CN219552271U - Device for rapidly testing sodium-electricity metal content - Google Patents

Device for rapidly testing sodium-electricity metal content Download PDF

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Publication number
CN219552271U
CN219552271U CN202320013341.7U CN202320013341U CN219552271U CN 219552271 U CN219552271 U CN 219552271U CN 202320013341 U CN202320013341 U CN 202320013341U CN 219552271 U CN219552271 U CN 219552271U
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metal
decomposition
base
test
sodium
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CN202320013341.7U
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Inventor
胡磊
严武渭
孙�玖
丁晨
尤鹏
张晓峰
王超
卜欠欠
李越强
刘木春
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Xianfeng New Material Technology Zhijiang Co ltd
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Xianfeng New Material Technology Zhijiang Co ltd
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Abstract

The utility model relates to the field of metal ion detection, and discloses a device for rapidly testing the content of sodium-electricity metal, which comprises a base for testing the content of metal, a decomposition box for decomposing the content of metal, a stirring device for rapidly dissolving the metal, and a test port for placing test paper.

Description

Device for rapidly testing sodium-electricity metal content
Technical Field
The utility model relates to the field of metal ion detection, in particular to a device for rapidly testing the content of sodium-electricity metal.
Background
With the recent rise of lithium ore prices, the cost of lithium ion batteries is continuously rising, so that the industry is gradually turning the eyes to sodium ion batteries with low cost, high safety and high and low temperature performance.
The key point of the performance of the sodium ion battery is positive electrode material and precursor, wherein the metal content detection of the positive electrode material and the precursor is more important, and the sodium ion battery has no national standard and industry standard, and has no universal accurate and rapid detection method at present.
Most of the processes for testing the sodium-electricity metal content now utilize metal to add dissolving solution, make metal slowly decompose in dissolving solution, and then show on test paper through dissolving solution, however when metal adds dissolving solution, when not stirring, dissolving solution can be fairly slow to the decomposition of metal, leads to the in-process inefficiency of testing sodium-electricity metal content, therefore needs a device of quick test sodium-electricity metal content.
Disclosure of Invention
The utility model aims to provide a device for rapidly testing the content of sodium-electricity metal, so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a device of quick test sodium electric metal content, including the base that is used for testing metal content, be used for decomposing the decomposition case of metal content, be used for quick dissolved agitating unit and place test paper's test port, the upper end of base is provided with the decomposition case, and the upper end of decomposition case is provided with the solution pipe, and the inside of decomposition case is provided with agitating unit, and has seted up four drip on the inner wall of decomposition case, and the side of base corresponds the position of four drip and is provided with the test port.
Preferably, the base is square-shaped, the upper end of the base is located at the side end of the decomposition box and movably inserted with a water baffle, the side end of the base is movably connected with a sliding plate corresponding to the positions of the four test ports, and test paper is placed at the upper end of the sliding plate.
Preferably, the decomposition tank is in a barrel-shaped arrangement, the inside of the decomposition tank is divided into two layers through the partition plate, the lower layer of the decomposition tank is provided with the stirring device, the upper layer of the decomposition tank is provided with metal, and four water dripping ports are formed in the upper layer of the decomposition tank.
Preferably, the directions of the four water dripping openings and the four testing openings correspond to each other, the water dripping openings and the testing openings are communicated with each other, the caliber of the water dripping opening corresponds to that of water in a dripping state, and the water baffle is movably blocked between the water dripping opening and the testing opening.
Preferably, agitating unit includes motor, rotary rod, spout, sliding block, flexible cover, electronic roating seat, puddler and metal place the seat, motor fixed connection is in the lower extreme of base, and the rotary rod activity is pegged graft in the bottom of breaking up the case, and the output and the rotary rod fixed connection of motor are in the same place, and annular spout about having seted up on the lateral wall of rotary rod, flexible cover has been cup jointed to the activity on the rotary rod, and fixedly connected with sliding block on the inner wall of flexible cover, and sliding block and spout activity joint are in the same place, and spacing grafting between flexible cover and the baffle is in the same place, and the upper end fixedly connected with electronic roating seat of flexible cover, and the upper end fixedly connected with puddler of electronic roating seat, and the metal is placed to the side fixedly connected with of puddler.
Compared with the prior art, the utility model has the following beneficial effects:
