Mixing tank for tuna polypeptide soda water

By introducing the coordinated use of liquid level sensors and gas flow meters in the soda water machine and combining them with a PLC controller, quantitative mixing and uniform concentration control of tuna polypeptide soda water are achieved, solving the problems of insufficient soda water concentration and waste and improving the quality of soda water.

CN223464679UActive Publication Date: 2025-10-24JIAOZUO MINGREN NATURAL MEDICINE
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Patent Information

Application Number
CN202422085480.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-10-24
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The concentration of soda water in existing soda water machines is insufficient or uneven, and there are problems with capacity control and unreasonable gas introduction, which leads to a decline in soda water quality and waste.

Method used

A tuna polypeptide soda water mixing tank is used, and the liquid level sensor and gas flow meter are coordinated with the PLC controller to monitor and control the input of drinking water and carbon dioxide in real time, ensuring quantitative mixing and efficient proportioning. A gas circulation pump is used to improve the solubility of carbon dioxide and mixing efficiency.

Benefits of technology

It achieves efficient quantitative mixing and uniform concentration control of soda water, improves the quality of soda water and reduces waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tuna polypeptide soda water mixing tank which comprises a gas-liquid mixing tank, the bottom of the gas-liquid mixing tank is communicated with a water supply pipe, the surface of the water supply pipe is provided with a liquid pump, and the left side of the water supply pipe is provided with a gas supply pipe communicated with the gas-liquid mixing tank; according to the device, drinking water containing tuna polypeptide is pumped into the gas-liquid mixing tank through the liquid pump, the liquid level sensor installed in the device monitors liquid level data of the gas-liquid mixing tank in real time and feeds back the liquid level data to the PLC, and at the moment, carbon dioxide is pumped into the gas-liquid mixing tank through the air pump; a gas flow meter arranged on the surface of the gas supply pipe monitors the passing gas amount in real time and feeds back the passing gas amount to the PLC, and when the carbon dioxide introduction amount and the drinking water liquid level height reach preset values of the PLC, the PLC cuts off power supplies of the gas pump and the liquid pump and stops pumping the carbon dioxide or the drinking water into the gas-liquid mixing tank; the purposes of quantitative mixing and efficient proportioning of the soda water are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of beverage production, especially relates to mixed tank of tuna polypeptide soda water. BACKGROUND

[0002] The soda water machine is a kind of equipment by carbon dioxide is pressed into pure drinking water, forms carbonated beverage soda water;Soda water machine is generally provided with mixing tank in it, and mixing tank is generally composed of outer tank and inner tank, and outer tank is filled with drinking water, and inner tank is filled with soda water.

[0003] Tuna polypeptide belongs to health products.Polypeptide is the compound that alpha-amino acid is connected together with peptide bond, it is also the intermediate product of protein hydrolysis.The compound that two amino acid molecules are dehydrated condensation is called dipeptide, and similarly there are tripeptide, tetrapeptide, pentapeptide etc.By three or more than three amino acid molecules dehydrated condensation compound can become called polypeptide.Tuna is rich in EPA, DHA, taurine and other ingredients, can reduce the fat in blood, is beneficial to hepatocyte regeneration, improves the excretion function of liver, thereby reduces the incidence of liver, with the prevalence of health drinks, the existing soda water product is mixed with tuna polypeptide component in its production drinking water.

[0004] In the prior art, the soda water in the inner tank of soda water machine is usually formed by directly filling carbon dioxide into the inner tank filled with drinking water by pipeline, and the soda water prepared by this method has the problems of insufficient concentration or uneven mixing, which affects the quality of soda water, and secondly, the existing soda water mixing tank is provided with capacity control and gas inlet amount control structure, and the excess soda water produced will cause waste, and there is the phenomenon of unreasonable proportioning.

[0005] Therefore, the mixed tank of tuna polypeptide soda water is proposed, which has the advantages of increasing the quality of soda water and being easy to control the capacity and proportioning ratio, thereby solving the problems in the above background technology. Utility model content

[0006] The utility model relates to the technical field of beverage production, especially relates to mixed tank of tuna polypeptide soda water.

