Atomizing device

By setting an air-blocking slope and a flexible material support plate structure in the atomizer device, the gradual inhalation resistance adjustment of the atomizer device is achieved, which solves the problem that existing devices cannot adapt to both mouth-inhalation and lung-inhalation users at the same time, and improves the user experience.

CN115530430BActive Publication Date: 2025-10-10SHENZHEN SKE TECH CO LTD
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Patent Information

Application Number
CN202211303552.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-24
Publication Date
2025-10-10
Estimated Expiration
2042-10-24

AI Technical Summary

Technical Problem

Existing atomizer devices cannot adapt to the needs of both mouth-to-lung and lung-to-inhalation user groups at the same time. The adjustment range of the inhalation resistance is too small or the variation is too large, resulting in a poor user experience.

Method used

An atomization device is designed. By setting an air-blocking slope in the airflow channel, the conductive area between the air inlet and the outside world is gradually increased when the air-regulating component moves. Combined with a flexible material and a support plate structure, the inhalation resistance is gradually adjusted to adapt to the puffing taste requirements of different users.

Benefits of technology

It effectively avoids significant changes in the initial resistance to inhalation, adapts to the taste requirements of different users, and improves the user experience, especially the adjustment convenience for mouth-to-lung and lung-to-vaping users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an atomization device, comprising a main body, an atomization assembly and an airflow channel are arranged in the main body, one end of the airflow channel is communicated with the atomization airflow inside the atomization assembly, and the other end is exposed from the surface of the main body to form an air inlet; an air adjusting member is movably arranged on the main body, the air adjusting member covers the air inlet when being moved to a first position, the air adjusting member opens the air inlet when being moved to a second position, and the air inlet gradually increases in the area communicated with the outside when the air adjusting member is moved from the first position to the second position; the airflow channel comprises a first surface opposite to the air inlet, the first surface is provided with a gas resistance slope, the gas resistance slope comprises a second surface facing the air inlet, and the distance between the second surface and the air inlet gradually increases along the track of the air adjusting member from the first position to the second position; and an air inlet channel communicated with the airflow channel is formed between the part of the air inlet not covered by the air adjusting member and the second surface. The application aims to adapt to the needs of different users for the suction taste.
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Description

Technical Field

[0001] The invention belongs to the technical field of atomization to generate aerosol to replace cigarettes for users to smoke, and in particular relates to an atomization device. Background Art

[0002] The atomization equipment uses a heating atomization method to atomize the solution to be atomized into an aerosol for the user to inhale, thereby replacing cigarettes and reducing the harm to the human body caused by harmful components such as tar produced by burning cigarettes.

[0003] To meet the different user demands for puffing experience, atomizers with adjustable airflow area between the air inlet and the outside world have gradually appeared on the market. By adjusting the airflow area, the inhalation resistance can be adjusted to meet the needs of different users.

[0004] The atomization devices currently available on the market that can adjust the draw resistance usually have multiple air inlet holes with different conduction areas, and the draw resistance can be adjusted to different sizes by closing different air inlet holes. In this case, the draw resistance level is fixed, and the user group it is suitable for is limited. Alternatively, a larger air inlet can be set up, and the size of the draw resistance can be adjusted by adjusting the conduction area between the larger air inlet and the outside world. However, due to the height of the air flow channel inside the air inlet, the initial draw resistance fluctuates greatly during the initial air adjustment process from closing to opening the air inlet. For example, when opening a small opening from closing to opening, the draw resistance decreases from 600 to 300, and when it is further fully opened, the draw resistance decreases from 300 to 200. Therefore, although the draw resistance can be adjusted steplessly during the entire adjustment process, the entire fluctuation range of the draw resistance is within a smaller draw resistance range, which is suitable for users of lung inhalation. It cannot satisfy both mouth-to-lung and lung-to-lung users at the same time. Summary of the Invention

[0005] The purpose of the embodiments of the present application is to provide an atomization device that is designed to adapt to the needs of different users for smoking taste.

