A water light instrument

Through the removable accelerated airflow atomization mechanism and intelligent detection function, the problem of easy blockage of traditional water-light spray heads is solved, and convenient maintenance and personalized skin care is achieved to meet the fast and convenient skin water-light needs of modern people.

CN120094048BActive Publication Date: 2025-08-12ZHEJIANG UNIV +1
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Patent Information

Application Number
CN202510556756.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-08-12
Estimated Expiration
2045-04-29

AI Technical Summary

Technical Problem

The spray volume of traditional water light meter is uncontrollable, the nozzle is easily blocked, and it is difficult to repair, making it difficult to meet the fast and convenient skin water and light needs of modern people.

Method used

A removable accelerating airflow atomization mechanism is adopted, and a floating gap is reserved for the inner surface of the nozzle and the atomizing nozzle cover. The conical structure guides the accelerated airflow, spiral airflow atomization, the nozzle cover can be replaced, the sealing needle controls the atomization degree, and a variety of consumable liquid storage spaces, and intelligent detection feedback suggestions.

Benefits of technology

It realizes convenient disassembly and repair of atomized spray nozzles, ensures that the spray nozzles are not easily blocked, provides stable atomization effect, supports switching of various consumables, and provides personalized skin care suggestions in combination with intelligent testing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a water light instrument, which includes a shell, a liquid storage bottle is installed on the shell, a detachable accelerated airflow atomization mechanism is provided on the upper half of the shell, a button is provided in the middle of the shell, a PCB board is provided behind the button, an air pump is provided below the detachable accelerated airflow atomization mechanism, the air pump and the atomization mechanism are connected by a connecting pipe, and a water light instrument battery is provided below the air pump. Compared with the existing technology, the water light instrument of the present invention provides a new idea for miniaturization of the water light instrument by vertically arranging the internal components. By placing the inverted liquid storage bottle at the top to achieve the siphon principle, the previous method of using a straw is omitted, and the connection method between components is optimized for easy replacement. The structure is simple and easy to produce. The water light instrument of the present application can not only provide people with a convenient and fast water light solution, but also effectively improve problems such as dry skin and dehydration.
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Description

Technical Field

[0001] The present invention relates to the field of beauty and health care equipment, and in particular to a water light instrument. Background Art

[0002] The Hydrating Device is an innovative portable facial beauty and wellness device that provides a quick, convenient, and long-lasting hydrating effect. With the accelerated pace of modern life, increasing work pressure, and severe environmental pollution, more and more people are facing dry, dehydrated skin. Traditional Hydrating Devices offer limited functionality and uncontrollable spray volume. High-precision, adjustable spray nozzles are difficult to repair if clogged with foreign matter. This makes long-term use difficult for busy modern people. Therefore, developing a Hydrating Device that overcomes these limitations is crucial. Summary of the Invention

[0003] Most traditional water light devices are integrated, and the air pressure is limited by the size of the product shell. During use, the air outlet of the atomizing nozzle cover or the liquid outlet of the nozzle is easily clogged, which makes the equipment difficult to maintain. The purpose of the present invention is to provide a water light device that can solve the above problems. The water light device of the present application is very simple to use. You only need to connect the device to the power supply and add an appropriate amount of water to start water light. The beauty liquid temperature is automatically adjusted according to the ambient temperature to replenish moisture and ensure long-term moisturizing effect on the skin. While providing people with a convenient and fast water light solution, the water light device can also effectively improve problems such as dry skin and dehydration, allowing people to have smooth and hydrated skin in their busy lives.

[0004] To achieve the above object, the present invention adopts the following technical solutions:

[0005] A water light instrument includes a liquid storage bottle, a shell and a base. The lower part of the liquid storage bottle is connected to a silicone kit, and the silicone kit includes a silicone kit upper cover, a silicone kit lower cover, and a silicone liner. The shell includes a front shell and a rear shell. The silicone kit is fixed between the front shell and the rear shell. The lower part of the silicone kit is connected to a liquid joint. The lower part of the liquid joint is connected to a threaded sleeve. The front end of the liquid joint is provided with a threaded hole. The threaded sleeve is arranged in the shell of the atomizing mechanism. The atomizing mechanism is a detachable accelerated airflow atomizing mechanism for realizing liquid atomization. The front end of the atomizing mechanism shell is open; the inside of the atomizing mechanism shell is provided with an atomizing nozzle cover, a nozzle, a threaded sleeve, a front limit block, a spring, a rear limit block, a blocking needle, a transmission rod, a gear, a magnet, a gear cover and a Hall sensor in sequence from front to back; finally, the atomizing mechanism is closed by the rear cover of the atomizing mechanism.

