Graded mixing device for plant extract and lipidosome

By designing a graded mixing device, utilizing a combination of sieve discs and stirring blades along with a synchronous belt drive system, the problem of uneven mixing of plant extracts and liposomes was solved, achieving uniform mixing, simplified device maintenance, and extended service life.

CN224126655UActive Publication Date: 2026-04-17YANGZHOU XIE FUCHUN CLASSICAL COSMETICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANGZHOU XIE FUCHUN CLASSICAL COSMETICS CO LTD
Filing Date
2025-05-13
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing plant extract and liposome mixing devices lack a grading function, resulting in uneven mixing, and their complex structure makes them inconvenient to maintain.

Method used

A graded mixing device was designed, comprising a combination of sieve discs and stirring blades. Graded mixing is achieved through multiple layers of sieve discs, and power is efficiently transmitted using a synchronous belt drive system to avoid motor overload.

Benefits of technology

This technology enables uniform mixing of plant extracts and liposomes, simplifies the device structure, extends its service life, and improves mixing efficiency.

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Abstract

The utility model relates to the technical field of mixing devices, in particular to a graded mixing device for plant extracts and lipidosome, which is characterized in that the plant extracts and the lipidosome are put into a mixing cylinder, a motor is started to drive a synchronizing wheel II to rotate, the synchronizing wheel II drives a synchronizing wheel I to rotate through a synchronizing belt, and the mixing cylinder is driven to rotate. The synchronizing wheel I drives the mandrel to rotate, and a fixing ring I, a fixing ring II and a fixing ring III which are fixed on the mandrel rotate along with the rotation of the mandrel, so as to drive a stirring blade I, a stirring blade II and a stirring blade III to rotate. Materials are preliminarily stirred and mixed above the first sieve tray under the action of the first stirring blade, then the materials fall onto the second sieve tray through sieve holes of the first sieve tray and are further mixed under stirring of the second stirring blade, finally, the materials reach the bottom of the mixing barrel through sieve holes of the second sieve tray and are finely mixed under the action of the third stirring blade, and after mixing is completed, the materials are uniformly mixed. And the valve on the discharge pipe is opened, and the mixed material is discharged from the discharge pipe.
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Description

Technical Field

[0001] This utility model relates to the field of mixing device technology, and in particular to a graded mixing device for plant extracts and liposomes. Background Technology

[0002] In the fields of pharmaceuticals and cosmetics, it is often necessary to mix plant extracts with liposomes. Plant extracts contain a variety of bioactive components, while liposomes have good biocompatibility and targeting properties. Mixing the two can produce products with better efficacy, such as cosmetics with beauty and skin care effects, and drugs with therapeutic effects.

[0003] Existing plant extract and liposome mixing devices lack a grading function, resulting in uneven mixing of plant extracts and liposomes and localized concentration inconsistencies. Furthermore, the existing plant extract and liposome mixing devices have a complex structure that is inconvenient for daily maintenance.

[0004] To this end, we propose a graded mixing device for plant extracts and liposomes. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a graded mixing device for plant extracts and liposomes.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A graded mixing device for plant extracts and liposomes includes a base plate, four support rods fixedly installed at the bottom end of the base plate, four reinforcing rods fixedly installed at one end of the four support rods close to each other, a fixed cylinder fixedly installed on the upper surface of the base plate, two interfaces fixedly installed on both sides of the fixed cylinder, the two interfaces being arranged at different heights, a mixing cylinder fixedly installed inside the fixed cylinder, a sandwich structure between the mixing cylinder and the fixed cylinder, a graded mixing component installed inside the fixed cylinder, a discharge pipe fixedly installed at the bottom end of the fixed cylinder, a valve installed on the top surface of the discharge pipe, and a feed inlet on the top surface of the fixed cylinder.

[0008] As a further embodiment of this utility model: the graded mixing component includes a fixed disk, the fixed disk is fixedly installed on the top surface of the fixed cylinder, a first synchronous wheel is rotatably connected to the top surface of the fixed disk, a synchronous belt is frictionally connected to the outside of the first synchronous wheel, and a second synchronous wheel is frictionally connected to the end of the synchronous belt away from the first synchronous wheel.

