Electronic atomizer capable of adjusting air inflow

By designing an adjustable airflow electronic atomizer, the connection between the airflow port and the channel can be changed by toggling a lever, solving the problem of monotonous vapor flavor caused by fixed airflow. This enables multiple airflow methods and convenient device maintenance, improving user experience and safety.

CN223929492UActive Publication Date: 2026-02-24SHENZHEN SINOBANGOO TECH CO LTD
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Patent Information

Application Number
CN202520421551.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-02-24
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

The air intake of existing electronic atomizers is fixed and the air intake cannot be adjusted, resulting in a monotonous flavor of vapor that cannot meet the personalized needs of different users.

Method used

The design incorporates an adjustable airflow electronic atomizer. By tossing a lever to rotate the airflow adjustment component, the connection between the airflow port and the airflow channel can be changed, allowing for flexible adjustment of the airflow volume. A magnet connection facilitates the replacement and cleaning of the atomizer.

Benefits of technology

It allows for flexible adjustment of air intake to meet the vapor production needs of different users, improving the smoking experience. The magnetic connection facilitates device maintenance and enhances sealing and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic atomizers, in particular to an air inlet adjustable electronic atomizer which comprises a power supply device and an atomization device which are detachably connected. The power supply device comprises a power supply shell, an air adjusting piece arranged at the bottom of a cavity of the power supply shell, a battery assembly arranged in the cavity of the power supply shell and side face silica gel. The side silica gel cover is arranged on the side wall of the battery assembly and forms an air inlet channel surrounding the battery assembly; the air adjusting piece is provided with at least two first air inlet holes and a shifting rod. By shifting a shifting rod on the air adjusting piece, the air adjusting piece rotates at the bottom of the power supply shell, the first air inlet holes in different positions communicate with the air inlet channel, and therefore the air inlet amount can be flexibly adjusted, multiple air inlet modes are achieved, and the requirements of different users for the smoke amount and the smoking experience are met.
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Description

Technical Field

[0001] This application relates to the technical field of electronic atomizers, and in particular to an adjustable airflow electronic atomizer. Background Technology

[0002] As people pay more attention to their health, they have become aware of the harm that traditional tobacco causes to the body, which has led to the development of electronic atomizers.

[0003] Different users have different needs for vapor production and vaping experience. However, current electronic atomizers typically use fixed air intakes, which cannot adjust the airflow, resulting in a monotonous vapor flavor and failing to meet the personalized vapor production needs of different users. Utility Model Content

[0004] The purpose of this application is to improve the technical problem that most existing electronic atomizers use fixed air inlets and cannot adjust the air intake, and to provide an electronic atomizer with adjustable air intake.

[0005] The adjustable airflow electronic atomizer provided in this application adopts the following technical solution:

[0006] An adjustable airflow electronic atomizer includes a power supply device and an atomizing device. The power supply device and the atomizing device are detachably connected. The power supply device includes a power supply housing, an airflow regulating component disposed at the bottom of the power supply housing chamber, a battery assembly disposed within the power supply housing chamber, and a side silicone sealant. The side silicone sealant is disposed on the side wall of the battery assembly and forms an airflow channel surrounding the battery assembly. The airflow regulating component is provided with at least two first airflow holes and a lever.

[0007] Moving the lever rotates the air regulating component, connecting the first air intake hole with the air intake channel to achieve different air intake effects.

[0008] By employing the above technical solution, the lever on the air regulating component is moved, causing it to rotate at the bottom of the power supply casing. This connects the first air intake holes at different positions with the air intake channel, allowing for flexible adjustment of the air intake volume. Users can choose between high or low vapor production levels according to their preferences, with multiple air intake modes to meet the needs of different users for vapor production and vaping experience. Furthermore, a side silicone cover is located on the side wall of the battery assembly. The elastic properties of the sealing silicone allow it to fit tightly against the battery assembly and power supply casing, effectively sealing the air intake channel and preventing the entry of dust, moisture, and other impurities.

[0009] Optionally, the atomizing component includes a mouthpiece housing and a bottom cover disposed inside the mouthpiece housing, with a first magnet disposed on the bottom cover; the power supply device also includes a power supply top cover disposed on the power supply housing, with a second magnet disposed on the power supply top cover that cooperates with the first magnet.

[0010] By adopting the above technical solution, the atomizing component and the power supply device are connected by a magnet, which makes it convenient for users to clean, replace or maintain the atomizing device.