[0006] To achieve the above objectives, the technical solution adopted in this application is to provide an atomization device, comprising:

[0007] A main body, in which an atomizing assembly and an air flow channel are provided, one end of the air flow channel is connected to the atomizing air flow inside the atomizing assembly, and the other end is exposed from the surface of the main body to form an air inlet;

[0008] an air regulating member movably mounted on the main body, wherein when the air regulating member moves to a first position, the air inlet is covered, and when the air regulating member moves to a second position, the air inlet is opened, and when the air regulating member moves from the first position to the second position, the conductive area between the air inlet and the outside world gradually increases;

[0009] The air flow channel comprises a first surface opposite to the air inlet, the first surface is provided with a gas resistance slope, the gas resistance slope comprises a second surface facing the air inlet, and the distance between the second surface and the air inlet gradually increases along the track of the air adjusting member from the first position to the second position.

[0010] The part of the air inlet not covered by the air adjusting member and the second surface form an air inlet channel in communication with the air flow channel.

[0011] Optionally, the gas resistance slope further comprises a third surface, the third surface is connected to the highest part of the second surface, and the distance between the third surface and the air inlet is constant.

[0012] When the air adjusting member moves from the first position to the second position, the third surface is first gradually exposed to the outside from the air inlet.

[0013] Optionally, the air adjusting member comprises a gas blocking plate, a control part and two support plates, the gas blocking plate is located inside the air inlet, the control part is installed on the gas blocking plate and passes through the air inlet to the outside, the two support plates are installed on the surface of the gas blocking plate facing the first surface and abut against the first surface, and the two support plates form an avoidance space for avoiding the gas resistance slope, and the gas resistance slope is located in the avoidance space.

[0014] Optionally, the first surface is made of flexible material, one end of the two support plates away from the gas blocking plate elastically abuts against the first surface, and at least part of the edge of the gas blocking plate abuts against the inner edge of the air inlet to limit the position.

[0015] Optionally, the gas resistance slope and the first surface are integrally formed by flexible material, and the two connecting plates elastically abut against the two sides of the gas resistance slope.

[0016] Optionally, the main body further comprises an air flow triggering sensor and a flexible sealing seat, one side of the sealing seat faces the air inlet and is configured as the first surface of the air flow channel, the sealing seat is further provided with a mounting groove, the groove of the mounting groove is in communication with the air flow channel, and the air flow triggering sensor is installed in the mounting groove, and the air flow sensor is triggered when the air flow in the mounting groove is sucked into the air flow channel from the groove.

[0017] Optionally, the main body comprises a main machine and a base, the upper end of the main machine is provided with a mist outlet, the lower end is provided in an open manner, the inside of the main machine is provided with the atomization assembly and a power supply electrically connected thereto, the power supply is used for supplying power to the atomization assembly to drive the atomization of the atomization assembly to form an air mist from the mist outlet, and the base comprises a seat body, the air flow triggering sensor and the sealing seat.

[0018] The base body is provided with an installation space, and the upper end of the base body is plugged into the opening through an interference seal. The installation space of the base body is connected to the internal atomization air path of the atomization assembly inside the main unit through the opening, forming the first part of the air flow channel. The lower end surface of the base body is provided with the air inlet connecting the outside and the installation space.

[0019] The sealing seat is installed in the installation space, and the outer peripheral surface of the sealing seat is interference-sealed with the inner peripheral surface of the installation space. The side of the sealing seat facing the air inlet is spaced apart from the inner wall of the seat body where the air inlet is located, forming a movable space for the air regulating component to move;

[0020] The sealing seat is provided with an air passage connecting the installation space and the movable space, and the air passage is staggered with the air inlet so that the area between the surface of the sealing seat facing the air inlet and the air passage forms the first surface, and the second part of the air flow channel is formed between the first surface and the inner wall corresponding to the seat body.

[0021] Optionally, the base also includes a circuit board, and the base body is also provided with a charging socket. The circuit board is installed on the side of the sealing seat facing away from the air inlet, and the side of the circuit board facing the charging socket is electrically integrated with a charging socket. The charging socket passes through the sealing seat and is plugged into the charging socket. The sealing seat is sleeved on the outer periphery of the charging socket, and the lower end of the sealing seat elastically interferes with the inner edge of the charging socket, and the upper end elastically interferes with the circuit board.

[0022] Optionally, the air inlet is an arc-shaped hole surrounding the charging insertion port, and the air baffle is a fan-shaped plate adapted to the air inlet.

[0023] Optionally, the bottom wall of the seat body is further provided with two enclosing plates protruding along the extension direction of the air inlet, the two enclosing plates being arranged in parallel and spaced apart on both sides of the extension direction of the air inlet, and a sliding space for the air baffle to slide is formed between two opposing surfaces of the two enclosing plates.

