Hair growth helmet with hood

By designing a hair regrowth helmet with a hood, using Velcro and buckle systems to adjust the helmet, and combining a mesh face and LLLT low-energy red light beads, the problems of improper adjustment and poor breathability of existing laser treatment helmets are solved, achieving a comfortable, stable, and uniform hair regrowth treatment effect.

CN223490275UActive Publication Date: 2025-10-31FOSHAN ASHMORE NETWORK TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422316430.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-10-31
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

Existing laser treatment helmet designs cannot be effectively adjusted to suit different users' head shapes, resulting in uneven light coverage, discomfort and poor breathability, which affects the effectiveness of hair regrowth treatment.

Method used

The design incorporates a hair growth helmet with a hood band, allowing for flexible adjustment via Velcro and buckle systems. The mesh design enhances breathability, and LLLT low-energy red LEDs are installed inside the helmet to evenly cover the scalp.

Benefits of technology

It allows for flexible adjustment based on the user's head shape, improving wearing comfort and stability, ensuring uniform and comprehensive phototherapy, enhancing breathability, reducing discomfort during use, and providing effective hair growth results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a hair growth helmet with a hood, which is characterized in that the helmet is provided with a head care cavity matched with the head of a human body in shape, and the head care cavity is provided with clamping grooves at intervals; the lamp panel is arranged in the helmet, lamp beads capable of generating rays for promoting hair growth are arranged on the lamp panel at intervals, and the lamp beads face the head nursing cavity; the front end of the cap girdle is provided with a net face portion of a hook-and-loop fastener, the tail end of the cap girdle is provided with a hook face portion of the hook-and-loop fastener, and buckles are arranged on the cap girdle at intervals. The net face part and the hook face part are pasted together to form a cap enclosure, and the buckles are inserted into the corresponding clamping grooves to achieve connection of the cap enclosure and the helmet. Through the design of the cap shroud ring, the helmet can be flexibly adjusted according to the head size of a user, so that the helmet can adapt to the head sizes of different users, is more comfortable and stable to wear, cannot be too tight or too loose, and improves the user experience.
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Description

Technical Field

[0001] This utility model relates to a hair growth helmet with a cap. Background Technology

[0002] Traditional hair care methods include medication, laser treatment, and hair transplantation. While medication is effective, long-term use may lead to side effects, and the results vary from person to person. Laser treatment is a non-invasive technology that has gained increasing popularity in recent years. Low-Level Laser Therapy (LLLT) stimulates hair follicles with low-energy light waves, improving scalp microcirculation and promoting hair regeneration. However, existing laser treatment devices, such as laser caps or helmets, often suffer from discomfort, uneven results, and poor versatility.

[0003] Most existing laser therapy helmets are designed with a fixed structure, making it difficult to effectively adjust the internal light panel and irradiation device to suit different user head shapes. This results in uneven light coverage of the scalp, affecting treatment effectiveness. Furthermore, most helmets lack adjustment mechanisms to fit different head sizes, causing discomfort or an unsuitable fit. In addition, existing helmets often do not adequately consider comfort and breathability, especially during prolonged use, which may lead to stuffiness or discomfort, further reducing the user experience. Utility Model Content

[0004] The purpose of this invention is to provide a hair growth helmet that can be adjusted according to the user's head shape and is comfortable and breathable to wear, as well as a hair growth helmet with a hood that achieves good wearing adaptability.

[0005] The purpose of this utility model is achieved as follows:

[0006] A hair growth helmet with a hood, wherein the helmet is provided with a head care cavity that matches the shape of a human head, and the head care cavity is provided with slots at intervals.

[0007] The light panel is installed inside the helmet, and the light panel is provided with light beads that can generate rays that promote hair growth, with the light beads facing the head care cavity;

[0008] The front end of the hat band has a Velcro mesh surface, the end of the hat band has a Velcro hook surface, and the hat band has buckles spaced apart.