[0011] Optionally, the atomizing device may also include an atomizing component disposed within the mouthpiece housing. The atomizing component includes an oil cup, an oil storage cotton sleeved within the oil cup, a heating wire assembly inserted into the oil storage cotton, and a circuit board electrically connected to the heating wire assembly.

[0012] By adopting the above technical solution, the oil cup, oil storage cotton, heating wire assembly, and switching plate inside the atomizing component form a complete atomizing liquid storage and atomization system. The oil storage cotton, nestled inside the oil cup, effectively stores the atomizing liquid and heats and atomizes it through the heating wire assembly. The switching plate is electrically connected to the heating wire assembly and transfers electrical energy to the heating wire, making the atomization process more efficient and stable.

[0013] Optionally, the heating wire assembly includes a mesh wire that is electrically connected to the overcurrent plate via leads.

[0014] By adopting the above technical solution, the mesh filaments have a larger surface area, allowing for more thorough contact and heating of the atomizing liquid. This improves atomization efficiency and effect, resulting in finer, more uniform vapor and enhancing the user's vaping experience. Simultaneously, this structure also facilitates even heat distribution, preventing localized overheating and improving the safety and stability of the electronic atomizer.

[0015] Optionally, the overcurrent protection plate is provided with a second contact post inserted into the bottom cover, and the battery assembly is also provided with a first contact post of the second contact post.

[0016] By adopting the above technical solution, a stable electrical connection between the power supply device and the atomizing device is achieved. Optionally, the power supply device also includes a top silicone pad disposed on top of the battery assembly and a...

[0017] The bottom silicone of the pool assembly.

[0018] By adopting the above technical solution, the power supply device is equipped with top and bottom silicone sealant, which can effectively seal and protect the top and bottom of the battery assembly, prevent dust, moisture and other impurities from entering the battery assembly, avoid safety hazards such as damage or short circuits to the battery, extend the service life of the battery assembly, and improve the overall sealing and reliability of the electronic atomizer.

[0019] Optionally, the atomizing device may also include a top sealing silicone disposed on the top of the atomizing assembly and a bottom sealing silicone disposed on the bottom of the atomizing assembly.

[0020] By adopting the above technical solution, the atomizing device is equipped with top sealing silicone and bottom sealing silicone to seal the top and bottom of the atomizing component, which further enhances the sealing performance of the atomizing device and prevents leakage of atomizing liquid or external impurities from entering the atomizing component, thus affecting the atomization effect and the normal use of the product.

[0021] Optionally, the battery assembly also includes a charging port and a control switch that pass through the power supply housing.

[0022] By adopting the above technical solution, the battery assembly is equipped with a charging interface and a control switch, making the use of the e-atomizer more convenient. The charging interface allows users to easily charge the battery, ensuring continuous use of the e-atomizer, while the control switch allows users to easily control the start and stop of the e-atomizer, making operation simple and flexible.

[0023] Optionally, the atomizing device also includes a mouthpiece, which is detachably connected to the mouthpiece housing and is in communication with the atomizing component.

[0024] By adopting the above technical solution, the mouthpiece and mouthpiece shell can be easily connected, and can also be flexibly disassembled and assembled, making it convenient to add e-liquid.

[0025] Optionally, the atomizing device also includes a first oil-absorbing cotton disposed between the circuit board and the bottom cover, and a second oil-absorbing cotton disposed between the mouthpiece and the atomizing assembly. By adopting the above technical solution, the oil-absorbing cotton can effectively absorb the atomizing liquid, preventing leakage or accumulation of the atomizing liquid during transmission, and ensuring the purity and taste of the vapor.

[0026] In summary, this application includes at least one of the following beneficial technical effects:

[0027] 1. Move the lever on the air regulating device to rotate the air regulating device at the bottom of the power supply housing, so that the first air intake hole is connected with the air intake channel, thereby flexibly adjusting the air intake volume; users can choose the air intake effect of large or small smoke volume according to their own preferences, with multiple air intake modes to meet the needs of different users for smoke volume and smoking experience.

