Atomization device

By fixing the modularly designed shell and cover components to the atomizer main unit using a limiting structure, the problems of low assembly efficiency and shaking in the atomizer device are solved, achieving efficient assembly and space saving.

CN223730720UActive Publication Date: 2025-12-30HG INNOVATION LTD
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Patent Information

Application Number
CN202422768979.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-12-30
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The existing atomizer unit has a complex internal fixing structure, which makes it prone to shaking, affecting normal use and resulting in low assembly efficiency.

Method used

The modular design separates the shell and cap components from the atomizer main unit and fixes them in place within the mounting cavity using a limiting structure, simplifying the assembly process.

Benefits of technology

It improves the assembly efficiency of the atomizing device, avoids shaking problems, saves internal space, and reduces the overall size.

✦ Generated by Eureka AI based on patent content.

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Abstract

The atomization device comprises a shell assembly, a cover body assembly and an atomizer main machine, the shell assembly is provided with a mounting groove, and a groove opening of the mounting groove forms a mounting opening; the cover body assembly covers the mounting opening, so that a mounting cavity is defined by the cover body assembly and the mounting groove; a limiting structure is arranged on the side, facing the shell assembly, of the cover assembly. The atomizer main machine is installed in the installation cavity through the installation opening, the limiting structure comprises a plurality of first limiting parts and a plurality of second limiting parts, the atomizer main machine comprises a liquid storage bin, the first limiting parts abut against the top end of the liquid storage bin, and the second limiting parts abut against the bottom end of the liquid storage bin so that the liquid storage bin can be limited to move in the height direction of the shell assembly. According to the atomization device, the shell is divided into the shell assembly and the cover assembly which are modularized, the modularized atomizer main machine is installed in the installation cavity through the installation opening of the shell assembly, the assembly procedure of the atomization device can be effectively simplified, and the assembly efficiency of the atomization device is improved.
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Description

Technical Field

[0001] This application relates to the field of electronic atomization technology, specifically to an atomization device. Background Technology

[0002] An atomizing device is a device that can heat and atomize an atomizing matrix to produce an aerosol. In related technologies, the atomizing device mainly consists of a shell and an atomizer main unit installed inside the shell. The atomizer main unit is fixed inside the shell in a complex structure, which not only makes it easy to shake and affect normal use, but also affects assembly efficiency. Utility Model Content

[0003] This application aims to provide an atomizing device to simplify the assembly process of the atomizing device and improve product assembly efficiency.

[0004] This application provides an atomizing device, comprising:

[0005] A housing assembly having a mounting groove, the opening of which is formed as a mounting opening;

[0006] A cover assembly is provided on the mounting opening, and the cover assembly and the mounting groove form a mounting cavity; a limiting structure is provided on the side of the cover assembly facing the housing assembly;

[0007] Atomizer main unit, wherein the atomizer main unit is installed in the mounting cavity through the mounting opening;

[0008] The limiting structure includes a plurality of first limiting parts and a plurality of second limiting parts. The atomizer main unit includes a liquid storage chamber for storing atomizing matrix. The liquid storage chamber is disposed inside the mounting cavity. The first limiting parts abut against the top of the liquid storage chamber, and the second limiting parts abut against the bottom of the liquid storage chamber to limit the movement of the liquid storage chamber along the height direction of the housing assembly.

[0009] In one embodiment, the mounting opening is located on one side of the housing assembly along its width.

[0010] In one embodiment, the cover assembly includes a panel, a frame, and a fixing bracket. The frame is detachably mounted to the mounting opening and has a panel mounting opening. The panel is mounted to the panel mounting opening and connected to the frame. The fixing bracket is snap-fitted to the side of the panel facing the mounting cavity and is located below the bottom of the liquid storage tank. A first limiting portion protrudes from the side of the panel facing the housing assembly, and a second limiting portion protrudes from the side of the fixing bracket facing the liquid storage tank.

[0011] In one embodiment, the fixing bracket is fitted with a portion of the structure of the panel mounting opening.

[0012] In one embodiment, the limiting structure further includes a third limiting part, the atomizer main unit further includes a power supply component and an atomizing component, the liquid storage chamber is provided with an aerosol channel, the atomizing component is disposed in the aerosol channel, and the power supply component is electrically connected to the atomizing component; the power supply component is disposed below the bottom end of the liquid storage chamber along the height direction of the housing component, the third limiting part is formed on the side of the fixed bracket facing the power supply component, and the third limiting part abuts against the side of the power supply component to limit the movement of the power supply component along the width direction of the housing component.

