High-strength stainless steel electrolyte barrel

By installing a protective sleeve on the outside of the stainless steel electrolyte tank and adding multiple layers of wear-resistant, corrosion-resistant, and heat-insulating structures, the problems of low functionality and short service life of existing stainless steel electrolyte tanks are solved, achieving high-strength protection and heat insulation effects.

CN223751331UActive Publication Date: 2026-01-02QINGDAO ANGBILI IND CO LTD +1
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Patent Information

Application Number
CN202422819905.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2026-01-02
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing stainless steel electrolyte tanks have low functionality, short service life, lack effective protective measures, and cannot meet the electrolysis and electrolyte requirements of different environments.

Method used

A protective sleeve is installed on the outside of the stainless steel electrolyte tank, and multiple layers of wear-resistant, corrosion-resistant, and heat-insulating structures are wrapped inside and outside the tank, including wear-resistant surface layer, corrosion-resistant surface layer, and heat-insulating surface layer, to enhance structural strength and durability.

Benefits of technology

It improves the service life of stainless steel electrolyte tanks, enhances the protection of electrolytes, prevents corrosion and burns, provides insulation, and reduces friction damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stainless steel electrolyte barrels, and discloses a high-strength stainless steel electrolyte barrel which comprises a novel electrolyte barrel body, a protective sleeve is arranged on the outer side of the novel electrolyte barrel body, a fixing block is fixedly connected to the right side of the interior of the protective sleeve, and a fixing groove is formed in the left side of the fixing block. The right side of the novel electrolyte barrel body is fixedly connected with connecting blocks, the connecting blocks are located in the fixing grooves and matched with the fixing grooves, and the four fixing blocks, the four fixing grooves and the four connecting blocks are arranged in a square array with the top end of the novel electrolyte barrel body as the center. By arranging the first wear-resistant surface layer, the first wear-resistant middle layer, the first wear-resistant coating, the second wear-resistant surface layer, the second wear-resistant middle layer and the second wear-resistant coating, friction between the inner side of the protective sleeve and the novel electrolyte barrel body can be reduced, and the service life of the protective sleeve and the novel electrolyte barrel body is prolonged; the heat-insulating surface layer, the heat-insulating middle layer and the heat-insulating coating are arranged, so that heat insulation can be realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to stainless steel electrolyte barrel technical field, specifically for a high strength's stainless steel electrolyte barrel. BACKGROUND

[0002] Electrolyte is a widely used term, and its meaning varies greatly in different industries. It refers to the electrolyte in the body, also known as electrolyte, and the electrolyte used in the battery industry, as well as the electrolyte used in the industry of electrolytic capacitor and super capacitor.

[0003] The existing stainless steel electrolyte barrel has low functionality and short service life, and has no good protective measures, so it cannot well cope with the problems of electrolysis and electrolyte in different environments, and therefore needs a high strength to solve the above problems. UTILITY MODEL CONTENT

[0004] (I) Technical problem solved

[0005] In view of the deficiencies of the prior art, the utility model provides a high strength stainless steel electrolyte barrel to solve the technical problems in the above background technology.

[0006] (II) Technical scheme

[0007] In order to achieve the above purpose, the utility model provides the following technical scheme: a high strength stainless steel electrolyte barrel, comprising a new type of electrolyte barrel body, a protective sleeve is arranged on the outside of the new type of electrolyte barrel body, a fixed block is fixedly connected to the right side in the protective sleeve, a fixed groove is formed in the left side of the fixed block, a connecting block is fixedly connected to the right side of the new type of electrolyte barrel body, the connecting block is located in the inside of the fixed groove and is matched with the fixed groove, the fixed block, the fixed groove and the connecting block are arranged in a square array with four centers at the top of the new type of electrolyte barrel body, a material filling layer one is arranged in the new type of electrolyte barrel body, an anticorrosion surface layer is arranged on the inside of the material filling layer one, an anticorrosion intermediate layer is arranged on the inside of the anticorrosion surface layer, and an anticorrosion coating is arranged on the inside of the anticorrosion intermediate layer.

[0008] Preferably, the outer side of the material filling layer one is provided with a heat preservation surface layer, the outer side of the heat preservation surface layer is provided with a heat preservation intermediate layer, and the outer side of the heat preservation intermediate layer is provided with a heat preservation coating.

