Neck beautifying instrument
By improving the electrical connection of the probe's upper shell and the electroplated parts of the middle frame, and by using a constant-temperature heating plate, the problems of easy detachment of the electrode pads and unstable temperature of the neck massager have been solved, thus improving the durability and therapeutic effect of the device and meeting the comfort requirements of long-term use.
Patent Information
- Application Number
- CN202423136533.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing neck rejuvenation devices have inconvenient electrode pad assembly at the probe position, which is prone to falling off, and the lack of temperature control means leads to unstable results.
The probe's upper shell and middle frame are both electroplated and electrically connected to the main board of the physiotherapy component. The human body acts as a conductor, allowing the upper shell and middle frame of the probe to be connected as electrodes. Combined with a constant temperature heating plate and a vibration motor, microcurrent EMS conduction and constant temperature heating physiotherapy are achieved.
This has improved the durability of the electrode pads, stabilized the temperature of the probe, enriched the physiotherapy functions, and met the comfort requirements for long-term use.
Smart Images

Figure CN223861170U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beauty instruments, specifically to a neck beautifying instrument. Background Technology
[0002] As living standards improve, more and more women are paying attention to beauty and skincare, and their requirements for skin care are getting higher and higher. In particular, middle-aged women experience a loss of collagen, which causes their skin to sag and nasolabial folds and neck wrinkles to appear. Therefore, they use some beauty devices to promote the recovery of their skin condition, and neck beauty devices are one such device.
[0003] Existing neck rejuvenation devices typically use embedded or attached electrode pads at the probe position to achieve microcurrent EMS conduction. This results in several issues during the design phase: 1) it is inconvenient to assemble the electrode pads at the probe position; 2) during use, since the electrode pads are assembled at the probe position by installation, there is a high risk of the electrode pads falling off and being damaged after a period of use.
[0004] 2. Due to the lack of necessary temperature control measures at the probe location, the temperature at the probe location changes with the skin temperature during use, making it difficult to stabilize the probe temperature and reducing the effectiveness of use. Utility Model Content
[0005] The purpose of this utility model is to provide a neck beauty device to solve the above problems. The upper shell and middle frame of the probe are both electroplated parts. At the same time, the upper shell and middle frame of the probe are electrically connected to the main board of the physiotherapy component. Then, in the process of holding the handle structure composed of the face shell, middle frame and back shell, by using the human body as a conductor to connect the upper shell and middle frame as two electrodes, the upper shell of the probe can conduct and release microcurrent EMS, as detailed below.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] The present invention provides a neck beauty device, comprising an upper probe shell, a lower probe shell, a face shell, a middle frame, and a back shell. The upper probe shell and the lower probe shell are fastened together to form a probe shell structure at the probe position. The face shell, the middle frame, and the back shell are fastened together to form a handle structure. The lower part of the probe shell structure and the top of the handle structure are connected together by a plug-in connection.
[0008] Both the probe upper shell and the middle frame are electroplated shells, which are used to make the probe upper shell and the middle frame serve as two electrodes for conducting and releasing microcurrent EMS.
[0009] The inner combination of the probe shell structure and the handle structure is provided with a physiotherapy component for cosmetic physiotherapy of the user's neck.
[0010] As a preference, the joint position periphery between the lower part of the probe shell structure and the top part of the handle structure is further coaxially covered with a decoration piece.
[0011] As a preference, the handle structure is an ergonomic straight handle style.
[0012] As a preference, the physiotherapy component includes a light-transmitting piece, a lamp panel, a vibration motor, a constant-temperature heating plate and a main board, the surface middle part of the probe upper shell is open and fixedly embedded with the light-transmitting piece, the inner part of the probe shell structure is provided with the lamp panel at a position behind the light-transmitting piece, for light therapy physiotherapy of the user's neck through the lamp panel emitting light and the light-transmitting piece, the inner part of the probe shell structure is fixedly installed with the vibration motor through a motor support at a position behind the lamp panel, for massage physiotherapy of the user's neck through the vibration motor excitation, the inner part of the probe shell structure is provided with the constant-temperature heating plate at a position around the lamp panel, and the constant-temperature heating plate is attached to the inner surface of the probe upper shell, for heat therapy physiotherapy of the user's neck through the constant-temperature heating of the constant-temperature heating plate, the inner part of the handle structure is combinedly installed with the main board, and the lamp panel, the vibration motor and the constant-temperature heating plate are all electrically connected with the main board, while the probe upper shell and the middle frame are both electrically connected with the main board.
[0013] As a preference, the rear position of the main board is combinedly installed with a power supply, and the power supply is electrically connected with the main board.
