Bucket device capable of mixing electrolyte

By designing a mixable electrolyte barrel device, the isolation mixing of inert gas and electrolyte components is achieved using multiple barrel ports and conveying devices, the leakage and contamination problems of electrolyte barrels during storage and mixing are solved, and the mixing efficiency and sealing are improved.

CN222906450UActive Publication Date: 2025-05-27SUZHOU DEGAS ENERGY TECH CO LTD
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Patent Information

Application Number
CN202421911437.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-05-27
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

Existing electrolyte barrels are prone to leakage and electrolyte contamination when storing and mixing, and the mixing efficiency is slow.

Method used

A mixed electrolyte barrel device is designed. By setting multiple barrel ports on the barrel to connect to the conveying device, the inert gas and electrolyte components are transported into the barrel by using pipeline components and valve components to isolate the mixing of air and speed up the mixing speed by pressurization and stirring.

Benefits of technology

It effectively avoids contamination and leakage of electrolyte, improves mixing efficiency, and ensures a high sealing process of electrolyte extraction.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222906450U_ABST
Patent Text Reader

Abstract

The utility model discloses a barrel device capable of mixing electrolyte, which belongs to the technical field of electrolyte preparation and comprises a barrel body, a barrel opening is formed in the barrel body, and the barrel opening is connected with a conveying device. The conveying device comprises a pipeline assembly and a valve assembly, the pipeline assembly is connected with the barrel opening, and the valve assembly is connected with the upper end of the pipeline assembly. According to the mode, inert gas is sent into the barrel body by controlling the valve assembly, then different electrolyte components are sent into the barrel body to be mixed, air is isolated in the mixing process, pollution is avoided, when the electrolyte is taken, the electrolyte is output through the pipeline assembly in a pressurization mode, holes do not need to be formed in the bottom of the barrel body, and the sealing performance is high; liquid flows quickly by introducing inert gas to generate bubbles or stirring or using a circulating pump, so that the mixing speed is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of electrolyte preparation, in particular to a mixable electrolyte barrel device. Background Art

[0002] Electrolyte is the medium used in chemical batteries, electrolytic capacitors, etc., and its contents vary greatly in different industries. Some electrolytes are prone to deterioration during storage, transportation, and use, so they are generally mixed and ready for use.

[0003] For example, Chinese patent application CN209777302U discloses an electrolyte barrel, including a barrel body, an inner tank, a pressure gauge, an upper liquid level pipe, a lower liquid level pipe and a drain pipe. The inner tank is arranged inside the barrel body and a gap is left between the barrel body and the pressure gauge, the inlet of the upper liquid level pipe and the lower liquid level pipe are all installed on the upper end surface of the barrel body, the upper end surface of the barrel body is also installed with a safety valve and communicated with the inner tank, the drain pipe is installed at the lower part of the barrel body and communicated with the inner tank, and a control valve is arranged on the outlet pipe of the drain pipe. The electrolyte barrel can simultaneously meet the functions of punching, cleaning and liquid filling in the barrel by setting the upper liquid level pipe; the lower liquid level pipe can simultaneously meet the functions of suction, injection and cleaning in the barrel; a vacuum is set between the barrel body and the inner tank, and the upper liquid level pipe, the lower liquid level pipe and the drain pipe are set with materials with low thermal conductivity to enhance the effect of ensuring heat insulation; the outer surface of the inner tank is also provided with gas adsorption material.

[0004] However, when the electrolyte barrel is in use, there is a risk of leakage during storage and mixing due to the setting of the drain pipe at the bottom of the barrel. When mixing some perishable electrolytes, the electrolyte may be contaminated due to the lack of air isolation, and the mixing efficiency is slow.

[0005] Based on this, the utility model designs a mixable electrolyte barrel device to solve the above problems. Utility Model Content

[0006] In view of the above-mentioned shortcomings of the prior art, the utility model provides a mixed electrolyte barrel device.

[0007] In order to achieve the above objectives, the present invention is implemented through the following technical solutions:

[0008] A miscible electrolyte barrel device, comprising a barrel body,

[0009] The barrel body is provided with a barrel opening, and the barrel opening is connected to the conveying device;

[0010] The conveying device comprises a pipeline assembly and a valve assembly, wherein the pipeline assembly is connected to the barrel mouth, and the valve assembly is connected to the upper end of the pipeline assembly.

