Ultrasonic-assisted ceramide self-emulsifying micro-emulsion promoting device

By designing an ultrasonic-assisted ceramide self-emulsification microemulsion promotion device, the structural design of the water inlet, water outlet and wave plate is used to accelerate the emulsification process of liquids in large-capacity vessels, solve the problem of long emulsification time, and achieve uniform mixing.

CN223209358UActive Publication Date: 2025-08-12上海仲昇生物科技有限公司
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Patent Information

Application Number
CN202422056717.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-08-12
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

When emulsifying ceramide in large-capacity vessels, the emulsification effect is slower, especially the liquid emulsification away from ultrasonic rods is poor, resulting in an extended emulsification time.

Method used

An ultrasonic-assisted ceramide self-emulsification microemulsion promotion device is designed, including an emulsified shell, an ultrasonic rod, a partition shell, a volatile plate and a deflector. Through the design of the inlet and outlet and the rotation of the volatile plate, liquid interaction and mixing is promoted, and emulsification is accelerated by combining the propagation method of ultrasonic waves.

Benefits of technology

The emulsification process is accelerated, the liquid mixing efficiency is improved, the emulsification time is shortened, and the uniform emulsification effect of the liquid in large-capacity vessels is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ultrasonic-assisted ceramide self-emulsifying micro-emulsion promotion device, which relates to the field of ceramide emulsification, and comprises an emulsifying shell and an ultrasonic rod arranged in the emulsifying shell, the inner side of the emulsifying shell is movably provided with a separation shell for separating liquid, the outer side of the separation shell is fixedly provided with a plurality of fluctuation plates, and the fluctuation plates are arranged on the outer side of the separation shell. A plurality of water inlets and water outlets are formed in the separation shell, the opening directions of the water inlets face leftwards, the opening directions of the water outlets face rightwards, and two outer flow guide plates are fixedly arranged on the outer side of the separation shell. Meanwhile, the liquid in the inner periphery enters the liquid in the outer periphery from the water outlet, so that interaction of the liquid in the outer periphery and the liquid in the inner periphery is facilitated, the liquid fast in emulsification can be discharged from the separation shell all the time, and the liquid slow in emulsification can enter the separation shell all the time.
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Description

Technical Field

[0001] The utility model relates to the field of ceramide emulsification, in particular to an ultrasound-assisted ceramide self-emulsification microemulsion promoting device. Background Art

[0002] Ceramide is a natural skin lipid that forms a waterproof barrier on the skin surface, which not only helps the skin lock in moisture but also promotes the skin's self-repair function. In addition, it has a strong ability to associate water molecules. It maintains the skin's moisture through the network structure formed in the stratum corneum. Therefore, applying an emulsifier containing ceramide to dry and flaky skin can improve the roughness of the skin, restore the skin's elasticity and retain moisture significantly. Ceramide is generally emulsified with the help of ultrasound to evenly mix two or more immiscible liquids to form an emulsion.

[0003] During the ceramide emulsification process, an ultrasonic rod is generally inserted into the liquid for emulsification. However, when emulsifying liquid in a large-capacity container, the emulsification effect is slow, and the emulsification of the liquid far away from the ultrasonic rod is poor, resulting in a significant extension of the emulsification time.

[0004] Therefore, it is necessary to propose an ultrasound-assisted ceramide self-emulsification microemulsion promotion device to solve the above problems. Utility Model Content

[0005] The purpose of the utility model is to provide an ultrasonic-assisted ceramide self-emulsification microemulsion promoting device to solve the problem of high ultrasonic emulsification limitation.

