CN216144783U - Pure water sodium ion flow-through cell - Google Patents
Pure water sodium ion flow-through cell Download PDFInfo
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- CN216144783U CN216144783U CN202121849849.8U CN202121849849U CN216144783U CN 216144783 U CN216144783 U CN 216144783U CN 202121849849 U CN202121849849 U CN 202121849849U CN 216144783 U CN216144783 U CN 216144783U
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Abstract
The utility model relates to a pure water sodium ion flow cell, which relates to the field of chemical instruments and comprises a supporting device, a first flow device, a second flow device, a detection device, a connecting device and a discharge device, wherein the supporting device comprises a bottom plate, a supporting rod and a supporting frame, the first flow device comprises a water inlet flow cell, a first screw head and a water inlet closed cover, the second flow device comprises a connecting pipe and a second screw head, the detection device comprises a detection head and a sodium ion analyzer, the connecting device comprises a third screw head, a transmission closed cover and a connecting screw head, the discharge device comprises a fixed screw barrel and a discharge cell, the utility model provides the pure water sodium ion flow cell, which enables the detection head to be a ring in the flow cell link by arranging the detection head, the connecting wire and the sodium ion analyzer, so that pure water cannot be polluted by impurities of carbon dioxide in the air in the detection process, the detection effect is influenced, and the precision of the device is improved.
Description
Technical Field
The utility model relates to the technical field of chemical instruments, in particular to a pure water sodium ion flow cell.
Background
The instruments used in chemical experiments are called chemical instruments. The materials may be metered or reacted. Mainly divided into a measuring instrument and a reaction instrument. The instruments are combined in a specific way to form a device for experimental purposes, and a flow cell (flow cell) is a chemical term published in 2016.
In carrying out the sodium ion detection analysis link, the flow-through cell is the instrument that must not lack among the detection analysis appearance, and the most formula structure as an organic whole of current flow-through cell is not portable, for this we have proposed a pure water sodium ion flow-through cell.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a pure water sodium ion flow cell, which can effectively solve the problems that in the process of sodium ion detection and analysis in the background technology, the flow cell is an instrument which is necessary to be lacked in a detection analyzer, most of the existing flow cells are of an integrated structure, and the flow cells are inconvenient to carry and the like.
In order to solve the technical problems, the utility model is realized by the following technical scheme: a pure water sodium ion flow cell comprises a supporting device, a first flow device, a second flow device, a detection device, a connecting device and a discharge device, wherein the supporting device comprises a bottom plate, supporting rods and supporting frames, one end of each supporting rod is welded with one surface of each supporting frame, the first flow device comprises a water inlet flow cell, a first thread head and a water inlet closed cover, the upper surface of the water inlet flow cell is connected with the lower surface of the first thread head, the first thread head is in rotating fit with the water inlet closed cover, the second flow device comprises a connecting pipe and a second thread head, one end of the connecting pipe is in through connection with one surface of the water inlet flow cell, the detection device comprises a detection head and a sodium ion analyzer, the detection head is in rotating fit with the second thread head, the lower surface of the sodium ion analyzer is connected with the upper surface of the bottom plate, one end of each supporting rod is connected with one surface of the sodium ion analyzer, connecting device includes third thread head, the airtight lid of transmission and connecting thread head, third thread head and the airtight rotatory cooperation of lid of transmission, third thread head lower surface and the first surface connection of detection, eduction gear includes a fixed thread section of thick bamboo and drainage pond, a fixed thread section of thick bamboo lower surface and drainage pond upper surface connection, a fixed thread section of thick bamboo and the rotatory cooperation of connecting thread head, wherein, the primary function of branch is the joint support frame, and the primary function of carriage supports fixed income flow cell and detects the flow cell.
Preferably, strutting arrangement still includes the supporting seat, the supporting seat is hollow cylindrical structure, supporting seat lower surface and bottom plate upper surface welding, supporting seat and drainage pond sliding fit, strutting arrangement's primary function is fixed each flow-through cell device.
Preferably, the first circulation device further comprises a water inlet pipe, one end of the water inlet pipe is communicated with the upper surface of the water inlet sealing cover, and the first circulation device is mainly used for guiding precipitation into the second circulation device.
Preferably, the second flow-through device further comprises a detection flow-through cell, one end of the connecting pipe is in through connection with one surface of the detection flow-through cell, the upper surface of the detection flow-through cell is connected with the lower surface of the second thread head, and the second flow-through device is mainly used for transmitting the pure water from the first flow-through device to the detection device.
Preferably, the detection device further comprises a connecting wire, one end of the connecting wire is connected with the surface of the detection head, the other end of the connecting wire is connected with the surface of the sodium ion analyzer, and the detection device is mainly used for detecting the content of sodium ions in pure water.
Preferably, the connecting device further comprises a connecting hose, one end of the connecting hose is in through connection with one surface of the transmission sealing cover, the other end of the connecting hose is in through connection with one surface of the connecting threaded head, and the connecting device is mainly used for transmitting the detected pure water.