[0011] Furthermore, the barrel openings are provided with three, the three barrel openings are opened on the upper end surface of the barrel body, and the inner side of the barrel openings is provided with threads.

[0012] Furthermore, the pipeline assembly includes a first pipeline, a second pipeline and a third pipeline, and threads are arranged on the outer sides of the first pipeline, the second pipeline and the third pipeline, the first pipeline is sealed with the thread of the left barrel mouth, the lower end of the first pipeline is close to the bottom of the barrel body, the second pipeline is sealed with the thread of the right barrel mouth, the lower end of the second pipeline is close to the bottom of the barrel body, the lower end of the second pipeline is provided with multiple groups of air holes, and the multiple groups of air holes are evenly distributed on the outer side of the second pipeline, the third pipeline is sealed with the thread of the middle barrel mouth, the lower end of the third pipeline is close to the top of the barrel body, and the upper ends of the first pipeline, the second pipeline and the third pipeline are connected to the valve assembly.

[0013] Furthermore, the valve assembly includes a first valve, a second valve and a third valve, the first valve is a stop valve, the lower end port of the first valve is fixedly connected to the upper end of the first pipeline, the upper end port of the first valve is a first port, the second valve is a three-way valve, the lower end port of the second valve is fixedly connected to the upper end of the second pipeline, the upper end port of the second valve is a second port, the side port of the second valve is a third port, the third valve is a stop valve, the lower end port of the third valve is fixedly connected to the upper end of the third pipeline, and the upper end port of the third valve is a fourth port.

[0014] Furthermore, the conveying device also includes a mixing component, which is connected to the middle barrel mouth. The mixing component includes a stirring rod, an impeller, an agitator, a fixed plate and a rotating sleeve. The middle part of the stirring rod is rotatably sealed with the rotating sleeve, the outer side of the rotating sleeve is threadedly sealed with the middle barrel mouth, the upper end of the stirring rod is rotatably connected to the fixed plate, the upper end surface of the stirring rod is fixedly connected to the output end of the agitator, and multiple groups of impellers are provided. Multiple groups of impellers are provided at the lower end of the stirring rod, and each group of impellers is provided with multiple impellers. Multiple impellers are evenly fixedly installed on the lower end of the stirring rod, and the agitator is fixedly installed on the upper end of the fixed plate.

[0015] Furthermore, the pipeline assembly includes a fourth pipeline and a fifth pipeline, and threads are arranged on the outer sides of the fourth pipeline and the fifth pipeline. The fourth pipeline is sealed with the thread of the left barrel mouth, and the lower end of the fourth pipeline is close to the bottom of the barrel body. The fifth pipeline is sealed with the thread of the right barrel mouth, and the lower end of the fifth pipeline is close to the top of the barrel body. The upper ends of the fourth pipeline and the fifth pipeline are connected to the valve assembly.

[0016] Furthermore, the valve assembly includes a fourth valve and a fifth valve, the fourth valve is a stop valve, the lower end port of the fourth valve is fixedly connected to the upper end of the fourth pipe, the upper end port of the fourth valve is the fifth port, the fifth valve is a three-way valve, the lower end port of the fifth valve is fixedly connected to the upper end of the fifth pipe, the upper end port of the fifth valve is the sixth port, the side port of the fifth valve is the seventh port, the agitator is the driving part of the disperser, and the disperser is the prior art.

[0017] Furthermore, the barrel is provided with two openings, which are opened on the upper end surface of the barrel body, and the inner side of the barrel is provided with threads. The conveying device also includes a mixing component, which is a circulating pump. The mixing component is connected to the valve component, and the mixing component is fixedly mounted on an external bracket.

[0018] Furthermore, the pipeline assembly includes a sixth pipeline and a seventh pipeline, and threads are arranged on the outer sides of the sixth pipeline and the seventh pipeline. The sixth pipeline is sealed with the threads on the left barrel opening, and the lower end of the sixth pipeline is close to the bottom of the barrel body. The seventh pipeline is sealed with the threads on the right barrel opening, and the lower end of the seventh pipeline is close to the top of the barrel body. The upper ends of the sixth pipeline and the seventh pipeline are connected to the valve assembly.