[0009] Through the above technical scheme, the outer side of the material filling layer one is provided with a heat preservation surface layer, the outer side of the heat preservation surface layer is provided with a heat preservation intermediate layer, and the outer side of the heat preservation intermediate layer is provided with a heat preservation coating. The purpose is to heat the electrolyte in the new type of electrolyte barrel body.

[0010] Preferably, the outer side of the heat preservation coating is provided with an anti-scald surface layer, the outer side of the anti-scald surface layer is provided with an anti-scald intermediate layer, and the outer side of the anti-scald intermediate layer is provided with an anti-scald coating.

[0011] Through the technical scheme, the outer side of the heat preservation coating is provided with the anti-scald surface layer, the outer side of the anti-scald surface layer is provided with the anti-scald intermediate layer, and the outer side of the anti-scald intermediate layer is provided with the anti-scald coating, so that when the staff contacts the surface of the novel electrolyte barrel body during use, scalding is avoided.

[0012] Preferably, the outer side of the anti-scald coating is provided with a wear-resistant surface layer one, the outer side of the wear-resistant surface layer one is provided with a wear-resistant intermediate layer one, and the outer side of the wear-resistant intermediate layer one is provided with a wear-resistant coating one.

[0013] Through the technical scheme, the outer side of the anti-scald coating is provided with the wear-resistant surface layer one, the outer side of the wear-resistant surface layer one is provided with the wear-resistant intermediate layer one, and the outer side of the wear-resistant intermediate layer one is provided with the wear-resistant coating one, so that the novel electrolyte barrel body is prevented from being in long-time contact and friction with the protective sleeve, and the service life of the novel electrolyte barrel body is reduced.

[0014] Preferably, the protective sleeve is internally provided with a material filling layer two, the outer side of the material filling layer two is provided with an anti-collision filling layer, and the outer side of the anti-collision filling layer is provided with a buffer cushion.

[0015] Through the technical scheme, the protective sleeve is internally provided with the material filling layer two, the outer side of the material filling layer two is provided with the anti-collision filling layer, and the outer side of the anti-collision filling layer is provided with the buffer cushion, so that foreign matters in the external environment are prevented from being damaged by collision with the protective sleeve, damage to the protective sleeve is reduced, and the service life of the protective sleeve is increased.

[0016] Preferably, the inner side of the material filling layer two is provided with a wear-resistant surface layer two, the inner side of the wear-resistant surface layer two is provided with a wear-resistant intermediate layer two, and the inner side of the wear-resistant intermediate layer two is provided with a wear-resistant coating two.

[0017] Through the technical scheme, the inner side of the material filling layer two is provided with the wear-resistant surface layer two, the inner side of the wear-resistant surface layer two is provided with the wear-resistant intermediate layer two, and the inner side of the wear-resistant intermediate layer two is provided with the wear-resistant coating two, so that friction between the inner side of the protective sleeve and the outer side of the novel electrolyte barrel body is reduced, and the service life of both is increased.

[0018] Compared with the prior art, the novel electrolyte barrel body has the following beneficial effects:

[0019] The utility model discloses a wear -resisting surface layer one, wear -resisting intermediate layer one, wear -resisting coating one, wear -resisting surface layer two, wear -resisting intermediate layer two and wear -resisting coating two can reduce the protection sleeve inside and novel electrolyte bucket body rub, increase the service life of protection sleeve and novel electrolyte bucket body, set up heat preservation surface layer, heat preservation intermediate layer and heat preservation coating, can realize the operation of novel electrolyte body heat preservation, set up anticorrosive surface layer, anticorrosive intermediate layer and anticorrosive coating, can play the anticorrosive effect to the inside of novel electrolyte body. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is the three -dimensional structure schematic diagram of the utility model;

[0021] Figure 2 It is the front view structure schematic diagram of the utility model;

[0022] Figure 3 It is the overhead structure schematic diagram of the utility model;

[0023] Figure 4 It is the electrolyte bucket inside partial sectional view structure schematic diagram of the utility model;

[0024] Figure 5 It is the protection sleeve inside partial sectional view structure schematic diagram of the utility model;

[0025] Figure 6 It is the utility model Figure 3 A place enlarged structure schematic diagram.

[0026] Among them: 1, novel electrolyte bucket body;2, protection sleeve;3, fixed block;4, fixed groove;5, connecting block;6, material filling layer one;7, anticorrosive surface layer;8, anticorrosive intermediate layer;9, anticorrosive coating;10, heat preservation surface layer;11, heat preservation intermediate layer;12, heat preservation coating;13, anti-scald surface layer;14, anti-scald intermediate layer;15, anti-scald coating;16, wear -resisting surface layer one;17, wear -resisting intermediate layer one;18, wear -resisting coating one;19, material filling layer two;20, wear -resisting surface layer two;21, wear -resisting intermediate layer two;22, wear -resisting coating two;23, anti -collision filling layer;24, buffer cushion. DETAILED DESCRIPTION

[0027] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the scope of the utility model protection.