[0006] To achieve the above objectives, the present invention provides the following technical solutions: an ultrasound-assisted ceramide self-emulsification microemulsion promotion device, comprising an emulsification shell and an ultrasonic rod disposed within the emulsification shell, a partition shell for separating liquids being movably disposed within the emulsification shell, and a plurality of fluctuating plates being fixedly disposed on the outside of the partition shell;

[0007] The partition shell is provided with a plurality of water inlets and water outlets, wherein the water inlets are opened to the left and the water outlets are opened to the right;

[0008] Two outer guide plates are fixedly provided on the outer side of the partition shell, and two inner guide plates are fixedly provided on the inner side of the partition shell. Both the outer guide plates and the inner guide plates are arranged in an inclined manner.

[0009] Preferably, an upper cover is installed on the upper end of the emulsifying shell, a reduction motor is fixed on the upper end of the upper cover, an "8"-shaped shell is fixed on the lower end of the upper cover, a driving gear and a driven gear ring are rotatably provided inside the "8"-shaped shell, the driving gear and the driven gear ring are meshed with each other, and the driven gear ring is fixedly provided on the outside of the partition shell;

[0010] The output end of the reduction motor is fixedly connected to the driving gear.

[0011] Preferably, the water inlets and water outlets are each provided with two rows, the water inlets and water outlets are arranged in a linear array, and the water inlets and corresponding water outlets are arranged adjacent to each other.

[0012] Preferably, the outer guide plate is provided on the water inlet, and the inclination direction of the outer guide plate is the same as that of the water inlet;

[0013] The inner guide plate is arranged on the water outlet, and the inclination direction of the inner guide plate is the same as that of the water outlet.

[0014] Preferably, the fluctuating plate is arranged in an arc shape, and a plurality of the fluctuating plates are arranged in a ring array.

[0015] Preferably, the fluctuating plate is provided with a plurality of upper inclined slots and lower inclined slots, and the plurality of upper inclined slots and lower inclined slots are arranged in a linear array, the upper inclined slot openings are arranged to be tilted upward, and the lower inclined slot openings are arranged to be tilted downward.

[0016] The technical effects and advantages of this utility model are:

[0017] 1. Through the opening direction of the water inlet and the water outlet, the peripheral liquid enters the inner liquid from the water inlet, and at the same time, the inner liquid enters the peripheral liquid from the water outlet, which facilitates the interaction between the peripheral and inner liquids, so that the liquid with fast emulsification can be discharged from the partition shell at any time, and the liquid with slow emulsification can enter the partition shell at any time;

[0018] 2. When the fluctuating plate rotates, the upper and lower chutes are arranged so that the liquid passing through the upper chute moves toward the horizontal plane, and the liquid passing through the lower chute moves toward the bottom of the emulsification shell, which facilitates the interactive mixing of liquids in different areas of the emulsification shell. The fluctuating plate stirs and moves the liquid to maximize the mixing of the peripheral liquid and promote liquid emulsification.

[0019] 3. Through the setting of the partition shell, when the liquid is ultrasonically emulsified, the ultrasonic wave that contacts the inner wall of the partition shell is rebounded again due to the propagation of the ultrasonic wave in the liquid, thereby accelerating the emulsification of the liquid at the water inlet and outlet. When the outer liquid and the inner liquid interact, the liquid that emulsifies faster is discharged from the partition shell. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the structure of the ultrasonic-assisted ceramide self-emulsification microemulsion promotion device of the utility model.

[0021] Figure 2 This is a schematic diagram of the internal structure of the emulsified shell of the utility model.

[0022] Figure 3 This is a schematic diagram of the "8"-shaped shell explosion structure of the utility model.

[0023] Figure 4 This is a schematic diagram of the water inlet and outlet structure of the utility model.

[0024] Figure 5 This is a schematic diagram of the specific structure of the wave plate of the utility model.