[0007] In order to achieve the above object, the utility model discloses the following technical scheme: tuna polypeptide soda water's mixing jar, including gas-liquid mixing jar, the bottom of gas-liquid mixing jar is connected with water supply pipe, and the surface of water supply pipe is installed with liquid pump, the left side of water supply pipe is provided with the gas supply pipe that is linked with gas-liquid mixing jar, and the surface of gas supply pipe is installed with gas pump, gas flowmeter in proper order, the inside top of gas-liquid mixing jar is fixed with liquid level sensor, and the top of gas-liquid mixing jar is connected with circulating pipe, and the bottom of circulating pipe is connected with the upper portion of gas supply pipe, and the surface of circulating pipe is installed with gas circulating pump, the upper surface of water supply pipe is connected with liquid outlet pipe, and the surface of liquid outlet pipe is installed with valve, the outer wall of gas-liquid mixing jar is provided with PLC controller, and the output of PLC controller is electrically connected with gas pump and liquid pump respectively, liquid level sensor and gas flowmeter are electrically connected with PLC controller respectively, and the output of PLC controller and external power source are electrically connected.

[0008] As further description of the above technical scheme: the one end of gas supply pipe extending to the inside of gas-liquid mixing jar is connected with circular tube, and the concave surface of circular tube is provided with a plurality of through holes.

[0009] As further description of the above technical scheme: the outer wall surface of gas-liquid mixing jar is provided with observation hole, and the observation hole is embedded with glass type visual window, and the surface of visual window of observation hole is marked with scale line.

[0010] As further description of the above technical scheme: the upper surface of gas supply pipe is installed with check valve, and the communication place of gas supply pipe and circulating pipe is between gas flow valve and check valve.

[0011] As further description of the above technical scheme: the edge of the top surface of gas-liquid mixing jar is provided with pressure relief port, and the pressure relief port is installed with pressure relief safety valve.

[0012] As further description of the above technical scheme: the water supply pipe is connected with external drinking water storage tank, and the gas supply pipe is connected with carbon dioxide storage tank.

[0013] The utility model has the following beneficial effects:

[0014] The utility model discloses a kind of tuna polypeptide soda water mixing tanks, including gas-liquid mixing tank, water supply pipe, gas supply pipe, gas pump, liquid pump, gas flow meter, one-way valve, liquid outlet pipe, circulation pipe, gas circulating pump, pressure relief safety valve and visual window, it is characterized by the following, gas-liquid mixing tank is connected with water supply pipe, water supply pipe is connected with liquid pump, liquid pump is connected with liquid level sensor, liquid level sensor is connected with PLC controller, gas supply pipe is connected with gas pump, gas pump is connected with gas flow meter, gas flow meter is connected with PLC controller, PLC controller is connected with pressure relief safety valve, pressure relief safety valve is connected with gas-liquid mixing tank, gas-liquid mixing tank is connected with circulation pipe, circulation pipe is connected with gas circulating pump, gas circulating pump is connected with PLC controller, and PLC controller is connected with visual window. BRIEF DESCRIPTION OF DRAWINGS

[0015] Fig. 1 It is the external structure schematic view of the utility model tuna polypeptide soda water mixing tank;

[0016] Fig. 2 It is the internal structure schematic view of the utility model tuna polypeptide soda water mixing tank;

[0017] Fig. 3 It is the block diagram of the utility model tuna polypeptide soda water mixing tank.

[0018] LEGEND:

[0019] 1, gas-liquid mixing tank;2, water supply pipe;3, gas supply pipe;4, gas pump;5, liquid pump;6, gas flow meter;7, one-way valve;8, liquid outlet pipe;9, circulation pipe;10, gas circulating pump;11, pressure relief safety valve;12, visual window;13, circular arc pipe;14, through-hole;15, liquid level sensor;16, PLC controller. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0021] According to the embodiments of the utility model, tuna polypeptide soda water mixing tank is provided.