[0013] In one embodiment, the fixing bracket is a light guide structure, and the side of the light guide structure facing the power supply component is also provided with a receiving groove; the atomizing device further includes a light-emitting element, which is housed in the receiving groove and is electrically connected to the power supply component; the mounting opening has a gap between the bottom side of the housing component along the height direction and the panel to form a light outlet, and part of the light guide structure is exposed through the light outlet to conduct the light emitted by the light-emitting element through the light guide structure and diffuse it outward through the light outlet.

[0014] In one embodiment, the frame is further provided with a light guide recess, which is located on the side of the frame facing away from the housing assembly and below the light outlet; the light guide recess is arranged along the length direction of the light outlet and communicates with the light outlet, and the light guide recess is used to conduct light rays emitted outward through the light outlet.

[0015] In one embodiment, the atomizing device further includes a display component and a control component, both of which are disposed inside the mounting cavity. The display component is located below the fixed bracket and is fixedly connected to the mounting cavity. The display component and the control component are electrically connected to the atomizing component. The display component is used to display parameter information of the atomizing component, and the control component is used to control the atomizing component. At least the portion of the frame facing the display component is transparent or semi-transparent.

[0016] In one embodiment, the display component includes a first circuit board and a digital display screen, and the control component includes a second circuit board and control buttons. The digital display screen and the control buttons are disposed on the first circuit board and face the inside of the frame. The first circuit board is electrically connected to the atomizing component and is used to transmit parameter information of the atomizing component to the digital display screen. The control buttons are electrically connected to the second circuit board through the first circuit board. The second circuit board is disposed on the side of the power supply component away from the liquid storage chamber. The first circuit board and the second circuit board are perpendicularly connected to each other and electrically connected to each other. The second circuit board is electrically connected to both the atomizing component and the power supply component.

[0017] In one embodiment, the housing assembly includes a main housing and a nozzle component. The main housing is provided with a mounting groove, and the mounting opening is formed at the opening of the mounting groove. The main housing is also provided with a connecting hole, and the nozzle component is inserted into the connecting hole.

[0018] The atomizer main unit also includes an air regulating component. The main housing is also provided with an air inlet. The atomizing component has an atomizing channel. One end of the atomizing channel is connected to the mouthpiece, and the other end of the atomizing channel is connected to the air inlet. The air regulating component is disposed at the air inlet and is used to adjust the air intake of the air inlet.

[0019] According to the atomizing device of the above embodiment, the outer shell is formed into a modular shell assembly and a cover assembly, and the modular atomizer main unit is installed into the mounting cavity through the mounting opening of the shell assembly, which can effectively simplify the assembly process of the atomizing device and improve its assembly efficiency. Attached Figure Description

[0020] Figure 1 A perspective view of the atomizing device provided in this application;

[0021] Figure 2 for Figure 1 Cross-sectional view along the AA direction;

[0022] Figure 3 for Figure 1 Cross-sectional view along the BB direction;

[0023] Figure 4 Explosion of the atomizing device provided in this application Figure 1 ;

[0024] Figure 5 Explosion of the atomizing device provided in this application Figure 2 ;

[0025] Figure 6 An exploded view of the cover assembly in the atomizing device provided in this application;

[0026] Figure 7 A cross-sectional view of the atomizer main unit and the gas regulating component in the atomizing device provided in this application;

[0027] Figure 8 An exploded cross-sectional view of the atomizer main unit and the gas regulating component in the atomizing device provided in this application;

[0028] Figure 9 A perspective view of a portion of the structure of the air conditioning component of the atomizing device provided in this application.

[0029] Figure label:

[0030] Housing assembly 10, mounting cavity 101, mounting groove 102, mounting opening 103, main housing 11, connecting hole 110, air inlet 111, second snap-fit ​​position 112, nozzle component 12, nozzle channel 121, third snap-fit ​​122;

[0031] Cover assembly 20, panel 21, first buckle 211, fourth buckle 212, light outlet 213, frame 22, panel mounting port 220, first snap-fit ​​position 221, second buckle 222, slot 223, sensing area 224, light guide recess 225, fixing bracket 24, third snap-fit ​​position 240, light guide structure 241, receiving groove 2411, light emitting element 242, limiting structure 25, first limiting part 251, second limiting part 252, third limiting part 253;

[0032] Atomizer main unit 200, liquid storage tank 30, tank body 31, bottom cover 32, liquid storage component 311, aerosol channel 312, air inlet chamber 313;

[0033] Atomizing component 40, atomizing tube 41, atomizing channel 411, liquid guiding component 42;

[0034] Power supply component 50; display component 60, first circuit board 61, digital display screen 62;

[0035] Control component 70, second circuit board 71, control button 72, charging interface 73; air regulating component 80, air passage component 81, first connecting part 811, mounting chamber 8111, connecting hole 8112, second connecting part 812, air passage 8121, sliding area 8122, mounting bracket 8123, adjusting lever 82, adjusting component 83, sealing component 84, airflow sensor 85. Detailed Implementation

[0036] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.