[0019] Furthermore, the valve assembly includes a sixth valve and a seventh valve, the sixth valve is a three-way valve, the lower end port of the sixth valve is fixedly connected to the sixth pipeline, the upper end port of the sixth valve is an eighth port, the eighth port is fixedly connected to the liquid inlet end of the mixing assembly through a pipeline, the side port of the sixth valve is a ninth port, the seventh valve is a three-way valve, the lower end port of the seventh valve is fixedly connected to the seventh pipeline, the upper end port of the seventh valve is a tenth port, the tenth port is fixedly connected to the liquid outlet end of the mixing assembly through a pipeline, and the side port of the seventh valve is an eleventh port.

[0020] Compared with the prior art, the utility model has the following beneficial effects:

[0021] The utility model controls the valve assembly to deliver inert gas into the barrel body, and then delivers different electrolyte components into the barrel body for mixing, so that the mixing process is isolated from air to avoid pollution. When taking the electrolyte, the electrolyte is output through the pipeline assembly by pressurizing, and there is no need to open a hole at the bottom of the barrel body, so the sealing performance is high.

[0022] The utility model allows liquid to flow quickly by introducing inert gas to generate bubbles or stirring or using a circulating pump, thereby accelerating the mixing speed. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the prior art descriptions are briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model, and for ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0024] Figure 1 It is a three-dimensional diagram of the mixed electrolyte barrel device of the utility model;

[0025] Figure 2 This is a front view of the mixed electrolyte barrel device of the utility model Figure 1 ;

[0026] Figure 3 This is the right view of the mixed electrolyte barrel device of the utility model Figure 1 ;

[0027] Figure 4 For along Figure 3 AA direction cross-sectional view;

[0028] Figure 5 This is a front view of the mixed electrolyte barrel device of the utility model Figure 2 ;

[0029] Figure 6 This is the right view of the mixed electrolyte barrel device of the utility model Figure 2 ;

[0030] Figure 7 For along Figure 6 BB direction cross-sectional view;

[0031] Figure 8 This is a front view of the mixed electrolyte barrel device of the utility model Figure 3 ;

[0032] Fig. 9 This is the right view of the mixed electrolyte barrel device of the utility model Figure 3 ;

[0033] Fig.10 For along Fig. 9 CC direction cross-sectional view.

[0034] The numbers in the figure represent:

[0035] 1. Barrel body 2. Barrel mouth 3. Conveying device 31. Pipe assembly 311. First pipeline 312. Second pipeline 313. Third pipeline 314. Fourth pipeline 315. Fifth pipeline 316. Sixth pipeline 317. Seventh pipeline 32. Valve assembly 321. First valve 3211. First port 322. Second valve 3221. Second port 3222. Third port 323. Third valve 3231. Fourth port 324. Fourth valve 3241. Fifth port 325. Fifth valve 3251. Sixth port 3252. Seventh port 326. Sixth valve 3261. Eighth port 3262. Ninth port 327. Seventh valve 3271. Tenth port 3272. Eleventh port 33. Mixing assembly 331. Stirring rod 332. Impeller 333. Agitator 334. Fixed plate 335. Rotating sleeve. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical solution and advantages of the embodiment of the utility model clearer, the technical solution in the embodiment of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiment of the utility model. Obviously, the described embodiment is a part of the embodiment of the utility model, not all of the embodiments. Based on the embodiment of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0037] The terms “left”, “right”, “front”, “back”, “up” and “down” mentioned in the following description are oriented in the viewing direction of the front view.

[0038] Embodiment 1

[0039] In some embodiments, please refer to the attached instructions. Figure 1-4 , a mixed electrolyte barrel device, comprising a barrel body 1,

[0040] The barrel body 1 is provided with a barrel opening 2, and the barrel opening 2 is connected to a conveying device 3;

[0041] When the miscible electrolyte barrel device is in normal use, the inert gas is transported from the pipeline assembly 31 to the barrel body 1 by controlling the valve assembly 32, and then different electrolyte components are transported from the pipeline assembly 31 to the barrel body 1 for mixing, so that the mixing process is isolated from the air to avoid pollution. When the electrolyte is taken, the electrolyte is output through the pipeline assembly 31 by introducing more inert gas to increase the pressure, so that there is no need to open a hole at the bottom of the barrel body 1, and the sealing is high.