[0009] The mesh and hook parts are glued together to form a hat brim, and the buckles are inserted into the corresponding slots to connect the hat brim to the helmet.

[0010] The helmet's design allows for flexible adjustment based on the user's head size, ensuring a comfortable and secure fit for different head shapes. This prevents the helmet from being too tight or too loose, thus enhancing the user experience.

[0011] The buckles on the hood band can be securely connected to the slots inside the head care cavity, ensuring a tight fit between the hood band and the helmet, preventing displacement or loosening during use, and enhancing the stability and safety of wearing it.

[0012] The Velcro design allows for easy adjustment of the hat band, enabling users to quickly adjust the tightness to their needs – a simple and convenient operation. Furthermore, the mesh and hook sides of the Velcro work together to ensure a strong bond, extending the lifespan of the hat band.

[0013] The LED beads inside the lamp panel can generate rays that promote hair growth, such as LLLT low-energy red light lamps, which effectively stimulate hair follicle cell activity, improve scalp blood circulation, promote hair regeneration, slow down the hair loss process, and thus achieve good hair regrowth results.

[0014] By rationally distributing LED beads within the head care cavity, light can evenly cover all parts of the scalp, ensuring that all areas of the head can receive effective phototherapy, thereby improving the uniformity and comprehensiveness of hair regrowth treatment.

[0015] The mesh design on the hat band not only improves breathability and helps dissipate heat, but also enhances comfort during long-term wear, preventing the head from feeling stuffy.

[0016] The buckle design connecting the cap strap and the helmet ensures that the helmet will not easily slip off or shift during daily activities or treatments, improving stability during use.

[0017] The objective of this utility model can also be achieved by the following technical measures:

[0018] Furthermore, the hat band includes a breathable mesh fabric, which is spaced out on the hat band.

[0019] The mesh fabric's ventilation and breathability design effectively promotes air circulation, preventing stuffiness and discomfort caused by prolonged helmet use. Especially during phototherapy, the user's scalp can remain dry and breathable, thus significantly improving the wearing experience.

[0020] Because the mesh fabric has good breathability, it can effectively reduce the accumulation of sweat on the scalp, especially in high-temperature environments or when used for a long time. It avoids discomfort caused by sweat and interference with the scalp care effect, keeps the scalp dry, and is conducive to the effective performance of phototherapy.

[0021] Traditional helmets can cause scalp irritation due to heat or friction, but the mesh design alleviates this problem. The soft material of the mesh is not only breathable but also reduces pressure and friction when in contact with the scalp, minimizing irritation and further enhancing user comfort.

[0022] The lightweight and soft mesh material adapts to various head shapes, enhancing the flexibility of the hood strap and increasing overall helmet safety. When adjusting the hood strap, the mesh flexibly accommodates different head sizes, ensuring a secure fit without feeling tightness or pressure.

[0023] The use of mesh fabric is lighter than traditional solid materials, reducing the overall weight of the helmet strap and thus lowering the total weight of the helmet. This reduces the pressure on the user when wearing it, and the helmet will not feel heavy even after long-term use, which helps to improve the endurance of long-term use.

[0024] The mesh material is easy to clean and dry, reducing the difficulty of cleaning. Users can regularly wash the cap band to keep it clean and hygienic, extend its service life, and ensure the long-term effectiveness of the equipment.

[0025] Furthermore, the lamp bead is an LLLT low-energy red lamp.

[0026] LLLT low-energy red light lamps emit red light of a specific wavelength (usually 630nm-670nm). This wavelength of red light can penetrate deep into the scalp, stimulate the metabolism of hair follicle cells, improve local blood circulation, and thus more effectively promote the regeneration of hair follicles and the growth of hair.

[0027] LLLT red light has certain anti-inflammatory and tissue repair-promoting effects, which can effectively relieve scalp inflammation and accelerate the recovery of damaged hair follicles, thereby improving hair growth. It is especially suitable for users with severe hair loss or damaged scalp health.