[0022] The utility model will be further described in conjunction with the drawings and specific embodiments, such as Figs. 1-3As shown, the tuna polypeptide soda water mixing tank according to the utility model embodiment, including gas-liquid mixing tank 1, the bottom of gas-liquid mixing tank 1 is communicated with water supply pipe 2, and the surface of water supply pipe 2 is installed with liquid pump 5, the left side of water supply pipe 2 is provided with the air supply pipe 3 communicated with gas-liquid mixing tank 1, and the surface of air supply pipe 3 is sequentially installed with gas pump 4, gas flowmeter 6, the inside top of gas-liquid mixing tank 1 is fixed with liquid level sensor 15, and the top of gas-liquid mixing tank 1 is communicated with circulating pipe 9, the bottom end of circulating pipe 9 is communicated with the upper portion of air supply pipe 3, and the surface of circulating pipe 9 is installed with gas circulating pump 10, the upper surface of water supply pipe 2 is communicated with liquid outlet pipe 8, and the surface of liquid outlet pipe 8 is installed with valve, the outer wall of gas-liquid mixing tank 1 is provided with PLC controller 16, and the output end of PLC controller 16 is electrically connected with gas pump 4 and liquid pump 5 respectively, liquid level sensor 15 and gas flowmeter 6 are electrically connected with PLC controller 16 respectively, and PLC controller 16 is electrically connected with the output end of external power supply, the air supply pipe 3 in the device is used to provide carbon dioxide, so as to produce soda bubble water, for the control of liquid level and carbon dioxide input amount, the control mode of the utility model is automatically controlled by the controller, the control circuit of the controller can be realized by simple programming of the person skilled in the art, and the provision of power belongs to the public knowledge in the art, and the utility model is mainly used for protecting mechanical devices, so the control mode and circuit connection of the utility model will not be explained in detail, for the gas circulating pump 10, the control mode of the utility model is controlled by manually starting and closing the switch, and the wiring diagram of the power element and the provision of power belong to the public knowledge in the art, and the utility model is mainly used for protecting mechanical devices, so the control mode and wiring arrangement of the utility model will not be explained in detail.

[0023] In one embodiment, one end of the air supply pipe 3 extending into the gas-liquid mixing tank 1 is communicated with a circular arc pipe 13, and the concave surface of the circular arc pipe 13 is provided with a plurality of through holes 14. Through the circular arc pipe 13 and the through holes 14, the filling effect of carbon dioxide is easily increased, and the mixing effect is increased.

[0024] In one embodiment, an observation port is formed on the outer wall surface of the gas-liquid mixing tank 1, and a glass visual window 12 is embedded and installed in the observation port. A scale line is printed on the surface of the visual window 12 of the observation port. Through the setting of the visual window 12, the mixing condition inside the gas-liquid mixing tank 1 is easily observed.

[0025] In one embodiment, a one-way valve 7 is installed on the upper surface of the air supply pipe 3. The air supply pipe 3 and the circulating pipe 9 are communicated between the gas flow valve and the one-way valve 7. Through the setting of the one-way valve 7, the backflow of gas is prevented.

[0026] In one embodiment, a pressure relief port is formed at the edge of the top surface of the gas-liquid mixing tank 1, and a pressure relief safety valve 11 is installed at the pressure relief port, so that the safety hazard caused by excessive gas pressure can be avoided.

[0027] In one embodiment, the water supply pipe 2 is connected to an external drinking water tank, and the gas supply pipe 3 is connected to a carbon dioxide tank, so that the drinking water containing tuna polypeptide (which can be a mixture of soda water and tuna polypeptide) can be conveniently injected into the gas-liquid mixing tank 1 through the water supply pipe 2, and the carbon dioxide can be conveniently introduced into the gas-liquid mixing tank 1 through the gas supply pipe 3.