[0006] The atomizing nozzle cover is connected to the front end of the threaded sleeve and the two are detachable. The rear end of the nozzle is connected to the front end of the threaded sleeve and the two are detachable. The front end of the blocking needle is fixedly connected to the front limit block. The rear end of the front limit block is provided with the spring. The rear end of the spring is provided with the rear limit block. The front end of the blocking needle is a needle. The rear end of the blocking needle is threadedly connected to the transmission rod. The other end of the transmission rod is fixedly connected to the gear. The rear end of the gear is fixedly provided with the gear cover. The magnet is fixed on the gear cover. A connecting pipe is provided below the atomizing mechanism. The air pump is connected to the connecting pipe through a hose. A control panel is provided below the air pump. A water light meter battery is provided below the control panel. A magnetic nut is provided below the water light meter battery. The upper half of the front shell is provided with two openings. The lower opening is provided with a button. A PCB board is provided behind the button. The base includes an upper shell of the base and a bottom cover of the base. The housing is located below the base housing, which has a male magnetic socket below it. A Type-C charging port is located on the side of the upper housing. A base battery is located within the upper housing, and a base bottom cover is located below the base battery. The Type-C charging port charges the base battery, which is used to power the female magnetic socket via the male magnetic socket, and ultimately, the water light instrument battery via the female magnetic socket.

[0007] In the above technical solution, the inner surface of the atomizer nozzle cover is fitted to the external thread of the nozzle, leaving a floating gap of 0mm to 1mm. An elastic element at the nozzle tail end absorbs machining errors and compensates for axial position deviations of the nozzle. The elastic element can be a sealing ring or other sealing silicone component. The nozzle tail end can adopt a tapered structure (with a cone angle of 1° to 10°), and the threaded sleeve has a tapered hole structure that adapts to the nozzle cone structure. An annular step surface can be provided within the atomization angle at the front end of the atomizer nozzle cover.

[0008] Furthermore, the upper platform surface of the threaded sleeve is provided with a liquid inlet for the liquid to be atomized to enter; the side platform surface of the threaded sleeve is provided with an air inlet for the gas to enter; an accelerated airflow cavity is formed between the atomizing nozzle cover and the nozzle, thereby realizing the atomization of the liquid; installation positioning grooves are provided on both sides of the tail end of the threaded sleeve, and the installation positioning grooves fix the threaded sleeve in the atomizing mechanism shell; the shape of the atomizing nozzle cover is designed to be an outer cone, and the outer cone surface is provided with an anti-slip texture, and the edge of the outer cone is provided with axially evenly distributed loading and unloading grooves, and the loading and unloading grooves cooperate with special disassembly tools to facilitate the installation, disassembly and maintenance of the atomizing nozzle cover, facilitate the installation, disassembly and maintenance of the atomizing nozzle cover, and facilitate solving the problem of blockage of the air outlet.

[0009] Furthermore, the nozzle front end is provided with a blocking hole, which cooperates with a blocking needle to achieve stable regulation of atomization. When the blocking needle moves forward, the blocking needle closes the blocking opening at the front end of the nozzle; when the blocking needle moves backward, the blocking needle opens the blocking opening at the front end of the nozzle.

[0010] Furthermore, the atomizing mechanism also includes a planetary reduction motor for driving the gear to rotate, which in turn drives the transmission rod to move, which in turn drives the blocking needle to linearly move within the threaded sleeve to retract and extend, thereby controlling the degree of atomization spray. The atomizing mechanism is also equipped with several sealing rings to ensure airtightness.

[0011] Furthermore, the liquid storage bottle includes a camera cover, an AI intelligent health detection camera component, an ultraviolet and air temperature and humidity detection component, and a liquid storage bottle body.

[0012] Furthermore, the AI smart health detection camera assembly is used to detect the user's skin condition, provide feedback to the user and give usage suggestions; a silicone kit is connected to the bottom of the liquid storage bottle, a liquid connector is connected to the bottom of the silicone kit, and the threaded sleeve is connected to the bottom of the liquid connector; a threaded hole is provided at the front end of the liquid connector; the liquid inlet of the threaded sleeve is interference-fitted with one side of the liquid connector, and the other side of the liquid connector is connected to the silicone kit; the air inlet of the threaded sleeve is connected with an air inlet pipe, and the air inlet pipe is connected to the air pump, so that an accelerated airflow cavity is formed between the atomizing nozzle cover and the nozzle, for the gas in the air inlet pipe to enter, thereby realizing the atomization of the liquid.