[0024] The beneficial effects of the present application are as follows: an air-blocking slope is provided on the first surface of the air flow channel facing the air inlet, the air-blocking slope includes a second surface facing the air inlet, and the distance between the second surface and the air inlet gradually increases along the trajectory of the air modulator moving from the first position to the second position; that is, as the air modulator is opened, the distance between the air-blocking slope and the air inlet also gradually increases, so that the air inlet channel formed between the portion of the air inlet not covered by the air modulator and the second surface that is connected to the air flow channel gradually increases. This avoids the phenomenon of a significant reduction in draw resistance in the initial stage of the air modulator from closing to opening (for example, from fully closing to opening 10%), which makes it difficult to adapt to mouth-based vaping, and effectively adapts to the taste requirements of different users. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0026] Figure 1 This is an exploded schematic diagram of the connection structure between the atomizing device base, the gas regulating component, and the host in the embodiment of the present application;

[0027] Figure 2 This is a schematic cross-sectional view of the connection structure of the atomization device in an embodiment of the present application;

[0028] Figure 3 This is a schematic diagram of the exploded connection structure of the base in the atomization device in the embodiment of the present application;

[0029] Figure 4 This is a schematic cross-sectional view of the connection structure of the base in an embodiment of the present application;

[0030] Figure 5 This is a schematic side view of the connection structure of the sealing seat in the embodiment of the present application;

[0031] Figure 6 This is a three-dimensional schematic diagram of the connection structure of the sealing seat in the embodiment of the present application;

[0032] Figure 7 This is a schematic diagram of the connection structure between the seat body and the gas regulating member in the embodiment of the present application;

[0033] Figure 8 This is a three-dimensional schematic diagram of the base when the air regulating member is opened to the first stage (mouth suction) in the embodiment of the present application;

[0034] Figure 9This is a three-dimensional schematic diagram of the base when the gas regulating member is opened to the second stage (lung inhalation) in the embodiment of the present application;

[0035] Figure 10 This is a three-dimensional schematic diagram of the atomization device in an embodiment of the present application.

[0036] Among them, the reference numerals in the figures are:

[0037] Figure Numbers name Figure Numbers name 1000 Atomization equipment 3211 Event Space 100 main body 322 Air-blocking slope 10 Host 3221 Second surface 11 fog outlet 3222 The third surface 12 Opening 323 Exhaust 13 Atomization components 324 Mounting slot 14 power supply 33 circuit boards 20 airflow channel 331 Charging socket 30 base 40 Intake duct 31 base body 50 Gas regulating parts 311 air intake 51 air deflector 312 Charging port 52 Drive Control Department 313 Hoarding 53 Support plate 32 Sealing seat 531 Avoidance space 321 First surface 60 Airflow trigger sensor DETAILED DESCRIPTION

[0038] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application more clearly understood, this application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0039] It should be noted that when an element is referred to as being “fixed on” or “disposed on” another element, it may be directly on the other element or indirectly on the other element. When an element is referred to as being “connected to” another element, it may be directly connected to the other element or indirectly connected to the other element.

[0040] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.

[0041] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. Throughout the description of this application, "plurality" means two or more, unless otherwise specifically defined.

[0042] See also Figures 1 to 10The present application provides an atomizing device 1000, comprising: a main body 100 and an air regulating component 50, wherein the main body 100 comprises a host 10 and a base 30, wherein one end of the host 10 is provided with a mist outlet 11 connected to the internal atomizing gas path of the atomizing component 13, and the other end is provided in the shape of an opening 12 for installation of the base 30. The interior of the host 10 is provided with an atomizing component 13 and an air flow channel 20, as well as a battery for providing electrical energy to the atomizing component 13, such as a rechargeable battery. The atomizing component 13 generates heat under the drive of electrical energy, heats the atomizing solution stored in the atomizing component 13, and atomizes it into an aerosol, which is then discharged to the outside through the mist outlet 11 of the host 10, thereby replacing cigarettes for the user to inhale. The base 30 is provided with an air inlet 311, and the air flow channel 20 is used to connect the air inlet 311 with the air flow inside the atomizer assembly 13, thereby providing a working air flow for the atomizer assembly 13; here, the air flow channel 20 can be an independent air guide channel set inside the host 10, or the air flow channel 20 can be formed in the gap between the battery and the inner wall of the host 10, and the technical solution of this application is not limited here.

