accompanying drawings Figures 1-4 The present application will be further described in detail.
[0037] Please refer to Figures 1-4The utility model relates to an aluminum alloy mirror surface oxidation electrolytic cell, including basic module 100 and cleaning module 200, basic module 100 includes electrolytic cell main body 110, the bottom fixed connection of electrolytic cell main body 110 has a plurality of support blocks 120, and cleaning module 200 sets up in the inside of electrolytic cell main body 110, and cleaning module 200 includes the sliding dismounting assembly 210 of setting in electrolytic cell main body 110 top, the bottom of sliding dismounting assembly 210 and located in the inside of electrolytic cell main body 110 is provided with installation drive assembly 220, and installation drive assembly 220 is provided with cleaning assembly 230.
[0038] Through the setting of sliding dismounting assembly 210, installation drive assembly 220 and cleaning assembly 230 can be quickly installed or disassembled, so that the use of electrolytic cell main body 110 can be avoided, sliding dismounting assembly 210 can drive installation drive assembly 220 and cleaning assembly 230 to slide and adjust the position, so that the inner wall of electrolytic cell main body 110 can be cleaned comprehensively, and through the setting of installation drive assembly 220, cleaning assembly 230 can be installed and driven to work.
[0039] Sliding dismounting assembly 210 includes n-shaped block 211, and the top of n-shaped block 211 is fixedly connected with annular handle 212, and sliding dismounting assembly 210 further includes two F-shaped blocks 213 fixedly connected on the two sides of n-shaped block 211, and the two F-shaped blocks 213 are movably clamped on the top of electrolytic cell main body 110, and the inner sides of the two F-shaped blocks 213 are rotatably connected with pulleys 214, and the two pulleys 214 are in contact with the top of electrolytic cell main body 110.
[0040] Through annular handle 212, n-shaped block 211 drives mounting block 221 to enter the inside of electrolytic cell main body 110, and F-shaped block 213 can be clamped on the top of electrolytic cell main body 110, and pulley 214 can be in sliding contact with the top of electrolytic cell main body 110, so that the cleaning structure can be quickly installed, and the cleaning structure can be quickly disassembled by reversing the above steps, so that the use of electrolytic cell main body 110 can be avoided.
[0041] The installation driving assembly 220 comprises an installation block 221 fixedly connected at the bottom of the n-shaped block 211, the top of the installation block 221 is fixedly connected with an installation sleeve 222, the installation driving assembly 220 further comprises a double-shaft motor 223 fixedly connected in the installation sleeve 222, the two output ends of the double-shaft motor 223 are fixedly connected with first bevel gears 224, the installation driving assembly 220 further comprises two installation grooves 225 respectively arranged at the opposite ends of the installation block 221, the bottom of the installation block 221 is fixedly connected with two installation sheets 226, the cleaning assembly 230 comprises two first cleaning brushes 231 respectively rotationally connected at the inner sides of the two installation grooves 225, the top and bottom of the two first cleaning brushes 231 respectively extend to the top and bottom of the installation block 221, the top and bottom of the two first cleaning brushes 231 are fixedly connected with second bevel gears 232, two of the second bevel gears 232 at the top of the two first cleaning brushes 231 are respectively engaged with the two first bevel gears 224, the cleaning assembly 230 further comprises a second cleaning brush 233 rotationally connected between the two installation sheets 226, and the two ends of the second cleaning brush 233 respectively extend to the opposite sides of the two installation sheets 226, the two ends of the second cleaning brush 233 are fixedly connected with third bevel gears 234, the other two of the second bevel gears 232 at the bottom of the two first cleaning brushes 231 are respectively engaged with the two third bevel gears 234.
[0042] By starting the double-shaft motor 223, the two first bevel gears 224 can be driven to rotate the two first cleaning brushes 231 through the two second bevel gears 232, the two first cleaning brushes 231 can drive the two third bevel gears 234 to rotate through the other two second bevel gears 232, so that the second cleaning brush 233 can be driven to rotate, and thus the two sides and the bottom of the inner wall of the electrolytic cell body 110 can be cleaned.
