Device for mixing sodium alginate and hyaluronic acid to obtain skin glossiness improving agent

Real-time mixing of sodium alginate and hyaluronic acid is achieved by designing a device containing a soft bag, a peristaltic pump and a mixer, solving the problem of waste in the prior art, and ensuring the uniformity of the mixture through spoiler and ultrasonic generator.

CN222930717UActive Publication Date: 2025-06-03GUANGZHOU NARAY MEDICAL EQUIP CO LTD
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Patent Information

Application Number
CN202422161697.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-06-03
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The prior art is prone to waste when mixing sodium alginate liquid dressing and hyaluronic acid, because the amount of use needs to be determined in advance.

Method used

An apparatus is designed, including a first soft bag, a second soft bag, a mixer, a first peristaltic pump and a second peristaltic pump. Connecting the soft bag and the peristaltic pump through the N-pass connector enables real-time mixing of sodium alginate liquid dressing and hyaluronic acid, and using spoiler and ultrasonic generator to ensure even mixing.

Benefits of technology

Real-time mixing of sodium alginate and hyaluronic acid is achieved, reducing waste, simplicity of use, and ensuring uniformity of the mixture through spoiler and ultrasonic generator.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a device for mixing sodium alginate and hyaluronic acid to obtain a skin glossiness improver. The device comprises a first soft bag, a second soft bag, a mixer, a first peristaltic pump and a second peristaltic pump, the mixer comprises a first mixing pipeline, a first hose, a second mixing pipeline, a second hose and a tail end pipeline which are connected in sequence; the input end of the first mixing pipeline is connected with an N-way connector, the first soft bag is connected with one connector of the N-way connector through a first conveying pipeline, and the second soft bag is connected with the other connector of the N-way connector through a second conveying pipeline. The first peristaltic pump and the second peristaltic pump are respectively connected to the first conveying pipeline and the second conveying pipeline; a plurality of spoilers which are arranged in a staggered manner along the length direction of the pipeline are fixed on the inner wall of the first mixing pipeline; the mixer further comprises an ultrasonic generator arranged on the outer wall of the second mixing pipeline. The device can reduce the waste of sodium alginate liquid dressing and hyaluronic acid.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical beauty appliances, and specifically relates to a device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver. Background Art

[0002] The main components of the sodium alginate liquid dressing include sodium alginate, carboxymethyl cellulose, carboxymethyl chitosan, sodium chloride, pure water, etc. Hyaluronic acid, also known as hyaluronan, is a polysaccharide widely present in the human body, mainly present in the skin, synovial fluid and vitreous humor of the eye.

[0003] The skin gloss improver is obtained by mixing the sodium alginate liquid dressing and hyaluronic acid in a certain proportion, and its mechanism of action is as follows:

[0004] 1. Dual moisturization

[0005] Both sodium alginate and hyaluronic acid have excellent moisturizing properties and can work together to provide dual moisturization effects for the skin. They can absorb and lock a large amount of water, keeping the skin moisturized for a long time.

[0006] 2. Increased elasticity

[0007] Hyaluronic acid can fill the gaps under the skin and increase the elasticity of the skin. Sodium alginate can form a protective film to prevent the skin from losing elasticity due to dryness. The combination of the two can significantly improve the firmness and elasticity of the skin.

[0008] 3. Improved skin texture

[0009] The antioxidant, anti-inflammatory and sunscreen effects of sodium alginate help protect the skin from external environmental damage and reduce skin problems such as roughness and dullness. Hyaluronic acid can balance the unevenness on the skin surface, making the skin appearance smoother and more delicate. The combined action of the two can significantly improve the skin texture, making the skin smoother, more delicate and shiny.

[0010] 4. Promote repair

[0011] Both sodium alginate and hyaluronic acid have a certain ability to promote skin repair. They can stimulate skin cell regeneration and accelerate the wound healing and scar fading processes. This has a positive effect on improving skin problems caused by acne, acne, etc.

