Beautifying device of head-mounted safety helmet

The ultrasonic atomizer in the head-mounted safety helmet beauty device solves the problems of side effects from cosmetics and medical aesthetic procedures, as well as the high energy consumption of heated atomizers. It provides skin moisturizing and beauty effects anytime, anywhere, achieving skin care without side effects and with energy saving and environmental protection.

CN121003753APending Publication Date: 2025-11-25李亮
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Patent Information

Application Number
CN202410645822.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-23
Publication Date
2025-11-25

AI Technical Summary

Technical Problem

Existing cosmetics and cosmetic surgeries carry the risk of side effects, and heated atomizing and ultrasonic atomizing devices suffer from high energy consumption and are limited to use in fixed locations.

Method used

A head-mounted safety helmet beauty device was designed, which uses an ultrasonic atomizer and utilizes electronic high-frequency oscillation to install an atomizer controller, water inlet, pipe and mini fan in the inner shell of the baseball cap to achieve skin moisturization anytime and anywhere. Through multiple control modes and water quality combinations, suitable atomized gas is generated.

Benefits of technology

It achieves skin moisturization anytime, anywhere without heating or chemical reagents, reduces the side effects of cosmetics, avoids the risks of medical aesthetics, and is fully functional, energy-saving and environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention is suitable for the technical field of head-mounted Internet of Things intelligent mobile terminals, and provides a head-mounted safety helmet beautifying device. The device comprises but is not limited to the following special devices and the combination thereof: an atomization controller and a battery thereof are arranged on the shell top of a top baseball cap protection inner shell and are used for controlling a plurality of groups of atomization electronic device modules; a water injection opening is formed in the shell side of the baseball cap protection inner shell, and water is injected into a plurality of groups of atomized pipelines; a plurality of liquid anti-backflow rotary connectors and a water injection pipeline are installed in a tying belt of the baseball cap protection inner shell and on the frontal edge of the shell, and an electronic atomizer atomizing piece and an optional miniature fan are installed in an air outlet of the pipeline. A user controls various control modes such as different device combination modes, air pressure intensity and time selection through the controller to obtain various atomization combination modes, facial skin can be moistened at any time and any place, and therefore the skin moistening and beautifying effects are achieved.
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Description

Technical Field

[0001] This patent relates to fields such as head-mounted IoT smart mobile terminal technology and beauty technology, specifically a head-mounted safety helmet beauty device. Background Technology

[0002] Currently, cosmetic skincare products are experiencing increasing side effects, and medical aesthetic technologies carry significant risks. Existing products such as heated atomization and ultrasonic atomization have considerable limitations.

[0003] Side effects of cosmetics for skin care. The main side effects of cosmetics include allergic reactions, irritant dermatitis, skin aging, systemic side effects, and other adverse reactions.

[0004] Cosmetics used for skin care can cause allergic reactions. Allergic reactions are the most common side effect and can lead to symptoms such as contact dermatitis, redness, itching, swelling, and rashes. In severe cases, they can cause allergic reactions such as difficulty breathing and shock.

[0005] Cosmetics used to care for the skin can cause irritant dermatitis. Cosmetic ingredients may irritate the skin, leading to dryness, peeling, pigmentation, and other problems that can cause irritant dermatitis.

[0006] Cosmetics can accelerate skin aging. Long-term use of cosmetics can exacerbate skin aging, leading to problems such as rough skin and increased wrinkles.

[0007] Cosmetics used to care for the skin can lead to systemic side effects such as blood disorders, kidney problems, and cancer. These are usually related to harmful ingredients in cosmetics. For example, certain chemicals in hair dyes may increase the risk of blood disorders, and long-term use of cosmetics containing heavy metals may lead to chronic poisoning.

[0008] Cosmetics used for skincare can lead to other side effects, such as cosmetic dermatitis, skin infections, and eye irritation. These reactions may be caused by ingredients in cosmetics such as fragrances, pigments, and preservatives.

[0009] For certain groups, such as pregnant women, children, and people with sensitive skin, the side effects of cosmetics may be more severe.