1. this device for rapidly testing sodium-electricity metal content is put into the decomposition box through the metal, then utilizes the solution to decompose the metal in the decomposition box to utilize agitating unit to carry out abundant stirring to the metal in the solution and dissolve, make the solution more quick to the solution of metal, drip through the test port of baffle to base side end at last, make test paper carry out abundant test.
2. This device of quick test sodium electric metal content is provided with four drip through decomposing the case periphery, makes the base periphery correspond the drip and is equipped with four test ports, and the test paper of putting into through four test ports is tested this sodium electric metal content more accurate.
Drawings
FIG. 1 is a perspective view of the present utility model;
FIG. 2 is a schematic view of the interior of the decomposition tank of the present utility model;
FIG. 3 is a schematic view of a stirring device according to the present utility model.
In the figure: 1. a base; 2. a decomposition tank; 3. a stirring device; 4. a test port; 5. a dissolution liquid pipe; 6. a drip port; 7. a water baffle; 8. a motor; 9. a rotating rod; 10. a chute; 11. a sliding block; 12. a telescopic sleeve; 13. an electric rotating seat; 14. a stirring rod; 15. a metal placement seat.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, a device for rapidly testing sodium-electricity metal content comprises a base 1 for testing metal content, a decomposition box 2 for decomposing metal content, a stirring device 3 for rapid dissolution and a test port 4 for placing test paper, wherein the decomposition box 2 is arranged at the upper end of the base 1, a dissolution liquid pipe 5 is arranged at the upper end of the decomposition box 2, the stirring device 3 is arranged in the decomposition box 2, four water dropping ports 6 are arranged on the inner wall of the decomposition box 2, the test port 4 is arranged at the side end of the base 1 corresponding to the four water dropping ports 6, metal is added into the decomposition box 2 on the base 1, after the dissolution liquid is added through the dissolution liquid pipe 5, the metal is fully stirred in the dissolution liquid by the stirring device 3, so that the dissolution liquid does not need to slowly wait for the dissolution of the metal, and finally the dissolution liquid is dropped into the test port 4 by the test paper for testing the dissolution liquid after the dissolution of the metal.
Further, the base 1 is square-shaped, the upper end of the base 1 is located at the side end of the decomposition tank 2 and movably inserted with the water baffle 7, the side end of the base 1 is movably connected with a sliding plate corresponding to the positions of the four test ports 4, and test paper is placed at the upper end of the sliding plate.
Further, the decomposition tank 2 is arranged in a barrel shape, the inside of the decomposition tank 2 is divided into two layers through the partition plate, the lower layer of the decomposition tank 2 is provided with the stirring device 3, the upper layer of the decomposition tank 2 is provided with metal, and four water dripping ports 6 are formed in the upper layer of the decomposition tank 2.
Further, the directions of four water dripping openings 6 and four test openings 4 correspond to each other, the water dripping openings 6 are communicated with the test openings 4, the caliber of the water dripping opening 6 corresponds to the water dripping state, the water baffle 7 is movably blocked between the water dripping openings 6 and the test openings 4, the caliber of the water dripping opening 6 is small, when the dissolving liquid is required to be dripped, the water baffle 7 is separated from the water dripping opening 6, and the dissolving liquid drops into the test openings 4, so that test paper in the test openings is soaked with the dissolving liquid.
Further, agitating unit 3 includes motor 8, rotary rod 9, spout 10, sliding block 11, flexible cover 12, electronic roating seat 13, puddler 14 and metal place seat 15, motor 8 fixed connection is in the lower extreme of base 1, and rotary rod 9 activity grafting is in the bottom of breaking up case 2, and motor 8's output and rotary rod 9 fixed connection are in the same place, and annular spout 10 from top to bottom has been seted up on rotary rod 9's the lateral wall, flexible cover 12 has been cup jointed to the activity on rotary rod 9, and fixedly connected with sliding block 11 on flexible cover 12's the inner wall, and sliding block 11 and spout 10 movable joint are in the same place, and spacing grafting between flexible cover 12 and the baffle is in the same place, and the upper end fixedly connected with electronic roating seat 13 of flexible cover 12, and the upper end fixedly connected with puddler 14 of electronic roating seat 13, and the lateral end fixedly connected with metal place seat 15 of puddler 14, agitating unit 3 drives rotary rod 9 through motor 8 and rotates, peg graft in the baffle through flexible cover 12, make flexible cover 12 be located the baffle and reciprocate, utilize sliding block 11 in flexible cover 12, and when 9 rotates, and when flexible cover 12 rotates, make the metal liquid in the annular slider 10 carries out the circulation in the annular movement of moving in the spout 13, make metal liquid in the circulation under the stirring seat 13 is carried out in the metal liquid circulation, and make the metal liquid in the annular movement 13.