[0012] At present, the compounding of the sodium alginate liquid dressing and hyaluronic acid is mainly achieved by docking syringes that separately suck the sodium alginate liquid dressing and hyaluronic acid using a double female Luer connector and injecting back and forth. The usage amounts of the sodium alginate liquid dressing and hyaluronic acid are pre-determined and a certain margin is ensured, which is likely to cause waste of the sodium alginate liquid dressing and hyaluronic acid in actual operation. Content of the Utility Model

[0013] In view of the above problems, the present utility model is proposed to provide a device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver that overcomes the above problems or at least partially solves the above problems.

[0014] The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver includes a first soft bag, a second soft bag, a mixer, a first peristaltic pump, and a second peristaltic pump; the first soft bag is used to contain a sodium alginate liquid dressing; the second soft bag is used to contain hyaluronic acid; the mixer includes a first mixing pipe, a first hose, a second mixing pipe, a second hose, and an end pipe connected in sequence; the input end of the first mixing pipe is connected with an N-way joint, one interface of the N-way joint is connected by a first conveying pipe to the first soft bag, and the other interface of the N-way joint is connected by a second conveying pipe to the second soft bag; the first peristaltic pump is connected to the first conveying pipe and is used to urge the sodium alginate liquid dressing contained in the first soft bag to enter the first mixing pipe through the first conveying pipe; the second peristaltic pump is connected to the second conveying pipe and is used to urge the hyaluronic acid contained in the second soft bag to enter the first mixing pipe through the second conveying pipe; the first mixing pipe is a straight pipe, and a plurality of spoiler plates are fixed on its inner wall and arranged in a staggered manner along the pipeline length direction; each of the spoiler plates includes a blocking portion vertically fixed on the inner wall of the first mixing pipe, and a guiding portion formed by bending and extending from the edge of the blocking portion that does not contact the first mixing pipe towards the input end direction of the first mixing pipe; the two positive projections of each two adjacent blocking portions on the virtual plane where the cross section of the first mixing pipe is located overlap, and the area occupied by the two positive projections is equal to the inner circle area of the first mixing pipe; the mixer further includes an ultrasonic generator, and the ultrasonic generator is arranged on the outer wall of the second mixing pipe and is used to further mix the mixture flowing through the second mixing pipe.

[0015] In one embodiment, the spoiler plates are arranged in a staggered manner up and down along the pipeline length direction of the first mixing pipe.

[0016] In one embodiment, the spoiler plates are arranged in a staggered manner left and right along the pipeline length direction of the first mixing pipe.

[0017] In one embodiment, the first conveying pipe is provided with a first valve for opening or closing the first conveying pipe; the second conveying pipe is provided with a second valve for opening or closing the second conveying pipe; the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver further includes a cleaning pipe, the output end of the cleaning pipe is connected to another interface of the N-way joint, and the input end of the cleaning pipe can be connected to a cleaning liquid supply source or a dry air supply source; the cleaning pipe is provided with a third valve for opening or closing the cleaning pipe.

[0018] In one embodiment, the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver further includes a bottle body and a bottle cap; the bottle body is formed with two independent accommodating chambers for respectively accommodating a first soft bag and a second soft bag, the bottle cap is formed with an installation space for arranging a mixer, a first peristaltic pump, a second peristaltic pump, an ultrasonic generator, and a cleaning pipeline, the output end of the terminal pipeline extends outside the bottle cap, and the input end of the cleaning pipeline extends outside the bottle cap; the bottle cap is detachably installed at the bottle mouth of the bottle body.

[0019] In one embodiment, the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver further includes a power supply, and the power supply is arranged in the installation space of the bottle cap.

[0020] In one embodiment, the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver further includes a control switch and a control circuit. The control circuit is electrically connected to the control switch, the first peristaltic pump, the second peristaltic pump, and the ultrasonic generator. The control circuit is used to control the first peristaltic pump, the second peristaltic pump, and the ultrasonic generator to work according to the information transmitted by the control switch; the control circuit is arranged in the installation space of the bottle cap, and the control switch is arranged on the surface of the bottle cap.

