Electrolyte floating stirring device
Through the design of the electrolyte floating stirring device and the rotation of the auger blades and sleeves, the problem of uneven distribution of metal elements in the electrolyte is solved, and the uniform mixing of the electrolyte and the improvement of electrolysis efficiency are achieved.
Patent Information
- Application Number
- CN202311337440.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-16
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2043-10-16
AI Technical Summary
Metal elements in the electrolyte tend to precipitate at the bottom of the storage tank, resulting in uneven distribution of metal elements. This problem is more prominent at greater depths, affecting electrolysis efficiency.
An electrolyte floating stirring device is used, including lower and upper electrolyte lifting components. The rotation of the auger blades and sleeves can achieve the lifting of the lower electrolyte and the drawing in of the upper electrolyte. Combined with the design of the guide tube and air bag, it ensures that the electrolyte is evenly mixed in the liquid storage tank.
The uniform distribution of metal elements in the electrolyte is achieved, and the electrolysis efficiency and the full stirring effect of the electrolyte are improved.
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Figure CN117123116B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to an electrolyte floating stirring device, belonging to the technical field of stirring equipment. Background Art
[0002] At present, during electrolysis, metal elements in the electrolyte are easily precipitated at the bottom of the liquid storage tank, and the content of metal elements gradually decreases from top to bottom, resulting in uneven distribution of metal elements. In order to make the fixed metal elements in the electrolyte evenly distributed, stirring blades are generally added to the liquid storage tank, and the electrolyte is stirred by the rotation of the stirring blades. However, during stirring, the rotation of the stirring blades cannot fully solve the problem of convection between the upper and lower layers of electrolyte, so as to make the metal elements of the upper and lower layers of electrolyte evenly distributed. Especially when the depth of the liquid storage tank is deep, the problem of uneven distribution of metal elements is more prominent, resulting in incomplete and uneven electrolysis. Therefore, an electrolyte floating stirring device is proposed. Summary of the Invention
[0003] In response to the problems existing in the above-mentioned prior art, the present invention provides an electrolyte floating stirring device, which can solve the problem of stratification of metal elements in the electrolyte, make the metal elements evenly distributed in the electrolyte, and improve the electrolysis efficiency of the electrolyte.
[0004] In order to achieve the above object, the present invention adopts the following technical solution: an electrolyte floating stirring device, comprising a liquid storage tank, wherein a lower layer electrolyte lifting assembly is provided inside the liquid storage tank;
[0005] The lower electrolyte lifting assembly includes a hollow column, which is vertically fixedly connected to the center position of the liquid storage tank, the upper end of the column is fixedly connected to the center position of the top surface of the liquid storage tank, the lower end of the column is communicated with the inner cavity of the liquid storage tank, the upper end of the column is provided with a lifting cavity, and the lifting cavity is communicated with the inner cavity of the column, and the interior of the column is rotatably connected to an auger blade 1, and the lower end of the auger blade 1 extends from the lower end of the column to the interior of the liquid storage tank. When the auger blade 1 rotates, the auger blade 1 rotates inside the column, and the blades of the auger blade 1 draw the electrolyte in the lower layer of the liquid storage tank into the column. As the auger blade 1 continues to rotate, the electrolyte in the lower layer of the liquid storage tank can be lifted along the column to the interior of the lifting cavity;
[0006] Among them, a plurality of guide tubes 1 are arranged below the lifting cavity, which can guide the electrolyte in the lifting cavity to the liquid storage tank, and the plurality of guide tubes 1 are evenly distributed below the lifting cavity in a diffused shape.
[0007] The interior of the liquid storage tank is also provided with an upper electrolyte lifting component, which includes a sleeve rotatably sleeved on the column, an auger blade 2 is provided on the inner wall of the sleeve, and a channel is provided between the sleeve and the column, the auger blade 2 is arranged in the channel, the inner circle of the auger blade 2 is attached to the side wall of the column, the lower end of the sleeve is connected to the inner cavity of the liquid storage tank, and the upper end of the sleeve is fixedly connected with a mixing box, and multiple guide tubes are evenly distributed just above the mixing box. When the auger blade rotates and lifts the lower layer of electrolyte to the inside of the lifting chamber, the electrolyte in the lifting chamber will flow along the multiple guide tubes. The flow tube 1 guides the flow, thereby uniformly guiding the electrolyte in the lifting chamber into the interior of the lifting chamber. A plurality of air bags are fixedly connected to the lower surface of the mixing box, which can make the lower end of the sleeve float in the upper electrolyte. When the auger blade 2 rotates, the auger blade 2 rotates with the rotation of the sleeve, and the blades of the auger blade 2 draw the electrolyte in the upper layer of the liquid storage tank into the sleeve. As the auger blade 2 continues to rotate, the electrolyte in the upper layer of the liquid storage tank can be lifted along the sleeve to the interior of the mixing box. A plurality of guide tubes 2 are fixedly connected to the bottom of the mixing box for guiding the electrolyte inside the mixing box to the middle layer of the electrolyte.