[0013] Furthermore, the atomizing nozzle cover can be replaced with a constant pressure nozzle, which stabilizes the pressure value by changing the nozzle channel cross-section, so that the nozzle is always kept moist, preventing the essence from drying and clogging the nozzle, thereby ensuring the normal operation of the blocking needle.

[0014] Furthermore, the atomizing nozzle cover can be replaced in a variety of ways, such as rotation, snap-on, rotation and snap-on, etc., which makes it easy to replace the nozzle after it is blocked, thereby extending the service life of the product.

[0015] Furthermore, the atomizing nozzle cover can be replaced with a polygonal nozzle in addition to the circular nozzle.

[0016] Furthermore, the side of the atomizing nozzle cover is provided with textures or positioning points to generate a certain friction force, making it more convenient to replace the nozzle, or installation and disassembly holes are provided, which can be replaced manually or with the assistance of tools.

[0017] Furthermore, the atomizing nozzle cover is of an openable type. When not in use, the cover is buckled to be in a sealed state, and is opened when in use, or an open-close type cover is used.

[0018] Furthermore, the button can be replaced by a touch slider or touch adjustment type through a modular design, and the amount of spray from the atomizing nozzle cover can be changed by changing a certain stroke or angle to achieve stepless adjustment.

[0019] Furthermore, the atomizing nozzle cover is of plug-in type, and the atomizing nozzle cover can be replaced by a combination of an elastic device or a pressure device or a rotation and a snap.

[0020] Furthermore, the number of teeth of the gear is 40 to 46, and the stroke is 0 to 3 mm.

[0021] Furthermore, the rear limiting block may be replaced with a variety of other shapes besides the runway circle shape.

[0022] Furthermore, the atomizing mechanism and the air pump are separable and modularized, and the atomizing mechanism can be installed on any gas power source and can be used normally.

[0023] Furthermore, the liquid in the liquid storage bottle can be heated, kept at room temperature, or cooled.

[0024] Furthermore, the water light instrument designs the gear sizes of the planetary reduction motor program through big data analysis and combines data from different regions, different populations, different climates, etc.

[0025] Furthermore, the water light instrument is provided with a switching mode button, and the liquid flow channel is changed after the switching mode button is pressed.

[0026] Furthermore, the liquid storage bottle may be provided with liquid storage spaces for a variety of consumables, and each consumable is provided with a corresponding liquid circulation channel.

[0027] Compared with the prior art, the water light instrument provided by the present invention has the following advantages:

[0028] The present invention provides a water light meter, in which the inner surface of the atomizing nozzle cover is fitted with the external thread of the nozzle, and a floating gap of 0mm~1mm is reserved. The processing error is absorbed by the elastic element at the tail end of the nozzle to compensate for the axial position deviation of the nozzle. The elastic element can choose a sealing ring and other sealing silicone parts. The tail end of the nozzle can adopt a conical structure with a cone angle of 1°~10°. The threaded sleeve is a conical hole structure adapted to the conical structure of the nozzle. The conical structure can play a guiding role, optimize the positioning reference, and improve the assembly coaxiality.

[0029] The present invention provides a water light instrument, which realizes the guiding effect of accelerating spiral airflow by arranging a cone on the inner surface of an atomizing nozzle cover.

[0030] The present invention provides a water light instrument, which realizes the convergence and uniform diffusion of the jet by arranging an annular step surface in the atomization angle at the front end of the atomization nozzle cover.

[0031] The present invention provides a water light instrument, which is beautiful and convenient for replacement, disassembly and maintenance by arranging anti-skid texture on the outer conical surface of the atomizing nozzle cover.

[0032] The present invention provides a water light instrument, which enables the gas to achieve spiral acceleration, increase the air flow rate, improve the gas-liquid ratio, and reduce the atomized particles by arranging an external thread on the nozzle to cooperate with the gap on the inner surface of the atomizing nozzle cover. At the same time, it is convenient to use special tools to cooperate with the thread for disassembly and maintenance.

[0033] The present invention provides a water light instrument, which realizes stable regulation of atomization by arranging a blocking hole and a blocking needle at the front end of a nozzle.