[0037] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments, and the operational steps involved in each embodiment can also be rearranged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for clearly describing a particular embodiment and do not imply that they represent the necessary components and / or order.

[0038] The serial numbers assigned to components in this document, such as "first" and "second," are used only to distinguish the described objects and have no sequential or technical meaning. The terms "connection" and "linkage" used in this application, unless otherwise specified, include both direct and indirect connections (linkages).

[0039] The atomizer unit inside the atomizing device housing heats and atomizes the atomizing matrix to produce an aerosol. The atomizer unit typically consists of a liquid storage tank, an atomizing component housed within the liquid storage tank, and a power supply component housed inside the housing. In related technologies, the liquid storage tank is installed inside the housing by clamping it with the housing. Prolonged use can lead to loosening and shaking of the liquid storage tank. Furthermore, the assembly steps for other components are complex, further affecting the assembly efficiency of the product.

[0040] With technological advancements, atomizing devices no longer solely meet users' aerosol needs. Related technologies also allow for the incorporation of various structures within the atomizing device's casing to enhance the user experience. However, these structures also occupy internal space, increasing the overall product size and making operation less convenient.

[0041] To address the aforementioned issues, this application provides an atomizing device that simplifies the assembly process and improves product assembly efficiency.

[0042] See Figures 1-5 As shown, the atomizing device provided in this application includes a housing assembly 10, a cover assembly 20, and an atomizer host 200.

[0043] like Figure 4 As shown, the housing assembly 10 is provided with a mounting groove 102, and the opening of the mounting groove 102 is formed as a mounting opening 103.

[0044] In this embodiment, the mounting opening 103 is located on one side of the housing assembly 10 in the width direction. Figure 4 Taking the XYZ three-axis coordinate system as an example, the width direction of the housing component 10 is the X-axis direction.

[0045] Cover assembly 20 is installed over the installation opening 103, such as Figure 2 As shown, the cover assembly 20 and the mounting groove 102 form a mounting cavity 101, and a limiting structure 25 is provided on the side of the cover assembly 20 facing the housing assembly 10.

[0046] The atomizer host 200 is installed in the mounting cavity 101 through the mounting opening 103, and the limiting structure 25 abuts against the atomizer host 200 to limit the atomizer host 200 to be installed in the mounting cavity 101.

[0047] In this embodiment, the outer shell of the atomizing device is formed into a modular shell assembly 10 and a cover assembly 20, and the modular atomizer main unit 200 is installed into the mounting cavity 101 through the mounting opening 103 of the shell assembly 10. This can effectively simplify the assembly process of the atomizing device and improve its assembly efficiency.

[0048] See Figures 2-5 As shown, the limiting structure 25 includes a plurality of first limiting parts 251 and second limiting parts 252. The atomizer main unit 200 includes a liquid storage chamber 30 for storing the atomizing matrix. The liquid storage chamber 30 is disposed inside the mounting cavity 101. In a specific embodiment, the liquid storage chamber 30 is disposed along the height direction of the housing assembly 10, wherein the height direction of the housing assembly 10 is... Figure 4 In the direction of the Z-axis, the first limiting part 251 abuts against the top of the liquid storage tank 30, and the second limiting part 252 abuts against the bottom of the liquid storage tank 30, thereby limiting the movement of the liquid storage tank 30 along the height direction of the housing assembly 10.

[0049] In this embodiment, the liquid storage tank 30 can be limited to move along the width and length directions of the housing assembly 10 by means of the housing assembly 10 and the cover assembly 20, wherein the length direction of the housing assembly 10 is... Figure 4 As shown in the Y-axis direction, the liquid storage tank 30 is guaranteed not to shake.

