Micro-current facial mask

By designing a magnetically-attached micro-current facial patch, the existing micro-current beauty patch has been solved, and the problem of complex structure and unsuitable for multi-region beauty is achieved, achieving a simple structure, flexible matching and cost-reducing beauty effect.

CN222900006UActive Publication Date: 2025-05-27LEFUMEI TECH (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202421477477.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-05-27
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

The existing micro-current beauty stickers have complex structure and large size, which is not conducive to good facial adhesion and are only suitable for eye beauty, which cannot meet the beauty needs of forehead and cheeks, increasing the cost of use.

Method used

A micro-current face patch including a micro-current emitter, a conductive eye patch, a conductive forehead patch and a conductive face patch are designed to facilitate installation and disassembly using the magnetic suction matching relationship, without the need for additional facial cover support.

Benefits of technology

It realizes a micro-current beauty device with a simple structure, lightweight and reliable attachment to the face, and can be flexibly matched for the beauty of the eyes, forehead and cheeks, reducing the application cost of users and meeting market demand.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222900006U_ABST
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Abstract

The utility model discloses a micro-current facial mask, which comprises at least one micro-current emitter, at least one conductive eye mask, a conductive forehead mask and at least one conductive face mask, a micro-current conduction part is arranged on the back side of the micro-current emitter, at least one first magnet is embedded in the back side of the micro-current emitter, and the conductive forehead mask is arranged on the back side of the micro-current emitter. The conductive eye patch, the conductive forehead patch and the conductive face patch are each provided with at least one second magnet in an embedded mode, the first magnet is used for being matched with the second magnet in a magnetic attraction mode, and the micro-current conduction part is used for making electrical contact with the conductive eye patch, the conductive forehead patch or the conductive face patch. The utility model has the characteristics of simple structure, convenience in disassembly and assembly, flexible matching and the like.
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Description

Technical Field

[0001] The utility model relates to a micro-current beauty device, in particular to a micro-current facial patch. Background Art

[0002] A micro-current beauty patch is a beauty appliance used to fit on the human face and radiate micro-current to the face. Its structure usually uses conductive silica gel to attach to the face, and a micro-current module is used to emit micro-current to the conductive silica gel, and the micro-current is conducted to the face through the conductive silica gel, thereby realizing micro-current beauty. For relevant technical literature, please refer to the Chinese utility model patent publication document with the publication number CN217286900 and the name "Micro-current eye patch", which records: "A micro-current eye patch includes an eye mask body 1, a viewing hole 2, an upper gel patch 3, a lower gel patch 4, and a button 5. The micro-current module and the battery module are integrated in the eye mask body 1. The micro-current output terminals of the micro-current module are respectively connected to the upper gel patch 3 and the lower gel patch 4 together. The micro-current module is a common module for eye patch products and is used to generate weak current". Among them, although this eye patch realizes the function of emitting micro-current to the gel patch by using the micro-current module, the gel patch and the micro-current module need to rely on the eye mask body for support and fixation. The overall structure is complex and the size is large, which is not conducive to good attachment to the face. Moreover, limited by the shape and structure of the eye mask body, this eye patch is only suitable for performing micro-current beauty on the eye skin. When the user needs to perform beauty on the forehead and cheeks, they need to purchase corresponding-shaped products separately, resulting in an increase in usage costs and unable to meet the needs of users and the market. Summary of the Utility Model

[0003] The technical problem to be solved by the utility model is to provide a micro-current facial patch with a simple structure, convenient disassembly and assembly, and flexible matching, aiming at the deficiencies of the prior art.

[0004] To solve the above technical problems, the utility model adopts the following technical solutions.

[0005] A micro-current facial patch includes at least one micro-current emitter, at least one conductive eye patch, a conductive forehead patch, and at least one conductive face patch. A micro-current conduction part is provided on the back side of the micro-current emitter, and at least one first magnet is embedded on the back side of the micro-current emitter. At least one second magnet is embedded on each of the conductive eye patch, the conductive forehead patch, and the conductive face patch. The first magnet is used for magnetic attraction cooperation with the second magnet, and the micro-current conduction part is used for electrical contact with the conductive eye patch, the conductive forehead patch, or the conductive face patch.

[0006] Preferably, the conductive eye patch, the conductive forehead patch, and the conductive face patch are all conductive silica gel patches.

[0007] Preferably, the micro-current emitter includes a housing, a micro-current emission main board disposed in the housing, and a battery for supplying power to the micro-current emission main board. The micro-current conduction part is electrically connected to the micro-current emission main board.

[0008] Preferably, contact limit blocks are provided on the conductive eye patch, the conductive forehead patch, and the conductive face patch. A buckle groove is formed on the housing of the micro-current emitter, and the buckle groove is buckled on the contact limit block. The micro-current conduction part is located in the buckle groove.

[0009] Preferably, one side edge of the buckle groove is provided with a buckle groove opening, and the other side edge of the buckle groove forms a limit convex edge. The contact limit block slides into the buckle groove from the buckle groove opening, and the limit convex edge is used for abutting and cooperating with the contact limit block.