[0028] Embodiment one:

[0029] As Figures 1-3 The utility model provides a high -strength's stainless steel electrolyte bucket, including novel electrolyte bucket body 1, the outside of novel electrolyte bucket body 1 is provided with protective sleeve 2, the right side fixed connection of protective sleeve 2 inside has fixed block 3, the left side of fixed block 3 is provided with fixed groove 4, the right side fixed connection of novel electrolyte bucket body 1 has connecting block 5, and connecting block 5 is located in the inside of fixed groove 4 and is adapted to fixed groove 4, and fixed block 3, fixed groove 4 and connecting block 5 have four with the top of novel electrolyte bucket body 1 as center square array, the inside of material filling layer one 6 is provided with anticorrosive surface layer 7, the inside of anticorrosive surface layer 7 is provided with anticorrosive intermediate layer 8, and the inside of anticorrosive intermediate layer 8 is provided with anticorrosive coating 9.

[0030] Specifically, the outside of the material filling layer one 6 is provided with a thermal surface layer 10, the outside of the thermal surface layer 10 is provided with a thermal intermediate layer 11, and the outside of the thermal intermediate layer 11 is provided with a thermal coating 12. The advantage is that the outside of the material filling layer one 6 is provided with a thermal surface layer 10, the outside of the thermal surface layer 10 is provided with a thermal intermediate layer 11, and the outside of the thermal intermediate layer 11 is provided with a thermal coating 12. The purpose is to perform thermal insulation operation on the electrolyte inside the novel electrolyte bucket body 1.

[0031] Embodiment two:

[0032] As Figures 4-6 improved from the previous embodiment. Specifically, the outside of the thermal coating 12 is provided with an anti-scald surface layer 13, the outside of the anti-scald surface layer 13 is provided with an anti-scald intermediate layer 14, and the outside of the anti-scald intermediate layer 14 is provided with an anti-scald coating 15. The advantage is that the outside of the thermal coating 12 is provided with an anti-scald surface layer 13, the outside of the anti-scald surface layer 13 is provided with an anti-scald intermediate layer 14, and the outside of the anti-scald intermediate layer 14 is provided with an anti-scald coating 15. The purpose is to avoid being scalded when the staff contacts the surface of the novel electrolyte bucket body 1 when using the novel electrolyte bucket body 1.

[0033] Specifically, the outside of the anti-scald coating 15 is provided with a wear-resistant surface layer one 16, the outside of the wear-resistant surface layer one 16 is provided with a wear-resistant intermediate layer one 17, and the outside of the wear-resistant intermediate layer one 17 is provided with a wear-resistant coating one 18. The advantage is that the outside of the anti-scald coating 15 is provided with a wear-resistant surface layer one 16, the outside of the wear-resistant surface layer one 16 is provided with a wear-resistant intermediate layer one 17, and the outside of the wear-resistant intermediate layer one 17 is provided with a wear-resistant coating one 18. The purpose is to avoid long-term contact and friction between the novel electrolyte bucket body 1 and the protective sleeve 2, and to reduce the service life of the novel electrolyte bucket body 1.

[0034] Specifically, the protective sleeve 2 is provided with a material filling layer two 19, the outer side of the material filling layer two 19 is provided with an anti-collision filling layer 23, and the outer side of the anti-collision filling layer 23 is provided with a buffer cushion 24. The protective sleeve 2 is provided with a material filling layer two 19, the outer side of the material filling layer two 19 is provided with an anti-collision filling layer 23, and the outer side of the anti-collision filling layer 23 is provided with a buffer cushion 24. The purpose is to avoid the contact between foreign matters and the protective sleeve 2 and to reduce the damage to the protective sleeve 2 and increase the service life of the protective sleeve 2.

