Temperature control type electrolytic bath

By integrating heating and temperature control components, the problems of non-compact electrolytic cell structure and uneven temperature were solved, thereby improving the stability of the electrolytic cell and the quality of the finished product.

CN223951204UActive Publication Date: 2026-02-27JILIN NORMAL UNIV
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Patent Information

Application Number
CN202520393215.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-27
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

The heating elements in existing electrolytic cells are not compactly distributed, resulting in structural instability, increased operating costs, and potential damage to products or heating elements. Furthermore, the uneven temperature of the electrolyte solution affects the quality of the finished product.

Method used

The integrated design of heating and temperature control components, including a positioning plate, heating element, and a paddle on the drive shaft, raises the local temperature through the heating element and stirs the solution with the paddle to make the electrolyte solution temperature uniform throughout the tank.

Benefits of technology

This improved the structural compactness and temperature uniformity of the electrolytic cell, ensuring that the electrolyte solution remained consistent under constant temperature conditions, thereby improving the quality of the finished product and reducing the risk of damage.

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Abstract

The utility model provides a temperature control type electrolytic bath and belongs to the technical field of machinery. The problem of poor stability in the prior art is solved. The temperature control type electrolytic bath comprises a box body with a cavity inside and an opening in the upper end, a heating assembly and a constant temperature assembly are further arranged in the box body, after an electrolyte solution is injected into the box body, the heating assembly and the constant temperature assembly are both located below the liquid level of the electrolyte solution, the heating assembly can increase the temperature of the electrolyte solution, and the constant temperature assembly can increase the temperature of the electrolyte solution. The constant-temperature assembly can keep the temperature of electrolyte solutions in all positions in the box body balanced. The temperature control type electrolytic bath is high in stability.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to mechanical technical field relates to a temperature control type electrolytic cell. BACKGROUND

[0002] The electrolytic cell is a kind of device using electric energy to drive chemical reaction, is widely used in industrial production, energy storage and environmental protection etc.

[0003] By applying direct current voltage in electrolytic cell, the ion in electrolyte solution can be oxidized and reduced, so as to realize the separation, purification or synthesis of matter.

[0004] The existing electrolytic cell usually only includes single box body, when direct current voltage is applied to the electrolytic cell, the corresponding processing operation is completed.

[0005] During electrolysis operation, the electrolyte solution in each part of the box body is consistent, which can improve the operation stability and ensure the quality of electrolysis treatment products. In order to achieve the above purpose, a plurality of heating elements are arranged in the box body, that is, the plurality of heating elements are uniformly distributed at each position in the box body.

[0006] It can be seen that, although the plurality of heating elements appropriately improve the temperature of electrolyte solution in each part of the box body, the plurality of heating elements are distributed in each part of the box body, which leads to the internal structure of the box body is not compact, and the workpiece to be electrolyzed in the operation process may touch the heating element, which leads to the product or the heating element is damaged due to impact, and the stability is poor. Moreover, a large number of heating elements also increase the operation cost. SUMMARY

[0007] The utility model aims at the above problems existing in prior art, provide a kind of temperature control type electrolytic cell with high stability and compact structure.

[0008] The utility model can be realized by the following technical solutions:

[0009] A temperature control type electrolytic cell, comprising a box body with an empty cavity and an open upper end, characterized in that the box body further comprises a heating assembly and a constant temperature assembly, which are located below the liquid level of the electrolyte solution after the electrolyte solution is injected into the box body. The heating assembly can raise the temperature of the electrolyte solution, and the constant temperature assembly can maintain the electrolyte solution at a uniform temperature in the box body.

[0010] In the above-mentioned temperature control type electrolytic cell, the heating assembly comprises a positioning plate and a heating element, the positioning plate is flat and fixed to the inside of the box body, and the heating element has a positioning cylinder arranged horizontally and in a cylindrical shape. The heating element is matched with the positioning cylinder and connected in the positioning cylinder.

[0011] In the temperature-controlled electrolytic cell, the number of positioning cylinders is several, and the several positioning cylinders are arranged from top to bottom on the positioning plate.

[0012] In the temperature-controlled electrolytic cell, the heating element is an electric heating rod.