[0008] Preferably, the upper end of the auger blade one passes through the side wall of the liquid storage tank and extends to the outside thereof, and a motor is fixedly mounted on the side wall of the liquid storage tank, and the output shaft of the motor is connected to the upper end of the auger blade one through a belt. When the motor is started, the output shaft of the motor will drive the auger blade one to rotate, and the lower end of the auger blade one is fixedly connected to the connecting block one, and a plurality of transmission pipes are fixedly connected to the side wall of the connecting block one. The plurality of transmission pipes are arranged parallel to the auger blade one, and the plurality of transmission pipes are distributed around the auger blade one in the form of a circular array, and a connecting block two is rotatably sleeved on the column and located at the upper end of the mixing box, and the upper end of the transmission pipe passes through the mixing box and is fixed to the side wall of the connecting block two.
[0009] Preferably, the interior of the guide tube 2 is slidably connected to a slide rod, the lower end of the slide rod extends to the outside of the guide tube 2, and a pull rope is fixedly connected to one side of the lower end of the guide tube 2. The pull rope passes around the lower end of the slide rod and is fixedly connected to the connecting block 2.
[0010] Preferably, the lower end of the auger blade one is fixedly connected with a plurality of lower stirring blades capable of gathering the lower layer of electrolyte toward the middle, and the lower end of the sleeve is fixedly connected with a plurality of upper stirring blades capable of gathering the upper layer of electrolyte toward the middle.
[0011] Preferably, the back surfaces of the upper stirring blade and the lower stirring blade are fixedly connected with reinforcing ribs.
[0012] Preferably, a liquid filling port is provided on the upper surface of the liquid storage tank.
[0013] Compared with the prior art, the present invention rotates the auger blade one and the auger blade two. The auger blade one rotates to lift the lower layer of electrolyte to the inside of the lifting chamber, and then evenly guides it to the inside of the mixing box through multiple guide tubes. At the same time, the auger blade two can lift the upper layer of electrolyte to the inside of the mixing box. At this time, the upper and lower layers of electrolyte are mixed and stirred inside the mixing box, and the mixed electrolyte in the mixing box can be guided to the middle layer of electrolyte through the guide tube two, thereby achieving sufficient stirring of the upper, middle and lower layers of electrolyte, and improving the electrolysis efficiency of the electrolyte. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a structural schematic diagram of the present invention.
[0015] Figure 2 It is a cross-sectional view of the overall structure of the present invention.
[0016] Figure 3 It is a cross-sectional view of the column and the auger blade of the present invention.
[0017] Figure 4 It is a cross-sectional view of the lower electrolyte lifting assembly and the upper electrolyte lifting assembly of the present invention.
[0018] Figure 5 It is an exploded view of the column, auger blade 1 and sleeve of the present invention.
[0019] Figure 6 It is a structural schematic diagram of the sleeve, auger blade 2, mixing box and air bag of the present invention.
[0020] Figure 7 It is a structural schematic diagram of the auger blade 1, the connecting block 1 and the transmission pipe of the present invention.
[0021] Figure 8 It is a cross-sectional view of the liquid storage tank, lower stirring blade and upper stirring blade of the present invention.
[0022] Figure 9 It is a structural schematic diagram of the auger blade 1, the auger blade 2, the lower stirring blade and the upper stirring blade of the present invention.
[0023] In the figure: 1. Liquid storage tank, 2. Lower electrolyte lifting assembly, 201. Column, 202. Auger blade 1, 203. Lifting chamber, 204. Guide pipe 1, 3. Upper electrolyte lifting assembly, 301. Sleeve, 302. Auger blade 2, 303. Mixing box, 304. Airbag, 4. Motor, 5. Guide pipe 2, 6. Connecting block 1, 7. Transmission pipe, 8. Connecting block 2, 9. Slide rod, 10. Pull rope, 11. Lower stirring blade, 12. Upper stirring blade, 13. Liquid filling port. DETAILED DESCRIPTION
[0024] The present invention is described below with specific examples, but is not intended to be limiting of the invention.
