Graphene far infrared permeation introduction instrument

By integrating massage function and transdermal drug delivery technology in graphene hair growth helmets, the synergistic effect of far-infrared radiation and massage devices is used to solve the problems of poor hair growth and difficulty in reversing gray hair in the prior art, and better hair growth effect and drug absorption rate are achieved.

CN223026527UActive Publication Date: 2025-06-27ZONNSMART SCIENCE & TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421486657.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-06-27
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

When using far-infrared rays to stimulate the scalp, existing graphene hair growth helmets lack effective massage functions and transdermal drug delivery technology, resulting in poor hair growth and difficulty in reversing gray hair.

Method used

Design a graphene far-infrared penetration guide, combining far-infrared radiation, scalp massage and transdermal drug delivery technology. The instrument uses graphene film to generate far-infrared light waves and is equipped with a massage device to achieve massage of the scalp and transdermal absorption of drugs through the design of the helmet.

Benefits of technology

Through the synergistic effect of far-infrared radiation and massage device, the hair growth effect is significantly enhanced, the transdermal absorption of the drug is improved, and it can reverse gray hair and restore natural blackness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a graphene far-infrared penetration introduction instrument, which comprises a graphene film used for generating far-infrared light waves, when the graphene far-infrared penetration introduction instrument is used, the graphene film covers the scalp of a user under the support of a support body, and a radiation space for the far-infrared light waves to radiate to the scalp of the user is formed between the graphene film and the scalp of the user; the massage device is in contact with the scalp of the user under the support of the support body and is used for massaging the scalp of the user. According to the utility model, massage and infrared radiation hair growth are combined, and a better hair growth effect can be obtained.
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Description

Technical Field

[0001] The utility model relates to the field of graphene far-infrared penetration and introduction instruments. Background Art

[0002] In the prior art, graphene can generate far-infrared rays after being powered on, and the radiation to the scalp can stimulate hair follicle tissues, thereby promoting hair regrowth. For example, the utility model patent publication number CN 209933850 U discloses a graphene hair growth helmet, the inner lining of which is provided with a graphene film, and the scalp hair follicles are stimulated through far-infrared radiation. However, the applicant has found in the research that combining scalp massage can significantly enhance the hair growth effect. At the same time, through the synergistic effect of far-infrared radiation and the massage device, the transdermal absorption rate of drugs can be effectively improved, thereby enhancing the therapeutic effect of drugs and promoting hair regrowth. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a graphene far-infrared penetration and introduction instrument that can combine far-infrared radiation, scalp massage and transdermal drug delivery technologies to obtain better hair growth effects and have the function of turning white hair into black hair.

[0004] The technical solution for the utility model to achieve its technical purpose is: a graphene far-infrared penetration and introduction instrument, including a graphene film for generating far-infrared light waves. When in use, the graphene film covers the user's scalp under the support of a support body, forming a radiation space for far-infrared light waves to radiate to the user's scalp between the graphene film and the user's scalp; it further includes a massage device, and the massage device contacts the user's scalp under the support of the support body to massage the user's scalp.

[0005] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: the support body is a helmet worn on the user's head, the helmet is formed by splicing a front shell and a rear shell, and is internally provided with an elastic substrate for fixing the graphene film and the massage device. The substrate includes a front substrate arranged in the front shell and a rear substrate arranged in the rear shell; a battery and a main control circuit board for controlling the graphene film and the massage device are arranged in the space surrounded by the front shell, the front substrate, the rear shell and the rear substrate; it further includes a lace for fixing the helmet to the user's head.

[0006] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: the massage device includes a group of multi-stage massage oscillators, each massage oscillator is encapsulated by an inner sleeve and an outer sleeve, and oscillator installation positions for installing the massage oscillator encapsulation body are arranged on the front substrate and the rear substrate. When in use, the massage oscillators are installed at the oscillator installation positions and contact the user's scalp.

[0007] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: It further includes a massage oscillator centralized controller, and the massage oscillator centralized controller receives the control of the main control circuit board and controls each massage oscillator.

[0008] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: The graphene film is installed in the graphene film installation area provided on the front substrate or the rear substrate, and the control end is connected to the main control circuit board.

[0009] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: The graphene film installation area provided on the front substrate or the rear substrate is a transparent window; the graphene film is pasted on the graphene film installation area by a transparent double-sided adhesive.

[0010] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: When the graphene film is installed in the graphene film installation area, it is also encapsulated. The encapsulation device for encapsulating the graphene film includes a film cover plate provided on the back of the graphene film and a front transparent member provided on the front of the graphene film. The front transparent member is pasted on the front of the graphene film by a transparent double-sided adhesive.