[0021] The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver in this embodiment can realize the real-time mixing of sodium alginate and hyaluronic acid to obtain a skin gloss improver, without the need to pre-determine the usage amounts of the sodium alginate liquid dressing and hyaluronic acid, reducing the waste of the sodium alginate liquid dressing and hyaluronic acid, and is simple to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The included drawings are used to provide a further understanding of the embodiments of the present application, which form a part of the specification, are used to illustrate the embodiments of the present application, and are used to explain the principles of the present application together with the text description. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. In the drawings:

[0023] Figure 1 is a schematic structural diagram of an exemplary embodiment of the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver of the present utility model;

[0024] Figure 2 is Figure 1 a structural schematic diagram of the shown device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver;

[0025] Figure 3 is a schematic structural diagram of the first mixing pipeline;

[0026] Figure 4 It is a schematic structural diagram of the bottle body.

[0027] Explanation of reference numerals in the drawings: 1. First soft bag; 2. Second soft bag; 3. Mixer; 4. First peristaltic pump; 5. Second peristaltic pump; 6. Bottle body; 7. Bottle cap; 8. Accommodating chamber; 9. First mixing pipeline; 10. First hose; 11. Second mixing pipeline; 12. Second hose; 13. End pipeline; 14. N-way joint; 15. First conveying pipeline; 16. Second conveying pipeline; 17. Turbulence plate; 18. Blocking part; 19. Flow guiding part; 20. Ultrasonic generator; 21. First valve; 22. Second valve; 23. Cleaning pipeline; 24. Third valve; 25. Control switch. Specific embodiments

[0028] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present invention, and should not be construed as limiting the present invention. Those of ordinary skill in the art can make various changes, modifications, substitutions and variations to these embodiments without departing from the principles and purposes of the present invention. The scope of the present invention is defined by the claims and their equivalents.

[0029] In the description of the present invention, the terms "center", "longitudinal", "transverse", "length", "upper", "lower", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc., which are mentioned or may be mentioned, indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention.

[0030] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. Additionally, the terms "comprising", "including" and any variations thereof are intended to cover non-exclusive inclusion.

[0031] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation" and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0032] The following describes a device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver according to an embodiment of the present utility model with reference to the accompanying drawings.

[0033] See Figure 1 and Figure 2 As shown in FIGS. and, a device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver according to an embodiment of the present utility model includes a first flexible bag 1, a second flexible bag 2, a mixer 3, a first peristaltic pump 4, and a second peristaltic pump 5.

[0034] The first flexible bag 1 is used to contain a sodium alginate liquid dressing, and the second flexible bag 2 is used to contain hyaluronic acid. The first flexible bag 1 and the second flexible bag 2 can both be made of medical-grade materials, such as PVC (polyvinyl chloride), etc. When the materials contained inside the first flexible bag 1 and the second flexible bag 2, namely the sodium alginate liquid dressing and hyaluronic acid, decrease, they can easily undergo corresponding deformations, such as shrinking. Furthermore, the resistance formed by the flexible bags during the process of extracting the sodium alginate liquid dressing and hyaluronic acid can be reduced. The first flexible bag 1 and the second flexible bag 2 can also isolate the sodium alginate liquid dressing and hyaluronic acid from air to avoid external contamination.

[0035] In this embodiment, the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver may further include a bottle body 6 and a bottle cap 7. The bottle body 6 is formed with two independent accommodation chambers 8 for respectively accommodating the first flexible bag 1 and the second flexible bag 2, as Figure 4 shown. The bottle body 6 or the bottle cap 7 may be formed with a gas channel communicating with the external air, and the external air can enter the two accommodation chambers 8 through this gas channel to avoid the formation of negative pressure in the accommodation chambers 8 during the process of extracting the sodium alginate liquid dressing and hyaluronic acid.

[0036] The mixer 3 is used for initially mixing the sodium alginate liquid dressing and hyaluronic acid. Specifically, the mixer 3 includes a first mixing pipe 9, a first hose 10, a second mixing pipe 11, a second hose 12, and an end pipe 13 that are connected in sequence. The input end of the first mixing pipe 9 is connected with an N-way joint 14, and the number of joints of the N-way joint 14 can be determined according to the number of pipes that need to be connected to the input end of the first mixing pipe 9. For example, when the number of pipes to be connected is 2, the number of joints of the N-way joint 14 can be 3 or greater than 3. Another example is that when the number of pipes to be connected is 3, the number of joints of the N-way joint 14 can be 4 or greater than 4.