[0042] The conveying device 3 includes a pipeline component 31 and a valve component 32 . The pipeline component 31 is connected to the barrel mouth 2 , and the valve component 32 is connected to the upper end of the pipeline component 31 .

[0043] The barrel openings 2 are provided with three, and the three barrel openings 2 are opened on the upper end surface of the barrel body 1, and the inner side of the barrel openings 2 is provided with threads.

[0044] The pipeline assembly 31 includes a first pipeline 311, a second pipeline 312 and a third pipeline 313. The first pipeline 311, the second pipeline 312 and the third pipeline 313 are provided with threads on the outer sides. The first pipeline 311 is threadedly sealed and connected to the left barrel opening 2. The lower end of the first pipeline 311 is close to the inner bottom of the barrel body 1. The second pipeline 312 is threadedly sealed and connected to the right barrel opening 2. The lower end of the second pipeline 312 is close to the inner bottom of the barrel body 1. A plurality of groups of air holes are provided at the lower end of the second pipeline 312. The plurality of groups of air holes are evenly distributed on the outer side of the second pipeline 312. The third pipeline 313 is threadedly sealed and connected to the middle barrel opening 2. The lower end of the third pipeline 313 is close to the inner top of the barrel body 1. The upper ends of the first pipeline 311, the second pipeline 312 and the third pipeline 313 are connected to the valve assembly 32.

[0045] The valve assembly 32 includes a first valve 321, a second valve 322 and a third valve 323. The first valve 321 is a stop valve. The lower end opening of the first valve 321 is fixedly connected to the upper end of the first pipe 311. The upper end opening of the first valve 321 is a first opening 3211. The second valve 322 is a three-way valve. The lower end opening of the second valve 322 is fixedly connected to the upper end of the second pipe 312. The upper end opening of the second valve 322 is a second opening 3221. The side opening of the second valve 322 is a third opening 3222. The third valve 323 is a stop valve. The lower end opening of the third valve 323 is fixedly connected to the upper end of the third pipe 313. The upper end opening of the third valve 323 is a fourth opening 3231.

[0046] When the miscible electrolyte barrel device is in normal use, the second opening 3221 and the fourth opening 3231 are opened, the first opening 3211 and the third opening 3222 are closed, and an inert gas is introduced from the second opening 3221 to protect the barrel body 1; the third opening 3222 and the fourth opening 3231 are opened, the first opening 3211 and the second opening 3221 are closed, and the main component of the electrolyte is first pressed into the barrel body 1 through the third opening 3222, and then the active component of the electrolyte is pressed into the barrel body 1; the second opening 3221 and the fourth opening 3231 are opened, the first opening 3211 and the second opening 3221 are closed, and the main component of the electrolyte is first pressed into the barrel body 1 through the third opening 3222, and then the active component of the electrolyte is pressed into the barrel body 1; the second opening 3221 and the fourth opening 3231 are opened, the first opening 3211 and the second opening 3221 are closed, and the inert gas is introduced from the second opening 3221 to protect the barrel body 1; The inert gas is introduced from the second port 3221, and the inert gas passes through the air holes at the lower end of the second pipe 312 to form fine bubbles; when taking the electrolyte, the first port 3211 and the second port 3221 are opened, and the third port 3222 and the fourth port 3231 are closed, and the inert gas is introduced from the second port 3221, and the inert gas gathers at the top of the barrel body 1, so that the electrolyte in the barrel body 1 is pressed out from the first port 3211 under the action of pressure; the fine bubbles formed by the inert gas accelerate the mixing speed of the electrolyte.

[0047] Embodiment 2

[0048] In some embodiments, Figure 5-7 As shown, as a preferred embodiment of the utility model, the conveying device 3 also includes a mixing component 33, which is connected to the middle barrel mouth 2. The mixing component 33 includes a stirring rod 331, an impeller 332, an agitator 333, a fixed plate 334 and a rotating sleeve 335. The middle part of the stirring rod 331 is rotatably sealed with the rotating sleeve 335, and the outer side of the rotating sleeve 335 is threadedly sealed with the middle barrel mouth 2. The upper end of the stirring rod 331 is rotatably connected to the fixed plate 334, and the upper end surface of the stirring rod 331 is fixedly connected to the output end of the agitator 333. There are multiple groups of impellers 332, and the multiple groups of impellers 332 are arranged at the lower end of the stirring rod 331. Each group of impellers 332 is provided with multiple impellers, and the multiple impellers 332 are evenly fixedly installed on the lower end of the stirring rod 331, and the agitator 333 is fixedly installed on the upper end of the fixed plate 334.