[0028] Compared to traditional high-energy lasers, LLLT is a low-energy laser, which is less irritating to the scalp and will not cause a burning sensation or discomfort. It is suitable for people with sensitive scalps, ensuring safety and comfort.

[0029] LLLT technology has been clinically proven to effectively increase the density and thickness of hair follicles on the scalp and improve hair quality with long-term use, while avoiding the side effects that may be caused by drug treatment. It is a safe and non-invasive way to promote hair growth.

[0030] The LLLT low-energy red light lamp is suitable for various types of hair loss, including androgenetic alopecia, alopecia areata, and stress-related hair loss, and has a wide range of applicable populations.

[0031] The beneficial effects of this utility model are as follows:

[0032] This invention, through the design of the helmet band, can be flexibly adjusted according to the user's head size, making the helmet adaptable to different users' head sizes, and providing a more comfortable and secure fit without being too tight or too loose, thus improving the user experience.

[0033] In this invention, the buckle on the cap band can be firmly connected to the slot inside the head care cavity, ensuring a tight fit between the cap band and the helmet, preventing displacement or loosening during use, and enhancing the stability and safety of wearing.

[0034] This invention features a Velcro design that allows for easy adjustment of the hat band, enabling users to quickly adjust the tightness according to their needs. The operation is simple and convenient. Furthermore, the mesh and hook sides of the Velcro work together to ensure a strong bond, extending the lifespan of the hat band.

[0035] In this invention, the LED beads installed inside the lamp panel can generate rays that promote hair growth, such as LLLT low-energy red light lamps, which effectively stimulate the activity of hair follicle cells, improve blood circulation in the scalp, promote hair regeneration, slow down the hair loss process, and thus achieve good hair growth results.

[0036] This invention, by rationally distributing LED beads within the head care cavity, allows light to evenly cover all parts of the scalp, ensuring that all areas of the head receive effective phototherapy, thereby improving the uniformity and comprehensiveness of hair regrowth treatment.

[0037] The mesh design of the hat band in this invention not only improves breathability and helps dissipate heat, but also enhances the comfort of wearing it for a long time and avoids a stuffy feeling on the head. Attached Figure Description

[0038] Figure 1 This is a schematic diagram of a helmet with a hair growth function (with a controller).

[0039] Figure 2 This is another angled illustration of a helmet with hair growth function.

[0040] Figure 3 This is another angled illustration of a helmet with hair growth function.

[0041] Figure 4 This is a cross-sectional view of a helmet with hair growth function.

[0042] Figure 5 This is an exploded view of a helmet with hair growth function.

[0043] Figure 6 This is a schematic diagram of the controller.

[0044] Figure 7 This is a cross-sectional view of the controller.

[0045] Figure 8 This is an assembly diagram of the controller.

[0046] Figure 9 This is a diagram showing the circumference of a hat.

[0047] Figure 10 This is a schematic diagram of the hat band.

[0048] Figure 11 This is a schematic diagram of the light panel.

[0049] Figure 12 This is a schematic diagram of the activation of the first treatment area (shaded CD area).

[0050] Figure 13 This is a schematic diagram of the activation of the second treatment area (shaded ABC area).

[0051] Figure 14 This is a schematic diagram of the activation of the third treatment area (shaded areas B, C, D, and E).

[0052] Figure 15 The diagram shows the activation of the first, second, and third treatment areas (shaded areas ABCDE). Detailed Implementation

[0053] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0054] Implementation examples, in conjunction with Figures 1 to 15 As shown, a helmet with hair growth function includes a helmet 1 and a light panel 2. The helmet 1 is provided with a head care cavity 11 that matches the shape of the human head.

[0055] The light panel 2 is installed inside the helmet 1. The light panel 2 is provided with light beads 24 that can generate rays that promote hair growth. The light beads 24 face the head care cavity 11.

[0056] The helmet 1 is equipped with a receiver for controlling the power on and off of the LED beads 24.

[0057] Furthermore, the lamp bead 24 is an LLLT low-energy red lamp.

