Electrochemical production line
By setting a heating component at the lower part of the outer side of the electrolytic cell, the problem of the electrolytic cell being unable to be heated is solved, effective heating and insulation of the electrolyte is achieved, and the stability and convenience of the production line are improved.
Patent Information
- Application Number
- CN202422526633.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-18
AI Technical Summary
The electrolytic cells of existing electrochemical production lines lack heating mechanisms and are unable to effectively heat the electrolyte, resulting in limitations in their use.
A heating assembly is arranged at the lower part of the outer side of the electrolytic cell, including a first fastener, a second fastener, a heating resistor wire, a limit plate, a box body, bolts and an electric cylinder. Heat is transferred through the heat conduction plate and the electric cylinder is used to improve stability, thereby achieving heating and insulation of the electrolyte.
It achieves effective heating and insulation of the electrolyte in the electrolytic cell, improves the stability and operational convenience of the production line, and reduces the risk of downtime.
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Figure CN223373294U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of high-voltage corrosion foil, in particular to an electrochemical production line. Background Art
[0002] Application No. 201910357482.9 discloses a fully automatic etching foil production line. The foil unloading device automatically unloads the roll and loads a new roll, while the foil rewinding device automatically changes the rewinding roll and collects the finished aluminum foil roll. A buffer device ensures that the production line does not need to be shut down when changing or rewinding the roll, thus achieving production continuity. This not only reduces the workload of operators but also improves production efficiency. The electrolytic cell is designed as a modular structure, which facilitates later maintenance and replacement, and is simple and convenient to operate. However, the above design still has shortcomings. The electrolytic cell in the electrolytic device lacks a heating mechanism, making it impossible to heat the electrolyte in the electrolytic cell, and its use is limited.
[0003] To this end, we propose an electrochemical production line. Utility Model Content
[0004] The main purpose of the present utility model is to provide an electrochemical production line, in which the first fastener and the second fastener are relatively fastened at the lower outer side of the electrolytic cell and are fixedly connected by a second bolt, which has the advantage of being easy to install and disassemble, and at the same time enables the heating component to be used flexibly. The electric cylinder can push the limit plate toward the electrolytic cell through the piston rod, which can improve the stability of the heating component at the lower part of the electrolytic cell and can effectively solve the problems in the background technology.
[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0006] An electrochemical production line includes an electrolysis section, wherein the electrolysis section includes a plurality of electrolytic cells arranged in parallel with each other, a heating assembly is sleeved on the lower portion of the outer side of the electrolytic cell, and the heating assembly is provided with a plurality of heating assemblies, each heating assembly including a first fastener, a second fastener, a heating resistance wire, a limit plate, a box, a first bolt, a second bolt, an electric cylinder, a piston rod, and an anti-slip pad;
[0007] The first fastener and the second fastener are relatively fastened to the lower portion of the outer side of the electrolytic cell, and the first fastener and the second fastener together form a rectangular frame structure;
[0008] A box is fixedly installed at the center of one end of the second fastener, and a groove is provided on the inner wall of the second fastener near one end of the box, which is adapted to one side of the limit plate. An electric cylinder is fixedly installed in the box, and the electric cylinder is connected to one side of the limit plate through a piston rod. There are multiple groups of electric cylinders.
[0009] By adopting the above technical solution, one side of the heat conduction plate contacts the lower part of both sides of the electrolytic cell, and the first fastener and the second fastener can be heated by the heating resistance wire, and transmitted to the electrolytic cell through the heat conduction plate, thereby achieving the purpose of heating the electrolyte in the electrolytic cell. The first fastener and the second fastener are fixedly connected to the side away from the installation cavity with an insulation plate, so that they can be kept warm. The electric cylinder can push the limit plate toward the electrolytic cell through the piston rod, which can improve the stability of the heating component at the lower part of the electrolytic cell.
[0010] Specifically, two ends of the first fastener are clamped with two ends of the second fastener, and the first fastener and the second fastener are fixedly connected by a second bolt.
[0011] Specifically, an installation cavity is provided between the first fastener and the second fastener, and two relatively parallel heat conduction plates are fixedly connected to the inner wall of the first fastener and the second fastener close to the installation cavity, and an insulation plate is fixedly connected to the first fastener and the second fastener away from the installation cavity.
[0012] Specifically, the heat preservation plate and the heat conduction plate are arranged relatively parallel to each other, and heating resistance wires are provided inside the first fastener and the second fastener between the heat preservation plate and the heat conduction plate.
[0013] Specifically, the limiting plate and the heat conducting plate are both located in the installation cavity, and an anti-slip pad is fixedly glued to the side of the limiting plate away from the piston rod.