[0049] The pipeline assembly 31 includes a fourth pipeline 314 and a fifth pipeline 315. The outer sides of the fourth pipeline 314 and the fifth pipeline 315 are provided with threads. The fourth pipeline 314 is threadedly sealed and connected to the left barrel opening 2. The lower end of the fourth pipeline 314 is close to the bottom of the barrel body 1. The fifth pipeline 315 is threadedly sealed and connected to the right barrel opening 2. The lower end of the fifth pipeline 315 is close to the top of the barrel body 1. The upper ends of the fourth pipeline 314 and the fifth pipeline 315 are connected to the valve assembly 32.

[0050] The valve assembly 32 includes a fourth valve 324 and a fifth valve 325. The fourth valve 324 is a stop valve. The lower end port of the fourth valve 324 is fixedly connected to the upper end of the fourth pipe 314. The upper end port of the fourth valve 324 is a fifth port 3241. The fifth valve 325 is a three-way valve. The lower end port of the fifth valve 325 is fixedly connected to the upper end of the fifth pipe 315. The upper end port of the fifth valve 325 is a sixth port 3251. The side port of the fifth valve 325 is a seventh port 3252. The agitator 333 is the driving part of the disperser. The disperser is a prior art.

[0051] When the miscible electrolyte barrel device is in normal use, the fifth port 3241 and the sixth port 3251 are opened, the seventh port 3252 is closed, and an inert gas is introduced from the sixth port 3251 to protect the barrel body 1; the fifth port 3241 and the seventh port 3252 are opened, the sixth port 3251 is closed, and the main component of the electrolyte is first pressed into the barrel body 1 through the seventh port 3252, and then the active component of the electrolyte is pressed into the barrel body 1; the fifth port 3241, the sixth port 3251 and the seventh port 3252 are closed. , start the agitator 333, the agitator 333 drives the stirring rod 331 to rotate, the stirring rod 331 drives the impeller 332 to rotate, and the impeller 332 stirs the electrolyte; when taking the electrolyte, open the fifth port 3241 and the sixth port 3251, close the seventh port 3252, and introduce inert gas from the sixth port 3251. The inert gas gathers at the top of the barrel body 1, so that the electrolyte is pressed out from the fifth port 3241 under the action of pressure; the stirring of the electrolyte by the impeller 332 accelerates the mixing speed of the electrolyte.

[0052] Embodiment 3

[0053] In some embodiments, Figure 8-10 As shown, as a preferred embodiment of the utility model, the barrel mouth 2 is provided with two, the two barrel mouths 2 are opened on the upper end surface of the barrel body 1, the inner side of the barrel mouth 2 is provided with a thread, the conveying device 3 also includes a mixing component 33, the mixing component 33 is a circulation pump, the mixing component 33 is connected to the valve component 32, and the mixing component 33 is fixedly mounted on the external bracket.

[0054] The pipeline assembly 31 includes a sixth pipeline 316 and a seventh pipeline 317. The outer sides of the sixth pipeline 316 and the seventh pipeline 317 are provided with threads. The sixth pipeline 316 is threadedly sealed and connected to the left barrel opening 2. The lower end of the sixth pipeline 316 is close to the bottom of the barrel body 1. The seventh pipeline 317 is threadedly sealed and connected to the right barrel opening 2. The lower end of the seventh pipeline 317 is close to the top of the barrel body 1. The upper ends of the sixth pipeline 316 and the seventh pipeline 317 are connected to the valve assembly 32.

[0055] The valve assembly 32 includes a sixth valve 326 and a seventh valve 327. The sixth valve 326 is a three-way valve. The lower end port of the sixth valve 326 is fixedly connected to the sixth pipeline 316. The upper end port of the sixth valve 326 is an eighth port 3261. The eighth port 3261 is fixedly connected to the liquid inlet end of the mixing assembly 33 through a pipeline. The side port of the sixth valve 326 is a ninth port 3262. The seventh valve 327 is a three-way valve. The lower end port of the seventh valve 327 is fixedly connected to the seventh pipeline 317. The upper end port of the seventh valve 327 is a tenth port 3271. The tenth port 3271 is fixedly connected to the liquid outlet end of the mixing assembly 33 through a pipeline. The side port of the seventh valve 327 is an eleventh port 3272.