[0037] The first soft bag 1 is connected to an interface of the N-way joint 14 through a first conveying pipe 15, and the second soft bag 2 is connected to another interface of the N-way joint 14 through a second conveying pipe 16.

[0038] The first peristaltic pump 4 is connected to the first conveying pipe 15 and is used to urge the sodium alginate liquid dressing contained in the first soft bag 1 to enter the first mixing pipe 9 through the first conveying pipe 15. The second peristaltic pump 5 is connected to the second conveying pipe 16 and is used to urge the hyaluronic acid contained in the second soft bag 2 to enter the first mixing pipe 9 through the second conveying pipe 16. When the peristaltic pump operates, it will generate a pulsating flow, which is beneficial to the mixing of the sodium alginate liquid dressing and hyaluronic acid.

[0039] The first mixing pipe 9 is a straight pipe, and a number of spoiler plates 17 are fixed to its inner wall and are arranged in a staggered manner along the length direction of the pipe, as Figure 3 shown. When the mixture composed of the sodium alginate liquid dressing and hyaluronic acid passes through the first mixing pipe 9, the spoiler plates 17 can cause the mixture to be disturbed, so as to make the mixing of the sodium alginate liquid dressing and hyaluronic acid more uniform.

[0040] Specifically, each of the spoiler plates 17 includes a blocking portion 18 vertically fixed to the inner wall of the first mixing pipe 9, and a guiding portion 19 formed by bending and extending from the edge of the blocking portion 18 that does not contact the first mixing pipe 9 towards the input end direction of the first mixing pipe 9. The two adjacent blocking portions 18 have overlapping orthographic projections on the virtual plane of the cross-section of the first mixing pipe 9, and the area occupied by the two orthographic projections is equal to the inner circle area of the first mixing pipe 9.

[0041] For example, when the first mixing pipe 9 is a circular pipe, the blocking part 18 can be a semi-circular flat plate, the diameter of the blocking part 18 is the same as the inner diameter of the first mixing pipe 9, and the arc edge of the blocking part 18 is connected to the inner wall of the first mixing pipe 9. The guiding part 19 is formed by bending and extending from the straight edge of the blocking part 18 towards the input end direction of the first mixing pipe 9. Part of the edge of the guiding part 19 can be connected to the inner wall of the first mixing pipe 9, or all edges can be separated from the inner wall of the first mixing pipe 9. Each of the spoiler plates 17 can be arranged in an up-and-down staggered manner along the pipe length direction of the first mixing pipe 9.

[0042] For another example, when the first mixing pipe 9 is a square pipe, the blocking part 18 can be a rectangular flat plate, the area of the blocking part 18 is half of the area surrounded by the inner wall in the cross-section of the first mixing pipe 9, and three of its edges are connected to the inner wall of the first mixing pipe 9. The guiding part 19 is formed by bending and extending from the remaining edge of the blocking part 18 that is not in contact with the first mixing pipe 9 towards the input end direction of the first mixing pipe 9. Part of the edge of the guiding part 19 can be connected to the inner wall of the first mixing pipe 9, or all edges can be separated from the inner wall of the first mixing pipe 9. Each of the spoiler plates 17 can be arranged in a left-and-right staggered manner along the pipe length direction of the first mixing pipe 9.

[0043] The mixer 3 further includes an ultrasonic generator 20, the ultrasonic generator 20 is arranged on the outer wall of the second mixing pipe 11, and the ultrasonic generator 20 can cause the second mixing pipe 11 to vibrate horizontally, thereby promoting further mixing of the mixture flowing through the second mixing pipe 11. The first hose 10 and the second hose 12 can weaken or even eliminate the influence on the first mixing pipe 9 and the end pipe 13 during the horizontal vibration of the second mixing pipe 11, that is, it can weaken or even avoid the first mixing pipe 9 and the end pipe 13 from following the second mixing pipe 11 to vibrate horizontally. The ultrasonic generator 20 can include an ultrasonic transducer.