[0043] The implementation principle of the embodiment of the application is: when work needs to be performed, water and a cleaning agent can be added to the inner side of the electrolytic cell body 110 first, then the staff can pick up the mounting block 221 through the annular handle 212, and then place the mounting block 221 into the inner side of the electrolytic cell body 110, so that the two F-shaped blocks 213 can be clamped on the top of the electrolytic cell body 110, and the two pulleys 214 can be in contact with the top of the electrolytic cell body 110, while being capable of driving the two first cleaning brushes 231 to be in contact with the inner wall of the electrolytic cell body 110, and the second cleaning brush 233 can be in contact with the bottom of the inner side of the electrolytic cell body 110, at this time, the double-shaft motor 223 is started, the double-shaft motor 223 can simultaneously drive the two first bevel gears 224 to rotate, the two first bevel gears 224 will drive two second bevel gears 232 to rotate, the two second bevel gears 232 will drive the two first cleaning brushes 231 to rotate, so as to facilitate cleaning of the two sides of the inner wall of the electrolytic cell body 110, the rotation of the two first cleaning brushes 231 will drive the other two second bevel gears 232 to rotate, the other two second bevel gears 232 will drive the two third bevel gears 234 to rotate, the two third bevel gears 234 will drive the second cleaning brush 233 to rotate, so as to facilitate cleaning of the bottom of the inner wall of the electrolytic cell body 110, at this time, the mounting block 221 can be pushed to move in the inner side of the electrolytic cell body 110, so as to drive the two first cleaning brushes 231 and the second cleaning brush 233 to move, thereby facilitating comprehensive cleaning of the inner wall of the electrolytic cell body 110, when the cleaning is completed, the mounting block 221 can be picked up through the annular handle 212, so as to be disassembled, thereby avoiding affecting the use of the electrolytic cell body 110, and improving the practicability.
[0044] The above are preferred embodiments of the application, and do not limit the protection scope of the application, therefore: equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.
Claims
1. An electrolytic cell for mirror finishing of an aluminum alloy, comprising a base module (100) and a cleaning module (200), characterized in that: The base module (100) comprises an electrolytic cell body (110), the bottom of the electrolytic cell body (110) is fixedly connected with a plurality of supporting blocks (120), and the cleaning module (200) is arranged on the inner side of the electrolytic cell body (110); The cleaning module (200) comprises a sliding dismounting assembly (210) arranged on the top of the electrolytic cell body (110), the bottom of the sliding dismounting assembly (210) and the inner side of the electrolytic cell body (110) are provided with a mounting driving assembly (220), and the mounting driving assembly (220) is provided with a cleaning assembly (230).
2. The electrolytic cell for mirror finishing of aluminum alloys according to claim 1, characterized in that: The sliding dismounting assembly (210) comprises an n-shaped block (211), and the top of the n-shaped block (211) is fixedly connected with an annular handle (212).
3. An electrolytic cell for mirror finishing of aluminum alloys according to claim 2, characterized in that: The sliding dismounting assembly (210) further comprises two F-shaped blocks (213) fixedly connected to the two sides of the n-shaped block (211), respectively, the two F-shaped blocks (213) are movably clamped on the top of the electrolytic cell body (110), the inner sides of the two F-shaped blocks (213) are rotatably connected with pulleys (214), and the two pulleys (214) are in contact with the top of the electrolytic cell body (110).
4. An electrolytic cell for mirror finishing of aluminum alloys according to claim 3, characterized in that: The mounting driving assembly (220) comprises a mounting block (221) fixedly connected to the bottom of the n-shaped block (211), and the top of the mounting block (221) is fixedly connected with a mounting sleeve (222).
5. An electrolytic cell for mirror finishing of aluminum alloys according to claim 4, characterized in that: The mounting driving assembly (220) further comprises a double-shaft motor (223) fixedly connected to the inside of the mounting sleeve (222), and the two output ends of the double-shaft motor (223) are fixedly connected with first bevel gears (224).
6. An electrolytic cell for mirror finishing of aluminum alloys according to claim 5, characterized in that: The mounting driving assembly (220) further comprises two installation grooves (225) respectively formed in the opposite ends of the mounting block (221), and the bottom of the mounting block (221) is fixedly connected with two mounting plates (226).
7. An electrolytic cell for mirror finishing of aluminum alloys according to claim 6, characterized in that: The cleaning assembly (230) comprises two first cleaning brushes (231) rotatably connected to the inner sides of the two installation grooves (225), respectively, the top and the bottom of the two first cleaning brushes (231) extend to the top and the bottom of the mounting block (221), respectively, the top and the bottom of the two first cleaning brushes (231) are fixedly connected with second bevel gears (232), and two of the second bevel gears (232) located at the top of the two first cleaning brushes (231) are meshed with the two first bevel gears (224), respectively.
8. An electrolytic cell for mirror finishing of aluminum alloys according to claim 7, characterized in that: The cleaning assembly (230) further comprises a second cleaning brush (233) rotatably connected between the two mounting plates (226), and the two ends of the second cleaning brush (233) extend to the opposite sides of the two mounting plates (226), respectively, the two ends of the second cleaning brush (233) are fixedly connected with third bevel gears (234), and the other two of the second bevel gears (232) located at the bottom of the two first cleaning brushes (231) are meshed with the two third bevel gears (234), respectively.
Citation Information
Patent Citations
Convenient-to-clean electrolytic bath for aluminum alloy oxidation dyeing
CN213172634U