Working principle: after adding metal into the decomposition tank 2 on the base 1 and adding the dissolution liquid through the dissolution liquid pipe 5, fully stirring the metal in the dissolution liquid by using the stirring device 3, so that the dissolution liquid does not need to wait slowly for decomposition of the metal, finally, dripping the dissolution liquid into the test port 4 through the dripping port 6, testing the dissolution liquid after decomposing the metal by using the test paper, and using the very small caliber of the dripping port 6, when the dissolution liquid needs to drip, separating from the dripping port 6 by the water baffle 7, dripping the dissolution liquid into the test port 4, so that the test paper in the test port and the dissolution liquid are soaked, the stirring device 3 drives the rotary rod 9 to rotate by the motor 8, and is inserted into the partition plate by the telescopic sleeve 12, so that the telescopic sleeve 12 is positioned in the partition plate to move up and down, and the sliding block 11 is driven to move up and down in the annular sliding groove 10 by the sliding groove 10 when the rotary rod 9 rotates, and the stirring rod 14 drives the metal in the metal placing seat 15 to move up and down in the dissolution liquid by the electric rotating seat 13, so that the metal can be stirred more fully and more quickly.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. A device for rapidly testing the content of sodium-electricity metal, which is characterized in that: including base (1) that is used for testing metal content, the decomposition case (2) that is used for decomposing metal content, agitating unit (3) that are used for quick solution and test port (4) of placing test paper, the upper end of base (1) is provided with decomposition case (2), and the upper end of decomposition case (2) is provided with dissolves liquid pipe (5), and the inside of decomposition case (2) is provided with agitating unit (3), and has seted up four drip ports (6) on the inner wall of decomposition case (2), and the side of base (1) corresponds the position of four drip ports (6) and is provided with test port (4).
2. The apparatus for rapid determination of sodium electrometal content as defined in claim 1, wherein: the base (1) is square, the upper end of the base (1) is located at the side end of the decomposition box (2) and movably inserted with a water baffle (7), the side end of the base (1) is movably connected with a sliding plate corresponding to the positions of the four test ports (4), and test paper is placed at the upper end of the sliding plate.
3. The apparatus for rapid determination of sodium electrometal content as defined in claim 1, wherein: the decomposition tank (2) is in a barrel-shaped arrangement, the inside of the decomposition tank (2) is divided into two layers through the partition plate, the lower layer of the decomposition tank (2) is provided with the stirring device (3), the upper layer of the decomposition tank (2) is provided with metal, and four water dripping ports (6) are formed in the upper layer of the decomposition tank (2).
4. A device for rapid determination of sodium electrometal content according to claim 3, characterized in that: the four water dropping openings (6) are mutually corresponding to the directions of the four test openings (4), the water dropping openings (6) are mutually communicated with the test openings (4), the caliber of each water dropping opening (6) corresponds to that of water in a dripping state, and the water baffle (7) is movably blocked between the water dropping opening (6) and the test opening (4).
5. A device for rapid determination of sodium electrometal content according to claim 3, characterized in that: stirring device (3) are including motor (8), rotary rod (9), spout (10), sliding block (11), flexible cover (12), electronic roating seat (13), puddler (14) and metal place seat (15), motor (8) fixed connection is in the lower extreme of base (1), and rotary rod (9) activity grafting is in the bottom of breaking up case (2), and the output and rotary rod (9) fixed connection of motor (8) are in the same place, and annular spout (10) about having seted up on the lateral wall of rotary rod (9), flexible cover (12) have been cup jointed on rotary rod (9) activity, and fixedly connected with sliding block (11) on the inner wall of flexible cover (12), and sliding block (11) and spout (10) activity joint are in the same place, and spacing grafting between flexible cover (12) and the baffle, and the upper end fixedly connected with electronic roating seat (13) of flexible cover (12), and the upper end fixedly connected with puddler (14) of electronic roating seat (13), and the lateral end fixedly connected with metal of puddler (14) place seat (15).
CN202320013341.7U 2023-01-04 2023-01-04 Device for rapidly testing sodium-electricity metal content Active CN219552271U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320013341.7U CN219552271U (en) 2023-01-04 2023-01-04 Device for rapidly testing sodium-electricity metal content

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320013341.7U CN219552271U (en) 2023-01-04 2023-01-04 Device for rapidly testing sodium-electricity metal content

Publications (1)

Publication Number Publication Date
CN219552271U true CN219552271U (en) 2023-08-18

Family

ID=87732197

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320013341.7U Active CN219552271U (en) 2023-01-04 2023-01-04 Device for rapidly testing sodium-electricity metal content

Country Status (1)

Country Link
CN (1) CN219552271U (en)

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