[0035] Specifically, the inner side of the material filling layer two 19 is provided with a wear-resistant surface layer two 20, the inner side of the wear-resistant surface layer two 20 is provided with a wear-resistant intermediate layer two 21, and the inner side of the wear-resistant intermediate layer two 21 is provided with a wear-resistant coating two 22. The inner side of the material filling layer two 19 is provided with a wear-resistant surface layer two 20, the inner side of the wear-resistant surface layer two 20 is provided with a wear-resistant intermediate layer two 21, and the inner side of the wear-resistant intermediate layer two 21 is provided with a wear-resistant coating two 22. The purpose is to reduce the friction between the inner side of the protective sleeve 2 and the outer side of the novel electrolyte barrel body 1 and to increase the service life of both.

[0036] In use, the novel electrolyte barrel body 1 is placed in the inside of the protective sleeve 2, the connecting block 5 is inserted into the inside of the fixed groove 4 on the fixed block 3, so that the novel electrolyte barrel body 1 is fixed in the inside of the protective sleeve 2, and then the corrosion-resistant surface layer 7, the corrosion-resistant intermediate layer 8 and the corrosion-resistant coating 9 in the novel electrolyte barrel body 1 can play a corrosion-resistant role on the novel electrolyte barrel body 1; the heat preservation surface layer 10, the heat preservation intermediate layer 11 and the heat preservation coating 12 are arranged to perform the heat preservation operation on the novel electrolyte barrel body 1; the anti-scald surface layer 13, the anti-scald intermediate layer 14 and the anti-scald coating 15 are arranged to play an anti-scald purpose when the novel electrolyte barrel body 1 is used by the staff; the wear-resistant surface layer one 16, the wear-resistant intermediate layer one 17, the wear-resistant coating one 18, the wear-resistant surface layer two 20, the wear-resistant intermediate layer two 21 and the wear-resistant coating two 22 are arranged to play a wear-resistant role on the novel electrolyte barrel body 1 and the protective sleeve 2 respectively, increase the service life, and the anti-collision filling layer 23 and the buffer cushion 24 can avoid the contact between external objects and the protective sleeve 2.

[0037] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A high strength stainless steel electrolyte tank comprising a novel electrolyte tank body (1) characterised in that: The outside of the new electrolyte barrel body (1) is provided with a protective sleeve (2), the right side of the inside of the protective sleeve (2) is fixedly connected with a fixed block (3), the left side of the fixed block (3) is provided with a fixed groove (4), the right side of the new electrolyte barrel body (1) is fixedly connected with a connecting block (5), the connecting block (5) is located in the inside of the fixed groove (4) and is matched with the fixed groove (4), the fixed block (3), the fixed groove (4) and the connecting block (5) are four in a square array with the top end of the new electrolyte barrel body (1) as the center, the inside of the new electrolyte barrel body (1) is provided with a material filling layer one (6), the inside of the material filling layer one (6) is provided with an anticorrosion surface layer (7), the inside of the anticorrosion surface layer (7) is provided with an anticorrosion intermediate layer (8), the inside of the anticorrosion intermediate layer (8) is provided with an anticorrosion coating (9).

2. The high-strength stainless steel electrolyte tank according to claim 1, characterized by: The outside of the material filling layer one (6) is provided with a heat preservation surface layer (10), the outside of the heat preservation surface layer (10) is provided with a heat preservation intermediate layer (11), the outside of the heat preservation intermediate layer (11) is provided with a heat preservation coating (12).

3. A high strength stainless steel electrolyte tank as claimed in claim 2, wherein: The outside of the heat preservation coating (12) is provided with an anti-scald surface layer (13), the outside of the anti-scald surface layer (13) is provided with an anti-scald intermediate layer (14), the outside of the anti-scald intermediate layer (14) is provided with an anti-scald coating (15).

4. The high-strength stainless steel electrolyte tank according to claim 3, characterized by: The outside of the anti-scald coating (15) is provided with a wear-resistant surface layer one (16), the outside of the wear-resistant surface layer one (16) is provided with a wear-resistant intermediate layer one (17), the outside of the wear-resistant intermediate layer one (17) is provided with a wear-resistant coating one (18).

5. The high strength stainless steel electrolyte tank of claim 1, wherein: The inside of the protective sleeve (2) is provided with a material filling layer two (19), the outside of the material filling layer two (19) is provided with an anti-collision filling layer (23), the outside of the anti-collision filling layer (23) is provided with a buffer cushion (24).

6. A high strength stainless steel electrolyte tank as claimed in claim 5, wherein: The inside of the material filling layer two (19) is provided with a wear-resistant surface layer two (20), the inside of the wear-resistant surface layer two (20) is provided with a wear-resistant intermediate layer two (21), the inside of the wear-resistant intermediate layer two (21) is provided with a wear-resistant coating two (22).