[0043] Specifically, if Figure 3 As shown, in an embodiment of the present application, the air regulating component 50 is movably mounted on the base 30 of the main body 100, for example, it is rotatably mounted on the main body 100 by a rotating shaft, or is slidably mounted on the base 30 of the main body 100 by a slide groove. When the air regulating component 50 moves to the first position, the air inlet 311 is covered, thereby isolating the air flow channel 20 from the outside world. When the air regulating component 50 moves to the second position, the air inlet 311 is opened. Opening the air inlet 311 here means that the air regulating component 50 moves to a state where the air inlet 311 is not covered, that is, the air inlet 311 is fully opened and connected to the outside world. When the air regulating component 50 moves from the first position to the second position, the conduction area between the air inlet 311 and the outside world gradually increases.

[0044] Further, if Figure 3 、 Figure 4As shown, in the embodiment of the present application, the airflow channel 20 includes a first surface 321 directly opposite the air inlet 311, the first surface 321 being provided with an air-blocking slope 322, the air-blocking slope 322 including a second surface 3221 facing the air inlet 311, and the distance between the second surface 3221 and the air inlet 311 gradually increases along the trajectory of the air regulating member 50 moving from the first position to the second position; the air inlet channel 40 connected to the airflow channel 20 is formed between the portion of the air inlet 311 not covered by the air regulating member 50 and the second surface 3221. That is, as the degree of opening of the air regulating member 50 increases, the distance between the air-blocking slope 322 and the air inlet 311 also increases synchronously, so that the air inlet channel 40 connected to the airflow channel 20 formed between the portion of the air inlet 311 not covered by the air regulating member 50 and the second surface 3221 gradually increases. The present application effectively avoids the phenomenon that the draw resistance is significantly reduced in the initial stage of the air regulating member 50 from being closed to being opened (for example, from being fully closed to being 10% open), directly changing from a large draw resistance of mouth inhalation to a small draw resistance of lung inhalation, which makes it difficult for consumers accustomed to mouth inhalation to adjust the size of the draw resistance of mouth inhalation. By setting the air resistance slope 322, the taste requirements of different users can be effectively adapted.

[0045] Further, if Figure 3 Combine Figure 5 、 Figure 9As shown, in the embodiment of the present application, the air-blocking slope 322 also includes a third surface 3222, and the third surface 3222 is connected to the highest point of the second surface 3221, and the distance between the third surface 3222 and the air inlet 311 remains unchanged; when the air regulating member 50 moves from the first position to the second position, the third surface 3222 first gradually emerges from the air inlet 311 to the outside world. In this embodiment, the highest point of the second surface 3221 extends out a surface parallel to the plane where the air inlet 311 is located, forming the third surface 3222, so that the distance between the third surface 3222 and the air inlet 311 is consistent, that is, the air inlet channel 40 formed here is of the same height and is relatively small. For ease of description, it is defined that the period from when the air regulating member 50 closes the air inlet 311 to when it moves to when the second surface 3221 emerges from the air inlet 311 is the first stage, and the period from when the air inlet 311 is fully opened is the second stage. Therefore, when the air-regulating member 50 is activated in the first stage, due to the consistent height of the air inlet channel 40, the area available for airflow is only affected by the degree of opening of the air inlet 311. Furthermore, the smaller air inlet channel 40 here results in a smaller reduction in draw resistance during adjustment, making it easier for mouth-inhaling users to adjust the draw resistance in mouth-inhalation mode. When the air-regulating member 50 is activated in the second stage, due to the gradual increase in the distance between the second surface 3221 and the air inlet 311, the air inlet channel 40 formed between the second surface 3221 and the air inlet 311 gradually increases. At this point, the area available for airflow increases not only with the degree of opening of the air inlet opening 12, but also with the distance between the second surface 3221 and the air inlet 311. Therefore, during adjustment in this stage, the reduction in draw resistance is greater, making it easier for lung-inhaling users to adjust the draw resistance in lung-inhalation mode.