[0014] Specifically, the box body is fixedly connected to one end of the second fastener through a first bolt, and both ends of the first fastener and the second fastener are provided with a first clamping groove and a second clamping groove.
[0015] Beneficial effects of the utility model:
[0016] (1) In an electrochemical production line described in the present invention, a first fastener and a second fastener are relatively fastened at the lower portion of the outer side of the electrolytic cell, the first fastener and the second fastener together enclose a rectangular frame structure, the two ends of the first fastener are clamped with the two ends of the second fastener, and the first fastener and the second fastener are fixedly connected by a second bolt, which has the advantage of being easy to install and disassemble, and at the same time enables the heating component to be used flexibly;
[0017] (2) The utility model describes an electrochemical production line, in which one side of the heat conducting plate contacts the lower part of both sides of the electrolytic cell, and the first fastener and the second fastener can be heated by the heating resistance wire, and the heat is transmitted to the electrolytic cell through the heat conducting plate, thereby achieving the purpose of heating the electrolyte in the electrolytic cell. The first fastener and the second fastener are fixedly connected to the side away from the installation cavity with an insulation plate, so that they can be kept warm. The electric cylinder can push the limit plate toward the electrolytic cell through the piston rod, which can improve the stability of the heating component at the lower part of the electrolytic cell. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 It is a structural diagram of the utility model;
[0020] Figure 2 This is a three-dimensional diagram of the heating component of the present invention;
[0021] Figure 3 This is a schematic diagram of the internal structure of the box of the present utility model;
[0022] In the figure: 1. electrolysis part; 2. electrolytic cell; 3. heating assembly; 301. first fastener; 302. second fastener; 4. heating resistor; 5. mounting cavity; 6. insulation board; 7. heat conducting board; 8. first slot; 9. limit plate; 10. box body; 11. second slot; 12. first bolt; 13. second bolt; 14. groove; 15. electric cylinder; 16. piston rod; 17. anti-slip pad. DETAILED DESCRIPTION
[0023] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0024] As an embodiment of the present invention, Figure 1-Figure 3 As shown, an electrochemical production line according to the present invention includes an electrolysis part 1, wherein the electrolysis part 1 includes a plurality of electrolytic cells 2 arranged relatively parallel to each other, a heating assembly 3 is sleeved on the lower portion of the outer side of the electrolytic cell 2, and the heating assembly 3 is provided with multiple components, each of which includes a first fastener 301, a second fastener 302, a heating resistance wire 4, a limiting plate 9, a box 10, a first bolt 12, a second bolt 13, an electric cylinder 15, a piston rod 16, and an anti-slip pad 17;
[0025] The first fastener 301 and the second fastener 302 are relatively fastened to the lower portion of the outer side of the electrolytic cell 2, and the first fastener 301 and the second fastener 302 together form a rectangular frame structure;
[0026] A box body 10 is fixedly installed at the center of one end of the second fastener 302, and a groove 14 is provided on the inner wall of the second fastener 302 near one end of the box body 10, which is adapted to one side of the limit plate 9. An electric cylinder 15 is fixedly installed in the box body 10, and the electric cylinder 15 is connected to one side of the limit plate 9 through a piston rod 16. There are multiple groups of electric cylinders 15.
[0027] When in use, the first fastener 301 and the second fastener 302 are relatively fastened at the lower outer side of the electrolytic cell 2. The first fastener 301 and the second fastener 302 are fixedly connected by the second bolt 13, so that the heating component 3 can be flexibly installed at the lower part of the electrolytic cell 2. A mounting cavity 5 is provided between the first fastener 301 and the second fastener 302. Two relatively parallel heat conducting plates 7 are fixedly connected to the inner wall of the first fastener 301 and the second fastener 302 close to the mounting cavity 5. One side of the heat conducting plate 7 is in contact with the lower parts of both sides of the electrolytic cell 2. The first fastener 301 and the second fastener 302 can be heated by the heating resistance wire 4 and transmitted to the electrolytic cell 2 through the heat conducting plate 7, thereby achieving the purpose of heating the electrolyte in the electrolytic cell 2.
[0028] The present invention further includes that two ends of the first fastener 301 are clamped with two ends of the second fastener 302 , and the first fastener 301 and the second fastener 302 are fixedly connected by a second bolt 13 .
[0029] The present utility model also includes that an installation cavity 5 is provided between the first fastener 301 and the second fastener 302, two relatively parallel heat conducting plates 7 are fixedly connected to the inner wall of the first fastener 301 and the second fastener 302 close to the installation cavity 5, and an insulation plate 6 is fixedly connected to the side of the first fastener 301 and the second fastener 302 away from the installation cavity 5.