[0010] While pursuing beauty, cosmetic surgery also carries certain risks, including anesthesia risks, surgical failure risks, surgical complication risks, and psychological impact risks.

[0011] Risks of anesthesia in cosmetic surgery. Most cosmetic surgeries require anesthesia, which itself carries certain risks. For some individuals, anesthesia may cause breathing difficulties, allergic reactions, or arrhythmia.

[0012] Risks of cosmetic surgery failure. Cosmetic surgery is not 100% successful, and therefore carries the risk of failure. Sometimes the surgery may not achieve the desired results, leading to patient dissatisfaction. Post-operative problems may include uneven skin texture, scarring, and infection.

[0013] Risks of complications from cosmetic surgery. Cosmetic surgery may cause various complications, such as hematoma, bleeding, nerve damage, and thrombosis. These complications can prolong recovery time and increase patient discomfort.

[0014] Psychological risks associated with cosmetic surgery. Cosmetic surgery can also impact a patient's mental health. Some patients may experience anxiety, depression, or other psychological problems after the procedure, negatively affecting the surgical outcome.

[0015] Heated atomization has significant limitations. It requires heating, which consumes a large amount of electricity, and the heat generated can negatively impact the human body and the surrounding environment, especially in summer when it can be difficult to tolerate.

[0016] Ultrasonic atomization has significant limitations. While ultrasonic atomizers save up to 90% on energy and release a large number of negative ions during atomization, these ions react electrostatically with airborne smoke and dust, causing them to settle. They also effectively remove harmful substances such as formaldehyde, carbon monoxide, and bacteria, purifying the air, reducing the incidence of disease, and even providing skin-moisturizing benefits. However, current ultrasonic atomizers are mostly limited to use in fixed locations such as hotels, offices, and homes, facing limitations in time, location, space, and foot traffic, and their functionality is also limited. Patent content

[0017] The purpose of this patent is to provide a head-mounted safety helmet beauty device to solve the problems mentioned in the background art.

[0018] The main component used in this patent is an ultrasonic atomizer. The ultrasonic atomizer utilizes high-frequency electronic oscillations, with frequencies of 1.7MHz or 2.4MHz, exceeding the range of human hearing. These electronic oscillations are completely harmless to humans and animals. Through the high-frequency resonance of the ceramic atomizing plate, the liquid water molecules are broken down to produce a naturally drifting water mist. No heating or addition of any chemical reagents is required, and it is not limited by time, location, space, or crowds, offering a complete range of functions.

[0019] This patent provides the following technical solution: This patent applies to the field of head-mounted IoT smart mobile terminal technology and provides a head-mounted safety helmet beauty device. This device includes, but is not limited to, the following specialized components and their combinations: an atomizing controller and its battery are installed on the top of a baseball cap's inner protective shell to control multiple sets of atomizing electronic device modules; a liquid anti-backflow adapter and water inlet are installed on the side of the baseball cap's inner protective shell to inject liquid into multiple atomizing pipes; multiple liquid anti-backflow adapters and water inlet pipes are installed in the straps and forehead edge of the baseball cap's inner protective shell, and electronic atomizing devices and optional miniature fans are installed in the air outlets of the pipes. Users can control different device combinations, air pressure intensity, and time selection through a controller to obtain various atomization combinations, allowing for moisturizing of facial skin anytime, anywhere, and at will, thereby producing a skin-moisturizing and beautifying effect.

[0020] Furthermore, this device comprises the following specialized components and their combination: an atomizing controller and its battery are mounted on the top of a baseball cap's inner protective shell, used to control multiple atomizing electronic device modules. The main component is an ultrasonic atomizer. The ultrasonic atomizer uses ultrasound to atomize the liquid, which is then evenly distributed into the air close to the face to cleanse facial impurities, allow the skin to breathe freely, reduce damage from sun radiation, and nourish the facial skin.

[0021] Optionally, the controller of this device can control one atomizing electronic device module individually, or it can control two or more atomizing electronic device modules in combination. Specifically: one atomizing electronic device module is a single atomization module; two atomizing electronic device modules are a dual atomization module; three atomizing electronic device modules are a triple atomization module; four atomizing electronic device modules are a quad atomization module; and so on.