[0046] Specifically, if Figure 3 、 Figure 4 Combine Figure 7As shown, in the embodiment of the present application, the air regulating member 50 includes an air baffle 51, a drive control portion 52 and two support plates 53. The air baffle 51 is located on the inner side of the air inlet 311, and the drive control portion 52 is installed on the air baffle 51 and passes through the air inlet 311 to be located outside, thereby forming a handle for user operation. It is understandable that in actual use, the drive control portion 52 is not limited to passing through the air inlet 311 to be located outside. For example, in other embodiments of the present application, the drive control portion 52 can also be flush with the outside of the air inlet 311 or located inside the air inlet 311, which also falls within the scope of protection of the present application. At the same time, to facilitate user operation, a number of protruding bone positions can be provided on the outer surface of the drive control portion 52 to enhance the friction between the user's fingers. Furthermore, the two support plates 53 are installed at intervals on the surface of the air baffle 51 facing the first surface 321 and abut against the first surface 321. At this time, the other end of the air baffle 51 abuts against the inner edge of the air inlet 311. When the control unit 52 passes through the air inlet 311, it is restrained by the inner wall of the air inlet 311, thereby preventing the air regulating member 50 from shaking. The two support plates 53 form a clearance space 531 to avoid the air blocking slope 322. The air blocking slope 322 is located within the clearance space 531, so it will not interfere with the air blocking slope 322 during sliding. In addition, the two support plates 53 can also be positioned and guided by the air blocking slope 322, preventing the air regulating member 50 from deviating and causing sliding problems.

[0047] Specifically, the first surface 321 is made of a flexible material, such as silicone or flexible rubber, with silicone being selected in this application. The two support plates 53 are elastically abutted against the first surface 321 at one end away from the air baffle 51. At least a portion of the edge of the air baffle 51 abuts against the inner edge of the air inlet 311 for position limiting. Under the elastic force of the first surface 321, the air baffle 51 is pressed tightly against the inner edge of the air inlet 311, thereby enhancing the damping feel of the control unit 52 during sliding and preventing friction noise caused by hard contact between the support plates 53 and the first surface 321.

[0048] Further, if Figure 4 Combine Figure 8 、 Figure 9As shown, in this embodiment of the present application, the air blocking slope 322 and the first surface 321 are integrally formed from a flexible material. The two connecting plates elastically abut against the sides of the air blocking slope 322, further enhancing the sliding effect and ensuring assembly accuracy. This ensures the precise size of the air inlet channel 40 and prevents inconsistent gaps between the two support plates 53 and the air blocking slope 322 during assembly, which could cause airflow to escape through the gap between the air blocking slope 322 and the two support plates 53, resulting in a less consistent taste across batches of products. Furthermore, as the air modulator 50 moves from the first position to the second position, the inclined air blocking slope 322 gradually reduces the contact surface with the two support plates 53, thereby gradually reducing damping. This results in greater resistance and less damping in the first stage of adjustment, allowing for more precise adjustment and avoiding fluctuations in the sliding stroke. When the air modulator 50 is adjusted to the second stage, the resistance is lower and the damping is greater, facilitating the adjustment of large airflow to lung inhalation. Furthermore, the user can discern the transition from mouth-to-lung inhalation through tactile feedback.

[0049] Specifically, if Figure 3 、 Figure 4 As shown, in the embodiment of the present application, the base 30 includes a base body 31, an airflow trigger sensor 60, and a flexible sealing base 32. An installation space is defined within the base body 31, and the upper end of the base body 31 is inserted into the opening 12 through an interference seal. The installation space of the base body 31 communicates with the internal atomization air path of the atomizer assembly 13 within the main unit 10 through the opening 12, forming the first portion of the airflow channel 20. The lower end surface of the base body 31 defines an air inlet 311 that connects the outside world to the installation space.

[0050] The sealing seat 32 is installed in the installation space, and the outer peripheral surface of the sealing seat 32 is interference sealed with the inner peripheral surface of the installation space, and one side of the sealing seat 32 faces the air inlet 311, and is spaced apart from the inner wall of the seat body 31 where the air inlet 311 is located, forming an active space 3211 for the air regulating component 50 to move; the sealing seat 32 is provided with an air port 323 connecting the installation space and the active space 3211, and the air port 323 is staggered with the air inlet 311, so that the area between the surface of the sealing seat 32 facing the air inlet 311 and the air port 323 forms the first surface 321, and the second part of the air flow channel 20 is formed between the first surface 321 and the corresponding inner wall of the seat body 31. The sealing seat 32 also has a mounting slot 324, the opening of which communicates with the airflow channel 20. The airflow trigger sensor 60 is mounted within the mounting slot 324. When airflow within the mounting slot 324 is drawn into the airflow channel 20 through the opening, the airflow sensor is triggered. Here, the sealing seat 32 is used to mount the airflow trigger sensor 60 and is configured as the first surface 321 of the airflow channel 20. This eliminates the need for additional flexible components to construct the first surface 321 of the airflow channel 20, resulting in a compact structure, reduced component count, and improved processing and assembly efficiency.