[0028] 2. The atomizing component and the power supply unit are connected by a magnet, which makes it easy for users to clean, replace or maintain the atomizing device;

[0029] 3. The mesh fibers have a large surface area, which allows for more thorough contact with and heating of the atomizing liquid, thereby improving atomization efficiency and effect, resulting in finer and more uniform smoke, and enhancing the user's smoking experience. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application;

[0031] Figure 2 This is an exploded structural diagram of an embodiment of this application;

[0032] Figure 3 This is a schematic diagram of the exploded structure of the power supply device;

[0033] Figure 4 This is a bottom view of the power supply unit;

[0034] Figure 5 yes Figure 4 Sectional view of section AA;

[0035] Figure 6 This is a schematic diagram of the overall structure of the air regulating component;

[0036] Figure 7 This is a bottom view of the gas regulating component of the power supply device rotated to the second position;

[0037] Figure 8 This is a top view of the power supply unit;

[0038] Figure 9 This is a top view of the atomizing device;

[0039] Figure 10 yes Figure 9 Sectional view of section AA;

[0040] Figure 11 This is a schematic diagram of the exploded structure of the atomizing device;

[0041] Figure 12 This is a bottom view of the atomizing device;

[0042] Figure 13 This is a schematic diagram of the overall structure of the heating wire assembly;

[0043] Figure 14 This is a schematic diagram of the overall structure of the mesh filaments. (Note: The reference numerals are not provided in the original text.)

[0044] 1. Power supply device; 11. Power supply housing; 12. Air regulating component; 121. Lever; 122. First air inlet; 13. Bottom silicone; 14. Battery assembly; 141. Charging interface; 142. Control switch; 143. First contact post; 15. Side silicone; 16. Top silicone; 17. Top cover; 171. First magnet; 18. Air inlet channel; 2. Atomizing device; 21. Nozzle housing; 22. Bottom cover; 221. Second magnet; 222. Second air inlet; 23. First absorbent cotton; 24. Bottom sealing silicone; 25. Atomizing assembly; 251. Oil cup; 252. Oil storage cotton; 253. Heating wire assembly; 2531. Mesh filament; 254. Fiberglass tube; 255. Electrode board; 2551. Second contact post; 26. Top sealing silicone; 27. Second absorbent cotton; 28. Nozzle. Detailed Implementation

[0045] The following is in conjunction with the appendix Figure 1 - Appendix Figure 7 This application will be described in further detail below.

[0046] It should be noted that if the embodiments of the present invention involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.

[0047] The adjustable airflow electronic atomizer disclosed in this embodiment is described in reference to... Figure 1 and Figure 2 It includes a power supply unit 1 and an atomizing device 2. The power supply unit 1 and the atomizing device 2 are detachably connected, allowing for easy replacement of different types of atomizing devices 2 according to individual needs and preferences, such as atomizing cartridges with different flavors or different vapor production levels, thereby meeting diverse usage requirements. (See reference) Figures 3 to 6 The power supply device 1 includes a power supply housing 11, an air regulating component 12 disposed at the bottom of the chamber of the power supply housing 11, a battery assembly 14 disposed within the chamber of the power supply housing 11, a side silicone sealant 15 covering the side wall of the battery assembly 14, and a top cover 17 covering the power supply housing 11. The power supply housing 11 and the battery assembly 14 form an air intake channel 18. The elastic properties of the side silicone sealant 15 allow it to fit tightly against the battery assembly 14 and the power supply housing 11, effectively sealing the side of the air intake channel 18 to prevent dust, moisture, and other impurities from entering and improving the air intake effect. Furthermore, the air regulating component 12 is provided with a lever 121 that passes through the bottom of the power supply housing 11. The air regulating component 12 has a circular structure and is provided with at least two first air intake holes 122 distributed circumferentially. Specifically, it is provided with three first air intake holes 122. Figure 6 .

[0048] By employing the aforementioned technical means, the air regulating component 12 is rotated by moving the lever 121. The air regulating component 12 rotates at the bottom of the power supply housing 11, connecting the first air inlet 122 at different positions with the air intake channel 18, thus achieving different air intake effects. For specific air intake modes, refer to... Figure 4 and Figure 7 , Figure 7 This indicates the air intake mode when the airflow regulator is rotated to the second position, showcasing the connection status of the dual air intakes and the channel. Users can choose between high or low vapor production levels to meet the needs of different users for vapor volume and vaping experience.

[0049] Reference Figures 9 to 12The atomizing assembly 25 includes a mouthpiece housing 21, a mouthpiece 28, and a bottom cover 22 disposed at the bottom of the mouthpiece housing 21. The mouthpiece 28 is detachably connected to the mouthpiece housing 21 and is in communication with the atomizing assembly 25. This detachable connection allows for easy connection and disassembly, facilitating the addition of e-liquid. Two first magnets 171 are provided on the bottom cover 22, symmetrically positioned around the center of the bottom cover 22. A second magnet 221, cooperating with the first magnet, is provided on the top cover 17. The atomizing assembly 25 and the power supply device 1 are connected via magnets, ensuring a more secure connection and allowing for easy replacement of the atomizing device 2, thus achieving a portable and comfortable user experience.