[0022] It's important to note that the functionality of an atomizer controller and its battery compatibility are highly correlated. If a single-jet atomizer module has a rated voltage of DC 5V, a rated current of 300mA, and a power of 1.5W, then its matching battery will also have a voltage of DC 5V, a rated current of 300mA, and a power of 1.5W. Similarly, dual-jet, triple-jet, and quad-jet modules also require matching batteries with specific voltage, current, and power requirements.

[0023] Furthermore, this device includes the following specialized components and their combination: a water inlet is installed on the side of the baseball cap's inner protective shell, injecting water into multiple sets of atomizing pipes. The water inlet is connected to a water tank, which can be externally mounted on the shell and movable independently, or internally integrated with the inner shell. A liquid backflow prevention adapter is installed on the top of the water tank to prevent water from flowing back out. The water capacity is equal to the sum of the water tank capacity and the pipe capacity. The water capacity is directly proportional to the atomizing time the user uses the atomizing plate.

[0024] Optionally, multiple atomizing pipes can be interconnected, and the water flow rate in all or part of the pipes can be selected using a switch. The water in the flow can be hot, cold, or iced water, or a mixture of various temperatures such as hot, cold, and iced water. All or part of the water can be selected for mixing to produce atomized gas at a suitable temperature. Similarly, the water in the flow can be of various materials such as purified water, floral water, and nutrient water, and all or part of the water can be selected for mixing to produce atomized gas suitable for the user.

[0025] It's important to note that water can flow using gravity and gaps in the pipe. The flow rate depends on the size of the gap, which, or its presence, is controlled by a switch. The switch controller is typically made of highly elastic cylindrical sponge. Compression of the cylindrical sponge allows water to pass through, while releasing it blocks its flow. The sponge in the switch controller can be combined with an atomizing plate to create a unique water-switch atomizer. This water-switch atomizer can also be combined with a miniature fan to create a unique water-switch atomizing fan, and so on.

[0026] Furthermore, this device includes the following specialized components and their combination: multiple water-filling tubes installed in the straps of the inner shell of the baseball cap and along the forehead edge. The water-filling tubes are made of a flexible, flat plastic material. After water is injected into the flexible, flat strip-shaped plastic tube, it transforms into a more elastic, cylindrical plastic tube. Therefore, both the inner shell straps and the forehead edge should retain a certain degree of flexibility to accommodate this ergonomic experience.

[0027] Of particular importance is that this device comprises the following specialized components and their combination: an atomizing plate with atomizing electronics installed in the duct outlet. The specifications of the atomizing plate include: diameter (the length of the atomizing plate; a larger diameter produces more atomized material, but also puts a strain on the equipment); orifice diameter (the diameter of the holes in the atomizing plate, which determines the spray effect; smaller orifice diameters result in less atomized material but are more prone to clogging); thickness (the thickness of the atomizing plate determines whether the current can pass stably and spray the atomized material into the air); and material (the atomizing plate is typically made of aluminum, ceramic, ultrasonic, etc., and different materials affect characteristics such as current and corrosion resistance).

[0028] It is particularly important to emphasize that this device includes the following specially designed components and their combination: a miniature fan that can be optionally used at the end of the atomizing plate at the air outlet of the duct. The main function of the miniature fan is to clean dirt from the face by atomizing gas, and it can also be used as a miniature air conditioner. In summer, by adding ice water or cool water to the atomization, it produces icy or cool air to facilitate cooling; in winter, by adding hot water to the atomization, it produces hot air to facilitate warming and making people feel warm.

[0029] Furthermore, this device includes the following specially designed components and their combinations: users can moisturize their facial skin anytime, anywhere, and in any way by selecting different combinations of the above components, air pressure intensity, and time, thereby achieving the effect of moisturizing and beautifying the skin. Attached Figure Description

[0030] Figure 1 .Diagram of the beauty operation of the headgear safety helmet;

[0031] Figure 2 Liquid backflow prevention adapter diagram

[0032] Figure 3 Atomizing plate image in .CDEF;

[0033] Figure 4 A1-4 shows the dual spraying module (front and back sides).