[0010] Preferably, two second magnets are embedded in the conductive eye patch, the conductive forehead patch, and the conductive face patch, and the second magnets correspond to the first magnets one by one.

[0011] Preferably, both the first magnet and the second magnet are circular magnets.

[0012] In the micro-current facial patch disclosed by the present utility model, the conductive eye patch, the conductive forehead patch, and the conductive face patch are all gel patches or silica gel patches that can be attached to the face and conduct electricity. The conductive eye patch, the conductive forehead patch, and the conductive face patch in corresponding shapes are respectively supported according to the eye area, the forehead area, and the cheek area. Taking the conductive eye patch as an example, during use, the back side of the micro-current emitter can be aligned with the conductive eye patch, so that the first magnet and the second magnet are magnetically attracted to each other, and the micro-current emitter can be assembled on the conductive eye patch. At the same time, the micro-current conduction part on the back side of the micro-current emitter is in contact with the conductive eye patch. When the micro-current emitter works, micro-current is conducted to the conductive eye patch through the micro-current conduction part. Based on the above structure, it can be seen that the present utility model is convenient for installing the micro-current emitter on the conductive eye patch, the conductive forehead patch, or the conductive face patch based on the magnetic attraction and cooperation relationship between the first magnet and the second magnet, without additionally setting support components such as a facial mask body. The assembled product is lighter and can be reliably attached to the face. Moreover, the fixing method based on magnetic attraction and cooperation is easier to disassemble and assemble. In addition, the micro-current emitter in the present utility model can be matched with any one of the conductive eye patch, the conductive forehead patch, and the conductive face patch. When the user needs to perform micro-current beauty on the eyes, the forehead, and the cheeks, only the corresponding conductive patch needs to be taken out and assembled and matched with the micro-current emitter, without purchasing multiple types of independent products, significantly reducing the application cost of the user and better meeting the market demand. Description of the Drawings

[0013] Figure 1 The structure diagram after the conductive eye patch and the micro-current emitter are assembled;

[0014] Figure 2 The disassembly of the conductive eye patch and the micro-current emitter Figure 1 ;

[0015] Figure 3 The disassembly of the conductive eye patch and the micro-current emitter Figure 2 ;

[0016] Figure 4 The three-dimensional view of the micro-current emitter;

[0017] Figure 5 The structure diagram after the conductive forehead patch and the micro-current emitter are assembled;

[0018] Figure 6 The structure diagram after the conductive face patch and the micro-current emitter are assembled. Specific embodiments

[0019] The present invention will be described in more detail below with reference to the accompanying drawings and embodiments.

[0020] The present invention discloses a micro-current facial patch, in combination with Figures 1 to 4 As shown, it includes at least one micro-current emitter 1, at least one conductive eye patch 2, a conductive forehead patch 3 and at least one conductive face patch 4. A micro-current conduction part 10 is provided on the back side of the micro-current emitter 1. At least one first magnet 11 is embedded in the back side of the micro-current emitter 1. At least one second magnet 12 is embedded in each of the conductive eye patch 2, the conductive forehead patch 3 and the conductive face patch 4. The first magnet 11 is used for magnetic attraction cooperation with the second magnet 12, and the micro-current conduction part 10 is used for electrical contact with the conductive eye patch 2, the conductive forehead patch 3 or the conductive face patch 4.

[0021] In the above structure, the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4 are all gel patches or silicone patches that can be attached to the face and conduct electricity. According to the eye area, the forehead area, and the cheek area, the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4 that support corresponding shapes are respectively provided. Taking the conductive eye patch 2 as an example, when in use, the back side of the micro-current emitter 1 can be aligned with the conductive eye patch 2, so that the first magnet 11 and the second magnet 12 are magnetically attracted to each other, and the micro-current emitter 1 can be assembled on the conductive eye patch 2. At the same time, the micro-current conduction part 10 on the back side of the micro-current emitter 1 is in contact with the conductive eye patch 2. When the micro-current emitter 1 works, it conducts micro-current to the conductive eye patch 2 through the micro-current conduction part 10. Based on the above structure, it can be seen that the present utility model is convenient for installing the micro-current emitter 1 on the conductive eye patch 2, the conductive forehead patch 3, or the conductive face patch 4 based on the magnetic attraction cooperation relationship between the first magnet 11 and the second magnet 12. There is no need to additionally provide support members such as a facial mask body. The assembled product is lighter and can be reliably attached to the face. Moreover, the fixing method based on magnetic attraction cooperation is easier to disassemble and assemble. In addition, the micro-current emitter 1 in the present utility model can be matched with any one of the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4. When the user needs to perform micro-current beauty care on the eyes, the forehead, and the cheeks, only the corresponding conductive patch needs to be taken out and assembled and matched with the micro-current emitter 1, without the need to purchase multiple types of independent products, significantly reducing the application cost of the user and better meeting the market demand.

[0022] As a preferred method, the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4 are all conductive silicone patches. Among them, the surface viscosity of the conductive silicone patch is used to attach to the human skin. Based on the above magnetic attraction cooperation relationship, when dust is adsorbed on the surface of the conductive silicone patch or the viscosity decreases due to dirt, the conductive silicone patch can be directly disassembled and cleaned, and can be reused after drying. Of course, if the conductive silicone patch itself has insufficient viscosity or is damaged, the conductive silicone patch can be directly discarded, and a corresponding conductive silicone patch can be purchased separately, with a low usage cost.