[0011] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: It further includes a temperature sensor for measuring the temperature of the hair growth instrument, and the temperature sensor is connected to the main control circuit board.

[0012] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: The temperature sensor is an NTC temperature probe pasted on the film cover plate by an acid adhesive tape.

[0013] Further, in the above-mentioned graphene far-infrared penetration and introduction instrument: The graphene film is a flexible film of pure carbon atoms, and a single layer of carbon atoms is grown by chemical vapor deposition.

[0014] The present utility model combines massage and infrared radiation for hair growth, and can obtain a better hair growth effect.

[0015] The present utility model relates to a graphene far-infrared penetration and introduction instrument, and more particularly to a hair growth device combining far-infrared radiation, scalp massage and transdermal drug delivery technologies. The device aims to enhance hair growth, reverse gray hair, and improve the transdermal absorption of therapeutic agents on the scalp. The deep thermal effect generated by far-infrared radiation increases blood circulation and the nutrient supply to hair follicles, while the mechanical stimulation of the massage device further enhances these effects. The transdermal drug delivery function ensures that topical medications penetrate the scalp more effectively, thus maximizing their therapeutic potential.

[0016] The graphene far-infrared penetration and introduction instrument of the present utility model can not only promote hair growth but also has the effect of turning white hair black. By deeply heating the scalp with far-infrared rays, it can promote blood circulation and increase the nutrient supply to hair follicles, thereby restoring the melanin production function of hair follicles. Combined with the stimulation of the massage device, this effect can be further enhanced, gradually restoring the natural black color of white hair.

[0017] The present utility model also has the function of transdermal drug delivery. Through the synergistic effect of the far-infrared radiation generated by the graphene film and the massage device, the transdermal absorption efficiency of drugs can be significantly increased. Users can apply drugs to the scalp while using the hair growth instrument, and the device promotes the absorption of drugs through far-infrared radiation and massage, improving the treatment effect.

[0018] The following will combine the accompanying drawings and embodiments to describe the present utility model in more detail. Description of the Drawings

[0019] Attached Figure 1 is the three-dimensional view of the far-infrared massage hair growth instrument of Embodiment 1 of the present utility model;

[0020] Attached Figure 2 is the exploded view (1) of the far-infrared massage hair growth instrument of Embodiment 1 of the present utility model;

[0021] Attached Figure 3 is the exploded view (2) of the far-infrared massage hair growth instrument of Embodiment 1 of the present utility model;

[0022] Attached Figure 4 is the distribution diagram of the buttons and indicator lights on the helmet of the far-infrared massage hair growth instrument of Embodiment 1 of the present utility model. Detailed Embodiment

[0023] Embodiment 1: The graphene far-infrared penetration and introduction instrument in this embodiment is a graphene far-infrared massage hair growth instrument. In addition to using the graphene film 300 to generate infrared radiation by being powered on and heating the user's scalp, there is also a massage device, that is, the massage module massages the scalp, which can accelerate hair growth.

[0024] As Figure 1 shown, this embodiment is a helmet-type hair growth instrument, and the helmet is assembled by a front shell 101 and a rear shell 102. When in use, it is fastened to the user's head with a lace 103. As Figure 2 shown, it is its exploded view. Inside the helmet is the inner lining of the helmet, which is made of some elastic materials, and some functional modules can be installed in appropriate places. For example, the infrared radiation module can radiate infrared rays to the scalp, and the massage module can make the massage oscillator contact the scalp for massage. As Figure 2As shown, in this embodiment, the inner lining, like the helmet, is also composed of two parts, namely the front lining substrate 104 inside the front shell 101 and the rear lining substrate 105 inside the rear shell 102. In this embodiment, a battery 11 and a main control circuit board 10 for controlling the graphene film and the massage device are arranged in the space surrounded by the front shell 101, the front lining substrate 104, the rear shell 102 and the rear lining substrate 105.

[0025] In this embodiment, the two functional modules are combined and installed on the front lining substrate 104 or the rear lining substrate 105. As Figure 3 shown, in practice, according to the specific shape of the substrate, there can be multiple infrared radiation modules and multiple massage devices.