[0009] As a further embodiment of this utility model: a connecting plate is fixedly installed on the side of the fixed plate away from the feed inlet, the connecting plate is rotatably connected to the second synchronous wheel, a motor is fixedly installed on the bottom surface of the connecting plate, and the output end of the motor is fixedly connected to the second synchronous wheel.

[0010] As a further embodiment of this utility model: a spindle is rotatably connected inside the mixing cylinder, the spindle penetrates the fixed plate and is fixedly connected to a synchronous wheel, and a screen plate is fixedly installed inside the mixing cylinder.

[0011] As a further embodiment of this utility model: a fixing ring is fixedly installed on the outside of the core shaft on the top surface of the sieve plate, and two stirring blades are fixedly installed on both sides of the fixing ring.

[0012] As a further embodiment of this utility model: a second sieve is fixedly installed at the bottom of the first sieve, a second fixing ring is fixedly installed on the outside of the top core shaft of the second sieve, and two stirring blades are fixedly installed on both sides of the second fixing ring.

[0013] As a further embodiment of this utility model: a fixing ring three is fixedly installed on the outside of the bottom core shaft of the sieve plate two, and two stirring blades three are fixedly installed on both sides of the fixing ring three.

[0014] Compared with the prior art, the present invention provides a graded mixing device for plant extracts and liposomes, which has the following beneficial effects:

[0015] 1. This utility model, through the installation of a graded mixing assembly, divides the interior of the mixing cylinder into different levels by setting up sieve disc one and sieve disc two. When plant extracts and liposomes enter the mixing cylinder from the feed inlet, they undergo graded mixing between the sieve discs of different levels. Above sieve disc one, the combination of fixing ring one and stirring blade one provides initial stirring of the material, resulting in initial dispersion and mixing. The material then passes through the sieve holes of sieve disc one into the next level, where fixing ring two and stirring blade two on sieve disc two further stir the material, enhancing the mixing effect. Finally, below sieve disc two, fixing ring three and stirring blade three provide final fine stirring of the material.

[0016] 2. In this invention, when the motor starts, synchronous pulley two begins to rotate, driving synchronous pulley one to rotate via a synchronous belt. Synchronous pulley one is fixedly connected to the spindle, which in turn passes through multiple levels of stirring components, allowing stirring blade one, stirring blade two, and stirring blade three to rotate simultaneously. This design enables efficient power transmission to each stirring component, reducing energy loss. Simultaneously, the synchronous belt drive also provides overload protection; when excessive resistance is encountered during stirring, the synchronous belt may slip, preventing motor damage due to overload and extending the device's lifespan.

[0017] The parts of this device not covered herein are the same as or can be implemented using existing technologies. This utility model has a simple structure and is easy to operate. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of a graded mixing device for plant extracts and liposomes proposed in this utility model;

[0019] Figure 2 This is a side cross-sectional view of a graded mixing device for plant extracts and liposomes proposed in this utility model.

[0020] Figure 3 This is a three-dimensional structural diagram of the graded mixing component of a graded mixing device for plant extracts and liposomes proposed in this utility model.

[0021] Figure 4 This is a three-dimensional structural diagram of a graded mixing device for plant extracts and liposomes proposed in this utility model.

