Vibrating structure of beauty instrument

By incorporating a cylindrical mounting base and vibration components within the cylindrical working section of the micro-lightening device, the lack of vibration functionality in micro-lightening devices has been resolved, improving the absorption efficiency of skincare products, enhancing the user experience, and extending the device's lifespan.

CN224037588UActive Publication Date: 2026-03-24ZHE JIANG FENG SHANG TECHONOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing light therapy devices lack vibration functionality, resulting in low absorption efficiency of skincare products and negatively impacting the user experience.

Method used

A cylindrical mounting base is installed inside the cylindrical working part of the micronizer. The base contains a circuit board and a vibration component. The vibration component drives the cylindrical mounting base and the cylindrical working part to vibrate. The circuit board is fixedly connected to the cylindrical mounting base to provide protection, and the vibration effect is generated by an eccentric cam.

Benefits of technology

It improves the absorption efficiency of skincare products, enhances the user experience, and extends the lifespan of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a vibration structure of a beauty instrument. The technical problem that an existing beauty instrument cannot accurately control a vibration structure is solved. The device is arranged in a columnar working part of the beauty instrument, the columnar working part is hollow, a cylindrical mounting base extending in the axial direction of the columnar working part is arranged in the columnar working part, and a circuit board and a mounting space extending in the axial direction of the cylindrical mounting base are arranged in the cylindrical mounting base. The vibration structure comprises at least one vibration assembly arranged in the installation space, and the vibration assembly is connected with the circuit board. The device has the advantages that the circuit board and the vibration assembly can be protected through the cylindrical mounting base, and the service life is prolonged. The vibration assembly is fixedly arranged on the circuit board, the circuit board is fixedly connected with the cylindrical mounting base, the vibration assembly can drive the cylindrical mounting base to vibrate, and the vibration effect is guaranteed. One or more vibration assemblies can be placed in the installation space, the vibration effect is improved, various use requirements of users are met, and the use experience of the users is improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of microneedling equipment, specifically relating to a vibration structure for a microneedling device. Background Technology

[0002] With social development and improved living standards, people are paying more and more attention to beauty and skincare, hoping to improve their skin condition and delay aging through various means. The demand for beauty products and equipment is constantly increasing. Simple skincare products can no longer fully meet people's needs, and people crave more efficient and convenient beauty care methods. However, most existing beauty light devices do not have vibration functions and do not have functions to improve the absorption efficiency of skincare products, resulting in low absorption efficiency of skincare products during use and affecting the user experience. Summary of the Invention

[0003] The purpose of this invention is to address the above-mentioned problems by providing a vibration structure for a melanin device.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: A vibration structure for a microneedling device is provided within a cylindrical working part of the microneedling device. The cylindrical working part is hollow and has a cylindrical mounting seat extending axially along the cylindrical working part. The cylindrical mounting seat contains a circuit board and an installation space extending axially along the cylindrical mounting seat. The vibration structure includes at least one vibration component disposed within the installation space. The vibration component is connected to the circuit board. The installation space facilitates the installation and placement of the vibration component. The vibration component drives the cylindrical mounting seat and the cylindrical working part to vibrate. The circuit board is fixedly disposed within the cylindrical mounting seat, and the cylindrical mounting seat provides protection for the circuit board.

[0005] In the vibration structure of the above-mentioned microneedling device, one end of the columnar working part is a closed end, and one end of the cylindrical mounting base is inserted and fixed to the inner side of the end of the columnar working part away from the closed end, and the other end of the cylindrical mounting base extends to the inner side of the closed end of the columnar working part. The closed end can seal the end of the cylindrical mounting base, ensuring the sealing and protection effect of the columnar working part on the cylindrical mounting base.

[0006] In the vibration structure of the aforementioned microneedling device, the circuit board is rectangular and extends from one end to one end of the cylindrical mounting base and from the other end to the other end of the cylindrical mounting base. The size of the motor board is smaller than the size of the cylindrical mounting base, which facilitates the fixed installation of the circuit board inside the cylindrical mounting base.