[0050] like Figures 1-6As shown, the cover assembly 20 includes a panel 21, a frame 22, and a fixing bracket 24. The frame 22 is detachably mounted at the mounting opening 103 and has a panel mounting opening 220. The panel 21 is detachably mounted at the panel mounting opening 220 and connected to the frame 22, thereby forming a mounting cavity 101 by the cover assembly 20, the frame 22, the panel 21, and the mounting groove 102 of the housing assembly 10. The fixing bracket 24 is snap-fitted to the side of the panel 21 facing the mounting cavity 101, and the fixing bracket 24 is located below the bottom end of the liquid storage tank 30 along the height direction of the housing assembly 10. A first limiting portion 251 protrudes from the side of the panel 21 facing the housing assembly 10, and a second limiting portion 252 protrudes from the end of the fixing bracket 24 facing the liquid storage tank 30, that is, along the height direction of the housing assembly 10, the second limiting portion 252 protrudes from the top end of the fixing bracket 24.

[0051] In this embodiment, the panel 21 is positioned so that the atomizing device faces the user when in use, while the cover assembly 20 faces away from the user.

[0052] The housing assembly 10 includes a main housing 11 and a nozzle 12. A mounting groove 102 is formed on the main housing 11. The height, length and width of the main housing 11 are the same as the height, length and width of the housing assembly 10. A connection hole 110 communicating with the mounting groove 102 is provided at the top of the main housing 11 in the height direction. The nozzle 12 is detachably mounted in the connection hole 110.

[0053] The atomizer host 200 is the structure in this atomizing device that can atomize the atomizing matrix to generate an aerosol. The atomizer host 200 is installed inside the mounting cavity 101, and the panel mounting port 220 faces the atomizer host 200.

[0054] The panel 21 is detachably mounted at the panel mounting port 220 of the frame 22. The main housing 11 is detachably connected to the frame 22, and the mouthpiece 12 is detachably mounted at the connection hole 110 of the main housing 11, thereby forming the housing assembly 10 and the cover assembly 20 of this atomizing device. With the panel mounting port 220 of the frame 22 facing the atomizer main unit 200, the atomizer main unit 200 can be repaired or its parts replaced by removing the panel 21 if a malfunction occurs.

[0055] like Figure 2 As shown, see Figure 4 and Figure 5As shown, the shape and size of panel 21 are basically the same as those of panel mounting opening 220 of frame 22. Panel 21 has multiple first snap-fits 211 around its circumference, and frame 22 has multiple first snap-fit ​​positions 221 at panel mounting opening 220. Each first snap-fit ​​211 corresponds to one of the first snap-fit ​​positions 221. When panel 21 is installed into panel mounting opening 220, the first snap-fits 211 engage with the first snap-fit ​​positions 221, allowing panel 21 to be detachably connected to panel mounting opening 220 of frame 22. Frame 22 also has multiple second snap-fits 222 around its circumference, and cover assembly 20 has multiple second snap-fit ​​positions 112 around its circumference. Each second snap-fit ​​222 corresponds to one of the second snap-fit ​​positions 112, allowing frame 22 to be detachably connected to cover assembly 20 by engaging the second snap-fits 222 with the second snap-fit ​​positions 112.

[0056] Multiple third buckles 122 are provided in the circumferential direction of the nozzle component 12. The multiple third buckles 122 are engaged in the circumferential direction of the connecting hole 110, thereby detachably connecting the nozzle component 12 to the cover assembly 20.

[0057] In this embodiment, the atomizer main unit 200 further includes an atomizing component 40 and a power supply component 50. The liquid storage chamber 30 is provided with an aerosol channel 312, and the atomizing component 40 is disposed within the aerosol channel 312. The power supply component 50 is electrically connected to the atomizing component 40. The atomizing component 40 can heat and atomize the atomizing matrix to generate aerosol under the power provided by the power supply component 50. The atomizing component 40 also has an atomizing channel 411, and the mouthpiece 12 has a mouthpiece channel 121. The atomizing channel 411 communicates with the mouthpiece channel 121, and the generated aerosol is output through the mouthpiece channel 121.

[0058] The power supply component 50 is located below the bottom end of the liquid storage tank 30 along the height direction of the housing component 10. Correspondingly, the power supply component 50 is limited in the height direction by the liquid storage tank 30 and the bottom wall of the mounting cavity 101. In the width direction, in order to prevent shaking in the width direction, the limiting structure 25 provided in this embodiment also includes a third limiting part 253. The third limiting part 253 is formed on the side of the fixed bracket 24 facing the power supply component 50. The third limiting part 253 abuts against the side of the power supply component 50 to cooperate with the side wall of the mounting cavity 101. The fiber power supply component 50 moves along the width direction of the housing component 10.