[0056] When the mixed electrolyte barrel device is in normal use, the ninth port 3262 and the eleventh port 3272 are opened, the eighth port 3261 and the tenth port 3271 are closed, and an inert gas is introduced from the eleventh port 3272 to protect the barrel body 1; the eighth port 3261 is opened, and the main component of the electrolyte is first pressed into the barrel body 1 through the eleventh port 3272, and then the active component of the electrolyte is pressed into the barrel body 1; the tenth port 3271 is opened, and the ninth port 3262 and the eleventh port 3272 are closed. , start the mixing component 33, and the mixing component 33 drives the electrolyte in the barrel body 1 to circulate and mix; when taking the electrolyte, open the ninth port 3262 and the eleventh port 3272, close the eighth port 3261 and the tenth port 3271, and introduce inert gas from the eleventh port 3272. The inert gas gathers at the top of the barrel body 1, so that the electrolyte is pressed out from the ninth port 3262 under the action of pressure; the mixing component 33 circulates and draws the electrolyte in the barrel body 1, so that the mixing speed of the electrolyte is accelerated.

[0057] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. Such modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A miscible electrolyte barrel device, comprising a barrel body (1), characterized in that: The barrel body (1) is provided with a barrel mouth (2), and the barrel mouth (2) is connected to a conveying device (3); The conveying device (3) comprises a pipeline component (31) and a valve component (32), wherein the pipeline component (31) is connected to the barrel mouth (2), and the valve component (32) is connected to the upper end of the pipeline component (31); The barrel openings (2) are provided with three, the three barrel openings (2) are opened on the upper end surface of the barrel body (1), and the inner side of the barrel openings (2) is provided with threads; The pipeline assembly (31) comprises a first pipeline (311), a second pipeline (312) and a third pipeline (313). The first pipeline (311), the second pipeline (312) and the third pipeline (313) are provided with threads on the outside. The first pipeline (311) is threadedly sealed to the left barrel opening (2). The lower end of the first pipeline (311) is close to the inner bottom of the barrel body (1). The second pipeline (312) is threadedly sealed to the right barrel opening (2). The lower end of the second pipeline (312) is close to the inner bottom of the barrel body (1). The lower end of the second pipeline (312) is provided with multiple groups of air holes. The multiple groups of air holes are evenly distributed on the outside of the second pipeline (312). The third pipeline (313) is threadedly sealed to the middle barrel opening (2). The lower end of the third pipeline (313) is close to the inner top of the barrel body (1). The upper ends of the first pipeline (311), the second pipeline (312) and the third pipeline (313) are connected to the valve assembly (32). The valve assembly (32) comprises a first valve (321), a second valve (322) and a third valve (323); the first valve (321) is a stop valve; the lower end opening of the first valve (321) is fixedly connected to the upper end of the first pipe (311); the upper end opening of the first valve (321) is a first opening (3211); the second valve (322) is a three-way valve; the lower end opening of the second valve (322) is fixedly connected to the upper end of the second pipe (312); the upper end opening of the second valve (322) is a second opening (3221); the side opening of the second valve (322) is a third opening (3222); the third valve (323) is a stop valve; the lower end opening of the third valve (323) is fixedly connected to the upper end of the third pipe (313); the upper end opening of the third valve (323) is a fourth opening (3231).