[0007] In the vibration structure of the aforementioned microneedling device, there are four circuit boards. The circuit boards are circumferentially enclosed to form a rectangular cylindrical body that extends to the inner sides of both ends of the cylindrical mounting base. The mounting space is formed within the rectangular cylindrical body. The rectangular cylindrical body facilitates the fixed installation of the vibration components within the mounting space, ensuring a secure installation effect.

[0008] In the vibration structure of the aforementioned microneedling device, there is one vibration component. The vibration component is located in the middle or at one end of the installation space, and is fixedly connected to any circuit board. The circuit board is fixedly connected to the cylindrical mounting base to ensure the installation stability of the vibration component. The circuit board can control the vibration component to ensure the vibration effect.

[0009] In the vibration structure of the above-mentioned microneedling device, there are two vibration components. The vibration components are mounted and fixed on the same circuit board or on different circuit boards. The vibration components are respectively located at both ends of the installation space; or, one of the two vibration components is located in the middle of the installation space and the other is located at any end of the installation space.

[0010] In the vibration structure of the aforementioned microneedling device, there are three vibration components. The vibration components are mounted and fixed on the same circuit board or on different circuit boards. At least one vibration component is provided in the middle or at any end of the installation space, which can increase the vibration range of the columnar working part and further improve the vibration effect of the vibration components.

[0011] In the vibration structure of the aforementioned microneedling device, the vibration component includes a vibration motor that is fixedly mounted on one side of the circuit board located inside the installation space and connected to the circuit board. The motor shaft of the vibration motor is provided with an eccentric cam. The circuit board controls the vibration motor to start, and the motor shaft drives the eccentric cam to rotate, thereby generating a vibration effect.

[0012] In the aforementioned vibration structure of a micronizer, the fixing method is any one or a combination of welding, adhesive bonding, and bolt fixing. By using multiple fixing methods, users can easily choose different fixing methods according to their needs, thereby improving the installation and fixing efficiency of the vibration components and ensuring the fixing effect.

[0013] In the vibration structure of the aforementioned microneedling device, the end of the columnar working part away from the closed end is provided with a handle, and the handle contains a power supply module and a control switch connected to the vibration component. The handle makes it easy for the user to hold, the power supply module can supply power to the vibration component, and the control switch allows the user to control the vibration component via a circuit board, facilitating the user's control operation of the vibration component.

[0014] Compared with existing technologies, the advantages of this utility model are:

[0015] 1. The cylindrical mounting base can protect the circuit board and vibration components, thus extending their service life.

[0016] 2. The vibration component is fixedly mounted on the circuit board, and the circuit board is fixedly connected to the cylindrical mounting base. The vibration component can drive the cylindrical mounting base to vibrate, ensuring the vibration effect.

[0017] 3. The installation space allows for the placement of single or multiple vibration components, improving vibration performance, meeting various user needs, and enhancing the user experience. Attached Figure Description

[0018] Figure 1 This is a structural schematic diagram of Embodiment 1 of the present invention.

[0019] Figure 2 This is a structural cross-sectional view of Embodiment 1 of this utility model.

[0020] Figure 3 This is a schematic diagram of the circuit board structure in Embodiment 1 of this utility model.

[0021] Figure 4 This is a structural schematic diagram of Embodiment 2 of this utility model.

[0022] Figure 5 This is a structural schematic diagram of Embodiment 3 of this utility model.

[0023] In the diagram: Microluminescence instrument 1, columnar working part 11, closed end 111, cylindrical mounting base 2, mounting space 21, circuit board 3, vibration assembly 4, vibration motor 41, motor shaft 42, eccentric cam 43, rectangular cylindrical body 5, handle part 6, power supply module 61, control switch 62. Detailed Implementation

[0024] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0025] Example 1

[0026] like Figure 1 , Figure 2 , Figure 3As shown, the vibration structure of this microneedling device is disposed within the cylindrical working part 11 of the microneedling device 1. The cylindrical working part 11 is hollow and has a cylindrical mounting base 2 extending axially along the cylindrical working part 11. The cylindrical mounting base 2 contains a circuit board 3 and an installation space 21 extending axially along the cylindrical mounting base 2. This vibration structure includes at least one vibration component 4 disposed within the installation space 21. The vibration component 4 is connected to the circuit board 3. The installation space 21 facilitates the installation and placement of the vibration component 4. The vibration component 4 can drive the cylindrical mounting base 2 and the cylindrical working part 11 to vibrate. The circuit board 3 is fixedly disposed within the cylindrical mounting base 2, and the cylindrical mounting base 2 can protect the circuit board 3.

