CN220677667U - Container for automatically preparing solution in adaptation laboratory - Google Patents

Container for automatically preparing solution in adaptation laboratory Download PDF

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Publication number
CN220677667U
CN220677667U CN202321803607.4U CN202321803607U CN220677667U CN 220677667 U CN220677667 U CN 220677667U CN 202321803607 U CN202321803607 U CN 202321803607U CN 220677667 U CN220677667 U CN 220677667U
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China
Prior art keywords
pipe
upper cover
container
inlet pipe
tank body
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CN202321803607.4U
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Chinese (zh)
Inventor
王阳
郝杰
邵长伟
毕建玲
陈璐
高玉花
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Shandong Institute of Geophysical and Geochemical Exploration
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Shandong Institute of Geophysical and Geochemical Exploration
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Abstract

The utility model relates to the technical field of solution preparation, in particular to a container for automatically preparing solution in an adaptation laboratory, which comprises a tank body and an upper cover, wherein the upper cover is arranged on the tank body, a solute liquid inlet pipe and a solvent liquid inlet pipe are arranged on the upper cover, a liquid outlet pipe is arranged on the tank body, a solute control valve is arranged on the solute liquid inlet pipe, a solvent control valve is arranged on the solvent liquid inlet pipe, a liquid outlet control valve is arranged on the liquid outlet pipe, a liquid level control pipe is arranged on the upper cover and communicated with the inside of the tank body, the upper end of the liquid level control pipe extends to the upper end of the upper cover, and the height of an air outlet at the upper end of the liquid level control pipe is lower than the heights of liquid inlets of the solute liquid inlet pipe and the solvent liquid inlet pipe; the automatic container also comprises an automatic controller, and the electrical components of the container are all connected with the automatic controller. The utility model realizes the accurate control of the total volume of the liquid in the tank body, ensures the preparation precision of laboratory solution and ensures the accuracy of experimental data.