[0034] The present invention provides a water light instrument, which prevents convection caused by the air flow encountering the coaxial arc surface after passing through the air inlet by offsetting the center line of the air inlet of the threaded sleeve from the central axis of the threaded sleeve.

[0035] The present invention provides a water light instrument, which provides a threaded hole at the front end of a liquid joint, thereby sealing the liquid joint and facilitating maintenance when the liquid channel is blocked.

[0036] The present invention provides a water light instrument, which combines the anti-slip texture on the outer conical surface of the atomizing nozzle cover with the cylindrical body of the water light instrument body. While grasping the body with both hands, the thumbs of both hands press and rotate the anti-slip texture on the outer conical surface of the atomizing nozzle cover to complete the installation and disassembly of the atomizing nozzle cover. The anti-slip auxiliary position designed on the side is used for installation and disassembly through special tools, which increases the force bearing area and improves the efficiency during disassembly.

[0037] The present invention provides a water light instrument that adopts a detachable accelerated airflow atomization mechanism to achieve liquid atomization. By arranging an external thread on the nozzle to cooperate with the inner surface of the atomizing nozzle cover, an accelerated airflow with a spiral trajectory is formed, which prevents the essence from forming uniform deposition at the nozzle outlet on the inner surface of the atomizing nozzle cover and causing blockage, while expanding the atomization area.

[0038] The present invention provides a water light instrument, which reduces the overall size and facilitates portability while saving materials through the internal vertically arranged component structure.

[0039] The present invention provides a water light instrument, which stabilizes the pressure value by changing the cross-section of the nozzle channel, so that the nozzle is always kept moist, preventing the essence from drying and clogging the nozzle, and ensuring the normal operation of the blocking needle.

[0040] The present invention provides a water light instrument, which facilitates the replacement of the nozzle after clogging through multiple methods such as rotation, snapping, rotation and snapping, etc., thereby extending the service life of the product.

[0041] The present invention provides a water light instrument, which realizes stepless adjustment by changing the spray volume of the atomizing nozzle cover by changing a certain stroke or angle.

[0042] The present invention provides a water light instrument, which has liquid storage spaces for multiple consumables in a liquid storage bottle, and each consumable is provided with a corresponding liquid circulation channel, thereby achieving seamless switching of consumables. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] The present invention will be further described below with reference to the accompanying drawings and examples;

[0044] Figure 1 This is a schematic diagram of the overall appearance of a water light instrument of the present invention;

[0045] Figure 2 This is a schematic diagram of the internal structure of one side of a water light instrument of the present invention;

[0046] Figure 3 This is a schematic diagram of the explosion of the internal components of a water light instrument of the present invention;

[0047] Figure 4 This is a schematic diagram of an explosion of an atomization mechanism of a water light instrument of the present invention;

[0048] Figure 5 This is a schematic diagram of a gas spiral acceleration channel of an atomization mechanism of a water light instrument of the present invention;

[0049] Figure 6 This is a schematic diagram of the explosion of components inside the liquid storage bottle of a water light instrument of the present invention;

[0050] Figure 7 This is a schematic diagram of the process of health testing / sun protection testing of an automatic atomizing water light instrument of the present invention;

[0051] Figure 8 It is a cross-sectional view of a constant pressure atomizing nozzle of a water light instrument of the present invention;

[0052] Figure 9 It is a cross-sectional view of a rotating, snap-fit, and rotating and snap-fit atomizing nozzle cover of a water light instrument of the present invention;

[0053] Figure 10 This is a schematic diagram of a polygonal atomizing nozzle cover of a water light instrument of the present invention;

[0054] Figure 11 It is a schematic diagram of the side texture, positioning points, or installation and removal holes of the atomizing nozzle cover of a water light instrument of the present invention;

[0055] Figure 12 This is a schematic diagram of a method for opening a water light instrument according to the present invention;

[0056] Figure 13This is a schematic diagram of a water light instrument button and atomizing nozzle cover for achieving stepless adjustment;

[0057] Figure 14 This is a schematic diagram of a plug-in atomizing nozzle cover of a water light instrument of the present invention;

[0058] Figure 15 This is a schematic diagram of the travel of the blocking needle and the number of gear teeth of a water light instrument of the present invention;

[0059] Figure 16 This is a schematic diagram of the internal components of a water light instrument of the present invention;

[0060] Figure 17 This is a schematic diagram of a water light instrument with a separated modular structure of an atomizing mechanism and an air pump;

[0061] Figure 18 It is a schematic diagram of the digital display temperature of the liquid storage bottle of a water light instrument of the present invention;