[0051] Specifically, if Figure 4 As shown, in the embodiment of the present application, the base 30 also includes a circuit board 33, and the base body 31 is also provided with a charging socket 312. The circuit board 33 is installed on the side of the sealing seat 32 away from the air inlet 311, and the side of the circuit board 33 facing the charging socket 312 is electrically integrated with a charging plug socket 331. The charging plug socket 331 passes through the sealing seat 32 and is plugged into the charging socket 312. The sealing seat 32 is sleeved on the outer periphery of the charging plug socket 331, and the lower end of the sealing seat 32 elastically interferes with the inner edge of the charging socket 312, and the upper end elastically interferes with the circuit board 33. Here, in the embodiment of the present application, the sealing seat 32 is sleeved on the outer periphery of the charging socket 331, and the lower end of the sealing seat 32 elastically interferes with the edge of the inner side of the charging insertion port 312, and the upper end elastically interferes with the circuit board 33, thereby enclosing the gap between the charging insertion port 312 and the charging socket 331 into a closed space. This allows the external airflow to flow only through the air inlet 311 into the second part of the air flow channel 20, and then through the air port 323 and the first part of the air flow channel 20 to flow into the internal atomization air path of the atomizer assembly 13. In addition, the circuit board 33 is located on the side of the sealing seat 32 away from the charging insertion port 312, thereby supporting the air regulating part 50 and preventing the air regulating part 50 from being biased toward the inside of the seat body 31 due to force, resulting in a key jam.

[0052] Further, as Figure 8 In combination Figure 9 As shown in FIG. 6, to enhance the product aesthetic performance, the charging plug-in port 312 is located at the center of the lower end surface of the seat body 31, so that the outer peripheral surface of the atomization device is complete, avoiding the phenomenon of scratching hands caused by the charging plug-in port 312 located on the side wall of the main machine 10. And the charging plug-in port 312 is arranged at the lower end of the seat body 31, which will not affect the user's holding and use after the charging wire is inserted. Further, to increase the area of the air inlet 311 and the sliding stroke of the air adjusting member 50, and to realize large-range air flow adjustment, the air inlet 311 is an arc-shaped hole surrounding the charging plug-in port 312, and the air baffle 51 is a fan-shaped plate adapted to the air inlet 311. The rectangular hole has a larger sliding stroke, so that the air flow adjustable interval becomes larger, meeting the needs of more users for different air intake amounts formed by the suction resistance taste.

[0053] Optionally, as Figure 7 shown in FIG. 6, in the embodiment of the present application, to make the air baffle 51 of the air adjusting member 50 slide smoothly, the bottom wall of the internal mounting space of the seat body 31 is further provided with two surrounding plates 313 along the extension direction of the air inlet 311. The two surrounding plates 313 are arranged in parallel and spaced apart on both sides of the extension direction of the air inlet 311, and are adapted to the arc shape of the air inlet 311. The two surfaces opposite to the two surrounding plates 313 form a sliding space for the air baffle 51 to slide. Therefore, when the user applies a force to the driving control part 52, the two surrounding plates 313 limit and guide the air baffle 51, so that the air baffle 51 slides smoothly and avoids the phenomenon of key jamming.