[0058] Furthermore, the lamp panel 2 forms a first treatment area 21 corresponding to the top of the head, a second treatment area 22 corresponding to the forehead, and a third treatment area 23 corresponding to the back of the head. The first treatment area 21, the second treatment area 22, and the third treatment area 23 are all provided with the lamp beads 24.

[0059] Furthermore, the receiver includes a control circuit board 3, wherein the LED beads 24 of the first treatment area 21, the second treatment area 22, and the third treatment area 23 are electrically connected to the control circuit board 3, and the control circuit board 3 controls the LED beads 24 of the first treatment area 21, the second treatment area 22, and the third treatment area 23 to be powered on and off respectively.

[0060] Furthermore, the lamp panel 2 is a flexible lamp panel, and the lamp panel 2 is provided with notches 25 at intervals. The lamp panel 2 located between the notches 25 forms a bending portion 26 that facilitates adjustment of the shape of the lamp panel 2.

[0061] Furthermore, the helmet 1 includes a top cover 12, a support base 13 and a base 14. The bottom of the base 14 protrudes upward to form a protrusion 141. The inner cavity of the protrusion 141 is the head care cavity 11. The bottom of the base 14 has an opening that communicates with the head care cavity 11.

[0062] The support base 13 is provided with an installation port 131. The support base 13 sits on the base 14. The protrusion 141 is inserted into the installation port 131 and locked in place.

[0063] The lamp panel 2 is disposed on the protrusion 141, and the lamp bead 24 extends through the protrusion 141 into the head care cavity 11;

[0064] The receiver is mounted on the base 14 and is equipped with a cable 31.

[0065] The top cover 12 is mounted on and connected to the base 14, thereby shielding the support base 13, the receiver, and the lamp panel 2.

[0066] Furthermore, the top cover 12 is an arc-shaped top cover 12 that slopes from the front end to the rear end, and the rear end of the top cover 12 is provided with a water inlet 121, and the base 14 is provided with a drain outlet 141 that communicates with the water inlet 121.

[0067] Furthermore, the helmet 1 also includes a helmet band 5, the front end of which is provided with a Velcro mesh part 51, the end of which is provided with a Velcro hook part 52, and the helmet band 5 is provided with buckles 53 at intervals. The mesh part 51 and the hook part 52 are glued together to form a helmet band 7.

[0068] The head care cavity 11 is provided with slots 111 at intervals, and the buckle 53 is inserted into the corresponding slot 111 to connect the cap circumference 7 and the helmet 1.

[0069] Furthermore, the hat band 5 includes a breathable mesh fabric 54, which is spaced out on the hat band 5.

[0070] Furthermore, it also includes a controller 6, which includes a housing 61, a battery 62, a display screen 63, and a circuit board 64. The battery 62 and the circuit board 64 are placed inside the housing 61 and are electrically connected.

[0071] The side wall of the housing 61 is provided with a plug interface 65 that has charging, discharging and signal transmission functions;

[0072] The circuit board 64 has a built-in hair growth program;

[0073] The side wall of the housing 61 is provided with a control module for starting, stopping or switching the hair growth program, and the control module is electrically connected to the circuit board 64.

[0074] The display screen 63 is mounted on the housing 61 and is electrically connected to the circuit board 64. The display screen 63 is used to display the execution status of the hair growth program.

[0075] Furthermore, the side wall of the housing 61 is provided with a hook opening 66 for easy hooking of a rope.

[0076] Furthermore, the housing 61 includes a top housing 611, a bottom housing 612, a left housing 613, a right housing 614, and a button 615. The battery 62 and the circuit board 64 are placed inside the bottom housing 612. The side wall of the circuit board 64 is provided with the plug-in interface 65 and the control module.

[0077] The top housing 611 has a mounting slot 6111, the display screen 63 sits on the battery 62, the top housing 611 and the bottom housing 612 are connected to form an inner housing, and the display screen 63 extends out of the top housing 611 through the mounting slot 6111.