2. A miscible electrolyte barrel device, comprising a barrel body (1), characterized in that: The barrel body (1) is provided with a barrel mouth (2), and the barrel mouth (2) is connected to a conveying device (3); The conveying device (3) comprises a pipeline component (31) and a valve component (32), wherein the pipeline component (31) is connected to the barrel mouth (2), and the valve component (32) is connected to the upper end of the pipeline component (31); The barrel openings (2) are provided with three, the three barrel openings (2) are opened on the upper end surface of the barrel body (1), and the inner side of the barrel openings (2) is provided with threads; The conveying device (3) further comprises a mixing assembly (33), the mixing assembly (33) being connected to the middle barrel opening (2), the mixing assembly (33) comprising a stirring rod (331), an impeller (332), an agitator (333), a fixed plate (334) and a rotating sleeve (335), the middle portion of the stirring rod (331) being rotatably sealedly connected to the rotating sleeve (335), the outer side of the rotating sleeve (335) being threadedly sealedly connected to the middle barrel opening (2), the upper end of the stirring rod (331) being rotatably connected to the fixed plate (334), the upper end surface of the stirring rod (331) being fixedly connected to the output end of the agitator (333), a plurality of impellers (332) being provided, the plurality of impellers (332) being provided at the lower end of the stirring rod (331), each group of impellers (332) being provided with a plurality of impellers, the plurality of impellers (332) being evenly fixedly mounted at the lower end of the stirring rod (331), and the agitator (333) being fixedly mounted at the upper end of the fixed plate (334); The pipeline assembly (31) comprises a fourth pipeline (314) and a fifth pipeline (315), the outer sides of the fourth pipeline (314) and the fifth pipeline (315) are provided with threads, the fourth pipeline (314) is threadedly sealedly connected to the left barrel opening (2), the lower end of the fourth pipeline (314) is close to the bottom of the barrel body (1), the fifth pipeline (315) is threadedly sealedly connected to the right barrel opening (2), the lower end of the fifth pipeline (315) is close to the top of the barrel body (1), and the upper ends of the fourth pipeline (314) and the fifth pipeline (315) are connected to the valve assembly (32); The valve assembly (32) comprises a fourth valve (324) and a fifth valve (325); the fourth valve (324) is a stop valve; the lower end opening of the fourth valve (324) is fixedly connected to the upper end of the fourth pipe (314); the upper end opening of the fourth valve (324) is a fifth opening (3241); the fifth valve (325) is a three-way valve; the lower end opening of the fifth valve (325) is fixedly connected to the upper end of the fifth pipe (315); the upper end opening of the fifth valve (325) is a sixth opening (3251); the side opening of the fifth valve (325) is a seventh opening (3252); and the agitator (333) is a driving part of the dispersion mixer.

3. A miscible electrolyte barrel device, comprising a barrel body (1), characterized in that: The barrel body (1) is provided with a barrel mouth (2), and the barrel mouth (2) is connected to a conveying device (3); The conveying device (3) comprises a pipeline component (31) and a valve component (32), wherein the pipeline component (31) is connected to the barrel mouth (2), and the valve component (32) is connected to the upper end of the pipeline component (31); The barrel openings (2) are provided with two barrel openings (2), the two barrel openings (2) are opened on the upper end surface of the barrel body (1), the inner side of the barrel openings (2) is provided with threads, the conveying device (3) also includes a mixing component (33), the mixing component (33) is a circulation pump, the mixing component (33) is connected to the valve component (32), and the mixing component (33) is fixedly mounted on the external bracket; The pipeline assembly (31) comprises a sixth pipeline (316) and a seventh pipeline (317), the outer sides of the sixth pipeline (316) and the seventh pipeline (317) are provided with threads, the sixth pipeline (316) is threadedly sealedly connected to the left barrel opening (2), the lower end of the sixth pipeline (316) is close to the bottom of the barrel body (1), the seventh pipeline (317) is threadedly sealedly connected to the right barrel opening (2), the lower end of the seventh pipeline (317) is close to the top of the barrel body (1), and the upper ends of the sixth pipeline (316) and the seventh pipeline (317) are connected to the valve assembly (32); The valve assembly (32) comprises a sixth valve (326) and a seventh valve (327). The sixth valve (326) is a three-way valve. The lower end opening of the sixth valve (326) is fixedly connected to the sixth pipeline (316). The upper end opening of the sixth valve (326) is an eighth opening (3261). The eighth opening (3261) is fixedly connected to the liquid inlet end of the mixing assembly (33) through a pipeline. The side opening of the sixth valve (326) is a ninth opening (3262). The seventh valve (327) is a three-way valve. The lower end opening of the seventh valve (327) is fixedly connected to the seventh pipeline (317). The upper end opening of the seventh valve (327) is a tenth opening (3271). The tenth opening (3271) is fixedly connected to the liquid outlet end of the mixing assembly (33) through a pipeline. The side opening of the seventh valve (327) is an eleventh opening (3272).

Citation Information

Patent Citations

  • Electrolyte barrel

    CN209777302U