[0034] Figure 5 .SOT 23 Dimension Drawing;

[0035] Figure 6 SOP8 Dimension Drawing.

[0036] The accompanying drawings are provided to further understand this patent and form part of the specification. They are used together with the embodiments of this patent to interpret this patent and do not constitute a limitation thereof. Detailed Implementation

[0037] The technical solutions in the embodiments of this patent will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this patent, not all of them. Based on the embodiments of this patent, all other embodiments obtained by a person skilled in the art without inventive effort are within the scope of protection of this patent.

[0038] This patent provides a specific implementation method for the technology, taking four sets of atomizing controller modules, four sets of water inlets, four types of water inlets, eight mist outlets, DC battery power, and other accessories as examples, as follows:

[0039] like Figure 1In section A, an atomizing controller and its battery are installed on the top of the inner shell of a baseball cap, used to control four groups of atomizing electronic device modules A1-4; for example... Figure 1 In section B, four sets of water inlets B1-4 are installed on the side of the inner shell of the baseball cap, which are respectively injected into four sets of atomizing pipes; for example... Figure 1 In types C, D, and E, multiple water injection pipes, such as C1-2, D1-3, and E1-2, are installed inside the straps of the baseball cap's inner protective shell; for example... Figure 1 In Figure F, three types of water injection pipes (F1-3) are installed on the forehead edge of the inner shell of the baseball cap. As shown in Figures C, D, E, and F, atomizing electronic devices and optional miniature fans are installed in the air outlets of these pipes. Users can moisturize their facial skin anytime, anywhere, and in any way they choose from different device combinations, air pressure intensities, and time settings, achieving a skin-moisturizing and beautifying effect.

[0040] Furthermore, such as Figure 1 In A1-4: An atomizing controller and its battery are installed on the top of the inner shell of a baseball cap, used to control four sets of atomizing electronic device modules. Each set of atomizing electronic device modules consists of two atomizing modules forming a dual atomizing module. The rated voltage of the dual atomizing module can be DC5V, the rated current can be 300mA, the power can be 2-3W, the atomization power can be 108-110KHZ, and the terminal interface is PH2.0.

[0041] Optional, such as Figure 1 The dual-spray module in A1-4 offers the following spray modes: 1) Continuous spray mode, where both sprayers continuously atomize the mist, automatically shutting off after three hours; 2) Alternating spray mode, where one side sprays for twenty seconds, then the other side sprays for twenty seconds, repeating this cycle, automatically shutting off after five hours; and 3) Intermittent spray mode, where one side sprays for ten seconds, then stops spraying for five seconds, repeating this cycle, automatically shutting off after twelve hours.

[0042] It needs to be emphasized that, such as Figure 1 The dual-spray module in A1-4 can be combined with the battery pack to form the main control module shown in Figure A, and can also be combined with... Figure 1 The system consists of pipes and water channels such as B, C, D, E, and F, as well as atomizing plates and fans, forming a mist outlet. It cleans facial impurities with water mist, allowing the skin to breathe freely, reducing damage from sunlight radiation, and nourishing the facial skin.

[0043] It is important to note that, such as Figure 1 The dual-spray module in A1-4 can be combined with the battery pack to form the overall control module shown in Figure A. The total power of the battery pack is determined by... Figure 1 A and Figure 1The power composition of the five batteries in A1-4: Each battery is a 2000mAh polymer lithium battery, which is charged using a dedicated low-current charger of 5V2A or less. It has a built-in short-circuit and overcurrent protection device, is safe and explosion-proof without bulging, and can be cyclically charged and discharged, meeting the international standard of approximately 80% capacity reduction after more than 500 charge and discharge cycles.

[0044] It should be noted that, Figure 1 The battery pack in A not only meets the power needs of the main control module A, but also meets the power needs of the optional micro fan and other devices.

[0045] Furthermore, Figure 1 The four water inlets B1-4 in section B are installed on the side of the inner shell of the baseball cap. Each inlet is 10 mm in size and uses 8-12 mm elastic rubber as a movable seal. B1 is for clean water, B2 for perfume, B3 for ice water (summer), and B4 for hot water (winter). The different water types are marked on the inner shell to indicate the multiple functions. A specially designed built-in water tank in the inner shell connects to four sets of atomizing pipes.