[0014] As a preference, the inner bottom part of the handle structure is combinedly provided with a charging interface for cyclic charging of the power supply, and the charging interface is electrically connected with the power supply.
[0015] As a preference, the inner part of the handle structure is further integratedly installed with a counterweight above the charging interface.
[0016] As a preference, the middle part of the face shell is integratedly embedded with a key for regulating the working mode, and the key is electrically connected with the main board.
[0017] As a preference, the face shell is a light-transmitting shell, the front part of the main board is integratedly installed with a lamp shade, and the front face of the lamp shade is attached with a state character sticker for indicating the working mode.
[0018] As a preference, the lamp panel is an LED lamp panel capable of emitting at least seven colors of light, and the constant-temperature heating plate is a 40℃ constant-temperature electric heating plate.
[0019] In practical use of the aforementioned neck beautifying device, since both the probe upper shell and the middle frame are electroplated parts, and both are electrically connected to the main board of the therapy component, when holding the handle structure composed of the face shell, the middle frame, and the back shell, the probe upper shell can be connected as two electrodes by using the human body as a conductor. This allows for the conduction and release of a microcurrent EMS on the probe upper shell, replacing the method of embedding or attaching electrode plates to the probe upper shell. This simplifies design and manufacturing and improves durability. Specifically, regarding the therapy component, since it is equipped with a light panel capable of emitting at least seven colors of light, the user can easily switch the light colors during phototherapy. This design enhances the flexibility and effectiveness of the physiotherapy component. The physiotherapy component features a constant-temperature heating plate installed at the top of the probe's upper shell. This constant-temperature heating plate, maintaining a 40°C temperature, provides constant-temperature heating therapy to the user's neck, ensuring stable temperature control and further improving the overall effectiveness of the physiotherapy component. Furthermore, the physiotherapy component is equipped with a vibration motor, which provides neck massage therapy through vibration, enriching its functionality. The handle structure, composed of the front shell, middle frame, and back shell, features an ergonomic straight handle, allowing for comfortable use even during extended periods without hand fatigue.
[0020] The beneficial effects are as follows: 1. The probe upper shell and middle frame of this utility model are both electroplated parts. At the same time, the probe upper shell and middle frame are electrically connected to the main board of the physiotherapy component. Then, in the process of holding the handle structure composed of the face shell, middle frame and back shell, by using the human body as a conductor to connect the probe upper shell and middle frame as two electrodes, the probe upper shell can conduct and release micro current EMS, which replaces the setting method of embedding or attaching electrode plates to the probe upper shell, which is convenient for design and manufacturing and improves durability.
[0021] 2. The physiotherapy component is equipped with a light panel that can emit at least seven colors of light, allowing users to easily switch light colors during phototherapy, thus improving the flexibility and effectiveness of the physiotherapy component. Additionally, a constant-temperature heating plate is installed at the top of the probe housing, providing constant-temperature heating therapy to the user's neck at a constant temperature of 40℃. This ensures stable temperature control of the probe, further enhancing the effectiveness of the physiotherapy component. Furthermore, the physiotherapy component is equipped with a vibration motor, which provides massage therapy to the user's neck through vibration, enriching the functionality of the physiotherapy component.
[0022] 3. The handle structure, consisting of the front shell, middle frame, and back shell, is an ergonomic straight handle, which meets the user's need for long-term use without hand fatigue. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is an overall schematic diagram of the present invention;
[0025] Figure 2 This is a utility model Figure 1 An explosion diagram;
[0026] Figure 3 This is a utility model Figure 1 A frontal view diagram;
[0027] Figure 4 This is a utility model Figure 1 A diagram showing the rear view.
[0028] The annotations in the attached figures are explained as follows:
[0029] 1. Probe housing structure; 101. Upper probe housing; 102. Lower probe housing; 2. Decorative parts; 3. Handle structure; 301. Face shell; 302. Middle frame; 303. Back shell; 4. Physiotherapy components; 401. Buttons; 402. Light-transmitting parts; 403. Constant temperature heating plate; 404. Motor bracket; 405. Vibration motor; 406. Lamp panel; 407. Status character sticker; 408. Lampshade; 409. Main board; 4010. Power supply; 4011. Counterweight; 4012. Charging interface. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be described in detail below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0031] See Figures 1-4As shown, this utility model provides a neck beautifying device, including an upper probe shell 101, a lower probe shell 102, a face shell 301, a middle frame 302, and a back shell 303. The upper probe shell 101 and the lower probe shell 102 are fastened together to form the probe housing structure 1 at the probe position. The face shell 301, the middle frame 302, and the back shell 303 are fastened together to form the handle structure 3. The lower part of the probe housing structure 1 and the top of the handle structure 3 are connected together by a plug-in connection. Both the upper probe shell 101 and the middle frame 302 are... The electroplated shell is used to allow the upper shell 101 and the middle frame 302 of the probe to act as two electrodes for the conduction and release of micro-current EMS. The purpose of this setting is that, when holding the handle structure 3 composed of the front shell 301, the middle frame 302 and the back shell 303, the upper shell 101 of the probe can be connected as two electrodes by using the human body as a conductor, which replaces the setting method of embedding or attaching electrode plates to the upper shell 101 of the probe.