Description

Container for automatically preparing solution in adaptation laboratory
Technical Field
The utility model relates to the technical field of solution preparation, in particular to a container for automatically preparing solution in an adaptation laboratory.
Background
At present, in the practical work of inspection and detection laboratories in various industries, different laboratory solutions are often required to be prepared by using different liquid solutes, and are used for laboratory experimental study.
The prior art discloses a multi-solute solution preparation container with application number 201710856153.X and a cleaning device thereof, comprising: a container cup for holding a solution; a cylindrical separating funnel, a motor and a conical funnel which are fixed on the cup cover through rubber plugs; a stirring shaft connected with the motor; according to different processes of solution preparation or cleaning of the container, a stirring blade or a cleaning device is arranged on the stirring shaft. However, the technology can not realize automatic quantitative preparation of total volume of laboratory solution, which leads to inaccurate preparation proportion of laboratory solution and influences the accuracy of experimental data.
Accordingly, there is a need for an improvement that overcomes the shortcomings of the prior art.
Disclosure of Invention
The utility model aims to solve the problems in the prior art, provides a container for automatically preparing an adaptive laboratory solution, solves the problem of automatic preparation of total volume quantification of the laboratory solution, and ensures the accuracy of experimental data.
The technical scheme of the utility model is as follows:
the upper cover is arranged on the tank body, a solute liquid inlet pipe and a solvent liquid inlet pipe are arranged on the upper cover, a liquid outlet pipe is arranged on the tank body, a solute control valve is arranged on the solute liquid inlet pipe, a solvent control valve is arranged on the solvent liquid inlet pipe, a liquid outlet control valve is arranged on the liquid outlet pipe, a liquid level control pipe is arranged on the upper cover and communicated with the interior of the tank body, the upper end of the liquid level control pipe extends to the upper end of the upper cover, the height of an air outlet at the upper end of the liquid level control pipe is lower than the heights of liquid inlets of the solute liquid inlet pipe and the solvent liquid inlet pipe, and a liquid level sensor is arranged on the liquid level control pipe at the upper end of the upper cover; the automatic container also comprises an automatic controller, and the electrical components of the container are all connected with the automatic controller.
Through the technical scheme, the laboratory solution preparation of total volume ration is realized, and the accuracy of solution proportioning is ensured.
As a preferable technical scheme, the upper cover is provided with an air inlet pipe, the upper end of the air inlet pipe extends to the upper end of the upper cover, the lower end of the air inlet pipe extends to the bottom of the tank body, and the height of an air inlet of the air inlet pipe is higher than the heights of liquid inlets of the solute liquid inlet pipe and the solvent liquid inlet pipe; an air inlet control valve is arranged on the air inlet pipe and is connected with the automatic controller.
The liquid level control pipe can also be used as a channel for discharging gas out of the tank body, the gas enters the tank body through the gas inlet pipe, the gas entering the tank body is used for stirring laboratory solution, the mixing of solute solution and solvent solution is accelerated, the gas entering the tank body is discharged out of the tank body through the liquid level control pipe, and the gas stirring mode realizes the unification of stirring frequency, mixing time and preparation process.
As a preferable technical scheme, the upper cover is provided with a motor and an upper fixing frame, the upper fixing frame is arranged in the tank body, a rotating shaft is rotatably arranged on the upper fixing frame, a driven gear is arranged on the rotating shaft, a power shaft of the motor extends into the tank body and is provided with a driving gear, the driven gear is meshed with the driving gear, and the motor is connected with the automatic controller; the rotating shaft is provided with a connecting plate, the connecting plate is provided with a hairbrush, and the hairbrush is attached to the inner side surface of the tank body.
The brush is driven by the motor to rotate in the tank body, so that the inner side surface of the tank body is brushed when the tank body is cleaned, and the cleanliness in the tank body is ensured.
As a preferable technical scheme, the upper fixing frame is provided with a limit baffle, the limit baffle is provided with a limit sensor, the limit sensor corresponds to the positions of the connecting plate and the air inlet pipe, and the limit sensor is connected with the automatic controller.
The limiting baffle plate and the connecting plate are connected in forward and reverse directions, two sides of the connecting plate are respectively provided with a limiting sensor for sensing the connecting plate, when the connecting plate rotates to one side of the limiting baffle plate, the limiting sensors send signals to the automatic controller, the automatic controller controls the motor to reversely rotate, when the connecting plate rotates to the other side of the limiting baffle plate, the limiting sensors on the other side send signals to the automatic controller, the automatic controller controls the motor to reversely rotate again, the connecting plate repeatedly rotates, and brushing operation on the inner side surface of the tank body is achieved through the hairbrushes.
As a preferable technical scheme, the tank body is internally provided with a lower fixing frame, and the rotating shaft is rotationally connected with the lower fixing frame, so that the stability of the rotating shaft during rotation is ensured.
As a preferable technical scheme, the liquid level control pipe is arranged at the center of the upper cover, so that a better ventilation effect in the tank body is ensured, normal air intake of the air inlet pipe is ensured, and the stirring efficiency of the solution in the tank body is ensured.