[0013] In the temperature-controlled electrolytic cell, the thermostat assembly includes a transmission shaft, a driving element, and a plurality of paddles. The driving element is fixed to the box body. The transmission shaft is transversely arranged and axially fixed in the box body. The driving element is connected to the transmission shaft. The inner end of each paddle is perpendicularly fixed to the transmission shaft. The plurality of paddles are evenly arranged along the length direction of the transmission shaft.

[0014] In the temperature-controlled electrolytic cell, among the two adjacent paddles along the length direction of the transmission shaft, one paddle faces upward, and the other paddle faces downward.

[0015] In the temperature-controlled electrolytic cell, the paddle includes a first paddle body, a second paddle body, a third paddle body, a fourth paddle body, and a fifth paddle body. The inner end of each of the first, second, third, and fourth paddle bodies is fixed to the outer side of the transmission shaft, and the first, second, third, and fourth paddle bodies are evenly arranged circumferentially. The first and second paddle bodies are symmetrically arranged vertically. The third and fourth paddle bodies are symmetrically arranged horizontally. The fifth paddle body is transversely arranged, and the outer ends of the first and fourth paddle bodies abut one side of the middle part of the fifth paddle body. The outer ends of the third and second paddle bodies abut the other side of the middle part of the fifth paddle body.

[0016] In the temperature-controlled electrolytic cell, each of the first, second, third, and fourth paddle bodies is made of elastic material.

[0017] In the temperature-controlled electrolytic cell, each of the first, second, third, and fourth paddle bodies is a plastic sheet.

[0018] In the temperature-controlled electrolytic cell, each of the first, second, third, and fourth paddle bodies is a copper sheet.

[0019] Compared with the prior art, the temperature-controlled electrolytic cell can improve the temperature of the electrolyte solution at the local position in the box body through the heating assembly. At this time, the temperatures of the electrolyte solution at different positions in the entire box body are inconsistent. However, the thermostat assembly can solve the above problem and keep the temperatures at different positions in the box body consistent and constant. Therefore, the quality of the finished product can be effectively improved under the constant temperature condition during the electrolysis process.

[0020] At the same time, the heating assembly and the thermostat assembly are centrally arranged, which can effectively improve the compactness of the structure and avoid occupying too much space. During the operation process, the workpiece to be electrolyzed can be far away from the positioning plate and avoid the thermostat assembly, which has high practical value. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is a schematic diagram of the three-dimensional structure of the temperature-controlled electrolytic cell.

[0022] Figure 2 is a schematic diagram of the top view structure of the temperature-controlled electrolytic cell.

[0023] Figure 3 is a schematic diagram of the three-dimensional structure of the temperature-controlled electrolytic cell.

[0024] Figure 4 is a schematic diagram of the three-dimensional structure of the temperature-controlled electrolytic cell.

[0025] In the figure, 1, box; 2, positioning plate; 2a, through hole; 3, heating element; 4, positioning cylinder; 5, transmission shaft; 6, driving element; 7, push piece; 7a, piece body one; 7b, piece body two; 7c, piece body three; 7d, piece body four; 7e, piece body five. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0027] It should be noted that when a component is referred to as "mounted on" another component, it can be directly mounted on the other component or there can be a middle component. When a component is referred to as "provided on" another component, it can be directly provided on the other component or there can be a middle component. When a component is referred to as "fixed on" another component, it can be directly fixed on the other component or there can be a middle component.

[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the description of the present application herein only for the purpose of describing specific embodiments of the present application, and is not intended to limit the present application. The term "or / and" used herein includes any and all combinations of one or more related listed items.

[0029] As Figure 1 and Figure 2 and Figure 3 and Figure 4As shown, the temperature control type electrolytic cell comprises a box body 1 with an empty cavity and an open upper end, and a heating assembly and a constant temperature assembly are further arranged in the box body 1, and the heating assembly and the constant temperature assembly are both below the liquid level of the electrolyte solution after the electrolyte solution is injected into the box body 1, the heating assembly can raise the temperature of the electrolyte solution, and the constant temperature assembly can keep the electrolyte solution at a balanced temperature in the box body 1.

[0030] The heating assembly can actively raise the temperature of the electrolyte solution in the box body 1, and the constant temperature assembly can ensure that the temperature of the electrolyte solution is constant everywhere in the box body 1.

[0031] As can be seen, under the set processing temperature condition, the product quality can be effectively improved.