[0050] Reference Figures 10 to 11 The atomizing device 2 also includes an atomizing component 25 disposed within the mouthpiece housing 21. The atomizing component 25 includes an oil cup 251, an oil storage cotton 252 sleeved within the oil cup 251, a fiberglass tube 254 inserted into the oil storage cotton 252, a heating wire assembly 253 inserted into the oil storage cotton 252, and a power board 255 electrically connected to the heating wire assembly 253. The power board 255 is provided with a second contact post 2551, which passes through the bottom cover 22. The battery assembly 14 includes a first contact post 143, which passes through the bottom cover 22. The second contact post 2551 cooperates with the first contact post 143. The arrangement of the oil cup 251, oil storage cotton 252, heating wire assembly 253, and current-passing plate 255 inside the atomizing component 25 forms a complete atomizing liquid storage and atomization system. The oil storage cotton 252, fitted inside the oil cup 251, can effectively store the atomizing liquid and heat and atomize it through the heating wire assembly 253. The power supply device 1 transfers electrical energy to the heating wire through the first contact post 143, making the atomization process more efficient and stable. (Refer to...) Figure 12 The bottom cover 22 has a second air inlet 222, which is connected to the atomizing component 25. The second air inlet 222 is matched with the air intake channel 18, so that the atomizing device 2 can accurately match different airflows.

[0051] Reference Figures 13 to 14 The heating wire assembly 253 includes a mesh wire 2531, which is electrically connected to the overcurrent protection plate 255 via leads. The mesh wire 2531 structure allows for more thorough contact with and heating of the atomizing liquid, thus improving atomization efficiency and effect, resulting in finer and more uniform vapor and enhancing the user's vaping experience. Simultaneously, this structure also facilitates uniform heat distribution, preventing localized overheating and improving the safety and stability of the electronic atomizer.

[0052] Reference Figure 3 and Figure 5 The atomizing device 2 also includes a first oil-absorbing cotton 23 and a second oil-absorbing cotton 27. The first oil-absorbing cotton 23 is disposed between the overcurrent plate 255 and the bottom cover 22, and the second oil-absorbing cotton 27 is disposed between the mouthpiece 28 and the atomizing component 25. The first oil-absorbing cotton 23 and the second oil-absorbing cotton 27 can effectively absorb the atomizing liquid, preventing leakage or accumulation of the atomizing liquid during transmission, and ensuring the purity and taste of the vapor. The power supply device 1 also includes a top silicone 16 and a bottom silicone 13. The top silicone 16 is disposed between the top cover 17 and the power supply component, and the bottom silicone 13 is disposed before the power supply component and the air regulating component 12. The top silicone 16 located on the top of the battery assembly 14 and the bottom silicone 13 located at the bottom of the battery assembly 14 can effectively seal and protect the top and bottom of the battery assembly 14, preventing dust, moisture and other impurities from entering the battery assembly 14, avoiding damage to the battery or short circuits and other safety hazards, extending the service life of the battery assembly 14, and improving the overall sealing and reliability of the power supply device 1.

[0053] Reference Figure 10 and Figure 11 The atomizing device 2 also includes a top sealing silicone 26 and a bottom sealing silicone 24. The top sealing silicone 26 is disposed between the atomizing component 25 and the second oil-absorbing cotton 27, and the bottom sealing silicone 24 is disposed between the atomizing component 25 and the overcurrent plate 255. The top sealing silicone 26 located at the top of the atomizing component 25 and the bottom sealing silicone 24 located at the bottom of the atomizing component 25 can seal the top and bottom of the atomizing component 25, enhance the sealing performance of the atomizing device 2, and prevent the atomizing liquid from leaking or external impurities from entering the interior of the atomizing component 25, which would affect the atomization effect and the normal use of the product.

[0054] Reference Figure 4 and Figure 5 The bottom of the battery assembly 14 also features a charging port 141 that passes through the power supply housing 11 and a control switch 142. The charging port 141 facilitates battery charging, ensuring continuous use of the electronic atomizer, while the control switch 142 allows users to easily control the atomizer's start and stop, offering simple and flexible operation. The battery assembly 14 is equipped with a large-capacity battery, supporting long-term continuous use, reducing the need for frequent charging, and improving the user experience. Simultaneously, the large-capacity battery, combined with a smart identification chip, can automatically adjust the output power according to the type of atomizing device 2 and user habits, ensuring stable atomization performance and energy efficiency.