Preferably, the discharging device further comprises a water discharging pipe, one end of the water discharging pipe is in through connection with one surface of the water discharging pool, and the discharging device is mainly used for discharging the detected pure water.
The utility model has the following beneficial effects:
1. according to the utility model, the detection head, the connecting line and the sodium ion analyzer are arranged, so that the detection head becomes a loop in the circulation link of the flow cell, pure water cannot be polluted by impurities of carbon dioxide in the air in the detection process, the detection effect is not influenced, and the accuracy of the device is improved;
2. the device is of a sectional type structure by arranging the plurality of thread heads, and is connected by the thread heads, so that the precision performance of the device is ensured, and the convenience of the device is improved;
of course, it is not necessary for any product in which the utility model is practiced to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic diagram of the overall structure of a pure sodium ion flow cell according to the present invention;
FIG. 2 is a schematic diagram of an elevational structure of a pure sodium ion flow cell according to the present invention;
FIG. 3 is a schematic diagram of a top view of a pure sodium ion flow cell according to the present invention;
FIG. 4 is an enlarged view of a portion of FIG. 1;
FIG. 5 is an enlarged view of a portion of FIG. 2 at B.
In the drawings, the components represented by the respective reference numerals are listed below:
100. a support device; 101. a base plate; 102. a strut; 103. a support frame; 104. a supporting seat; 200. a first flow-through device; 201. entering a water flow cell; 202. a first thread start; 203. a water inlet sealing cover; 204. a water inlet pipe; 300. a second flow-through device; 301. a connecting pipe; 302. detecting the flow cell; 303. a second thread start; 400. a detection device; 401. a detection head; 402. a connecting wire; 403. a sodium ion analyzer; 500. a connecting device; 501. a third thread start; 502. a transfer containment cap; 503. a connecting hose; 504. connecting a threaded head; 600. a discharge device; 601. fixing the threaded cylinder; 602. a drainage basin; 603. and a water discharge pipe.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the utility model easy to understand, the utility model is further described with the specific embodiments.
Referring to fig. 1-5, the present invention is a pure water sodium ion flow cell, including a supporting device 100, a first flow device 200, a second flow device 300, a detecting device 400, a connecting device 500 and a discharging device 600, wherein the supporting device 100 includes a bottom plate 101, supporting rods 102 and supporting frames 103, one end of each of the two supporting rods 102 is welded to a surface of one of the two supporting frames 103, the first flow device 200 includes a water inlet flow cell 201, a first screw head 202 and a water inlet sealing cover 203, an upper surface of the water inlet flow cell 201 is connected to a lower surface of the first screw head 202, the first screw head 202 is rotatably fitted to the water inlet sealing cover 203, the second flow device 300 includes a connecting pipe 301 and a second screw head 303, one end of the connecting pipe 301 is connected to a surface of the water inlet flow cell 201, the detecting device 400 includes a detecting head 401 and a sodium ion analyzer 403, the detecting head 401 is rotatably fitted to the second screw head 303, sodium ion analyzer 403 lower surface and bottom plate 101 upper surface connection, two branch 102 one end all with a sodium ion analyzer 403 surface connection, connecting device 500 includes third thread head 501, the airtight lid of transmission 502 and connecting thread head 504, third thread head 501 and the airtight lid of transmission 502 normal running fit, third thread head 501 lower surface and detection head 401 upper surface connection, eduction gear 600 includes a fixed thread section of thick bamboo 601 and a drainage pond 602, a fixed thread section of thick bamboo 601 lower surface and drainage pond 602 upper surface connection, a fixed thread section of thick bamboo 601 and connecting thread head 504 normal running fit, wherein, the supporting frame 103 is connected to branch 102's primary function, the main effect of supporting frame 103 is that the support is fixed income water flow cell 201 and detect flow cell 302.
Further, the supporting device 100 further comprises a supporting seat 104, the supporting seat 104 is of a hollow cylindrical structure, the lower surface of the supporting seat 104 is welded to the upper surface of the bottom plate 101, the supporting seat 104 is in sliding fit with the drainage pool 602, and the supporting device 100 is mainly used for fixing the flow-through pool devices.
Further, the first circulation device 200 further comprises a water inlet pipe 204, one end of the water inlet pipe 204 is connected with the upper surface of the water inlet sealing cover 203 in a penetrating manner, wherein the first circulation device 200 is mainly used for guiding precipitation into the second circulation device 300.
Further, the second flow-through device 300 further comprises a detection flow-through cell 302, one end of the connection pipe 301 is connected to a surface of the detection flow-through cell 302 in a penetrating manner, an upper surface of the detection flow-through cell 302 is connected to a lower surface of the second screw head 303, and the second flow-through device 300 mainly functions to transmit pure water from the first flow-through device 200 to the detection device 400.
Further, the detection device 400 further comprises a connection line 402, one end of the connection line 402 is connected with one surface of the detection head 401, the other end of the connection line 402 is connected with one surface of the sodium ion analyzer 403, and the detection device 400 is mainly used for detecting the content of sodium ions in the pure water.