[0062] Figure 19 This is a schematic diagram of switching between multiple consumables in a liquid storage bottle of a water light instrument of the present invention;

[0063] Figure 20 This is a schematic diagram of the position of the anti-slip auxiliary design of the side of a water light instrument of the present invention;

[0064] Among them, the liquid storage bottle 1, the camera cover 12, the AI smart health detection camera assembly 13, the ultraviolet and air temperature and humidity detection assembly 14, the shell 2, the front shell 201, the rear shell 202, the connecting decorative ring 203, the silicone kit 204, the silicone kit upper cover 2041, the silicone kit lower cover 2043, the silicone liner 2042, the liquid connector 205, the button 206, the PCB board 207, the hose 208, the control board 209, the magnetic female seat 210, the base 3, the base upper shell 31, the base bottom cover 32, the magnetic male seat 33, and the Type-C charging port 34 , base battery 35, atomizing mechanism 4, atomizing nozzle cover 401, nozzle 402, front limit block 403, spring 404, rear limit block 405, blocking needle 406, transmission rod 407, threaded sleeve 408, atomizing mechanism housing 409, gear 410, magnet 411, gear cover 412, Hall sensor 413, atomizing mechanism rear cover 414, air inlet pipe 415, planetary reduction motor 416, sealing ring 417, first annular cavity 418, second annular cavity 419, third annular cavity 420, floating gap 421, conical surface 422, air pump 5, water light meter battery 6. DETAILED DESCRIPTION

[0065] Example 1, such as Figure 1-Figure 3This embodiment is a water light instrument. The water light instrument includes a liquid storage bottle 1, which is connected to a housing 2 below. The housing 2 is connected to a base 3 below. The housing 2 is provided with a connecting decorative ring 203. The housing 2 is provided with a silicone sleeve 204 (for improved sealing). The silicone sleeve 204 includes an upper silicone sleeve cover 2041, a lower silicone sleeve cover 2043, and a silicone liner 2042. The silicone sleeve 204 is connected to a liquid connector 205 below. The liquid connector 205 is connected to an atomizing mechanism 4 below. The atomizing mechanism 4 is connected to an air pump 5 below via a hose 208. A control panel 209 is provided below the air pump 5. The water light instrument battery 6 is provided below the control panel 209. A magnetic nut 210 is provided below the water light instrument battery 6. The housing 2 is specifically composed of a front housing 201 and a rear housing 202. The silicone sleeve 204 is fixed between the front housing 201 and the rear housing 202. The upper half of the front shell 201 is provided with two openings, and the lower opening is provided with a button 206, and a PCB board 207 is provided behind the button 206. The base 3 includes a base upper shell 31 and a base bottom cover 32. A base upper shell 31 is provided below the shell 2, and a magnetic male socket 33 is provided below the base upper shell 31. A Type-C charging port 34 is provided on the side of the base upper shell 31, and a base battery 35 is provided in the base upper shell 31. The base bottom cover 32 is located below the base battery 35. The base battery 35 can be charged through the Type-C charging port 34. The base battery 35 is used to supply power to the magnetic female socket 210 through the magnetic male socket 33, and finally supply power to the water light instrument battery 6 through the magnetic female socket 210.

[0066] Example 2: Figure 3 、 4 As shown, when the user presses the button, the air pump 5 outputs air pressure from the hose 208 to the air inlet of the atomizing mechanism 4 and is sprayed out from the atomizing nozzle cover 401. At the same time, liquid flows from the liquid connector 205 to the liquid inlet of the atomizing mechanism 4 and is sprayed out from the atomizing nozzle cover 401 to achieve an atomization effect. An air inlet pipe 415 is provided between the atomizing nozzle cover 401 and the nozzle 402 for gas to enter; the atomizing nozzle cover 401 is designed to have an outer conical surface, and its outer conical surface is provided with an anti-slip texture. The air inlet pipe 415 specifically includes a metal gas connector 4151 and a metal gas pipe 4152; the metal gas connector 4151 is interference-fitted with the threaded sleeve 408; one side of the metal gas pipe 4152 is threadedly connected to the metal gas connector 4151, and the other side is interference-fitted with the hose 208 to the air pump 5. Several sealing rings 417 are also provided in the atomizing mechanism 4 to ensure the airtightness of the atomizing mechanism.