[0044] In this embodiment, the first conveying pipe 15 is provided with a first valve 21 for opening or closing the first conveying pipe 15. The second conveying pipe 16 is provided with a second valve 22 for opening or closing the second conveying pipe 16. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver further includes a cleaning pipe 23, the output end of the cleaning pipe 23 is connected to another interface of the N-way joint 14, and the input end of the cleaning pipe 23 can be connected to a cleaning liquid supply source or a dry air supply source. The cleaning pipe 23 is provided with a third valve 24 for opening or closing the cleaning pipe 23.

[0045] During the process of mixing sodium alginate and hyaluronic acid, the first valve 21 and the second valve 22 need to be both in the open state, and the third valve 24 is in the closed state. The first peristaltic pump 4 and the second peristaltic pump 5 operate simultaneously. The sodium alginate liquid dressing enters the first mixing pipe 9 from the first soft bag 1 through the first conveying pipe 15 and the N-way joint 14, and the hyaluronic acid enters the first mixing pipe 9 from the second soft bag 2 through the second conveying pipe 16 and the N-way joint 14. The sodium alginate liquid dressing and the hyaluronic acid enter the first mixing pipe 9 synchronously and are mixed to obtain a mixture, which enters the second mixing pipe 11 through the first hose 10. After being mixed again by the action of the ultrasonic generator 20 in the second mixing pipe 11, a skin gloss improver is obtained. Subsequently, the skin gloss improver is discharged after passing through the second hose 12 and the end pipe 13 in sequence.

[0046] After obtaining a sufficient amount of the skin gloss improver, the mixer 3 can be cleaned. Specifically, the first valve 21 and the second valve 22 are adjusted to the closed state, and the third valve 24 is adjusted to the open state. Then, a cleaning liquid supply source is connected to the input end of the cleaning pipe 23. The cleaning liquid supply source can supply deionized water, and the deionized water flows through the first mixing pipe 9, the first hose 10, the second mixing pipe 11, the second hose 12, and the end pipe 13 in sequence, so as to clean the mixer 3. Subsequently, a dry air supply source is connected to the input end of the cleaning pipe 23, and the dry air supplied by the dry air supply source flows through the first mixing pipe 9, the first hose 10, the second mixing pipe 11, the second hose 12, and the end pipe 13 in sequence to remove the cleaning liquid remaining in the mixer 3.

[0047] The first valve 21, the second valve 22, and the third valve 24 are preferably solenoid valves.

[0048] In this embodiment, the bottle cap 7 forms an installation space for arranging the mixer 3, the first peristaltic pump 4, the second peristaltic pump 5, the ultrasonic generator 20, and the cleaning pipe 23. The output end of the end pipe 13 extends outside the bottle cap 7, and the input end of the cleaning pipe 23 extends outside the bottle cap 7. The bottle cap 7 is detachably installed at the bottle mouth of the bottle body 6.

[0049] The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver may further include a power supply (not shown in the figure). The power supply is arranged in the installation space of the bottle cap 7 and is used to provide electrical energy to the electrical components of the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver. For example, it provides electrical energy to the first peristaltic pump 4, the second peristaltic pump 5, the ultrasonic generator 20, etc. The power supply is preferably a rechargeable battery, such as a lithium-ion battery or a lithium iron phosphate battery.

[0050] The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver may further include a control switch 25 and a control circuit (not shown in the figure). The control circuit is electrically connected to the control switch 25, the first peristaltic pump 4, the second peristaltic pump 5, and the ultrasonic generator 20. The control circuit is used to control the operation of the first peristaltic pump 4, the second peristaltic pump 5, and the ultrasonic generator 20 according to the information transmitted by the control switch 25. When the first valve 21, the second valve 22, and the third valve 24 are solenoid valves, the control circuit may also be electrically connected to the first valve 21, the second valve 22, and the third valve 24. The control circuit may also control the first valve 21, the second valve 22, and the third valve 24 to perform actions according to the information transmitted by the control switch 25. The control circuit is arranged in the installation space of the bottle cap 7, and the control switch 25 is arranged on the surface of the bottle cap 7. Pressing the control switch 25 can transmit corresponding information to the control circuit, such as the ratio information of the sodium alginate liquid dressing and hyaluronic acid, the start mixing information, the stop mixing information, the start cleaning information, the stop cleaning information, and so on.