[0046] Furthermore, such as Figure 2 This image shows a liquid anti-backflow adapter. Made of high-quality PP plastic, it measures 6mm inner diameter, 8mm outer diameter, and 25mm length. Its newly designed "water flow check device" prevents air backflow during use, eliminating backflow and providing convenience. This liquid anti-backflow adapter can be used on built-in water tanks, in pipe connections, and at various component joints to create an independent water supply environment.

[0047] It should be noted that the inner shell fits snugly against the specially designed built-in water tank. The size of the inner shell is basically the same as that of the built-in water tank. The size of the inner shell is the same as the size of the cap circumference, which ranges from 58 to 62 centimeters. The inner shell is made of lighter, stronger, more breathable, and more comfortable high-density polyethylene (HDPE), and can be directly embedded into the baseball cap for a more aesthetically pleasing look.

[0048] It should be added that, to increase comfort and safety when wearing the hat, a silicone liner and other linings can be added between the head and the inner shell. The silicone liner is made of soft material with a soft stud design, is breathable and comfortable, reduces stuffiness and sweating, prevents hairstyles from flattening, and can cushion the head to protect it in case of an accident. The Velcro side can be removed for washing at any time. Other linings can be kept on hand during washing.

[0049] Furthermore, Figure 1 After the four water inlets B1-4 in section B enter the specially designed built-in water tank, the water is then distributed through a T-shaped three-part pipe to... Figure 1 Pipes C, D, E, and F, etc. Figure 1Pipes C, D, E, and F are then branched off via a T-shaped three-way pipe to... Figure 1 The T-shaped three-part tube has mist outlets such as C1-2, D1-3, E1-2, and F1-3, making it an important component for water flow.

[0050] It should be noted that the T-shaped three-part tube has an inner diameter of 4 mm and an outer diameter of 5 mm, which is consistent with... Figure 1 The pipes connecting C, D, E, and F have an inner diameter of 6 mm and an outer diameter of 7 mm. Figure 1 The inner diameter of the mist outlets C1-2, D1-3, E1-2 and F1-3 is 8 mm and the outer diameter is 9 mm. Combined with the specifications of the atomizing plate pipe of 10 mm and outer diameter of 11 mm and the micro fan pipe of 12 mm and outer diameter of 13 mm, the components are connected in order from small to large to form a whole.

[0051] Optional, Figure 1 The atomizing pipes B, C, D, E, and F are interconnected, and a switch can be used to select all or part of the water flow in the pipes. The water in the flow can be hot, cold, or iced water, or a mixture of various temperatures, allowing for the selection of all or part of the water to produce atomized vapor at a suitable temperature. Similarly, the water in the flow can be purified water, floral water, or nutrient water, allowing for the selection of all or part of the water to produce atomized vapor suitable for the user.

[0052] It's important to note that water can flow using gravity and gaps in the pipe. The flow rate depends on the size of the gap, which, or its presence, is controlled by a switch. The switch controller is typically made of highly elastic cylindrical sponge. Compression of the cylindrical sponge allows water to pass through, while releasing it blocks its flow. The sponge in the switch controller can be combined with an atomizing plate to create a unique water-switch atomizer. This water-switch atomizer can also be combined with a miniature fan to create a unique water-switch atomizing fan, and so on.

[0053] Furthermore, Figure 1 Types B, C, D, E, and F, among others, incorporate various water-filling tubes within the straps of the inner shell of the baseball cap and along the forehead edge. These tubes are made of a flexible, flat plastic material. After water is injected into the flexible, flat plastic strip, it transforms into a more elastic, cylindrical plastic tube. Therefore, the inner shell straps and forehead edge should retain a certain degree of flexibility to accommodate this ergonomic design.