[0025] In the figure: 1. Emulsifying shell; 2. Ultrasonic rod; 3. Upper cover; 4. Partition shell; 5. Water inlet; 6. Water outlet; 7. Outer guide plate; 8. Inner guide plate; 9. Fluctuation plate; 10. Reducer motor; 11. "8"-shaped shell; 12. Driving gear; 13. Driven gear ring; 14. Upper chute; 15. Lower chute. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] The utility model provides Figure 1 - Figure 5 The ultrasonic-assisted ceramide self-emulsification microemulsion promoting device shown in the figure includes an emulsifying shell 1 and an ultrasonic rod 2 arranged in the emulsifying shell 1. The ultrasonic rod 2 outputs the ultrasonic rod 2 through the ultrasonic device, so that the ultrasonic rod 2 ultrasonically emulsifies the liquid in the emulsifying shell 1 to increase the emulsification speed of ceramide. The ultrasonic rod 2 and the ultrasonic device are both existing technologies and will not be described in detail here. The upper end of the emulsifying shell 1 is equipped with an upper cover 3, and the upper cover 3 is provided with an observation window, such as Figure 1 As shown, it is mainly used to observe the emulsification situation in the emulsification shell 1. A reduction motor 10 is fixed on the upper end of the upper cover 3. The reduction motor 10 is a servo reduction motor, which is a prior art and will not be described in detail here.

[0028] The operator adds the ceramide raw material into the emulsifying shell 1, and opens the reduction motor 10. The lower end of the upper cover 3 is fixed with an "8"-shaped shell 11. The inner side of the "8"-shaped shell 11 is provided with a driving gear 12 and a driven gear ring 13. The output end of the reduction motor 10 is fixedly connected to the driving gear 12. The driving gear 12 and the driven gear ring 13 are meshed with each other. The reduction motor 10 drives the driving gear 12 to rotate clockwise. The rotation direction is as follows: Figure 4As shown, the driving gear 12 drives the driven gear ring 13 to rotate through gear meshing. A separation shell 4 for separating liquids is movably provided inside the emulsifying shell 1. The driven gear ring 13 is fixedly provided on the outside of the separation shell 4. The driven gear ring 13 drives the separation shell 4 to rotate.

[0029] A plurality of fluctuating plates 9 are fixedly provided on the outside of the partition shell 4. The partition shell 4 drives the fluctuating plates 9 to rotate to stir the liquid. The fluctuating plates 9 are arranged in an arc shape to facilitate the movement of the liquid. The plurality of fluctuating plates 9 are arranged in a ring array. The fluctuating plates 9 are provided with a plurality of upper chute 14 and lower chute 15. The plurality of upper chute 14 and lower chute 15 are arranged in a linear array. The opening of the upper chute 14 is tilted upward, and the opening of the lower chute 15 is tilted downward. Through the arrangement of the partition shell 4, the liquid in the emulsifying shell 1 is divided into two situations, namely, the outer liquid and the inner liquid. The ultrasonic rod 2 is in the inner liquid to emulsify the liquid through ultrasonic waves.

[0030] When the fluctuating plate 9 rotates, the upper chute 14 and the lower chute 15 are arranged so that the liquid passing through the upper chute 14 moves toward the horizontal plane, and the liquid passing through the lower chute 15 moves toward the bottom end of the emulsifying shell 1, thereby facilitating the interactive mixing of liquids in different areas of the emulsifying shell 1. The fluctuating plate 9 stirs and moves the liquid, thereby mixing the peripheral liquid to the greatest extent and promoting liquid emulsification.

[0031] The partition shell 4 is provided with a plurality of water inlets 5 and water outlets 6, with the water inlet 5 opening to the left and the water outlet 6 opening to the right. When the partition shell 4 rotates, the outer liquid enters the inner liquid from the water inlet 5 through the opening direction of the water inlet 5 and the water outlet 6, and at the same time, the inner liquid enters the outer liquid from the water outlet 6, which facilitates the interaction between the outer and inner liquids, so that the liquid that emulsifies quickly can be discharged from the partition shell 4 at any time, and the liquid that emulsifies slowly can enter the partition shell 4 at any time. Two outer guide plates 7 are fixedly provided on the outer side of the partition shell 4, and two inner guide plates 8 are fixedly provided on the inner side of the partition shell 4. The outer guide plates 7 and the inner guide plates 8 are both inclined to facilitate the interaction of the liquids.