[0023] In this embodiment, the micro-current emitter 1 includes a housing, a micro-current emission main board disposed in the housing, and a battery for supplying power to the micro-current emission main board. The micro-current conduction part 10 is electrically connected to the micro-current emission main board. Among them, the micro-current emission main board has a micro-current generation circuit. The specific circuit principle is the prior art and will not be elaborated in this embodiment.

[0024] As a preferred embodiment, contact limit blocks 13 are provided on the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4. A buckle groove 14 is formed on the housing of the microcurrent emitter 1, and the buckle groove 14 is buckled on the contact limit block 13, and the microcurrent conduction part 10 is located in the buckle groove 14. Among them, based on the buckling and matching relationship between the buckle groove 14 and the contact limit block 13, the matching reliability between the microcurrent emitter 1 and the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4 can be improved.

[0025] On this basis, a buckle groove opening 140 is provided on one side edge of the buckle groove 14, and a limit convex edge 141 is formed on the other side edge of the buckle groove 14. The contact limit block 13 slides into the buckle groove 14 from the buckle groove opening 140, and the limit convex edge 141 is used for abutting and matching with the contact limit block 13. Among them, there is a mutual limiting effect between the limit convex edge 141 and the contact limit block 13. Based on the above structure, the microcurrent emitter 1 can be conveniently installed, and at the same time, it can be ensured that the microcurrent emitter 1 is installed in place.

[0026] As a preferred embodiment, please refer to Figure 2 , two concave holes 13 are provided on the microcurrent conduction part 10, and one of the first magnets 11 is provided in each concave hole 13. Further, two second magnets 12 are embedded in the conductive eye patch 2, the conductive forehead patch 3, and the conductive face patch 4, and the second magnets 12 correspond to the first magnets 11 one by one.

[0027] In the above structure, under the magnetic attraction cooperation of the two first magnets 11 and the two second magnets 12, the microcurrent emitter 1 is reliably attracted and combined on the silicone patch. In practical applications, the magnetic poles of the two first magnets 11 are the same or different. When the magnetic poles of the two first magnets 11 are different, the magnetic poles of the two second magnets 12 also correspond to be different. In this solution, the magnetic attraction directions of the two first magnets 11 and the two second magnets 12 are unique, which helps to further design in terms of weight balance and other aspects.

[0028] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, or improvements made within the technical scope of the present invention shall be included within the scope protected by the present invention.

Claims

1. A micro-current facial patch, characterized in that: The invention comprises at least one microcurrent transmitter (1), at least one conductive eye patch (2), a conductive forehead patch (3) and at least one conductive face patch (4); a microcurrent conducting part (10) is arranged on the back side of the microcurrent transmitter (1); at least one first magnet (11) is embedded on the back side of the microcurrent transmitter (1); at least one second magnet (12) is embedded on each of the conductive eye patch (2), the conductive forehead patch (3) and the conductive face patch (4); the first magnet (11) is used for magnetically matching with the second magnet (12); and the microcurrent conducting part (10) is used for electrically contacting with the conductive eye patch (2), the conductive forehead patch (3) or the conductive face patch (4).

2. The microcurrent facial patch according to claim 1, characterized in that: The conductive eye patch (2), the conductive forehead patch (3) and the conductive face patch (4) are all conductive silicone patches.

3. The microcurrent facial patch according to claim 1, characterized in that: The microcurrent transmitter (1) comprises a housing, a microcurrent transmitter mainboard arranged in the housing, and a battery for supplying power to the microcurrent transmitter mainboard. The microcurrent conducting part (10) is electrically connected to the microcurrent transmitter mainboard.

4. The microcurrent facial patch as claimed in claim 3, characterized in that: The conductive eye patch (2), the conductive forehead patch (3) and the conductive face patch (4) are all provided with a contact limit block (13); a buckle groove (14) is formed on the shell of the microcurrent transmitter (1); the buckle groove (14) is buckled on the contact limit block (13); and the microcurrent conducting part (10) is located in the buckle groove (14).

5. The microcurrent facial patch according to claim 4, characterized in that: A buckle slot opening (140) is provided on one side edge of the buckle slot (14), and a limiting convex edge (141) is formed on the other side edge of the buckle slot (14); the contact limiting block (13) slides into the buckle slot (14) from the buckle slot opening (140), and the limiting convex edge (141) is used for abutting and cooperating with the contact limiting block (13).

6. The microcurrent facial patch according to claim 1, characterized in that: The conductive eye patch (2), the conductive forehead patch (3) and the conductive face patch (4) are each embedded with two second magnets (12), and the second magnets (12) correspond one to one to the first magnets (11).

7. The microcurrent facial patch according to claim 1, characterized in that: The first magnet (11) and the second magnet (12) are both circular magnets.

Citation Information

Patent Citations

  • Micro-current eye protection patch

    CN217286900U