Compared with the prior art, the utility model has the beneficial effects that:
according to the container for automatically preparing the solution in the adaptation laboratory, the liquid level control pipe and the automatic controller are arranged, the liquid level sensor is arranged on the liquid level control pipe, the liquid level sensor monitors the accumulated inching change of the liquid level in the liquid level control pipe, the accurate control of the total volume of the liquid in the tank body is realized, the preparation precision of the solution in the laboratory is ensured, the accuracy of experimental data is ensured, the working efficiency is improved, and the working quality is improved.
Drawings
FIG. 1 is a first schematic structural view of a container for adapting the automatic preparation of laboratory solutions according to the present utility model;
fig. 2 is a second schematic structural view of the container for adapting the automatic preparation of laboratory solutions of the present utility model.
In the figure: 1. a solute feed tube; 2. a solute control valve; 3. an air inlet pipe; 4. a tank body; 5. an intake control valve; 6. a liquid level control tube; 7. a liquid level sensor; 8. an upper cover; 9. a solvent liquid inlet pipe; 10. a solvent control valve; 11. a liquid outlet control valve; 12. a liquid outlet pipe; 13. an upper fixing frame; 14. a driven gear; 15. a motor; 16. a drive gear; 17. a limit baffle; 18. a limit sensor; 19. a rotating shaft; 20. a brush; 21. a mounting base; 22. a lower fixing frame; 23. and (5) connecting a plate.
Detailed Description
In order to make the technical means, technical features, objects and technical effects of the present utility model easy to understand, the present utility model will be further described with reference to the specific drawings.
As shown in fig. 1, a first structural schematic diagram of the container for adapting the automatic preparation of laboratory solutions according to the present utility model is shown.
The container for automatically preparing the solution in the adaptation laboratory comprises a tank body 4 and an upper cover 8, wherein the upper cover 8 is in sealing connection with the tank body 4, a solute liquid inlet pipe 1, a solvent liquid inlet pipe 9 and an air inlet pipe 3 are connected to the upper cover 8, the liquid inlet heights of the solute liquid inlet pipe 1 and the solvent liquid inlet pipe 9 are the same, the air inlet height of the air inlet pipe 3 is higher than the heights of the solute liquid inlet pipe 1 and the solvent liquid inlet pipe 9, a solute control valve 2 is arranged on the solute liquid inlet pipe 1, and a solvent control valve 10 is arranged on the solvent liquid inlet pipe 9 and is used for controlling the liquid inlet amounts of solute and solvent respectively. The lower extreme of intake pipe 3 stretches into the bottom of jar body 4, installs air inlet control valve 5 on the intake pipe 3 of upper cover 8 upper end for control intake pipe 3's air inflow, be used for solute solution and solvent solution's stirring to mix.
The center of the upper cover 8 is provided with a liquid level control pipe 6, the bottom of the liquid level control pipe 6 is communicated with the inner side of the tank body 4, the liquid level control pipe 6 at the upper end of the upper cover 8 is fixedly provided with a liquid level sensor 7, and the height of an air outlet at the upper end of the liquid level control pipe 6 is lower than the heights of liquid inlets of the solute liquid inlet pipe 1 and the solvent liquid inlet pipe 9.
The bottom of the tank body 4 is connected with a liquid outlet pipe 12, and a liquid outlet control valve 11 is arranged on the liquid outlet pipe 12. The lower end face of the tank body 4 is provided with a funnel, and the liquid outlet pipe 12 is connected to the tip of the funnel of the tank body 4, so that the laboratory solution of the tank body 4 is completely discharged.
As shown in fig. 2, a second structural schematic of the container for adapting the automatic preparation of laboratory solutions of the present utility model is shown.
The motor 15 is fixedly arranged at the upper end of the upper cover 8, the upper fixing frame 13 is fixed at the lower end of the upper cover 8, the rotating shaft 19 is rotatably arranged on the upper fixing frame 13, the upper end of the rotating shaft 19 extends out of the upper fixing frame 13 and is fixedly provided with the driven gear 14, the power shaft of the motor 15 extends into the tank body 4 and is fixedly provided with the driving gear 16, and the driven gear 14 is meshed and connected with the driving gear 16. Connecting plates 23 are fixed at the upper end and the lower end of one side of the rotating shaft 19, brushes 20 are fixedly mounted on the connecting plates 23, and the brushes 20 are attached to the inner side face of the tank body 4 and used for brushing the inner side face of the tank body 4. The lower end of the tank body 4 is fixed with a lower fixing frame 22, an installation seat 21 is fixed on the lower fixing frame 22, and a rotating shaft 19 is rotationally connected with the installation seat 21. The motor 15 can drive the rotating shaft 19 to rotate, so that the brush 20 is driven to rotate along the inner side surface of the tank body 4.
The lower extreme of mount 13 is fixed with limit baffle 17, installs limit sensor 18 on the limit baffle 17, limit sensor 18 position height and the position height of connecting plate 23 are corresponding, and limit sensor 18 is all installed to intake pipe 3 both sides for limit induction when connecting plate 23 rotates, changes the rotation direction of connecting plate 23, avoids connecting plate 23 to collide with intake pipe 3 and causes the damage of part.
The automatic controller is arranged, and all electric components in the container are connected with the automatic controller and are used for automatic preparation operation of laboratory solutions.
The foregoing description is only of the preferred embodiments of the present utility model and is not intended to limit the scope of the present utility model. Equivalent changes and modifications of the utility model are intended to fall within the scope of the present utility model.