[0059] See Figures 2-5As shown, the power supply component 50 is located on one side of the fixing bracket 24 and the display component 60, close to the cover assembly 20, and below the liquid storage chamber 30. The fixing bracket 24 and the display component 60 are stacked below the liquid storage chamber 30 and close to the frame 22, while the power supply component 50 is located on one side of the fixing bracket 24 and the display component 60, close to the cover assembly 20. This arrangement saves installation space inside the mounting cavity 101, thereby reducing the overall size of the atomizing device.

[0060] like Figure 2 As shown, the fixed bracket 24 partially fits into the panel mounting opening 220 to reduce the installation space of the fixed bracket 24.

[0061] In a specific embodiment, the fixing bracket 24 is detachably installed on the panel mounting port 220 and located below the atomizer main unit 200. The panel 21 covers the fixing bracket 24 to maintain the cleanliness of the surface of the atomizing device.

[0062] To enrich the functionality of this atomizing device and enhance product competitiveness, the atomizing device provided in this embodiment further includes a light-emitting element 242, and the fixing bracket 24 is preferably a light-guiding structure 241, such as... Figure 5 As shown, the light guide structure 241 also has a receiving groove 2411 on the side facing the power supply component 50. The light-emitting element 242 is housed in the receiving groove 2411. The light-emitting element 242 is electrically connected to the power supply component 50 and can emit light under the power provided by the power supply component 50. The light-emitting element 242 is mounted on the light guide structure 241. The light-emitting element 242 can emit light, and the light guide structure 241 can guide the light emitted by the light-emitting element 242, thereby improving the uniformity of the light.

[0063] like Figure 6 As shown, there is a gap between the mounting opening 103 and the panel 21 along the height direction of the housing assembly 10. This gap forms a light outlet 213, and part of the light guide structure 241 is exposed through the light outlet 213 so that the light emitted by the light-emitting element 242 is conducted through the light guide structure 241 and diffused outward through the light outlet 213.

[0064] In this embodiment, since the light outlet 213 is located on the bottom side of the panel 21 along the height direction of the housing assembly 10, the light guide structure 241 conducts the light emitted by the light-emitting element 242 through the light outlet 213 on the bottom side of the panel 21, thereby increasing the fun of this atomizing device and improving product competitiveness.

[0065] like Figure 2 and Figure 5 As shown, panel 21 is detachably mounted on light guide structure 241, as... Figure 5 As shown, a fourth latch 212 is also provided at the part where the panel 21 contacts the light guide structure 241, such as... Figure 6As shown, a third latching position 240 is correspondingly provided on the light guide structure 241, and the fourth latch 212 is installed on the third latching position 240 in a latching manner, improving the stability of the panel 21 connection. The third latching position 240 is close to the bottom side of the panel mounting opening 220 along the height direction of the housing assembly 10, so that the fixing bracket 24 is positioned opposite the bottom side of the panel mounting opening 220, and the liquid storage tank 30 is installed above it, thus rationally arranging the space. The light-emitting element 242 can be a light-emitting element, such as an LED bead or LED strip, and the light-emitting element 242 can emit light of different colors. In some embodiments, the light-emitting element 242 is electrically connected to the atomizing assembly 40, and the atomizing assembly 40 can have different heating powers; the different colors of light emitted by the light-emitting element 242 can represent the different heating powers of the atomizing assembly 40. The light-emitting component 242 can be equipped with multiple LED beads or a single LED bead. Multiple LED beads can emit light in a preset arrangement or for a preset duration, while a single LED bead can emit light for different durations or emit different colors of light, depending on the actual needs.

[0066] See also Figure 6 As shown, a light guide recess 225 is also provided on the frame 22. This light guide recess 225 is located on the side of the frame 22 facing away from the housing assembly 10 and is located below the light outlet 213. The light guide recess 225 is arranged along the length direction of the light outlet 213 and is in communication with the light outlet 213. The light guide recess 225 is used to guide the light emitted outward through the light outlet 213.

[0067] The light guide recess 225 is located at the bottom of the panel 21 along the height direction of the housing assembly 10, so that light can be formed along the bottom side of the panel 21 by the action of the light outlet 213.

[0068] To facilitate user observation and control of the atomizing component 40 during use, this embodiment also includes a display component 60 and a control component 70. Both are located inside the mounting cavity 101. The display component 60 is positioned below the fixed bracket 24 and is fixedly connected to the control component 70. The display component 60 and control component 70 are electrically connected to the atomizing component 40. The display component 60 displays parameter information of the atomizing component 40, such as heating power and number of inhalations. The control component 70 controls the atomizing component 40, for example, by controlling its heating power.