[0032] Through the setting of the partition shell 4, when the liquid is ultrasonically emulsified, the ultrasonic wave that contacts the inner wall of the partition shell 4 rebounds again due to the propagation of the ultrasonic wave in the liquid, thereby accelerating the emulsification of the liquid at the water inlet 5 and the water outlet 6. When the liquid on the periphery and the liquid on the inner periphery interact, the liquid that emulsifies faster is discharged from the partition shell 4.

[0033] The water inlet 5 and the water outlet 6 are each provided with two rows, and the water inlet 5 and the water outlet 6 are arranged in a linear array. The water inlet 5 and the corresponding water outlet 6 are arranged adjacent to each other. The outer guide plate 7 is arranged on the water inlet 5, and the inclination direction of the outer guide plate 7 is the same as that of the water inlet 5. The inner guide plate 8 is arranged on the water outlet 6, and the inclination direction of the inner guide plate 8 is the same as that of the water outlet 6.

Claims

1. An ultrasound-assisted ceramide self-emulsifying microemulsion promoting device, comprising an emulsifying shell (1) and an ultrasound rod (2) disposed within the emulsifying shell (1), characterized in that: A separation shell (4) for separating liquids is movably provided on the inner side of the emulsification shell (1), and a plurality of fluctuating plates (9) are fixedly provided on the outer side of the separation shell (4); The partition shell (4) is provided with a plurality of water inlets (5) and water outlets (6), wherein the water inlets (5) are opened to the left, and the water outlets (6) are opened to the right; Two outer guide plates (7) are fixedly provided on the outside of the partition shell (4), and two inner guide plates (8) are fixedly provided on the inside of the partition shell (4), and both the outer guide plates (7) and the inner guide plates (8) are arranged in an inclined manner.

2. The ultrasonic-assisted ceramide self-emulsification microemulsion promoting device according to claim 1, characterized in that: The upper end of the emulsifying shell (1) is provided with an upper cover (3), the upper end of the upper cover (3) is fixedly provided with a reduction motor (10), the lower end of the upper cover (3) is fixedly provided with an "8"-shaped shell (11), the inner side of the "8"-shaped shell (11) is provided with a driving gear (12) and a driven gear ring (13) for rotation, the driving gear (12) and the driven gear ring (13) are meshed with each other, and the driven gear ring (13) is fixedly provided on the outer side of the partition shell (4); The output end of the reduction motor (10) is fixedly connected to the driving gear (12).

3. The ultrasound-assisted ceramide self-emulsification microemulsion promoting device according to claim 1, characterized in that: The water inlets (5) and the water outlets (6) are each provided in two rows, the water inlets (5) and the water outlets (6) are arranged in a linear array, and the water inlets (5) and the corresponding water outlets (6) are arranged adjacent to each other.

4. The ultrasound-assisted ceramide self-emulsification microemulsion promoting device according to claim 1, characterized in that: The outer guide plate (7) is arranged on the water inlet (5), and the inclination direction of the outer guide plate (7) is the same as that of the water inlet (5); The inner guide plate (8) is arranged on the water outlet (6), and the inclination direction of the inner guide plate (8) is the same as that of the water outlet (6).

5. The ultrasound-assisted ceramide self-emulsification microemulsion promoting device according to claim 1, characterized in that: The fluctuating plate (9) is arranged in an arc shape, and a plurality of the fluctuating plates (9) are arranged in a ring array.

6. The ultrasound-assisted ceramide self-emulsification microemulsion promoting device according to claim 1, characterized in that: The fluctuating plate (9) is provided with a plurality of upper inclined grooves (14) and lower inclined grooves (15), and the plurality of upper inclined grooves (14) and lower inclined grooves (15) are arranged in a linear array, the openings of the upper inclined grooves (14) are arranged to be inclined upward, and the openings of the lower inclined grooves (15) are arranged to be inclined downward.