[0026] As Figure 3 shown: The massage device is installed on the front lining substrate 104 or the rear lining substrate 105, and includes a group of 4 massage oscillators 203. Each massage oscillator 203 is encapsulated by an inner sleeve 201 and an outer sleeve 202. On the front lining substrate 104 and the rear lining substrate 105, there are oscillator installation positions 104-1 for installing the encapsulated body of the massage oscillator 203. When in use, the massage oscillator 203 is installed at the oscillator installation position 104-1 and contacts the user's scalp. In order to ensure that the massage oscillator gives the scalp a comfortable feeling during massage, in this embodiment, the massage oscillator is encapsulated. Both the inner sleeve 201 and the outer sleeve 201 are made of soft silicone. In fact, such soft silicone can be used for both the front lining substrate 104 and the rear lining substrate 105 to integrate the massage oscillator 203 with the substrate. In this embodiment, the massage oscillator centralized controller 204 is used to receive the control of the main control circuit board 10 and then control each massage oscillator 203. The main control circuit board 10 supplies power to each massage oscillator through the massage oscillator centralized controller 204 and can also control the massage power of each massage oscillator, that is, control the massage amplitude, so that the user can enjoy the most suitable service.

[0027] In this embodiment, like the massage oscillator, the graphene film 300 is also installed in the graphene film installation area 104-2 provided on the front lining substrate 104 or the rear lining substrate 105. The control end is connected to the main control circuit board 10. The graphene film installation area 104-2 provided on the front lining substrate 104 or the rear lining substrate 105 is a transparent window; the graphene film 300 is attached to the graphene film installation area 104-2 by a transparent double-sided tape 302.

[0028] In this embodiment, when the graphene film 300 is installed in the graphene film installation area 104-2, it is also encapsulated. The encapsulation device for encapsulating the graphene film 300 includes a film cover plate 301 disposed on the back surface of the graphene film 300 and a front transparent member 303 disposed on the front surface of the graphene film 300. The front transparent member 303 is attached to the front surface of the graphene film 300 by a transparent double-sided adhesive 302. Here, both the film cover plate 301 and the front transparent member 303 are used to protect the graphene film 300. The reason the front transparent member 303 is transparent is to ensure that the far-infrared light waves generated after the graphene film 300 is powered on can pass through and radiate onto the scalp.

[0029] In this embodiment, the graphene film 300 is a flexible film composed of pure carbon atoms, and a single layer of carbon atoms is grown by chemical vapor deposition. Since graphene only absorbs 2.3% of light, the pure graphene heating film has characteristics such as transparency, safety, and high electrothermal conversion efficiency.

[0030] In practice, the graphene film 300 is used in combination with the massage device, and such a combination is provided on each of the front substrate 104 or the rear substrate 105. More graphene films 300 and massage devices can also be used as needed.

[0031] In this embodiment, it further includes a temperature sensor 12 for measuring the temperature of the hair growth device, and the temperature sensor 12 is connected to the main control circuit board 10. The temperature sensor 12 is an NTC temperature probe pasted onto the film cover plate 301 using an acid tape 13.

[0032] In this embodiment, the operation of the far-infrared massage hair growth device can be performed using some buttons provided on the top of the helmet. These buttons are connected to the main control circuit board 10 and are the input part of the far-infrared massage hair growth device. The main control circuit board 10 can be a type with an intelligent chip such as an MCU as the main controller, using the buttons on the helmet as the input and output part. As Figure 4 shown, it is the button distribution diagram of this embodiment. A: Forced shutdown button; B: Massage adjustment button; C: Charging indicator light; D: Type-c charging port; E: Heating adjustment button; F: Power on / off button. Some indicator lights are also provided on the buttons. For example: The white light of the power on / off button is always on: The device is in the power-on / standby state; The green light of the heating button: The device is at a low temperature; The blue light of the heating button: The device is at a medium temperature; The red light of the heating button: The device is at a high temperature; The red light of the heating button flashes: The heating system has a fault; The green light of the massage button: The device is at a low intensity; The blue light of the massage button: The device is at a medium intensity; The red light of the massage button: The device is at a high intensity; The red light of the massage button flashes: The massage system has a fault; The white charging light flashes: The device is charging; The white charging light is always on: The device is fully charged.

[0033] The product of this embodiment is convenient to use. The following is the usage procedure:

[0034] Wearing Steps

[0035] 1. Prepare the head-worn hair growth device and remove the left / right magnetic snap. Press the button on the magnetic snap and move it outwards to remove it.

[0036] 2. Wear the hair growth device on the head, and then snap the letter magnetic snaps on the retaining strap back together (they will automatically adsorb when placed on the same horizontal plane).

[0037] 3. According to the wearing comfort, the user can adjust the tightness of the retaining strap as needed (the exposed part of the retaining strap can be adjusted by contraction).