[0054] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. An atomizing device comprising: A main body, in which an atomizing assembly and an air flow channel are provided, one end of the air flow channel is connected to the atomizing air flow inside the atomizing assembly, and the other end is exposed from the surface of the main body to form an air inlet; an air regulating member movably mounted on the main body, wherein when the air regulating member moves to a first position, the air inlet is covered, and when the air regulating member moves to a second position, the air inlet is opened, and when the air regulating member moves from the first position to the second position, the conductive area between the air inlet and the outside world gradually increases; The invention is characterized in that the air flow channel includes a first surface directly facing the air inlet, the first surface is provided with an air blocking slope, the air blocking slope includes a second surface facing the air inlet, the distance between the second surface and the air inlet gradually increases along the trajectory of the air regulating member moving from the first position to the second position, and the highest point of the second surface extends to a third surface parallel to the plane where the air inlet is located; An air inlet channel communicating with the air flow channel is formed between the portion of the air inlet not covered by the air regulating member and the second surface; When the air regulating member moves from the first position to the second position, the third surface is first gradually exposed to the outside from the air inlet.

2. The atomizing device according to claim 1, characterized in that The air regulating component includes an air baffle plate, a drive control part and two support plates. The air baffle plate is located on the inner side of the air inlet. The drive control part is installed on the air baffle plate and passes through the air inlet to be located on the outside. The two support plates are installed at intervals on the surface of the air baffle plate facing the first surface and abut against the first surface, and an avoidance space is formed between the two support plates to avoid the air blocking slope, and the air blocking slope is located in the avoidance space.

3. The atomizing device according to claim 2, characterized in that The first surface is made of a flexible material, one end of the two support plates away from the air baffle is elastically in contact with the first surface, and at least part of the edge of the air baffle is in contact with the inner edge of the air inlet for limiting position.

4. The atomizing device according to claim 3, characterized in that The air-blocking slope and the first surface are integrally formed of a flexible material, and the two support plates are elastically in contact with both sides of the air-blocking slope.

5. The atomizing device according to claim 4, characterized in that The main body also includes an airflow trigger sensor and a flexible sealing seat. One side of the sealing seat faces the air inlet and is configured as the first surface of the airflow channel. The sealing seat is also provided with a mounting groove, and the notch of the mounting groove is connected to the airflow channel. The airflow trigger sensor is installed in the mounting groove. When the airflow in the mounting groove is drawn into the airflow channel from the notch, the airflow sensor is triggered.

6. The atomizing device according to claim 5, characterized in that The main body includes a host and a base, The main unit has a mist outlet at its upper end and an open lower end. The main unit is internally provided with the atomizing assembly and a power supply electrically connected thereto. The power supply is used to power the atomizing assembly and drive the atomized solution stored in the atomizing assembly to be atomized into aerosol and be discharged from the mist outlet. The base includes a seat body, the airflow trigger sensor, and the sealing seat. The base body is provided with an installation space, and the upper end of the base body is plugged into the opening through an interference seal. The installation space of the base body is connected to the internal atomization air path of the atomization assembly inside the main unit through the opening, forming the first part of the air flow channel. The lower end surface of the base body is provided with the air inlet connecting the outside and the installation space. The sealing seat is installed in the installation space, and the outer peripheral surface of the sealing seat is interference-sealed with the inner peripheral surface of the installation space. The side of the sealing seat facing the air inlet is spaced apart from the inner wall of the seat body where the air inlet is located, forming a movable space for the air regulating component to move; The sealing seat is provided with an air passage connecting the installation space and the movable space, and the air passage is staggered with the air inlet so that the area between the surface of the sealing seat facing the air inlet and the air passage forms the first surface, and the second part of the air flow channel is formed between the first surface and the inner wall corresponding to the seat body.

7. The atomizing device according to claim 6, characterized in that The base also includes a circuit board, and the base body is also provided with a charging socket. The circuit board is installed on the side of the sealing base facing away from the air inlet, and the side of the circuit board facing the charging socket is electrically integrated with a charging socket. The charging socket passes through the sealing base and is plugged into the charging socket. The sealing base is sleeved on the outer periphery of the charging socket, and the lower end of the sealing base elastically interferes with the inner edge of the charging socket, and the upper end elastically interferes with the circuit board.

8. The atomizing device according to claim 7, characterized in that The air inlet is an arc-shaped hole surrounding the charging insertion port, and the air baffle is a fan-shaped plate adapted to the air inlet.

9. The atomizing device according to claim 6, characterized in that Two enclosures are protruding from the bottom wall of the seat body along the extension direction of the air inlet. The two enclosures are arranged in parallel and spaced apart on both sides of the extension direction of the air inlet, and a sliding space for the air baffle to slide is formed between the two opposite surfaces of the two enclosures.

Citation Information

Patent Citations

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    CN114947240A

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