Furthermore, the connection device 500 further comprises a connection hose 503, one end of the connection hose 503 is connected to one surface of the transmission sealing cover 502 in a penetrating manner, the other end of the connection hose 503 is connected to one surface of the connection screw head 504 in a penetrating manner, and the connection device 500 is mainly used for transmitting the detected pure water.
Furthermore, the drainage device 600 further comprises a drainage pipe 603, one end of the drainage pipe 603 is connected with one surface of the drainage pool 602 in a penetrating manner, and the drainage device 600 mainly functions to drain the detected pure water.
The working principle of the utility model is as follows: through the rotating fit of the first thread head 202 and the water inlet sealing cover 203, the water inlet sealing cover is tightly connected, the second screw head 303 is tightly connected with the detection head 401 through the rotation matching of the second screw head 303 and the detection head 401, the third screw head 501 is connected with the transmission sealing cover 502, the connecting screw head 504 is connected with the fixed screw cylinder 601, pure water is sucked in through the water inlet pipe 204, the pure water is sucked into the water flow cell 201 through the water inlet pipe 204 and then reaches the detection flow cell 302 through the connecting pipe 301, when the pure water passes through the detection head 401 again, the detection head 401 detects the content of sodium ions in the water, and transmits the information to the sodium ion analyzer 403 through the connection line 402, the content of sodium ions in the pure water can be obtained through the sodium ion analyzer 403, the model of the detection head 401 is BHD-HD-2123T, and the model of the sodium ion analyzer 403 is Polymetron NA9600 sc.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments 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 (7)
1. A pure water sodium ion flow-through cell, includes strutting arrangement (100), first circulation device (200), second circulation device (300), detection device (400), connecting device (500) and eduction gear (600), its characterized in that: the supporting device (100) comprises a bottom plate (101), supporting rods (102) and supporting frames (103), one ends of the supporting rods (102) are respectively welded with one surfaces of the two supporting frames (103), the first circulation device (200) comprises a water inlet circulation pool (201), a first thread head (202) and a water inlet closed cover (203), the upper surface of the water inlet circulation pool (201) is connected with the lower surface of the first thread head (202), the first thread head (202) is in rotating fit with the water inlet closed cover (203), the second circulation device (300) comprises a connecting pipe (301) and a second thread head (303), one end of the connecting pipe (301) is in through connection with one surface of the water inlet circulation pool (201), the detection device (400) comprises a detection head (401) and a sodium ion analyzer (403), and the detection head (401) is in rotating fit with the second thread head (303), sodium ion analysis appearance (403) lower surface and bottom plate (101) upper surface connection, two branch (102) one end all is connected with a sodium ion analysis appearance (403) surface, connecting device (500) include third thread (501), transmission closing cap (502) and connecting thread (504), third thread (501) and transmission closing cap (502) rotation fit, third thread (501) lower surface and detection head (401) upper surface connection, eduction gear (600) are including a fixed thread section of thick bamboo (601) and drainage basin (602), a fixed thread section of thick bamboo (601) lower surface and drainage basin (602) upper surface connection, a fixed thread section of thick bamboo (601) and connecting thread (504) rotation fit.
2. The pure sodium ion flow-through cell of claim 1, wherein: the supporting device (100) further comprises a supporting seat (104), the supporting seat (104) is of a hollow cylindrical structure, the lower surface of the supporting seat (104) is welded with the upper surface of the bottom plate (101), and the supporting seat (104) is in sliding fit with the drainage pool (602).
3. The pure sodium ion flow-through cell of claim 1, wherein: the first circulation device (200) further comprises a water inlet pipe (204), and one end of the water inlet pipe (204) is communicated with the upper surface of the water inlet closed cover (203).
4. The pure sodium ion flow-through cell of claim 1, wherein: the second circulation device (300) further comprises a detection circulation pool (302), one end of the connecting pipe (301) is in through connection with one surface of the detection circulation pool (302), and the upper surface of the detection circulation pool (302) is connected with the lower surface of the second thread head (303).
5. The pure sodium ion flow-through cell of claim 1, wherein: the detection device (400) further comprises a connecting line (402), one end of the connecting line (402) is connected with one surface of the detection head (401), and the other end of the connecting line (402) is connected with one surface of the sodium ion analyzer (403).
6. The pure sodium ion flow-through cell of claim 1, wherein: the connecting device (500) further comprises a connecting hose (503), one end of the connecting hose (503) is in through connection with one surface of the transmission sealing cover (502), and the other end of the connecting hose (503) is in through connection with one surface of the connecting threaded head (504).
7. The pure sodium ion flow-through cell of claim 1, wherein: the drainage device (600) further comprises a drainage pipe (603), and one end of the drainage pipe (603) is in through connection with one surface of the drainage pool (602).
Priority Applications (1)
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CN202121849849.8U CN216144783U (en) | 2021-08-10 | 2021-08-10 | Pure water sodium ion flow-through cell |
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CN202121849849.8U CN216144783U (en) | 2021-08-10 | 2021-08-10 | Pure water sodium ion flow-through cell |
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CN216144783U true CN216144783U (en) | 2022-03-29 |
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