[0025] like Figures 1-9 As shown, in the present application, an electrolyte floating stirring device is provided, comprising a liquid storage tank 1, wherein a lower layer electrolyte lifting assembly 2 is provided inside the liquid storage tank 1;
[0026] The lower electrolyte lifting assembly 2 includes a hollow column 201, which is vertically fixedly connected to the center of the liquid storage tank 1. The upper end of the column 201 is fixedly connected to the center of the top surface of the liquid storage tank 1. The lower end of the column 201 is connected to the inner cavity of the liquid storage tank 1. The upper end of the column 201 is provided with a lifting cavity 203, which is connected to the inner cavity of the column 201. The internal rotation of the column 201 is connected to the auger. Blade 1 202, the lower end of the auger blade 1 202 extends from the lower end of the column 201 to the interior of the liquid storage tank 1. When the auger blade 1 202 rotates, the auger blade 1 202 rotates inside the column 201, and the blades of the auger blade 1 202 draw the electrolyte in the lower layer of the liquid storage tank 1 into the column 201. As the auger blade 1 202 continues to rotate, the electrolyte in the lower layer of the liquid storage tank 1 can be lifted along the column 201 to the interior of the lifting chamber 203;
[0027] Among them, a plurality of guide tubes 204 are arranged below the lifting chamber 203, which can guide the electrolyte in the lifting chamber 203 to the liquid storage tank 1. The plurality of guide tubes 204 are evenly distributed in a diffused manner below the lifting chamber 203, so that the electrolyte in the lifting chamber 203 can be evenly guided to the upper part of the inner cavity of the liquid storage tank 1. In this way, the metal elements in the lower layer of electrolyte can be lifted to the upper part of the liquid storage tank 1, realizing the lifting and stirring of the electrolyte, making the metal elements in the electrolyte evenly distributed, and improving the electrolysis efficiency of the electrolyte.
[0028] The interior of the liquid storage tank 1 is also provided with an upper electrolyte lifting component 3, and the upper electrolyte lifting component 3 includes a sleeve 301 rotatably sleeved on the column 201, and an auger blade 2 302 is provided on the inner wall of the sleeve 301, and a channel is provided between the sleeve 301 and the column 201, and the auger blade 2 302 is provided in the channel, and the inner circle of the auger blade 2 302 is attached to the side wall of the column 201, and the lower end of the sleeve 301 is connected to the inner cavity of the liquid storage tank 1, and the upper end of the sleeve 301 is fixedly connected with a mixing box 303, and a plurality of guide tubes 204 are evenly distributed just above the mixing box 303. When the auger blade 202 rotates and lifts the lower layer of electrolyte to the inside of the lifting chamber 203, the electrolyte in the lifting chamber 203 will be The electrolyte in the lifting chamber 203 is evenly guided inside the lifting chamber 203 by guiding along the multiple guide tubes 204. The lower surface of the mixing box 303 is fixedly connected to multiple air bags 304 that can make the lower end of the sleeve 301 float in the upper electrolyte. When the auger blade 302 rotates, the auger blade 302 rotates with the rotation of the sleeve 301, and the blades of the auger blade 302 draw the electrolyte in the upper layer of the liquid storage tank 1 into the sleeve 301. As the auger blade 302 continues to rotate, the electrolyte in the upper layer of the liquid storage tank 1 can be lifted along the sleeve 301 to the interior of the mixing box 303. The bottom of the mixing box 303 is fixedly connected to multiple guide tubes 5 for guiding the electrolyte inside the mixing box 303 to the middle layer of electrolyte.
[0029] The suspension support of the airbag 304 is used to ensure that the lower end of the sleeve 301 is just in the upper electrolyte. When the electrolyte in the liquid storage tank 1 decreases and the liquid level drops, the sleeve 301 slides downward inside the column 201, so that the bottom of the sleeve 301 is always inside the upper electrolyte. When the auger blade 1 202 and the auger blade 2 302 rotate, the auger blade 1 202 rotates to lift the lower electrolyte into the interior of the lifting chamber 203, and then evenly guide it to the interior of the mixing box 303 through multiple guide tubes 1 204. At the same time, the rotation of the sleeve 301 can lift the upper electrolyte to the interior of the mixing box 303. At this time, the upper and lower layers of electrolyte are mixed and stirred inside the mixing box 303, and the mixed electrolyte in the mixing box 303 can be guided to the middle layer of electrolyte through the guide tube 2 5, thereby achieving sufficient stirring of the upper, middle and lower layers of electrolyte.