[0069] Since the display component 60 is located inside the mounting cavity 101 and below the fixing bracket 24, that is, inside the frame 22, at least the portion of the frame 22 facing the display component 60 is transparent or semi-transparent, so that the user can easily observe the parameter information of the atomizing component 40 displayed by the display component 60.

[0070] See Figures 2-5 As shown, the display component 60 includes a first circuit board 61 and a digital display screen 62, and the control component 70 includes a second circuit board 71 and control buttons 72. The digital display screen 62 and control buttons 72 are disposed on the first circuit board 61 and face the inside of the frame 22. The first circuit board 61 is electrically connected to the atomizing component 40 and is used to transmit the parameter information of the atomizing component 40 to the digital display screen 62 for display. The control buttons 72 are electrically connected to the second circuit board 71 through the first circuit board 61, and can control the atomizing component 40 to turn on or off by operating the control buttons 72. The second circuit board 72 is disposed on the side of the power supply component 50 away from the liquid storage chamber 30. The first circuit board 61 and the second circuit board 71 are perpendicularly connected to each other and electrically connected. The second circuit board 71 is electrically connected to both the atomizing component 40 and the power supply component 50, thus enabling indirect electrical connection between the atomizing component 40 and the power supply component 50.

[0071] The control button 72 can control the voltage or current output to the atomizing component 40 via the second circuit board 71, thereby controlling and adjusting the heating power of the atomizing component 40.

[0072] In some embodiments, a charging interface 73 is also provided on the second circuit board 71 (e.g., Figure 2 As shown), the second circuit board 71 is detachably mounted inside the frame 22. Specifically, a slot 223 is provided inside the frame 22 (as shown). Figure 5 As shown, the second circuit board 52 is inserted into the slot 223, the power supply component 50 is located above the second circuit board 71, and the charging interface 73 is located on the side of the second circuit board 71 facing away from the power supply component 50. The power supply component 50 preferably uses a rechargeable battery cell, so that the power supply component 50 can be replenished with power from an external power source through the charging interface 73.

[0073] It should be noted that the first circuit board 61 and the second circuit board 71 are perpendicular to each other and detachably connected. The perpendicular arrangement of the first circuit board 61 and the second circuit board 71 allows the first circuit board 61 to be vertically aligned along the height of the atomizing device, while the second circuit board 71 is horizontally aligned along the length of the atomizing device. This allows the digital display screen 62 to face the inside of the frame 22, facilitating the user's observation of the atomizer host 200's parameters from the front of the atomizing device. The first circuit board 51, being perpendicular to the first circuit board 61, keeps the second circuit board 71 horizontal, ensuring the charging port 73 faces the bottom of the atomizing device. This allows the user to connect the charging port 73 to an external power source from the bottom of the atomizing device, maintaining the overall aesthetic appeal of the product.

[0074] Meanwhile, the first circuit board 61 and the second circuit board 71, which are arranged perpendicularly to each other, can form a corresponding installation space, which can be used to install the power supply component 50, so as to further save the space of the mounting cavity 101 of this atomizing device.

[0075] In other embodiments, the control button 72 can be one of a push-button switch, a toggle switch, a trigger switch, etc.

[0076] In this embodiment, the control button 72 is described using a trigger switch as an example. Accordingly, as shown... Figure 1 and Figure 2 As shown, a sensing area 224 is provided on the frame 22. The user can trigger the trigger switch by simply pressing or holding the sensing area 224 on the frame 22 to realize functions such as power adjustment and power on / off.

[0077] See Figure 2 , Figure 3 , Figure 7 and Figure 8 As shown, the liquid storage chamber 30 includes a chamber body 31, a bottom cover 32, and a liquid storage component 311. The bottom cover 32 is sealed at the opening at the bottom of the chamber body 31. The liquid storage component 311 is installed within the space enclosed by the bottom cover 32 and the chamber body 31, and is used to store the atomizing matrix. An aerosol channel 312 is also provided in the middle of the liquid storage component 311. The atomizing assembly 40 includes an atomizing tube 41, a liquid guiding component 42, and a heating component (not shown in the figure). The atomizing tube 41 is installed inside the aerosol channel 312, and the inner tube of the atomizing tube 41 forms the atomizing channel 411. The liquid guiding component 42 is disposed inside the atomizing tube 41, and a portion of the liquid guiding component 42 can extend to the outside of the atomizing tube 41 and contact the liquid storage component 311. The heating component is disposed inside the liquid guiding component 42. The liquid storage component 311 can conduct the atomizing matrix to the heating component through the liquid guiding component 42, and the heating component heats it to generate an aerosol.