[0032] See Figures 1-2 As shown, the probe housing structure 1 and the handle structure 3 are internally combined to provide a physiotherapy component 4 for providing aesthetic physiotherapy to the user's neck. Specifically, the physiotherapy component 4 includes a light-transmitting element 402, a lamp plate 406, a vibration motor 405, a constant-temperature heating plate 403, and a main board 409. The light-transmitting element 402 is embedded and fixed in the opening at the center of the probe upper housing 101. The lamp plate 406 is installed behind the light-transmitting element 402 inside the probe housing structure. The vibration motor 405 is fixedly installed behind the lamp plate 406 inside the probe housing structure via a motor bracket 404. The constant-temperature heating plate is installed around the outer periphery of the lamp plate 406 inside the probe housing structure. 403, and the constant temperature heating plate 403 is attached to the inner surface of the probe upper shell 101. The handle structure 3 is internally assembled with a main board 409, and the lamp board 406, vibration motor 405 and constant temperature heating plate 403 are all electrically connected to the main board 409. At the same time, the probe upper shell 101 and the middle frame 302 are also electrically connected to the main board 409. The purpose of this arrangement is that, firstly, the lamp board 406 emits light and emits it through the light-transmitting element 402 to perform phototherapy on the user's neck. At the same time, the vibration motor 405 excites the user's neck to perform massage therapy. Moreover, the constant temperature heating plate 403 heats the user's neck to perform heat therapy.
[0033] See Figures 1-2As shown, the probe housing structure 1, handle structure 3, and physiotherapy component 4 have been optimized as follows. Specifically, for the probe housing structure 1 and handle structure 3, a decorative piece 2 is coaxially covered around the insertion position between the lower part of the probe housing structure 1 and the top of the handle structure 3. The handle structure 3 is an ergonomic straight handle, so that the insertion position of the probe housing structure 1 and handle structure 3 after insertion can have a good aesthetic effect with the help of the decorative piece 2, and at the same time, it can meet the user's need for long-term use without hand fatigue. As for the physiotherapy component 4, a power supply 4010 is installed at the rear of the main board 409 and is electrically connected to the main board 409. A charging interface 4012 for cyclically charging the power supply 4010 is provided at the inner bottom of the handle structure 3 and is electrically connected to the power supply 4010, so that the power supply 4010 can provide stable power to the physiotherapy component 4, and can also be charged by the power supply 4010 through the charging interface 4012.
[0034] Optionally, a counterweight 4011 is also integrated inside the handle structure 3 above the charging port 4012 to enhance the weight of the entire device when held, making it easier to control and use. A button 401 for adjusting the working mode is integrated in the middle of the face shell 301, and the button 401 is electrically connected to the main board 409. The face shell 301 is a light-transmitting shell, and a lampshade 408 is integrated in the front of the main board 409. A status character sticker 407 for indicating the working mode is affixed to the front of the lampshade 408. This setting makes it easy to adjust and control the working mode using the button 401, and also makes it easy for the user to clearly observe the working mode through the status character sticker 407. Alternatively, the light panel 406 can be an LED light panel capable of emitting at least seven colors of light, and the constant temperature heating plate 403 is an electric heating plate with a constant temperature of 40℃. This configuration firstly allows users to easily switch the light colors during phototherapy, improving the flexibility and effectiveness of the physiotherapy component 4. At the same time, the constant temperature heating plate 403 can provide constant temperature heating therapy to the user's neck, achieving stable control of the probe temperature, which is conducive to further improving the effectiveness of the physiotherapy component 4.