[0030] like Figure 1 、 Figure 2 as well as Figure 5As shown, in order to drive the auger blade 1 202 and the auger blade 2 302 to rotate, the upper end of the auger blade 1 202 passes through the side wall of the liquid storage tank 1 and extends to the outside thereof, and a motor 4 is fixedly installed on the side wall of the liquid storage tank 1, and the output shaft of the motor 4 is connected to the upper end of the auger blade 1 202 through a belt. When the motor 4 is started, the output shaft of the motor 4 will rotate with the auger blade 1 202, and the lower end of the auger blade 1 202 is fixedly connected to a connecting block 1 6, and a plurality of transmission pipes 7 are fixedly connected to the side wall of the connecting block 6. The plurality of transmission pipes 7 are arranged in parallel with the auger blade 1 202, and the plurality of transmission pipes 7 are arranged in parallel with the auger blade 1 202. The circular array is distributed around the auger blade 202. The column 201 is rotatably sleeved with a connecting block 28 at the upper end of the mixing box 303. The upper end of the transmission tube 7 passes through the mixing box 303 and is fixed on the side wall of the connecting block 28. When the motor 4 drives and drives the auger blade 202 to rotate, the auger blade 202 will rotate with the connecting block 6. At this time, the transmission tube 7 and the connecting block 28 rotate along with the connecting block 6 and around the column 201. In this way, the mixing box 303 will rotate along with the transmission tube 7, and then the mixing box 303 will rotate around the column 201 through the linkage sleeve 301, the auger blade 2 302, and the airbag 304.
[0031] like Figure 2 、 Figure 4 As shown, when the electrolyte level drops, in order to make the mixed electrolyte in the mixing box 303 be discharged to the position of the upper layer of the middle electrolyte to improve the mixing efficiency, the interior of the guide tube 2 5 is slidably connected to a slide bar 9, and the lower end of the slide bar 9 extends to the outside of the guide tube 2 5. A pull rope 10 is fixedly connected to one side of the lower end of the guide tube 2 5. The pull rope 10 is fixedly connected to the connecting block 2 8 after passing around the lower end of the slide bar 9. The interior of the slide bar 9 is hollow. When the electrolyte in the mixing box 303 is guided by the guide tube 2 5, the guide tube 2 The electrolyte flowing in the guide tube 5 will flow downward along the slide bar 9, and eventually the electrolyte will flow from the lower end of the slide bar 9 to the middle layer electrolyte. When the electrolyte level drops, the guide tube 2 5 slides downward along with the mixing box 303. At this time, the pull rope 10 will become loose, so that the slide bar 9 slides downward. The downward sliding stroke of the slide bar 9 is half of the downward sliding stroke of the guide tube 2 5. At this time, the slide bar 9 can guide the mixed electrolyte to a position above the middle layer electrolyte, so as to avoid the mixed liquid from being diverted to a position below the middle layer electrolyte, thereby improving the stirring and mixing efficiency.
[0032] In addition, if Figure 9 As shown, the lower ends of the plurality of slide bars 9 are connected with configuration rings, which serve as counterweights for the slide bars 9 .
[0033] like Figure 8-Figure 9As shown, in order to further improve the efficiency of stirring and mixing the electrolyte, the lower end of the auger blade 202 is fixedly connected with a plurality of lower stirring blades 11 that can gather the lower layer of electrolyte toward the middle, and the lower end of the sleeve 301 is fixedly connected with a plurality of upper stirring blades 12 that can gather the upper layer of electrolyte toward the middle, as shown in FIG. Figure 9 As shown, the upper stirring blade 12 and the lower stirring blade 11 are both arc-shaped. When the auger blade 202 rotates and rotates with the lower stirring blade 11, the lower stirring blade 11 will gather the lower layer of electrolyte toward the middle. At this time, the auger blade 202 is used to lift the lower layer of electrolyte, which is beneficial to the lifting of the lower layer of electrode liquid. The function of the upper stirring blade 12 is the same as the function principle of the lower stirring blade 11.
[0034] like Figure 9 As shown, in order to improve the strength of the upper stirring blade 12 and the lower stirring blade 11 and avoid damage to the upper stirring blade 12 and the lower stirring blade 11 during the stirring process, the back of the upper stirring blade 12 and the lower stirring blade 11 are fixedly connected with reinforcing ribs.