[0055] The implementation principle of this application embodiment is as follows: After the atomizing device 2 and the power supply device 1 are connected by a magnet, the lever 121 is adjusted so that the first air inlet 122 is connected to the air inlet channel 18, thereby flexibly adjusting the air intake; the control switch 142 is pressed to electrically connect the power supply device 1 and the atomizing device 2. When the user inhales the atomizing device 2, the gas flows from the first air inlet 122 to the air inlet channel 18, and then flows through the second air inlet 222 to the atomizing assembly 25. Finally, the heating wire assembly 253 heats and atomizes the atomizing liquid to produce smoke; the power supply device 1 and the atomizing device 2 adopt the most suitable airway ratio to fully atomize the atomizing liquid; secondly, the power supply device 1 and the atomizing device 2 adopt an intelligent identification chip, which enables the large-capacity atomizing device 2 to be used to the maximum extent. The embodiments of this specific implementation are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. The same components are indicated by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application shall be covered within the scope of protection of this application.

Claims

1. An adjustable airflow electronic atomizer, comprising a power supply device (1) and an atomizing device (2), wherein the power supply device (1) and the atomizing device (2) are detachably connected, characterized in that, The power supply device (1) includes a power supply housing (11), an air regulating component (12) disposed at the bottom of the chamber of the power supply housing (11), a battery assembly (14) disposed in the chamber of the power supply housing (11), and a side silicone sealant (15); the side silicone sealant (15) covers the side wall of the battery assembly (14) and forms an air intake channel (18) surrounding the battery assembly (14); the air regulating component (12) is provided with at least two first air intake holes (122) and a lever (121). By moving the lever (121), the air regulating component (12) is rotated, so that the first air inlet (122) is connected to the air inlet channel (18) to achieve different air intake effects.

2. The adjustable air intake electronic atomizer according to claim 1, characterized in that, The atomizing device (2) includes a mouthpiece shell (21) and a bottom cover (22) disposed in the cavity of the mouthpiece shell (21), and a first magnet (171) is disposed on the bottom cover (22); the power supply device (1) also includes a power supply top cover (17) disposed on the power supply shell (11), and a second magnet (221) cooperating with the first magnet (171) is disposed on the power supply top cover (17).

3. The adjustable air intake electronic atomizer according to claim 2, characterized in that, The atomizing device (2) further includes an atomizing component (25) disposed in the mouthpiece housing (21). The atomizing component (25) includes an oil cup (251), an oil storage cotton (252) sleeved in the oil cup (251), a heating wire assembly (253) inserted in the oil storage cotton (252), and a power supply plate (255) electrically connected to the heating wire assembly (253).

4. An adjustable air intake electronic atomizer according to claim 3, characterized in that, The heating wire assembly (253) includes a mesh wire (2531), which is electrically connected to the overcurrent plate (255) via leads.

5. An adjustable air intake electronic atomizer according to claim 3, characterized in that, The overcurrent plate (255) is provided with a second contact post (2551) inserted into the bottom cover (22), and the battery assembly (14) is provided with a first contact post (143) that cooperates with the second contact post (2551).

6. An adjustable air intake electronic atomizer according to claim 1, characterized in that, The power supply device (1) further includes a top silicone (16) disposed on the top of the battery assembly (14) and a bottom silicone (13) disposed on the bottom of the battery assembly (14).

7. An adjustable air intake electronic atomizer according to claim 3, characterized in that, The atomizing device (2) further includes a top sealing silicone (26) disposed on the top of the atomizing component (25) and a bottom sealing silicone (24) disposed on the bottom of the atomizing component (25).

8. An adjustable air intake electronic atomizer according to claim 1, characterized in that, The battery assembly (14) is also provided with a charging interface (141) and a control switch (142) passing through the power supply housing (11).

9. An adjustable air intake electronic atomizer according to claim 3, characterized in that, The atomizing device (2) also includes a mouthpiece, which is detachably connected to the mouthpiece housing (21) and is in communication with the atomizing component (25).

10. An adjustable air intake electronic atomizer according to claim 3, characterized in that, The atomizing device (2) further includes a first oil-absorbing cotton (23) disposed between the electric plate (255) and the bottom cover (22), and a second oil-absorbing cotton (27) disposed between the mouthpiece (28) and the atomizing component (25).