[0035] With the above structure, in practical use, since both the probe upper shell 101 and the middle frame 302 are electroplated parts, and both are electrically connected to the main board 409 of the physiotherapy component 4, when holding the handle structure 3 composed of the face shell 301, middle frame 302, and back shell 303, the probe upper shell 101 can be connected as two electrodes by using the human body as a conductor. This allows for the conduction and release of microcurrent EMS in the probe upper shell 101, replacing the method of embedding or attaching electrode plates to the probe upper shell 101. This simplifies design and manufacturing and improves durability. As for the physiotherapy component 4, since it is equipped with a lamp plate 406 that can emit at least seven colors of light, it allows the user to easily switch the light color during phototherapy. The addition of color enhances the flexibility and effectiveness of the physiotherapy component 4. A constant-temperature heating plate 403 is installed at the top of the probe housing 101, providing constant-temperature heating therapy to the user's neck at a constant temperature of 40℃. This ensures stable temperature control of the probe, further improving the effectiveness of the physiotherapy component 4. Furthermore, the physiotherapy component 4 is equipped with a vibration motor 405, which provides neck massage therapy through vibration, enriching its functionality. The handle structure 3, composed of the face shell 301, middle frame 302, and back shell 303, features an ergonomic straight handle, allowing for comfortable use even during extended periods without hand fatigue.
[0036] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A neck beautifying device, comprising an upper probe shell (101), a lower probe shell (102), a face shell (301), a middle frame (302), and a back shell (303), characterized in that: The upper probe shell (101) and the lower probe shell (102) are fastened together to form the probe housing structure (1) at the probe position. The front shell (301), the middle frame (302) and the back shell (303) are fastened together to form the handle structure (3). The lower part of the probe housing structure (1) and the top of the handle structure (3) are connected together by plugging. The probe upper shell (101) and the middle frame (302) are both electroplated shells, which are used to make the probe upper shell (101) and the middle frame (302) serve as two electrodes for conducting and releasing microcurrent EMS. The probe housing structure (1) and the handle structure (3) are internally combined to provide a physiotherapy component (4) for performing cosmetic physiotherapy on the user's neck.
2. The neck beautifying device according to claim 1, characterized in that: A decorative piece (2) is also coaxially provided around the insertion position between the lower part of the probe housing structure (1) and the top of the handle structure (3).
3. The neck beautifying device according to claim 1, characterized in that: The handle structure (3) is an ergonomic straight handle.
4. A neck beautifying device according to claim 1, 2 or 3, characterized in that: The physiotherapy component (4) includes a light-transmitting element (402), a lamp plate (406), a vibration motor (405), a constant-temperature heating plate (403), and a main board (409). The light-transmitting element (402) is fixedly embedded in the opening in the middle of the surface of the probe upper shell (101). The lamp plate (406) is installed inside the probe outer shell structure (1) behind the light-transmitting element (402) to provide phototherapy to the user's neck by emitting light through the lamp plate (406) and emitting it through the light-transmitting element (402). The vibration motor (405) is fixedly installed inside the probe outer shell structure behind the lamp plate (406) by a motor bracket (404) to provide phototherapy to the user's neck by emitting light through the lamp plate (406) and emitting it through the light-transmitting element (402). 05) The user's neck is massaged and treated by vibration. The constant temperature heating plate (403) is installed on the outer periphery of the lamp plate (406) inside the probe shell structure. The constant temperature heating plate (403) is attached to the inner surface of the probe upper shell (101) to perform heat therapy on the user's neck by constant temperature heating through the constant temperature heating plate (403). The main board (409) is installed inside the handle structure (3). The lamp plate (406), the vibration motor (405) and the constant temperature heating plate (403) are all electrically connected to the main board (409). At the same time, the probe upper shell (101) and the middle frame (302) are all electrically connected to the main board (409).
5. The neck beautifying device according to claim 4, characterized in that: A power supply (4010) is mounted on the rear of the motherboard (409), and the power supply (4010) is electrically connected to the motherboard (409).
6. The neck beautifying device according to claim 5, characterized in that: The inner bottom of the handle structure (3) is provided with a charging interface (4012) for cyclically charging the power supply (4010), and the charging interface (4012) is electrically connected to the power supply (4010).
7. The neck beautifying device according to claim 6, characterized in that: The handle structure (3) also integrates a counterweight (4011) above the charging interface (4012).
8. The neck beautifying device according to claim 4, characterized in that: The faceplate (301) has a button (401) integrated in the middle for adjusting the working mode, and the button (401) is electrically connected to the motherboard (409).
9. The neck beautifying device according to claim 8, characterized in that: The faceplate (301) is a light-transmitting shell, and a lampshade (408) is integrated on the front of the motherboard (409). A status character sticker (407) for indicating the working mode is attached to the front of the lampshade (408).
10. A neck-beautifying device according to any one of claims 5-9, characterized in that: The lamp panel (406) is an LED lamp panel capable of emitting at least seven colors of light, and the constant temperature heating plate (403) is an electric heating plate with a constant temperature of 40°C.