[0035] like Figure 1 、 Figure 2 As shown, in order to replenish the electrolyte into the liquid storage tank 1 to ensure that the electrolyte in the liquid storage tank 1 is sufficient, a liquid filling port 13 is provided on the upper surface of the liquid storage tank 1 .
[0036] Finally, it should be noted that the above embodiments are only used to illustrate rather than limit the technical solutions of the present invention. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that the present invention can still be modified or replaced by equivalents. Any modification or partial replacement that does not depart from the spirit and scope of the present invention should be included in the scope of the claims of the present invention.
Claims
1. An electrolyte floating stirring device, characterized in that: It comprises a liquid storage tank (1), wherein a lower layer electrolyte lifting assembly (2) is provided inside the liquid storage tank (1); The lower layer electrolyte lifting assembly (2) comprises a hollow column (201), the column (201) is vertically fixedly connected to the center position of the liquid storage tank (1), the lower end of the column (201) is communicated with the inner cavity of the liquid storage tank (1), the upper end of the column (201) is provided with a lifting chamber (203), the interior of the column (201) is rotatably connected to an auger blade 1 (202), and when the auger blade 1 (202) rotates, the electrolyte in the lower layer of the liquid storage tank (1) can be lifted along the column (201) to the interior of the lifting chamber (203); A plurality of guide pipes (204) capable of guiding the electrolyte in the lifting chamber (203) to the liquid storage tank (1) are provided below the lifting chamber (203); the plurality of guide pipes (204) are evenly distributed below the lifting chamber (203) in a diffused manner; An upper electrolyte lifting assembly (3) is further provided inside the liquid storage tank (1), and the upper electrolyte lifting assembly (3) comprises a sleeve (301) rotatably sleeved on the column (201), an auger blade (302) is provided on the inner side wall of the sleeve (301), the lower end of the sleeve (301) is communicated with the inner cavity of the liquid storage tank (1), the upper end of the sleeve (301) is fixedly connected to a mixing box (303), and a plurality of guide pipes (204) are evenly distributed in the mixing box (303). 3), a plurality of air bags (304) are fixedly connected to the lower surface of the mixing box (303) so as to enable the lower end of the sleeve (301) to float in the upper electrolyte. When the auger blade (302) rotates, the electrolyte in the upper layer of the liquid storage tank (1) can be lifted to the inside of the mixing box (303) along the sleeve (301). A plurality of guide pipes (5) are fixedly connected to the bottom of the mixing box (303) for guiding the electrolyte in the mixing box (303) to the middle electrolyte.
2. The electrolyte floating stirring device according to claim 1, characterized in that: The upper end of the auger blade 1 (202) passes through the side wall of the liquid storage tank (1) and extends to the outside thereof; a motor (4) is fixedly mounted on the side wall of the liquid storage tank (1); the output shaft of the motor (4) is connected to the upper end of the auger blade 1 (202) via a belt; the lower end of the auger blade 1 (202) is fixedly connected to a connecting block 1 (6); a plurality of transmission pipes (7) are fixedly connected to the side wall of the connecting block 1 (6); a connecting block 2 (8) is rotatably sleeved on the upper end of the column (201) and located on the mixing box (303); the upper end of the transmission pipe (7) passes through the mixing box (303) and is fixed to the side wall of the connecting block 2 (8).
3. The electrolyte floating stirring device according to claim 2, characterized in that: The interior of the second guide tube (5) is slidably connected to a slide rod (9), the lower end of the slide rod (9) extends to the outside of the second guide tube (5), and one side of the lower end of the second guide tube (5) is fixedly connected to a pull rope (10), and the pull rope (10) is fixedly connected to the second connection block (8) after passing around the lower end of the slide rod (9).
4. The electrolyte floating stirring device according to claim 1, characterized in that: The lower end of the auger blade 1 (202) is fixedly connected to a plurality of lower stirring blades (11) capable of gathering the lower layer of electrolyte toward the middle, and the lower end of the sleeve (301) is fixedly connected to a plurality of upper stirring blades (12) capable of gathering the upper layer of electrolyte toward the middle.
5. The electrolyte floating stirring device according to claim 4, characterized in that: The upper stirring blade (12) and the back surface of the lower stirring blade (11) are fixedly connected with reinforcing ribs.
6. The electrolyte floating stirring device according to claim 1, characterized in that: The upper surface of the liquid storage tank (1) is provided with a liquid injection port (13).
Citation Information
Patent Citations
Liquid paraffin storage tank
CN214650797U