[0067] The upper platform surface of the threaded sleeve 408 is provided with a liquid inlet, which is interference-fitted with one side of the liquid connector 205, and one side of the liquid connector 205 is socketed with the silicone kit 204, and the silicone kit 204 is socketed with the liquid storage bottle 1 for the entry of liquid to be atomized; the side platform surface of the threaded sleeve 408 is provided with an air inlet, which is socketed with the air inlet pipe 415, and the air inlet pipe 415 is socketed with the air pump 5, and the atomizing nozzle cover 401 and the nozzle 402 are sequentially arranged in the threaded sleeve, and an accelerated airflow cavity is formed between the atomizing nozzle cover 401 and the nozzle 402 for the entry of gas from the air inlet pipe 415, thereby realizing the atomization of the liquid; installation positioning grooves are provided on both sides of the tail end of the threaded sleeve 408, and the installation positioning grooves fix the threaded sleeve in the atomizing mechanism housing.

[0068] The atomizing mechanism housing 409 has an open front end and an atomizing mechanism rear cover 414 at the rear end. Inside the atomizing mechanism housing 409, from front to back, are arranged the atomizing nozzle cover 401, nozzle 402, threaded sleeve 408, front stopper 403, spring 404, rear stopper 405, blocking needle 406, transmission rod 407, gear 410, magnet 411, gear cover 412, and Hall sensor 413. The atomizing nozzle cover 401 is connected to the front end of the threaded sleeve 408 and the two are detachable, the rear end of the nozzle 402 is connected to the front end of the threaded sleeve 408 and the two are detachable, the front end of the blocking needle 406 is fixedly connected to the front limit block 403, the rear end of the front limit block 403 is provided with a spring 404, the rear end of the spring 404 is provided with a rear limit block 405, the front end of the blocking needle 406 is a needle head, and the rear end of the blocking needle 406 is threadedly connected to the transmission rod 407; the other end of the transmission rod 407 is fixedly connected to the gear 410, and the rear end of the gear 410 is fixedly provided with a gear cover 412, and the magnet 411 is fixed on the gear cover 412. The inner surface of the atomizing nozzle cover 401 fits snugly with the outer threads of the nozzle 402, leaving a floating gap 421 of 0mm to 1mm between them. The tail end of the nozzle 401 is tapered with a taper angle of 1° to 10°. The threaded sleeve 408 has a tapered hole structure that matches the tapered structure of the nozzle 401. The atomizing nozzle cover 401 is designed with an outer conical surface (i.e., conical surface 422), which is provided with an anti-slip texture.

[0069] like Figure 8 As shown, the atomizing nozzle cover 401 can be replaced with a constant pressure nozzle, which stabilizes the pressure value by changing the nozzle channel cross-section, so that the nozzle is always kept moist, preventing the essence from drying and clogging the nozzle, and ensuring the normal operation of the blocking needle 406.

[0070] like Figure 9As shown, the atomizing nozzle cover 401 can be replaced in a variety of ways, such as rotation, snap-on, rotation and snap-on, etc., which facilitates the replacement of the nozzle 402 after clogging and extends the service life of the product.

[0071] like Figure 10 As shown, the atomizing nozzle cover 401 can be replaced with a polygonal nozzle in addition to the circular nozzle.

[0072] like Figure 11 As shown, the side of the atomizing nozzle cover 401 has textures or positioning points to generate a certain friction force, making it easier to replace the nozzle 402, or installation and disassembly holes are provided, which can be replaced manually or with the help of tools.

[0073] like Figure 12 As shown, the atomizing nozzle cover 401 is of an open-cover type. When not in use, the cover is buckled to be sealed, and when in use, the cover is opened, or an open-close type cover is used.

[0074] like Figure 14 As shown, the atomizing nozzle cover 401 is pluggable, and the atomizing nozzle cover 401 can be replaced by a combination of an elastic device, a pressure device, or rotation and snap fastening.

[0075] like Figure 16 As shown, the rear limiting block 405 can be replaced with various other shapes besides the runway circle shape for limiting.

[0076] like Figure 17 The atomizing mechanism 4 and the air pump 5 can be separated and modularized, and the atomizing mechanism 4 can be installed on any gas power source and can be used normally.

[0077] Example 3, such as Figure 3 、 4 As shown, when the user presses button 206, planetary reduction motor 416 rotates, simultaneously driving gear 410. Gear 410 drives transmission rod 407, which in turn drives blocking needle 406, causing it to move linearly within threaded sleeve 408, retracting and extending to control the degree of atomized spray. Specifically, when the blocking needle moves forward, it closes the sealing opening at the front of nozzle 402; when it moves backward, it opens the sealing opening at the front of nozzle 402. When magnet 411 rotates with gear cover 412 to Hall effect sensor 413, the device enters standby mode, simultaneously stopping planetary reduction motor 416 and delaying the shutdown of air pump 5.