[0032] The heating assembly comprises a positioning plate 2 and a heating element 3, the positioning plate 2 is in a flat plate shape and is fixedly connected to the inner side of the box body 1, and the heating element 3 has a positioning cylinder 4 arranged transversely and in a cylindrical shape, the heating element 3 is matched with the positioning cylinder 4 and is connected in the positioning cylinder 4.

[0033] The number of the positioning cylinders 4 is several, and the several positioning cylinders 4 are arranged from top to bottom on the positioning plate 2.

[0034] Since the number of the positioning cylinders 4 is several, the several positioning cylinders 4 can be stably connected in the box body 1 through the positioning plate 2, and the compactness of the structure is appropriately improved.

[0035] The heating element 3 is an electric heating rod.

[0036] The electric heating rod can stably heat after being electrified, and finally stably raise the temperature of the electrolyte solution in the box body.

[0037] The constant temperature assembly comprises a transmission shaft 5, a driving element 6 and a tab 7, the driving element 6 is fixedly connected to the box body 1, the transmission shaft 5 is arranged transversely and is axially fixed in the box body 1, the driving element 6 is connected with the transmission shaft 5, and the inner end of the tab 7 is fixedly connected to the transmission shaft 5 perpendicularly, and the number of the tabs 7 is several, and the several tabs 7 are arranged along the length direction of the transmission shaft 5.

[0038] The positioning plate 2 has a through hole 2a, and the transmission shaft 5 is arranged at the through hole 2a.

[0039] Such a structure can make the positioning cylinder 4 as close to the transmission shaft 5 as possible.

[0040] During the continuous rotation of the driving element 2 driving the transmission shaft 5, the tab 7 on the transmission shaft 5 stirs the electrolyte solution in the box body 1, and the movement can make the electrolyte solution circulate in the box body 1, and finally ensure that the temperature is consistent everywhere.

[0041] Of course, the rotating speed of the transmission shaft 5 is relatively low. In this embodiment, the rotating speed of the transmission shaft 5 is 5-10 rounds per minute. And the most end of the paddle 7 is adjacent to the positioning plate 2.

[0042] The two adjacent paddles 7 of the transmission shaft 5 along the length direction of the transmission shaft 5, one of which is upward and the other of which is downward.

[0043] Such structure can fully agitate the electrolyte solution in the tank 1.

[0044] The paddle 7 includes a long sheet-shaped paddle one 7a, a paddle two 7b, a paddle three 7c, a paddle four 7d and a paddle five 7e, the inner ends of the paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7d are fixedly connected to the outer side of the transmission shaft 5, the paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7d are circumferentially arranged, the paddle one 7a and the paddle two 7b are symmetrically arranged upward and downward, the paddle three 7c and the paddle four 7d are symmetrically arranged left and right, the paddle five 7e is transversely arranged, the outer ends of the paddle one 7a and the paddle four 7d abut on one side of the middle part of the paddle five 7e, and the outer ends of the paddle three 7c and the paddle two 7d abut on the other side of the middle part of the paddle five 7e.

[0045] The long sheet-shaped paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7e can agitate the electrolyte solution during the rotation of the transmission shaft 5.

[0046] At the same time, the paddle one 7a and the paddle four 7d are tightly pressed on one side of the paddle five 7e, and the paddle two 7b and the paddle three 7c are tightly pressed on the other side of the paddle five 7e, after the positioning of the paddle five 7e, the middle part of the paddle five 7e is stably positioned. Since the paddle five 7e is transversely arranged, the arrangement of the paddle five 7e effectively improves the agitation performance.

[0047] Since the paddle five 7e is connected by tight fit, according to actual conditions, the left and right extension lengths of the paddle five 7e and the angle of the paddle five 7e can be changed, so as to adapt to various different working conditions. That is to say, when the size of some to-be-processed workpieces is relatively large, the paddle five 7e can avoid the workpieces, thereby improving the applicability.

[0048] The paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7d are all made of elastic material.

[0049] The paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7d are all plastic sheets. According to actual conditions, the paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7d are all copper sheets.

[0050] The paddle one 7a, the paddle two 7b, the paddle three 7c and the paddle four 7d made of elastic material can stably detachably connect the paddle five 7e thereon.