[0054] It should be noted that, Figure 4The dual-spray module in A1-4 mainly consists of the following components: On the front side, there are 6 0805 capacitors (2.0 mm × 1.25 mm × 1.25 mm), 5 0805 resistors (approximately 2.03 mm × 1.27 mm × 1 mm), and 2 SOT 23-3 MOS transistors (see dimensions for details). Figure 5 The SOT 23 dimension drawing specifies that the SOT23-3 is slightly larger than the SOT23, while the SOT23 is thinner than the SOT23-3 (all other dimensions are the same) and includes one SOP-8 MCU (see dimensions for "SOT 23-3"). Figure 6 The front side consists of components such as the "SOP8 Dimension Diagram" specification; the back side mainly consists of two through-hole inductors (approximately 9mm × 4mm × 5mm), two 1.25mm horizontal mount connectors (approximately 5mm × 4mm × 5mm), and one FR-4 PCB (approximately 34mm × 13mm × 12mm). These components can be laid out separately. Figure 1 Positions A, A1-4, etc., including those embedded inside the cap shell.

[0055] Especially important, Figure 1 C1-2, D1-3, E1-2, and F1-3 are atomizing plates for installing atomizing electronic devices in the air outlet of the duct. Figure 3 The atomizing plate diagram in .CDEF includes the following specifications: USB DC voltage 5V, current up to 300mA, power 2W, atomization frequency 108kHz, 740 pores, pore diameter 5μm, rubber ring diameter 20mm, thickness 3mm, atomizing plate diameter 16mm, steel ring 8mm, inner diameter 5mm, cable length 50-200mm. Waterproof adhesive is applied to the wire solder joints to prevent short circuits; an anti-oxidation silver coating is applied to the surface of the atomizing plate to prevent oxidation. The side with the wire solder joint is the front, the atomizing side; the side without the wire solder joint is the back, the cotton swab side. One end of the atomizing plate is connected... Figure 2 The controller for the dual-spray module has an absorbent cotton swab attached to one end.

[0056] It should be noted that the humidifying absorbent swabs are connected to the atomizing plate, mist outlet, and mini fan via a T-shaped tube. The connection port allows for easy installation and removal of the swabs, atomizing plate, and mini fan. The absorbent swabs not only humidify the water through the atomizing plate but also effectively filter impurities such as bacteria, dust, scale, rust, and sediment, extending the humidifier's lifespan and maintaining a high concentration of water mist. The humidifying absorbent swabs are typically 7mm or 8mm in diameter and 20mm long, and should generally be replaced once a month.

[0057] It needs to be emphasized that, Figure 1Miniature fans, such as C1-2, D1-3, E1-2, and F1-3, can be selectively used at the end of the atomizing plate at the air outlet of the duct. The main function of these miniature fans is to act as a miniature air conditioner by atomizing gas. In summer, when sweating is profuse, adding ice water or cool water to the atomized air produces icy or cool air, which, while cooling the body, can also cleanse the face of dust and dirt, moisturizing and nourishing the skin. Especially in the sweltering summer, increasing the cool humidity helps improve the surrounding air environment.

[0058] It is particularly emphasized that, such as Figure 1 Miniature fans, such as C1-2, D1-3, E1-2, and F1-3, can be selectively used at the end of the atomizing plate at the air outlet of the duct. The main function of these miniature fans is to act as a miniature air conditioner by atomizing the gas. In dry winter weather, hot water can be added for atomization, generating atomized hot air to raise the temperature, providing warmth while moisturizing and nourishing the skin. Especially in harsh winters, increasing the warm, humid air helps improve the surrounding air quality.

[0059] Furthermore, such as Figure 1 With devices such as A, B, C1-2, D1-3, E1-2, and F1-3, users can moisturize their facial skin anytime, anywhere, and in any way by using different combinations of the above devices, air pressure intensity, and time selection, thereby achieving the effect of moisturizing and beautifying the skin.

[0060] It needs to be explained, such as Figure 1 As shown: there are four control modes: A1, A2, A3, and A4; four water materials: B1, B2, B3, and B4; and eight mist outlets: C1, C2, D1, D2, D3, E1, E2, F1, F2, and F3. The combinations of control modes, water materials, and mist outlets represent combinations of different components. Mist outlets C+D+E+F represent a combination of the same component.