Claims (6)

1. The utility model provides an adaptation laboratory solution automatic preparation's container, includes jar body (4) and upper cover (8), upper cover (8) locate on jar body (4), be equipped with solute feed liquor pipe (1) and solvent feed liquor pipe (9) on upper cover (8), be equipped with drain pipe (12) on jar body (4), be equipped with solute control valve (2) on solute feed liquor pipe (1), be equipped with solvent control valve (10) on solvent feed liquor pipe (9), be equipped with play liquid control valve (11) on drain pipe (12), characterized in that, be equipped with liquid level control pipe (6) on upper cover (8), liquid level control pipe (6) with jar body (4) inside communicates with each other, the upper end of liquid level control pipe (6) stretches to the upper end of upper cover (8), the gas outlet height of liquid level control pipe (6) is less than solute feed liquor pipe (1) and the feed liquor inlet height of solvent feed liquor pipe (9), be equipped with liquid level sensor (7) on liquid level control pipe (6) of upper end of upper cover (8); the automatic container also comprises an automatic controller, and the electrical components of the container are all connected with the automatic controller.
2. The container for automatically preparing the solution in the adaptation laboratory according to claim 1, wherein the upper cover (8) is provided with an air inlet pipe (3), the upper end of the air inlet pipe (3) extends to the upper end of the upper cover (8), the lower end of the air inlet pipe (3) extends to the bottom of the tank body (4), and the air inlet of the air inlet pipe (3) is higher than the liquid inlet heights of the solute liquid inlet pipe (1) and the solvent liquid inlet pipe (9); an air inlet control valve (5) is arranged on the air inlet pipe (3), and the air inlet control valve (5) is connected with the automatic controller.
3. The container for automatically preparing the solution in the adaptation laboratory according to claim 2, wherein the upper cover (8) is provided with a motor (15) and an upper fixing frame (13), the upper fixing frame (13) is arranged in the tank body (4), a rotating shaft (19) is rotatably arranged on the upper fixing frame (13), a driven gear (14) is arranged on the rotating shaft (19), a power shaft of the motor (15) extends into the tank body (4) and is provided with a driving gear (16), the driven gear (14) is meshed with the driving gear (16), and the motor (15) is connected with the automatic controller; the rotating shaft (19) is provided with a connecting plate (23), the connecting plate (23) is provided with a hairbrush (20), and the hairbrush (20) is attached to the inner side surface of the tank body (4).
4. A container for automatically preparing a laboratory solution according to claim 3, wherein the upper fixing frame (13) is provided with a limit baffle (17), the limit baffle (17) is provided with a limit sensor (18), the limit sensor (18) corresponds to the positions of the connecting plate (23) and the air inlet pipe (3), and the limit sensor (18) is connected with the automatic controller.
5. A container for automatically preparing a laboratory solution according to claim 3, wherein a lower fixing frame (22) is arranged in the tank body (4), and the rotating shaft (19) is rotatably connected with the lower fixing frame (22).
6. The container for adapting the automatic preparation of laboratory solutions according to claim 1, characterized in that said level control tube (6) is provided at the centre of said upper cover (8).
CN202321803607.4U 2023-07-11 2023-07-11 Container for automatically preparing solution in adaptation laboratory Active CN220677667U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321803607.4U CN220677667U (en) 2023-07-11 2023-07-11 Container for automatically preparing solution in adaptation laboratory

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321803607.4U CN220677667U (en) 2023-07-11 2023-07-11 Container for automatically preparing solution in adaptation laboratory

Publications (1)

Publication Number Publication Date
CN220677667U true CN220677667U (en) 2024-03-29

Family

ID=90373267

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321803607.4U Active CN220677667U (en) 2023-07-11 2023-07-11 Container for automatically preparing solution in adaptation laboratory

Country Status (1)

Country Link
CN (1) CN220677667U (en)

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