[0078] In a specific embodiment, one end of the aerosol channel 312 penetrates the bottom cover 32, and the nozzle component 12 is provided with a nozzle channel 121. The nozzle channel 121 is connected to the other end of the aerosol channel 312. During use, the user draws air through the nozzle component 12, so that external air can enter the interior of the atomizing channel 411 through one end. The flowing air will drive the aerosol to flow synchronously and be output through the nozzle channel 121.

[0079] like Figure 4 and Figure 5 As shown, the main housing 11 of the housing assembly 10 is also provided with an air inlet 111. One end of the atomizing channel 411 in the atomizing assembly 40 is connected to the mouthpiece channel 121 of the mouthpiece 12, and the other end of the atomizing channel 411 is connected to the air inlet 111. Thus, when the user inhales through the mouthpiece 12, external air enters through the air inlet 111. The atomizer main unit 200 provided in this embodiment also includes an air regulating assembly 80, which is disposed at the air inlet 111. The air regulating assembly 80 is used to adjust the size of the air inlet 111, thereby adjusting the amount of external air entering through the air inlet 111.

[0080] Like him 5 and Figures 7-9 As shown, the airflow regulating assembly 80 includes an airflow channel component 81, an adjusting lever 82, an adjusting component 83, and a sealing component 84. The airflow channel component 81 has a first connecting portion 811 and a second connecting portion 812. The first connecting portion 812 is installed at the bottom of the bottom cover 32 of the atomizer main unit 200 and forms an air intake chamber 313 with the bottom cover 32 of the atomizer main unit 200 at a distance. The other end of the atomization channel 411 communicates with the air intake chamber 313. The second connecting portion 812 faces the inside of the frame 22 and is fixed to the inside of the frame 22. Figure 9As shown, the second connecting part 812 is provided with an air passage 8121, a sliding area 8122, and a mounting bracket 8123. The sliding area 8122 extends vertically through the height direction of the second connecting part 812 and is essentially a region composed of a frame structure. The air passage 8121, the inner cavity of the sliding area 8122 composed of the frame structure, and the inner cavity of the mounting bracket 8123 are interconnected. Furthermore, the air passage 8121 is connected to the air inlet chamber 313, and the sliding area 8122 is connected to the air passage 214. The sealing member 84 is slidably disposed in the sliding area 8122. The adjusting member 83 is fixed to the mounting bracket 8123. The adjusting member 83 is provided with a sliding port 731 along the sliding direction of the sliding area 8122. One end of the adjusting lever 82 passes through the sliding port 731 and is connected to the sealing member 84. The other end of the adjusting lever 82 extends to the outside of the rear shell 12 through the air inlet 111. The adjustment lever 82 is moved to drive the seal 84 to move back and forth along the sliding area 8122, so that the air passage 8121 is opened or closed by the seal 84, thereby connecting the air intake chamber 313 to the air intake hole 111 through the area of ​​the air passage 8121 that is not sealed by the seal 84 via the sliding port 731.

[0081] To facilitate control of the atomizer main unit 200, the airflow regulating assembly 80 provided in this embodiment also includes an airflow sensor 85, which is electrically connected to the atomizer main unit 200. The first connecting part 811 is also provided with a mounting chamber 8111, in which the airflow sensor 85 is disposed. A connecting hole 8112 is also provided on the side of the mounting chamber 8111 facing the air intake chamber 313. Thus, after external airflow enters the air intake chamber 313, it can pass through the connecting hole 8112 to allow airflow into the mounting chamber 8111.

[0082] In summary, the atomizing device provided in this application forms a modular housing assembly and a cover assembly, and installs the modular atomizer main unit into the mounting cavity through the mounting opening of the housing assembly, which can effectively simplify the assembly process of the atomizing device and improve its assembly efficiency.

[0083] The above-described specific examples are for illustrative purposes only and are not intended to limit the scope of this invention. Those skilled in the art to which this invention pertains can make various simple deductions, modifications, or substitutions based on the concept of this invention.

Claims

1. An atomising device characterised in that, The utility model relates to a kind of atomizer, including: Shell assembly, the shell assembly is equipped with installation slot, the slot mouth of installation slot is formed as installation open mouth; Cover assembly, the cover assembly is covered in the installation open mouth, the cover assembly is enclosed with the installation slot into installation cavity;The side of the cover assembly towards the shell assembly is provided with limiting structure; Atomizer main machine, the atomizer main machine is installed in the installation cavity through the installation open mouth; The limiting structure includes several first limiting parts and several second limiting parts, the atomizer main machine includes liquid storage bin, and the liquid storage bin is used to store atomization base material;The liquid storage bin is arranged inside the installation cavity, the first limiting part is abutted to the top end of the liquid storage bin, and the second limiting part is abutted to the bottom end of the liquid storage bin, to limit the liquid storage bin moves along the height direction of the shell assembly.