[0061] It should also be noted that Figure 1 As shown: Fog outlet C+D+E+F is a combination of the same device, including: omnidirectional combination C1+C2+D+D2+D3+E1+E2+F1+F2+F3; same-direction combination C1+C2 or D+D2+D3 or E1+E2 or F1+F2+F3; opposite-direction combination C1+E1 or C2+E2 or D1+F1 or D2+F2 or D3+F3; and opposite-direction combination. In addition to the above combinations, there are many other combinations, such as one-to-one, one-to-two, one-to-three, one-to-four, two-to-one, two-to-two, two-to-three, two-to-four, three-to-one, three-to-two, three-to-three, three-to-four, four-to-one, four-to-two, four-to-three, four-to-four, etc.

[0062] The item is explained as follows: Figure 1As shown, various combination modes of the fog outlet, such as omnidirectional combination, same-direction combination, opposite-direction combination, and opposite-direction combination, are controlled by multiple combination modes such as A1, A2, A3, A4, and A. Figure 1 A can not only control the size, duration, intensity, and mode of fog output from the fog outlet, but also regulate the normal operation of the battery and the entire system, and monitor it by connecting with mobile phones, computers, and other smart devices.

[0063] Finally, it should be noted that the above descriptions are merely preferred embodiments of this patent and are not intended to limit the scope of this patent. Although the patent has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical implementation methods described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this patent should be included within the scope of protection of this patent.

Claims

1. This patent applies to the field of head-mounted IoT smart mobile terminal technology, and provides a head-mounted safety helmet beauty device. This device includes, but is not limited to, the following specialized components and their combinations: An atomizing controller and its battery are installed on the top of a baseball cap's inner protective shell to control multiple atomizing electronic device modules. Liquid anti-backflow adapters and water inlets are installed on the sides of the inner shell, allowing liquid to be injected into the multiple atomizing channels. Various liquid anti-backflow adapters and water channels are installed inside the straps and along the forehead edge of the inner shell. Electronic atomizing devices, including atomizing plates and optional miniature fans, are installed in the air outlets of these channels. Users can control different device combinations, air pressure, and time settings to obtain various atomization combinations, allowing for moisturizing of facial skin anytime, anywhere, and at will, thus producing a skin-nourishing and beautifying effect.

2. The head-mounted safety helmet beauty device as described in claim 1, comprising the following specially designed components and combined parts: An atomization controller and its low-voltage DC battery are installed on the top of the inner shell of a baseball cap to control multiple atomization electronic device modules.

3. The head-mounted safety helmet beauty device as described in claim 2 includes the following specially designed components and combinations: the control device can control one atomizing electronic device module individually, or it can jointly control two or more atomizing electronic device modules.

4. The head-mounted safety helmet beauty device as described in claim 3, comprising the following specially designed components and combined parts: A liquid anti-backflow adapter and a water inlet are installed on the side of the inner shell of the baseball cap to inject liquid into multiple sets of atomizing pipes.

5. The head-mounted safety helmet beauty device as described in claim 4, comprising the following special components and combinations: multiple sets of atomizing pipes interconnected, and a liquid anti-backflow adapter that can independently use the atomizing devices without being affected by other atomizing devices.

6. The head-mounted safety helmet beauty device as described in claim 5, comprising the following special components and combinations: multiple sets of atomizing pipes interconnected, and a sponge switch that can utilize the elasticity of the sponge to adjust the water flow in the pipes.

7. The head-mounted safety helmet beauty device as described in claim 6, comprising the following special components and combinations: multiple liquid anti-backflow adapters and water injection pipes are installed in the straps and forehead edge of the baseball cap protective inner shell, and an electronic atomizing device atomizing plate is installed in the air outlet of the pipe.

8. The head-mounted safety helmet beauty device as described in claim 7, comprising the following special components and combined components: a micro fan with adjustable airflow can be installed in the strap of the inner shell of the baseball cap and at the end of the atomizing plate on the forehead edge of the shell.

9. The head-mounted safety helmet beauty device as described in claim 8, comprising the following specially designed components and assembly: Users can control various device combinations, air pressure intensity, and time selection through the controller to obtain multiple atomization combinations, allowing them to moisturize facial skin anytime, anywhere, and in any way, thereby producing skin moisturizing and beautifying effects.