[0038] Power on and Use

[0039] Press and hold the power button for 3 seconds to turn on the device. The massage and heating will start working simultaneously when the device is powered on.

[0040] Press the massage adjustment button to adjust to a comfortable intensity for yourself.

[0041] Press the heating adjustment button to adjust to a comfortable temperature for yourself.

[0042] Charging Process:

[0043] Open the silicone plug at the charging port of the device; prepare a Type-c charging cable; insert the Type-C charging cable into the C female. The indicator light will flash, indicating that it is charging, and the indicator light will stay on constantly, indicating that the charging is complete.

[0044] In addition, since intelligent chips such as MCU are used on the main control circuit board, it can be used as a computer and also some communication functions can be used, such as communicating with a mobile phone using a Bluetooth communication module and operating this massage helmet with the mobile phone.

[0045] The operation process is as follows:

[0046] Before using Bluetooth connection for the first time, you must configure the Bluetooth settings through a smartphone or tablet. This will allow communication between the devices you connect.

[0047] Use the mobile phone / tablet to scan the QR code of the product to download the APP.

[0048] Register an account;

[0049] Connect to the Bluetooth signal, connect to the network, enter the APP control interface and interact.

Claims

1. A graphene far-infrared penetration introduction instrument, comprising a graphene film for generating far-infrared light waves. When in use, the graphene film covers the user's scalp under the support of a support body, and forms a radiation space between the graphene film and the user's scalp for radiating far-infrared light waves to the user's scalp; characterized in that: It also includes a massage device, which contacts the user's scalp under the support of the support body to massage the user's scalp.

2. The graphene far-infrared penetration introduction instrument according to claim 1, characterized in that: The support body is a helmet worn on the head of a user, the helmet is composed of a front shell (101) and a rear shell (102), and has an elastic substrate for fixing a graphene film and a massage device, the substrate comprising a front substrate (104) arranged in the front shell (101) and a rear substrate (105) arranged in the rear shell (102); a battery (11) and a main control circuit board (10) for controlling the graphene film and the massage device are arranged in the space surrounded by the front shell (101), the front substrate (104), the rear shell (102) and the rear substrate (105); and a strap (103) for fixing the helmet to the head of the user is also included.

3. The graphene far-infrared penetration introduction instrument according to claim 2, characterized in that: The massage device comprises a group of multiple massage vibrators (203), each massage vibrator (203) is wrapped and packaged by an inner cover (201) and an outer cover (202), and a vibrator mounting position (104-1) for mounting the package body of the massage vibrator (203) is provided on the front substrate (104) and the rear substrate (105). When in use, the massage vibrator (203) is mounted on the vibrator mounting position (104-1) to contact the user's scalp.

4. The graphene far-infrared penetration introduction instrument according to claim 3, characterized in that: It also includes a massage vibrator centralized controller (204), which is controlled by the main control circuit board (10) to control each massage vibrator (203).

5. The graphene far-infrared penetration introduction instrument according to claim 2, characterized in that: The graphene film (300) is installed in a graphene film installation area (104-2) provided on the front substrate (104) or the rear substrate (105), and the control end is connected to the main control circuit board (10).

6. The graphene far-infrared penetration introduction instrument according to claim 5, characterized in that: The graphene film installation area (104-2) provided on the front substrate (104) or the rear substrate (105) is a transparent window; the graphene film (300) is attached to the graphene film installation area (104-2) using a transparent double-sided adhesive tape (302).

7. The graphene far-infrared penetration introduction instrument according to claim 6, characterized in that: When the graphene film (300) is installed in the graphene film installation area (104-2), it is also packaged. The packaging device used to package the graphene film (300) includes a membrane cover plate (301) arranged on the back of the graphene film (300), and a front transparent piece (303) arranged on the front of the graphene film (300). The front transparent piece (303) is attached to the front of the graphene film (300) using a transparent double-sided adhesive (302).

8. The graphene far-infrared penetration introduction instrument according to claim 7, characterized in that: It also includes a temperature sensor (12) for measuring the temperature of the hair growth device, and the temperature sensor (12) is connected to the main control circuit board (10).

9. The graphene far-infrared penetration introduction instrument according to claim 8, characterized in that: The temperature sensor (12) is an NTC temperature probe adhered to the diaphragm cover plate (301) by using an acid adhesive tape (13).

10. The graphene far-infrared penetration introduction instrument according to any one of claims 1 to 9, characterized in that: The graphene film (300) is a flexible film of pure carbon atoms, and a single layer of carbon atoms is grown by chemical vapor deposition.

Citation Information

Patent Citations

  • Hair growth instrument

    CN209933850U