[0022] In the diagram: 1. Base plate; 2. Support rod; 3. Reinforcing rod; 4. Fixing cylinder; 5. Interface; 6. Mixing cylinder; 7. Graded mixing component; 8. Discharge pipe; 9. Valve; 10. Feed inlet; 11. Fixing disc; 12. Synchronous pulley one; 13. Synchronous belt; 14. Synchronous pulley two; 15. Connecting plate; 16. Motor; 17. Mandrel; 18. Screen disc one; 19. Fixing ring one; 20. Stirring blade one; 21. Screen disc two; 22. Fixing ring two; 23. Stirring blade two; 24. Fixing ring three; 25. Stirring blade three. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0024] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0025] Example: A graded mixing device for plant extracts and liposomes, such as Figures 1-4As shown, the device includes a base plate 1, four support rods 2 are fixedly installed at the bottom end of the base plate 1, and four reinforcing rods 3 are fixedly installed at one end of the four support rods 2 close to each other. A fixing cylinder 4 is fixedly installed on the upper surface of the base plate 1. Two interfaces 5 are fixedly installed on both sides of the fixing cylinder 4, and the two interfaces 5 are set at different heights. A mixing cylinder 6 is fixedly installed inside the fixing cylinder 4. A sandwich is formed between the mixing cylinder 6 and the fixing cylinder 4. A graded mixing component 7 is installed inside the fixing cylinder 4. A discharge pipe 8 is fixedly installed at the bottom end of the fixing cylinder 4. A valve 9 is installed on the top surface of the discharge pipe 8. A feed inlet 10 is formed on the top surface of the fixing cylinder 4.

[0026] like Figures 1-4As shown, the graded mixing component 7 includes a fixed disk 11. The fixed disk 11 is fixedly installed on the top surface of the fixed cylinder 4. A synchronous pulley 12 is rotatably connected to the top surface of the fixed disk 11. A synchronous belt 13 is frictionally connected to the outside of the synchronous pulley 12. A synchronous pulley 14 is frictionally connected to the end of the synchronous belt 13 away from the synchronous pulley 12. A connecting plate 15 is fixedly installed on the side of the fixed disk 11 away from the feed inlet 10. The connecting plate 15 is rotatably connected to the synchronous pulley 14. A motor 16 is fixedly installed on the bottom surface of the connecting plate 15. The output end of the motor 16 is fixedly connected to the synchronous pulley 14. A mandrel 17 is rotatably connected inside the mixing cylinder 6. The mandrel 17 penetrates the fixed disc 11 and is fixedly connected to the synchronous pulley 12. A sieve disc 18 is fixedly installed inside the mixing cylinder 6. A fixing ring 19 is fixedly installed on the outside of the mandrel 17 on the top surface of the sieve disc 18. Two stirring blades 20 are fixedly installed on both sides of the fixing ring 19. A sieve disc 21 is fixedly installed at the bottom end of the sieve disc 18. A fixing ring 22 is fixedly installed on the outside of the mandrel 17 on the top surface of the sieve disc 21. Two stirring blades 23 are fixedly installed on both sides of the fixing ring 22. A fixing ring 24 is fixedly installed on the outside of the bottom mandrel 17 of the second 21. Two stirring blades 25 are fixedly installed on both sides of the fixing ring 24. First, connect the device to the factory power supply and connect the steam boiler pipe to the two interfaces, one for air inlet and one for air outlet. Hot steam enters the jacket to preheat the mixing cylinder and melt the liposomes. Open the feed port 10 and put the plant extract and liposome materials into the mixing cylinder 6. At this time, start the motor 16. The motor 16 drives the synchronous pulley 14 to rotate. The synchronous pulley 14 drives the synchronous pulley 12 to rotate through the synchronous belt 13. The synchronous pulley 12 then drives the synchronous pulley 12 to rotate. As the spindle 17 rotates, the fixing rings 19, 22, and 24 fixed on it also rotate, which in turn drives the stirring blades 20, 23, and 25 to rotate. Under the action of the stirring blades 20, the material is initially stirred and mixed above the screen plate 18. Then, the material falls through the screen holes of the screen plate 18 onto the screen plate 21, where it is further mixed under the stirring of the stirring blades 23. Finally, the material passes through the screen holes of the screen plate 21 to the bottom of the mixing cylinder 6, where it is finely mixed under the action of the stirring blades 25.