[0027] Specifically, one end of the columnar working part 11 is a closed end 111, and one end of the cylindrical mounting base 2 is inserted and fixed inside the end of the columnar working part 11 away from the closed end 111, and the other end of the cylindrical mounting base 2 extends to the inside of the closed end 111 of the columnar working part 11. The closed end 111 can seal the end of the cylindrical mounting base 2, ensuring the sealing and protection effect of the columnar working part 11 on the cylindrical mounting base 2.

[0028] The circuit board 3 is rectangular and extends from one end to one end of the cylindrical mounting base 2 and from the other end to the other end of the cylindrical mounting base 2. The size of the motor board 3 is smaller than the size of the cylindrical mounting base 2, which facilitates the fixed installation of the circuit board 3 inside the cylindrical mounting base 2.

[0029] like Figure 1 , Figure 2 , Figure 3 As shown, there are four circuit boards 3. The circuit boards 3 surround each other to form a rectangular cylindrical body 5 that extends to the inner sides of both ends of the cylindrical mounting base 2. The mounting space 21 is formed inside the rectangular cylindrical body 5. The rectangular cylindrical body 5 facilitates the fixed installation of the vibration component 4 in the mounting space 21, ensuring the installation and fixing effect.

[0030] Furthermore, the number of vibration components 4 is one. Vibration component 4 is set in the middle or at any end of the installation space 21, and vibration component 4 is fixedly connected to any circuit board 3. The circuit board 3 is fixedly connected to the cylindrical mounting base 2 to ensure the installation stability of vibration component 4. The circuit board 3 can control vibration component 4 to ensure vibration effect.

[0031] The vibration component 4 includes a vibration motor 41 that is fixedly mounted on one side of the circuit board 3 located inside the installation space 21 and connected to the circuit board 3. An eccentric cam 43 is provided on the motor shaft 42 of the vibration motor 41. The circuit board 3 controls the vibration motor 41 to start, and the motor shaft 42 drives the eccentric cam 43 to rotate, so that the eccentric cam 43 produces a vibration effect.

[0032] Combination Figure 1 , Figure 2 , Figure 3 As shown, the fixing method can be any one or a combination of welding, adhesive and bolt fixing. The multiple fixing methods allow users to choose different fixing methods according to their needs, improving the installation and fixing efficiency of the vibration component 4 and ensuring the fixing effect.

[0033] The columnar working part 11 has a handle part 6 at the end away from the closed end 111. The handle part 6 has a power supply module 61 connected to the vibration component 4 and a control switch 62. The handle part 6 makes it easy for the user to hold, the power supply module 61 can supply power to the vibration component 4, and the control switch 62 makes it easy for the user to control the vibration component 4 through the circuit board 3, which facilitates the user's control operation of the vibration component 4.

[0034] The principle of this embodiment is that the vibration component 4 is fixedly installed in the installation space 21, and the vibration component 4 can be controlled to vibrate through the circuit board 3. The circuit board 3 is fixedly connected to the cylindrical mounting base 2, and the vibration component 4 can drive the circuit board 3 and the cylindrical mounting base 2 to vibrate, which can improve the massage effect of the columnar working part 11.

[0035] Example 2

[0036] This embodiment is basically the same as embodiment one in structure and working principle, except that, as follows: Figure 4 As shown, there are two vibration components 4. The vibration components 4 are mounted and fixed on the same circuit board 3 or on different circuit boards 3 respectively. The vibration components 4 are respectively set at both ends of the installation space 21; or, one of the two vibration components 4 is set in the middle of the installation space 21 and the other is set at any end of the installation space 21. By using vibration components 4 at different positions, the columnar working part 11 can produce different vibration effects, which can meet the needs of users and improve the user experience.