[0030] The present invention also includes that the heat preservation plate 6 and the heat conducting plate 7 are arranged relatively parallel, and the first fastener 301 and the second fastener 302 between the heat preservation plate 6 and the heat conducting plate 7 are both provided with heating resistance wires 4.
[0031] The present invention further comprises that the limiting plate 9 and the heat conducting plate 7 are both located in the mounting cavity 5 , and an anti-slip pad 17 is fixedly glued to the side of the limiting plate 9 away from the piston rod 16 .
[0032] The present invention also includes that the box body 10 is fixedly connected to one end of the second fastener 302 through a first bolt 12 , and both ends of the first fastener 301 and the second fastener 302 are provided with a first slot 8 and a second slot 11 .
[0033] When the utility model is in use, the first fastener 301 and the second fastener 302 are relatively fastened to the lower part of the outer side of the electrolytic cell 2. The first fastener 301 and the second fastener 302 together form a rectangular frame structure. The two ends of the first fastener 301 are clamped with the two ends of the second fastener 302. The first fastener 301 and the second fastener 302 are fixedly connected by the second bolt 13, so that the heating component 3 can be flexibly installed at the lower part of the electrolytic cell 2. There is an installation cavity 5 between the first fastener 301 and the second fastener 302. The first fastener 301 and the second fastener 302 are fixedly connected to the inner wall of the side close to the installation cavity 5 with two relatively parallel heat-conducting plates 7. One side of the heat-conducting plate 7 is in contact with the lower part of both sides of the electrolytic cell 2. The first fastener 301 and the second fastener 302 can be heated by the heating resistance wire 4, and the heat is transmitted to the electrolytic cell 2 through the heat-conducting plate 7, thereby achieving the purpose of heating the electrolyte in the electrolytic cell 2. The first fastener 301 and the second fastener 302 are fixedly connected to the side away from the installation cavity 5 with an insulation plate 6, so as to keep them warm.
[0034] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. An electrochemical production line, characterized in that: The invention comprises an electrolysis part (1), wherein the electrolysis part (1) comprises a plurality of electrolysis cells (2) arranged in parallel with each other, a heating assembly (3) is sleeved on the lower outer side of the electrolysis cell (2), a plurality of heating assemblies (3) are provided, and the heating assembly (3) comprises a first fastener (301), a second fastener (302), a heating resistance wire (4), a limiting plate (9), a box (10), a first bolt (12), a second bolt (13), an electric cylinder (15), a piston rod (16) and an anti-slip pad (17); The first fastener (301) and the second fastener (302) are relatively fastened to the lower portion of the outer side of the electrolytic cell (2), and the first fastener (301) and the second fastener (302) together form a rectangular frame structure; A box body (10) is fixedly installed at the center of one end of the second fastener (302), and a groove (14) adapted to one side of the limiting plate (9) is provided on the inner wall of one end of the second fastener (302) close to the box body (10). An electric cylinder (15) is fixedly installed in the box body (10), and the electric cylinder (15) is connected to one side of the limiting plate (9) through a piston rod (16). The electric cylinder (15) is provided in multiple groups.
2. An electrochemical production line according to claim 1, characterized in that: The two ends of the first fastener (301) are clamped with the two ends of the second fastener (302), and the first fastener (301) and the second fastener (302) are fixedly connected by a second bolt (13).
3. An electrochemical production line according to claim 1, characterized in that: An installation cavity (5) is provided between the first fastener (301) and the second fastener (302); two relatively parallel heat-conducting plates (7) are fixedly connected to the inner wall of the first fastener (301) and the second fastener (302) on the side close to the installation cavity (5); and an insulation plate (6) is fixedly connected to the side of the first fastener (301) and the second fastener (302) away from the installation cavity (5).
4. An electrochemical production line according to claim 3, characterized in that: The heat-insulating plate (6) and the heat-conducting plate (7) are arranged relatively parallel to each other, and a heating resistance wire (4) is provided inside the first fastener (301) and the second fastener (302) between the heat-insulating plate (6) and the heat-conducting plate (7).
5. The electrochemical production line according to claim 1, characterized in that: The limiting plate (9) and the heat conducting plate (7) are both located in the installation cavity (5), and a non-slip pad (17) is fixedly glued to the side of the limiting plate (9) away from the piston rod (16).
6. The electrochemical production line according to claim 1, characterized in that: The box body (10) is fixedly connected to one end of the second fastener (302) via a first bolt (12); both ends of the first fastener (301) and the second fastener (302) are provided with a first clamping slot (8) and a second clamping slot (11).
Citation Information
Patent Citations
Full-automatic etched foil production line
CN110104487A