[0051] The temperature control type electrolytic cell can improve the temperature of the electrolyte solution at the local position in the box by the heating assembly, at this time, the temperature of the electrolyte solution at each position in the whole box is inconsistent. However, the above problem can be solved by the constant temperature assembly, so that the temperature at each position in the box is consistent and constant. Therefore, the product quality can be effectively improved under the constant temperature condition during the electrolysis operation.

[0052] At the same time, since the heating assembly and the constant temperature assembly are arranged in a centralized manner, the compactness of the structure can be effectively improved, and the occupation of too much space can be avoided. During the operation process, the workpiece to be electrolyzed only needs to be away from the positioning plate and avoid the constant temperature assembly, which has high practical value.

[0053] Of course, the constant temperature referred to in the embodiment means that the temperature of the electrolyte solution at each position in the box is consistent, and it is not said that the electrolyte solution in the box is kept at a specified set temperature.

[0054] The technical features of the above-mentioned embodiments can be combined arbitrarily, and in order to make the description simple, all possible combinations of the technical features in the above-mentioned embodiments are not described, however, as long as the combination of the technical features does not exist contradictory, it should be considered as the scope of the present application.

[0055] Those skilled in the art should recognize that the above embodiments are only used to illustrate the present application, and are not used as a limitation of the present application, and as long as the above embodiments are appropriately changed and changed within the scope of the essential spirit of the present application, they fall within the scope of the present application.

Claims

1. A temperature-controlled electrolytic cell comprising a box having an empty cavity inside and an open upper end, characterized in that, The box further has a heating assembly and a constant temperature assembly, which are below the liquid level of the electrolyte solution after the electrolyte solution is injected into the box, the heating assembly can raise the temperature of the electrolyte solution, and the constant temperature assembly can keep the electrolyte solution at a balanced temperature in the box.

2. The temperature-controlled electrolytic cell of claim 1, wherein, The heating assembly comprises a positioning plate and a heating piece, the positioning plate is flat and fixed to the inner side of the box, and the heating piece has a positioning cylinder arranged horizontally and in a cylindrical shape, the heating piece is matched with the positioning cylinder and connected in the positioning cylinder.

3. A temperature-controlled electrolytic cell according to claim 2, wherein, The number of the positioning cylinders is several, and the several positioning cylinders are arranged from top to bottom on the positioning plate.

4. A temperature-controlled electrolytic cell according to claim 3, wherein, The heating piece is an electric heating rod.

5. A temperature-controlled electrolytic cell according to claim 4, wherein, The constant temperature assembly comprises a transmission shaft, a driving piece and a plurality of paddles, the driving piece is fixed to the box, the transmission shaft is arranged horizontally and fixed axially in the box, the driving piece is connected with the transmission shaft, the inner end of each paddle is fixed perpendicularly to the transmission shaft, and the number of the paddles is several, and the several paddles are arranged uniformly along the length direction of the transmission shaft.

6. A temperature-controlled electrolytic cell according to claim 5, wherein, Among the two adjacent paddles along the length direction of the transmission shaft, one paddle faces upward, and the other paddle faces downward.

7. A temperature-controlled electrolytic cell according to claim 6, wherein, The paddle comprises a first paddle body, a second paddle body, a third paddle body, a fourth paddle body and a fifth paddle body, the inner end of each of the first paddle body, the second paddle body, the third paddle body and the fourth paddle body is fixed to the outer side of the transmission shaft, and the first paddle body, the second paddle body, the third paddle body and the fourth paddle body are arranged uniformly in a circumferential direction, the first paddle body and the second paddle body are arranged symmetrically in a vertical direction, the third paddle body and the fourth paddle body are arranged symmetrically in a horizontal direction, the fifth paddle body is arranged horizontally, the outer end of the first paddle body and the second paddle body abuts against one side of the middle part of the fifth paddle body, and the outer end of the third paddle body and the fourth paddle body abuts against the other side of the middle part of the fifth paddle body.

8. A temperature-controlled electrolytic cell according to claim 7, wherein, The first paddle body, the second paddle body, the third paddle body and the fourth paddle body are made of elastic material.

9. A temperature-controlled electrolytic cell according to claim 8, wherein, The first paddle body, the second paddle body, the third paddle body and the fourth paddle body are plastic sheets.

10. A temperature-controlled electrolytic cell according to claim 9, wherein, The first paddle body, the second paddle body, the third paddle body and the fourth paddle body are copper sheets.