[0037] Example 3

[0038] This embodiment is basically the same as embodiment one in structure and working principle, except that, as follows: Figure 1 , Figure 5 As shown, there are three vibration components 4. The vibration components 4 are installed and fixed on the same circuit board 3 or on different circuit boards 3 respectively. At least one vibration component 4 is provided in the middle or at any end of the installation space 21. The vibration components 4 are respectively located in the middle and at both ends of the installation space 21, which can increase the vibration range of the columnar working part 11 and further improve the vibration effect of the vibration components 4.

[0039] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

[0040] Although this document frequently uses terms such as microluminescence device 1, columnar working part 11, closed end 111, cylindrical mounting base 2, mounting space 21, circuit board 3, vibration assembly 4, vibration motor 41, motor shaft 42, eccentric cam 43, rectangular cylindrical body 5, handle part 6, power supply module 61, and control switch 62, the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.

Claims

1. A vibration structure for a microneedling device, disposed within a columnar working part (11) of the microneedling device (1), wherein the columnar working part (11) is hollow and has a cylindrical mounting base (2) extending axially along the columnar working part (11) inside, wherein the cylindrical mounting base (2) has a circuit board (3) and a mounting space (21) extending axially along the cylindrical mounting base (2), characterized in that, The vibration structure includes at least one vibration component (4) disposed in the installation space (21). The vibration component (4) is connected to the circuit board (3). The vibration component (4) includes a vibration motor (41) disposed on the side of the circuit board (3) located inside the installation space (21) and connected to the circuit board (3) by a fixed manner. An eccentric cam (43) is provided on the motor shaft (42) of the vibration motor (41).

2. The vibration structure of a mesotherapy device according to claim 1, characterized in that, One end of the columnar working part (11) is a closed end (111), and one end of the cylindrical mounting base (2) is inserted and fixed inside the end of the columnar working part (11) away from the closed end (111), and the other end of the cylindrical mounting base (2) extends to the inside of the closed end (111) of the columnar working part (11).

3. The vibration structure of a mesotherapy device according to claim 1, characterized in that, The circuit board (3) is rectangular strip-shaped, with one end of the circuit board (3) extending to one end of the cylindrical mounting base (2) and the other end extending to the other end of the cylindrical mounting base (2).

4. The vibration structure of a mesotherapy device according to claim 3, characterized in that, The number of circuit boards (3) is four. The circuit boards (3) are circumferentially enclosed to form a rectangular cylindrical body (5) extending to the inner sides of both ends of the cylindrical mounting base (2), and the mounting space (21) is formed inside the rectangular cylindrical body (5).

5. The vibration structure of a mesotherapy device according to claim 1, characterized in that, The number of vibration components (4) is one. The vibration component (4) is located in the middle or at any end of the installation space (21), and the vibration component (4) is fixedly connected to any circuit board (3).

6. The vibration structure of a mesotherapy device according to claim 1, characterized in that, The number of vibration components (4) is two. The vibration components (4) are installed and fixed on the same circuit board (3) or on different circuit boards (3) respectively. The vibration components (4) are respectively set at both ends of the installation space (21); or, one of the two vibration components (4) is set in the middle of the installation space (21) and the other is set at any end of the installation space (21).

7. The vibration structure of a mesotherapy device according to claim 1, characterized in that, The number of vibration components (4) is three. The vibration components (4) are installed and fixed on the same circuit board (3) or on different circuit boards (3) respectively. At least one vibration component (4) is provided in the middle or at any end of the installation space (21).

8. The vibration structure of a mesotherapy device according to claim 1, characterized in that, The fixing method is any one or a combination of welding fixing, adhesive fixing and bolt fixing.

9. The vibration structure of a mesotherapy device according to claim 2, characterized in that, The columnar working part (11) is provided with a handle part (6) at one end away from the closed end (111), and the handle part (6) has a power supply module (61) connected to the vibration component (4) and a control switch (62).