[0078] The inner housing 61 has a left connecting part 616 on the left side and a right connecting part 617 on the right side. The control module exposes the left connecting part 616, and the inner housing 61 has an opening at the position corresponding to the insertion interface 65.

[0079] The left housing 613 has a button opening 6131, and the button 615 is disposed on the left connecting part 616 and connected to the control module. The left housing 613 and the left connecting part 616 are connected, and the button 615 extends out of the button opening 6131.

[0080] The right housing 614 and the right connecting part 617 are connected.

[0081] Furthermore, waterproof sealant / waterproof sealing rings are provided at the connection between the top shell 611 and the bottom shell 612, the connection between the left shell 613 and the left connecting part 616, the connection between the right shell 614 and the right connecting part 617, and the gap between the display screen 63 and the mounting socket 6111.

[0082] The first treatment area is Figure 12 The shadow CD part, the second treatment area is Figure 13 The shadowed ABC areas, the third treatment area is Figure 14 The shadow portions BCDE, the first treatment area, the second treatment area, and the third treatment area are activated simultaneously. Figure 15 The shaded parts ABCDE.

[0083] The cable 31 is connected to the connector 65. The battery 62 supplies power to the lamp board 2 and the control circuit board 3 through the cable 31. At the same time, the circuit board transmits start / stop or stop signals to the control circuit board 3 through the cable 31.

[0084] In other embodiments, the helmet's cable 31 can also be connected to other devices with power supply capabilities. These other devices supply power to the light board 2 and control circuit board 3 via the cable 31. Users can connect to the receiver via Bluetooth or network using their mobile phones and start, stop, or switch the hair growth program using their mobile phones.

[0085] LLLT (Low-Level Laser Therapy) emits low-energy red light of a specific wavelength, penetrating deep into the scalp tissue to stimulate hair follicle cell activation, promote blood circulation, and improve the delivery of oxygen and nutrients, thereby accelerating hair growth. Its specific beneficial effects include:

[0086] Activate hair follicle cells: Red light can stimulate hair follicle cells, enhance their metabolic function, promote cell proliferation and regeneration, effectively delay hair loss and promote new hair growth.

[0087] Improved blood circulation: Low-energy red light can dilate blood vessels in the scalp, enhance blood circulation, improve the scalp's nutrient supply, provide sufficient nutrients and oxygen to hair follicles, and improve the hair growth environment.

[0088] Reduce inflammation: LLLT has anti-inflammatory properties, which can reduce inflammation around hair follicles, reduce scalp irritation, and help maintain a healthy scalp environment, thereby promoting hair regeneration.

[0089] High safety: Low-energy red light therapy is relatively gentle and will not damage the scalp or hair, making it suitable for long-term use with fewer side effects.

[0090] The crown of the head is a common area of ​​hair loss, especially male pattern baldness. Treatment using an LLLT low-energy red light lamp in the first treatment area 21 created on the crown can:

[0091] Targeted activation of hair follicles: Hair follicles in the scalp area are often in a dormant state due to the effects of androgens. Low-energy red light can penetrate deep into the base of the hair follicles, activate their regeneration function, and promote the growth of new hair.

[0092] Enhance blood circulation in the scalp: Blood circulation in this area is usually weak. Red light can help dilate capillaries, increase blood flow, thereby improving the delivery of nutrients and enhancing hair follicle vitality.

[0093] Slowing down hair loss on the crown: For users who already show signs of hair loss, regular use of red light therapy in this area can effectively slow down the hair loss process and prolong the hair growth cycle.

[0094] The forehead is a high-risk area for hair loss, especially in the early stages. Through the creation of a second treatment area 22 on the forehead, the effects of red light therapy include:

[0095] Reduce receding hairline: Low-energy red light irradiation can effectively prevent the hairline from receding further and promote the recovery of hair follicle cells in the forehead area, maintaining the original hair volume.

[0096] Stimulates new hair growth: For areas of hair loss on the forehead, red light can effectively promote the activity of hair follicles, help new hair grow in sparse areas, and restore the hairline.