[0078] like Figure 13 As shown, the button 206 can be replaced by a touch slider or touch adjustment type through a modular design, and the amount of spray from the atomizing nozzle cover 401 can be changed by changing a certain stroke or angle to achieve stepless adjustment.

[0079] like Figure 15As shown, the gear 410 has 40 to 46 teeth and a stroke of 0 to 3 mm.

[0080] Example 4: Figure 5 As shown, the airflow enters the first annular cavity 418 from the air inlet, swirls along the annular surface in the first annular cavity 418 to generate the first accelerated airflow, passes through the second annular cavity 419, swirls along the threaded surface to generate the second accelerated airflow, passes through the third annular cavity 420, and the accelerated spiral airflow is guided by the third annular cavity 420 and blown out from the air outlet evenly and stably.

[0081] Example 5: Figure 5 As shown, the user brings the liquid storage bottle 1 close to the skin, and the AI intelligent health detection camera component 13 detects the user's skin condition, and then provides feedback to the user through the big data platform or AI intelligent body and gives usage suggestions, etc.

[0082] like Figure 6 As shown, the liquid storage bottle 1 includes a camera cover, an AI intelligent health detection camera component, an ultraviolet and air temperature and humidity detection component, and a liquid storage bottle body.

[0083] A heating module can also be set up in the hyaluronic acid analyzer to autonomously adjust the temperature of the beauty liquid according to the ambient temperature, making the user's skin feel more comfortable.

[0084] like Figure 18 As shown, the liquid in the liquid storage bottle 1 can be heated, kept at room temperature, or cooled.

[0085] like Figure 19 As shown, the liquid storage bottle 1 can be provided with liquid storage spaces for a variety of consumables, and each consumable is provided with a corresponding liquid circulation channel. The water light instrument is provided with a switching mode button, and the liquid circulation channel can be changed after pressing the switching mode button.

[0086] Example 6: Figure 7 It is a flowchart of the health detection / sun protection detection of a water light instrument of the present invention. If a health detection is required: when the water light instrument receives the instruction, first open the camera cover 12, use the AI intelligent health detection camera component 13 to obtain the user image and analyze the image, compare and classify with the built-in data, confirm the user's skin health status, and then send information (such as usage suggestions) to the user. When a sun protection detection is required: when the water light instrument receives the instruction, first open the camera cover 12, use the ultraviolet and air temperature and humidity detection component 14 to obtain the outdoor image and analyze the image, compare and classify with the built-in data, confirm the ultraviolet intensity, and then send information (such as sun protection suggestions) to the user.

[0087] Example 7, such as Figure 20The anti-slip texture on the outer conical surface of the atomizing nozzle cover is combined with the cylindrical body of the water light instrument. While holding the body with both hands, use the thumbs of both hands to press and rotate the anti-slip texture on the outer conical surface of the atomizing nozzle cover to complete the installation and removal of the atomizing nozzle cover. The anti-slip auxiliary position designed on the side is used for installation and removal through special tools, which increases the force area and improves the efficiency of disassembly.

Claims

1. A water light instrument, characterized in that: Liquid atomization is achieved based on an atomizing mechanism, and the atomizing mechanism specifically comprises: an atomizing mechanism housing; an atomizing mechanism rear cover provided at the rear end of the atomizing mechanism housing; an opening at the front end of the atomizing mechanism housing; and an atomizing nozzle cover, a nozzle, a threaded sleeve, a front stopper, a spring, a rear stopper, a blocking needle, a transmission rod, a gear, a magnet, and a gear cover provided in the atomizing mechanism housing from front to back. The atomizing nozzle cover is connected to the front end of the threaded sleeve and the two are detachable. The shape of the atomizing nozzle cover is designed to be an outer cone, and the outer cone surface is provided with an anti-slip texture, and the anti-slip texture is used to realize the installation and disassembly of the atomizing nozzle cover; the rear end of the nozzle is connected to the front end of the threaded sleeve and the two are detachable. The front end of the blocking needle is fixedly connected to the front limit block, the rear end of the front limit block is provided with the spring, and the rear end of the spring is provided with the rear limit block. The front end of the blocking needle is a needle head, and the rear end of the blocking needle is threadedly connected to the transmission rod; the other end of the transmission rod is fixedly connected to the gear, and the gear cover is fixedly provided at the rear end of the gear, and the magnet is fixed on the gear cover; An accelerated airflow cavity is formed between the atomizing nozzle cover and the nozzle, thereby realizing atomization of the liquid; the accelerated airflow cavity sequentially forms a first annular cavity, a second annular cavity, and a third annular cavity in the flow direction of the airflow; after the airflow enters the first annular cavity, it swirls along the annular surface in the first annular cavity to generate a first accelerated airflow; when passing through the second annular cavity, the airflow swirls along the threaded surface of the second annular cavity to generate a second accelerated airflow; when passing through the third annular cavity, the accelerated spiral airflow is guided by the third annular cavity to be blown out evenly and stably; The inner surface of the atomizing nozzle cover fits the external thread of the nozzle, and a floating gap of 0mm~1mm is reserved between the two; the tail end of the nozzle adopts a conical structure with a cone angle of 1°~10°; the threaded sleeve is a tapered hole structure adapted to the conical structure of the nozzle.