2. The atomization device of claim 1, wherein, The installation open mouth is arranged on one side of the shell assembly along its width direction.

3. The atomization device of claim 1, wherein, The cover assembly includes a panel, a frame and a fixing bracket, the frame is detachably installed in the installation open mouth, the frame has a panel mounting port, the panel is mounted in the panel mounting port and connected with the frame, the fixing bracket is buckled to one side of the panel facing the installation cavity, and the fixing bracket is located below the bottom end of the liquid storage bin, the first limiting part is protrusively formed on one side of the panel facing the shell assembly, and the second limiting part is protrusively formed on one side of the fixing bracket facing the liquid storage bin.

4. The atomizing device of claim 3, wherein The fixing bracket is embedded with part of the structure of the panel mounting port.

5. The atomizing device of claim 3, wherein The limiting structure further includes a third limiting part, the atomizer main machine further includes a power supply assembly and an atomization assembly, the liquid storage bin is provided with an aerosol passage, the atomization assembly is arranged in the aerosol passage, and the power supply assembly is electrically connected with the atomization assembly;The power supply assembly is arranged below the bottom end of the liquid storage bin along the height direction of the shell assembly, the third limiting part is formed on one side of the fixing bracket facing the power supply assembly, and the third limiting part is abutted to the side surface of the power supply assembly to limit the power supply assembly from moving along the width direction of the shell assembly.

6. The atomizing device of claim 5, wherein The fixing bracket is a light guide structure, and one side of the fixing bracket facing the power supply assembly is further provided with a receiving groove;The atomization device further includes a light emitting element, the light emitting element is received in the receiving groove, and the light emitting element is electrically connected with the power supply assembly;The installation open mouth has a gap between the bottom side along the height direction of the shell assembly and the panel to form a light outlet, and part of the light guide structure is exposed outside the light outlet to conduct the light emitted by the light emitting element through the light guide structure and emit outward through the light outlet.

7. The atomizing device of claim 6, wherein The frame is further provided with a light guide recess, which is located on the side of the frame away from the shell assembly and below the light outlet;The light guide recess is arranged along the length direction of the light outlet and communicates with the light outlet, and the light guide recess is used to conduct the light emitted outward through the light outlet.

8. The atomizing device of claim 5, wherein, The atomization device further comprises a display assembly and a control assembly, both of which are arranged inside the mounting cavity, the display assembly is located below the fixed support, the control assembly is arranged below the power supply assembly, and the display assembly and the control assembly are fixedly connected; the display assembly and the control assembly are electrically connected with the atomization assembly, the display assembly is used for displaying parameter information of the atomization assembly, and the control assembly is used for controlling the atomization assembly; at least part of the frame body towards the display assembly is a transparent part or a translucent part.

9. The atomization device of claim 8, wherein, The display assembly comprises a first circuit board and a digital display screen, and the control assembly comprises a second circuit board and control buttons, the digital display screen and the control buttons are arranged on the first circuit board and face the inner side of the frame body, the first circuit board is electrically connected with the atomization assembly and is used for transmitting parameter information of the atomization assembly to the digital display screen, and the control buttons are electrically connected with the second circuit board through the first circuit board; the second circuit board is arranged on the side of the power supply assembly away from the liquid storage bin, the first circuit board and the second circuit board are connected perpendicularly to each other and are electrically connected, and the second circuit board is electrically connected with the atomization assembly and the power supply assembly.

10. The atomizing device of any one of claims 5-9, wherein, The shell assembly comprises a main shell and a suction nozzle, the main shell is provided with a mounting slot, the mounting opening is formed at the slot opening of the mounting slot, the main shell is further provided with a connecting hole, and the suction nozzle is inserted into the connecting hole; The atomizer main machine further comprises an air adjusting assembly, the main shell is further provided with an air inlet hole, the atomization assembly has an atomization channel, one end of the atomization channel is in communication with the suction nozzle, the other end of the atomization channel is in communication with the air inlet hole, the air adjusting assembly is arranged at the air inlet hole, and the air adjusting assembly is used for adjusting the air inlet amount of the air inlet hole.