[0028] Working principle:

[0029] In use, first connect the water supply pipe 2 to the drinking water tank containing tuna polypeptide, and then connect the gas supply pipe 3 to the carbon dioxide tank, when the drinking water and carbon dioxide are mixed, the drinking water containing tuna polypeptide is pumped into the gas-liquid mixing tank 1 by the liquid pump 5, the liquid level sensor 15 installed inside monitors the liquid level data of the gas-liquid mixing tank 1 in real time and feeds back to the PLC controller 16, at this time, the carbon dioxide is pumped into the gas-liquid mixing tank 1 by the gas pump 4, the gas flow meter 6 arranged on the surface of the gas supply pipe 3 monitors the amount of gas passing through in real time and feeds back to the PLC controller 16, when the amount of carbon dioxide introduced and the liquid level of the drinking water respectively reach the preset value of the PLC controller 16, the PLC controller 16 respectively cuts off the power supply of the gas pump 4 and the liquid pump 5, stops pumping carbon dioxide or drinking water into the gas-liquid mixing tank 1, so as to achieve the purpose of quantitative mixing and efficient proportioning of soda water, so as to produce soda water of specified capacity according to actual demand and ensure the rationality of soda water proportioning, during the process, the gas circulation pump 10 on the surface of the circulation pipe 9 is started to promote the circulation of carbon dioxide gas between the gas-liquid mixing tank 1 and the circulation pipe 9, so as to maximize the solubility of carbon dioxide and the mixing efficiency, and improve the quality of soda water.

[0030] Finally, it should be pointed out that the above description is only a preferred embodiment of the present application and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent replacement of some technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A mixing tank for tuna polypeptide soda, comprising a gas-liquid mixing tank (1), characterized in that: The bottom of the gas-liquid mixing tank (1) is communicated with a water supply pipe (2), and the surface of the water supply pipe (2) is mounted with a liquid pump (5), the left side of the water supply pipe (2) is provided with a gas supply pipe (3) communicated with the gas-liquid mixing tank (1), and the surface of the gas supply pipe (3) is sequentially mounted with a gas pump (4), a gas flow meter (6), the inside top of the gas-liquid mixing tank (1) is fixed with a liquid level sensor (15), and the top of the gas-liquid mixing tank (1) is communicated with a circulating pipe (9), the bottom end of the circulating pipe (9) is communicated with the upper part of the gas supply pipe (3), and the surface of the circulating pipe (9) is mounted with a gas circulating pump (10), the upper surface of the water supply pipe (2) is communicated with a liquid outlet pipe (8), and the surface of the liquid outlet pipe (8) is mounted with a valve, the outer wall of the gas-liquid mixing tank (1) is provided with a PLC controller (16), and the output end of the PLC controller (16) is respectively electrically connected with the gas pump (4) and the liquid pump (5), the liquid level sensor (15) and the gas flow meter (6) are respectively electrically connected with the PLC controller (16), and the PLC controller (16) is electrically connected with the output end of the external power supply.

2. The tuna polypeptide soda water mixing tank of claim 1, characterized in that: The end of the gas supply pipe (3) extending into the gas-liquid mixing tank (1) is communicated with a circular arc pipe (13), and the concave surface of the circular arc pipe (13) is provided with a plurality of through holes (14).

3. The tuna polypeptide soda water mixing tank of claim 1, wherein: The outer wall surface of the gas-liquid mixing tank (1) is provided with an observation port, and a glass type visual window (12) is embedded and mounted in the observation port, and the surface of the visual window (12) of the observation port is marked with scale lines.

4. The tuna polypeptide soda water mixing tank of claim 1, wherein: The upper surface of the gas supply pipe (3) is mounted with a one-way valve (7), and the communication part of the gas supply pipe (3) and the circulating pipe (9) is between the gas flow valve and the one-way valve (7).

5. The tuna polypeptide soda water mixing can according to claim 1, characterized in that: The top surface of the gas-liquid mixing tank (1) is provided with a pressure relief port at the edge, and a pressure relief safety valve (11) is mounted at the pressure relief port.

6. The tuna polypeptide soda water mixing can according to claim 1, characterized in that: The water supply pipe (2) is connected with an external drinking water storage tank, and the gas supply pipe (3) is connected with a carbon dioxide storage tank.