2. The water light instrument according to claim 1, characterized in that The upper platform surface of the threaded sleeve is provided with a liquid inlet for the liquid to be atomized to enter; the side platform surface of the threaded sleeve is provided with an air inlet for the gas to enter; installation positioning grooves are provided on both sides of the tail end of the threaded sleeve, and the installation positioning grooves fix the threaded sleeve in the atomization mechanism housing; the edge of the outer conical surface is provided with axially evenly distributed loading and unloading grooves.

3. The water light instrument according to claim 2, characterized in that The atomizing mechanism is connected to an air pump, which is connected to a hose. The air pump outputs air pressure to the atomizing mechanism through the hose and sprays it out from the atomizing nozzle cover. At the same time, liquid flows into the atomizing mechanism from the liquid inlet and is sprayed out from the atomizing nozzle cover by the output air pressure to achieve the atomization effect.

4. The water light instrument according to claim 3, characterized in that The front end of the nozzle is provided with a blocking hole, and the blocking hole cooperates with the blocking needle to achieve stable adjustment of atomization.

5. The water light instrument according to claim 4, characterized in that: A planetary reduction motor is also provided in the atomization mechanism housing to drive the gear to rotate, the gear drives the transmission rod to move, and the transmission rod drives the blocking needle to move linearly in the threaded sleeve to achieve retraction and extension, thereby controlling the degree of atomization spraying.

6. The water light instrument according to claim 5, characterized in that The atomization mechanism housing is also provided with a Hall sensor, which is arranged at the rear of the gear cover. When the Hall sensor senses that the gear drives the magnet on the gear cover to approach the sensing range, the planetary reduction motor is controlled to stop rotating and enter a standby state.

7. The water light instrument according to claim 6, characterized in that It also includes a liquid storage bottle, a shell provided at the bottom of the liquid storage bottle, and a base provided at the bottom of the shell; the atomization mechanism is provided in the shell, and a switch button and an opening are provided on the shell, the switch is used to control the opening and closing of the water light instrument, and the opening is for spraying the spray generated by the atomization mechanism; the liquid storage bottle is connected to the atomization mechanism through a connecting pipe, which is used to introduce liquid into the interior of the atomization mechanism.

8. The water light instrument according to claim 7, characterized in that: The water light instrument is powered by a battery, the battery is arranged at the bottom of a control panel, and the control panel is arranged at the bottom of the air pump.

9. The water light instrument according to claim 7, characterized in that The liquid storage bottle is also provided with an AI smart health detection camera assembly, which is used to detect the user's skin condition, provide feedback to the user and give usage suggestions; a silicone kit is connected to the bottom of the liquid storage bottle, and a liquid connector is connected to the bottom of the silicone kit, and the bottom of the liquid connector is connected to the threaded sleeve; a threaded hole is provided at the front end of the liquid connector; the liquid inlet of the threaded sleeve is interference-fitted with one side of the liquid connector, and the other side of the liquid connector is connected to the silicone kit; the air inlet of the threaded sleeve is connected with an air inlet pipe, and the air inlet pipe is connected to the air pump, so that an accelerated airflow cavity is formed between the atomizing nozzle cover and the nozzle, for the gas in the air inlet pipe to enter, thereby realizing the atomization of the liquid.

Citation Information

Patent Citations

  • Water-light instrument

    CN219743672U

  • Water-light instrument with adjustable spray fineness

    CN220404578U