[0027] Working principle: When using this device to mix plant extracts and liposomes, first connect the device to the factory power supply, and connect the steam boiler pipe to two ports, one for inlet and one for outlet. Hot steam enters the jacket to preheat the mixing cylinder and melt the liposomes. Open the feed port 10 and put the plant extracts and liposomes into the mixing cylinder 6. At this time, start the motor 16. The motor 16 drives the synchronous pulley 14 to rotate. The synchronous pulley 14 drives the synchronous pulley 12 to rotate through the synchronous belt 13. The synchronous pulley 12 then drives the spindle 17 to rotate. As the spindle 17 rotates, the components fixed on the spindle 17... Fixed ring 19, fixed ring 22, and fixed ring 34 also rotate, which in turn drives stirring blade 1 20, stirring blade 23, and stirring blade 3 25 to rotate. Under the action of stirring blade 1 20, the material is initially stirred and mixed above screen plate 18. Then, the material falls through the screen holes of screen plate 18 onto screen plate 21, where it is further mixed under the stirring of stirring blade 23. Finally, the material passes through the screen holes of screen plate 21 to the bottom of mixing cylinder 6, where it is finely mixed under the action of stirring blade 3 25. After the mixing is completed, valve 9 on discharge pipe 8 is opened, and the mixed material is discharged from discharge pipe 8.

[0028] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A graded mixing device for plant extracts and liposomes, comprising a base plate (1), characterized in that: Four support rods (2) are fixedly installed at the bottom end of the base plate (1). Four reinforcing rods (3) are fixedly installed at one end of the four support rods (2) close to each other. A fixed cylinder (4) is fixedly installed on the upper surface of the base plate (1). Two interfaces (5) are fixedly installed on both sides of the fixed cylinder (4). The two interfaces (5) are set at different heights. A mixing cylinder (6) is fixedly installed inside the fixed cylinder (4). A sandwich is opened between the mixing cylinder (6) and the fixed cylinder (4). A graded mixing component (7) is installed inside the fixed cylinder (4). A discharge pipe (8) is fixedly installed at the bottom end of the fixed cylinder (4). A valve (9) is installed on the top surface of the discharge pipe (8). A feed inlet (10) is opened on the top surface of the fixed cylinder (4).

2. A device for fractionating a mixture of a plant extract and liposomes according to claim 1, characterized in that: The graded mixing component (7) includes a fixed disk (11), the fixed disk (11) is fixedly installed on the top surface of the fixed cylinder (4), the top surface of the fixed disk (11) is rotatably connected to a first synchronous wheel (12), the outside of the first synchronous wheel (12) is rubbed connected to a synchronous belt (13), and the end of the synchronous belt (13) away from the first synchronous wheel (12) is rubbed connected to a second synchronous wheel (14).

3. A plant extract and liposome fraction mixing device according to claim 2, wherein: A connecting plate (15) is fixedly installed on the side of the fixed plate (11) away from the feed inlet (10). The connecting plate (15) is rotatably connected to the second synchronous wheel (14). A motor (16) is fixedly installed on the bottom surface of the connecting plate (15). The output end of the motor (16) is fixedly connected to the second synchronous wheel (14).

4. A plant extract and liposome fraction mixing apparatus according to claim 3, wherein: The mixing cylinder (6) is rotatably connected to a spindle (17), which penetrates the fixed plate (11) and is fixedly connected to the synchronous wheel (12). The mixing cylinder (6) is fixedly installed with a screen plate (18).

5. A plant extract and liposome fraction mixing apparatus according to claim 4, wherein: A fixing ring (19) is fixedly installed on the outside of the top core shaft (17) of the sieve plate (18), and two stirring blades (20) are fixedly installed on both sides of the fixing ring (19).

6. The fractional mixing device for plant extracts and liposomes according to claim 5, characterized in that: The bottom end of the first sieve plate (18) is fixedly installed with the second sieve plate (21). The top surface of the second sieve plate (21) is fixedly installed with the second fixing ring (22) on the outside of the core shaft (17). Two stirring blades (23) are fixedly installed on both sides of the second fixing ring (22).

7. A plant extract and liposome fractionating mixing device according to claim 6, characterized in that: A fixing ring three (24) is fixedly installed on the outside of the bottom core shaft (17) of the sieve plate two (21), and two stirring blades three (25) are fixedly installed on both sides of the fixing ring three (24).