[0097] Improve forehead skin health: Red light can also improve the skin condition of the forehead, reduce dandruff and oil secretion, and maintain scalp health.

[0098] The back of the head usually has denser hair, but thinning may occur in some patients with hair loss. Red light therapy in the third treatment area 23 can achieve the following:

[0099] Enhancing hair density: Hair in the back of the head is usually not sensitive to hormones, but red light can further enhance the vitality of hair follicles, prevent hair from gradually thinning, and increase hair density.

[0100] Promotes hair regeneration: Red light can effectively stimulate hair follicles and stimulate their growth potential in areas of thinning that may occur at the back of the head, helping to fill in sparse areas.

[0101] Maintaining scalp health: Low-energy red light can also effectively regulate the scalp's oil-water balance, reduce dandruff production, and keep the scalp in the back of the head clean and healthy.

[0102] The waterproof design of Helmet 1 is mainly achieved through reasonable structural design and material selection, specifically including:

[0103] Inclined arc-shaped top cover 12 design: The top cover 12 of the helmet 1 has an inclined arc-shaped design with the front higher than the back. When used outdoors, it can effectively guide rainwater to the water inlet 121 at the rear end and quickly discharge it through the drain outlet 141 on the base 14, thereby preventing rainwater from accumulating inside the helmet 1.

[0104] Sealing design: Waterproof sealant or sealing rings are used at the joints of helmet 1, such as top cover 12, base 14 and support 13, to ensure that water cannot seep into the interior through gaps and to protect electronic components such as light panel 2 and receiver.

[0105] Drainage port 141 design: The rear end of the top cover 12 is provided with spaced water inlets 121, which are connected to the outside through the drainage port 141 of the base 14, so that rainwater can be smoothly discharged when the helmet 1 is used in rainy weather, further improving the waterproof performance.

[0106] The waterproof design of controller 6 is achieved through multi-layer sealing and waterproof components, specifically including:

[0107] Multiple sealing structure: The housing 61 of the controller 6 is divided into a top housing 611, a bottom housing 612, a left housing 613 and a right housing 614. Waterproof sealant or waterproof sealing rings are provided at the connection between each part to prevent moisture from seeping into the interior.

[0108] Waterproof connector 65: The connector 65 of the controller 6 is designed with waterproof function, which can prevent water from entering the inside of the connector during charging, discharging or signal transmission, and ensure that the controller 6 can still be used safely in humid environments.

[0109] Waterproof display screen 63 design: The display screen 63 is connected to the housing 61 by sealant to ensure that the gap between the mounting port 131 and the display screen 63 will not allow water to enter the controller 6, thus improving the overall waterproof effect.

[0110] Waterproof control module: The control module and button 615 on the controller 6 are sealed to prevent moisture from affecting operation and ensure normal transmission of control signals.

[0111] Thanks to the above waterproofing measures, helmet 1 and controller 6 can be used safely in various environments, especially in outdoor scenarios, which improves the reliability and service life of the equipment.

Claims

1. A hair growth helmet with a hood, comprising a helmet, characterized in that: The helmet is equipped with a head care cavity that matches the shape of a human head, and the head care cavity is provided with slots at intervals. The light panel is installed inside the helmet, and the light panel is spaced apart with LED beads that can generate rays that promote hair growth, and the LED beads face the head care cavity; The helmet also includes a hood band, the front end of which is provided with a Velcro mesh surface, the end of which is provided with a Velcro hook surface, and the hood band is provided with buckles at intervals. The mesh and hook parts are glued together to form a hat brim, and the buckles are inserted into the corresponding slots to connect the hat brim to the helmet.

2. The hair growth helmet with a hood as described in claim 1, characterized in that: The hat band includes a breathable mesh fabric, which is spaced out on the hat band.

3. The hair growth helmet with a hood as described in claim 1, characterized in that: The LED is an LLLT low-energy red light lamp.