[0051] The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improver in this embodiment can realize the real-time mixing of sodium alginate and hyaluronic acid to obtain a skin gloss improver, without the need to pre-determine the usage amounts of the sodium alginate liquid dressing and hyaluronic acid, reducing the waste of the sodium alginate liquid dressing and hyaluronic acid.

Claims

1. A device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent, characterized in that: The invention comprises a first soft bag, a second soft bag, a mixer, a first peristaltic pump, and a second peristaltic pump; the first soft bag is used to contain sodium alginate liquid dressing; the second soft bag is used to contain hyaluronic acid; the mixer comprises a first mixing pipe, a first hose, a second mixing pipe, a second hose, and a terminal pipe connected in sequence; an input end of the first mixing pipe is connected with an N-way connector, the first soft bag is connected to one interface of the N-way connector through a first delivery pipe, and the second soft bag is connected to another interface of the N-way connector through a second delivery pipe; the first peristaltic pump is connected to the first delivery pipe, and is used to cause the sodium alginate liquid dressing contained in the first soft bag to enter the first mixing pipe through the first delivery pipe; the second peristaltic pump is connected to the second .... The invention is used to promote the hyaluronic acid contained in the second soft bag to enter the first mixing pipe through the second delivery pipe; the first mixing pipe is a straight pipe, and a plurality of spoilers arranged in an alternating manner along the length direction of the pipe are fixed on its inner wall; each spoiler includes a baffle fixed vertically to the inner wall of the first mixing pipe, and a guide portion formed by bending and extending the edge of the baffle that is not in contact with the first mixing pipe toward the input end of the first mixing pipe; the two orthographic projections of the virtual plane where the cross section of the first mixing pipe is located overlap with each other, and the area occupied by the two orthographic projections is equal to the inner circle area of ​​the first mixing pipe; the mixer also includes an ultrasonic generator, which is arranged on the outer wall of the second mixing pipe, and is used to promote further mixing of the mixture flowing through the second mixing pipe.

2. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent according to claim 1, characterized in that: The spoilers are arranged alternately upward and downward along the length direction of the first mixing pipe.

3. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent according to claim 1, characterized in that: The spoilers are arranged alternately left and right along the length direction of the first mixing pipe.

4. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent according to claim 2 or 3, characterized in that: The first delivery pipeline is provided with a first valve for opening or closing the first delivery pipeline; the second delivery pipeline is provided with a second valve for opening or closing the second delivery pipeline; the device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent also includes a cleaning pipeline, the output end of the cleaning pipeline is connected to another interface of the N-way connector, and the input end of the cleaning pipeline can be connected to a cleaning liquid supply source or a dry air supply source; the cleaning pipeline is provided with a third valve for opening or closing the cleaning pipeline.

5. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent according to claim 4, characterized in that: It also includes a bottle body and a bottle cap; the bottle body is formed with two independent accommodating chambers for accommodating the first soft bag and the second soft bag respectively, the bottle cap is formed with an installation space for arranging a mixer, a first peristaltic pump, a second peristaltic pump, an ultrasonic generator, and a cleaning pipeline, the output end of the terminal pipeline extends to the outside of the bottle cap, and the input end of the cleaning pipeline extends to the outside of the bottle cap; the bottle cap is detachably installed at the bottle mouth of the bottle body.

6. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent according to claim 5, characterized in that: Also included is a power source, which is arranged in the installation space of the bottle cap.

7. The device for mixing sodium alginate and hyaluronic acid to obtain a skin gloss improving agent according to claim 6, characterized in that: It also includes a control switch and a control circuit, wherein the control circuit is electrically connected to the control switch, the first peristaltic pump, the second peristaltic pump, and the ultrasonic generator, and the control circuit is used to control the operation of the first peristaltic pump, the second peristaltic pump, and the ultrasonic generator according to information transmitted by the control switch; the control circuit is arranged in the installation space of the bottle cap, and the control switch is arranged on the surface of the bottle cap.