Air inlet adjusting assembly and atomization device

By introducing the air-sealing structure of the docking parts and the adjusting parts into the atomizing device, the problem of poor sealing of the air inlet adjustment switch is solved, the precise adjustment of the air intake volume and the stability of the suction resistance are achieved, and the user experience is improved.

CN223391995UActive Publication Date: 2025-09-30HG INNOVATION LTD
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Patent Information

Application Number
CN202422517889.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-09-30
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

The air inlet adjustment switch of the existing atomizer device has poor sealing performance, resulting in poor suction resistance stability, affecting consumer experience.

Method used

An air sealing structure is added between the docking piece and the regulating piece in the atomizing device. The communicating area between the docking hole and the regulating hole is adjusted by the air sealing structure to achieve precise control of the air intake volume.

Benefits of technology

The sealing performance and inhalation resistance stability of the atomizer device are improved, and the user's puffing taste and experience are enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air inlet adjusting assembly and an atomization device. The air inlet adjusting assembly is applied to the atomization device, and the atomization device is provided with an air inlet. The air inlet adjusting assembly comprises a butt joint piece arranged at the position of the air inlet, a butt joint hole is formed in the butt joint piece, and the butt joint hole communicates with the air inlet; the adjusting part is movably arranged on the butt joint part, at least two air adjusting holes are formed in the adjusting part, and the at least two air adjusting holes are used for communicating the butt joint hole with the external atmosphere; the air sealing structure is arranged on the butt joint piece and used for sealing at least part of the butt joint hole and / or the air adjusting hole; the adjusting part is configured to move relative to the butt-joint part, and the relative position of the butt-joint part and the adjusting part plugged by the air sealing structure is changed by moving the adjusting part so that the communication area between the butt-joint hole and the at least two air adjusting holes can be adjusted. The air sealing structure is arranged between the butt joint piece and the adjusting piece, so that the defect that an adjusting switch in the prior art is poor in sealing performance is overcome, and the adjusting switch has the advantages of being good in sealing performance, accurate in adjustment, good in suction resistance stability and the like.
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Description

Technical Field

[0001] The present application relates to the field of atomization technology, and in particular to an air intake regulating assembly and an atomization device. Background Art

[0002] An atomizer is an electronic device that heats an atomized substrate to produce an inhalable aerosol. An atomizer typically has an air inlet and an air inlet channel. During inhalation, air is drawn in through the air inlet, producing the aerosol for the user to inhale.

[0003] Some existing atomizers have an adjustable switch located at the air inlet. By turning the adjustable switch, the air inlet is opened or closed, or the opening of the air inlet is adjusted, thereby adjusting the air volume and air pressure of the atomizer. However, the sealing of the adjustable switch is poor, which can easily lead to poor draw resistance and stability, resulting in a poor consumer experience. Utility Model Content

[0004] The present application provides an air intake regulating assembly and an atomizing device, which are used to solve the problem of poor sealing of the regulating switch of the atomizing device in the prior art.

[0005] In one embodiment, an air intake regulating assembly is provided, which is applied to an atomizing device, wherein the atomizing device has an air intake, and the air intake regulating assembly includes: a docking member, which is arranged at the position of the air intake, and the docking member is provided with a docking hole, and the docking hole is connected to the air intake; an adjusting member, which is movably arranged on the docking member, and the adjusting member is provided with at least two air regulating holes, and at least two of the air regulating holes are used to connect the docking hole and the outside atmosphere; and an air sealing structure, which is arranged on the docking member, opposite to the adjusting member, and is used to block at least part of the docking hole and / or the air regulating hole; the adjusting member is configured to be movable relative to the docking member, and the relative position between the docking member and the adjusting member is changed by moving the adjusting member to adjust the connection area between the docking hole and at least two of the air regulating holes.

[0006] In one embodiment, the air sealing structure includes at least one convex ring, which is arranged on the docking piece and surrounds the periphery of the docking hole, and the adjusting piece abuts against the convex ring; the parts of the at least two air adjusting holes located on the inner side of the convex ring are connected to the docking hole, and the parts located on the outer side of the convex ring are isolated from the docking hole.

[0007] In one embodiment, the air sealing structure includes at least two convex rings, which are arranged at the periphery of the docking hole with concentric ring intervals, and a closed area is formed between two adjacent convex rings to seal the part of the at least two air adjustment holes located between the corresponding two convex rings.

[0008] In one embodiment, a plurality of protrusions are provided on the docking member, and the plurality of protrusions are spaced apart on the peripheral side of the air sealing structure, and the adjusting member is slidably provided on the plurality of protrusions.

[0009] In one embodiment, the air intake adjustment assembly also includes an air duct member, which is arranged between the air inlet and the docking member, and the air duct member has an air intake channel and a receiving groove. The docking member is sealed and connected to the receiving groove. The air intake channel is respectively connected to the docking hole and the air inlet. The adjustment member is slidably arranged in the receiving groove and is located on the side of the docking member away from the air inlet.

[0010] In one embodiment, the airway component includes a structural wall and a supporting frame; the supporting frame is arranged on the inner side of the structural wall, and the structural wall and the supporting frame together enclose the air intake channel; the side of the docking component away from the adjusting component abuts against the supporting frame; and / or, a guide structure is provided between the structural wall and the adjusting component to guide the sliding of the adjusting component in the accommodating groove.

[0011] In one embodiment, the guide structure includes a guide groove and a guide portion; the guide groove is opened at the structural wall where the accommodating groove is located; the guide portion is protruded on the side wall of the adjusting member at a position corresponding to the guide groove, and is slidably arranged in the guide groove; and / or, the guide structure also includes a limiting groove and a limiting portion; the limiting groove is arranged on the inner wall of the accommodating groove, and the limiting groove has a wavy structure; the limiting portion is protruded on the side wall of the adjusting member at a position corresponding to the limiting groove, and the limiting portion is clamped in the limiting groove.

[0012] In one embodiment, the adjusting member includes a main body and a connecting portion; the at least two air adjustment holes are opened through the main body; the main body is adapted to be placed in the receiving groove, and the main body is slidably arranged in the receiving groove; the connecting portion is arranged on one side of the main body, located outside the receiving groove, and is provided with a through buckle hole; the buckle hole is configured to cooperate with the power adjustment switch of the atomization device to simultaneously adjust the power adjustment switch through the connecting portion.

[0013] In one embodiment, the air intake adjustment assembly also includes an operating member, and the atomization device also includes a shell, the operating member is movably arranged on the outside of the shell, and the operating member includes a plurality of clamping parts and a plurality of connecting rod parts; the shell is provided with a clearance hole for the installation of the operating member, and a plurality of the clamping parts are clamped on the clearance hole; a plurality of slots are provided on the adjustment member, each of the connecting rod parts passes through the clearance hole and is inserted into the corresponding slot, so that the operating member drives the adjustment member to move synchronously; the operating member is provided with a plurality of connecting holes, and a plurality of the connecting holes connect the air adjustment hole with the outside atmosphere.

[0014] In one embodiment, the aperture size of the docking hole is larger than the aperture size of the air adjusting hole; and / or, the adjusting member includes at least three air adjusting holes, at least three of the air adjusting holes are arranged at intervals along the moving direction of the adjusting member, and the aperture sizes of at least three of the air adjusting holes gradually increase or decrease in sequence; the connecting areas between the at least three air adjusting holes and the docking hole respectively correspond to at least three power gears of the atomization device.

[0015] In one embodiment, an atomization device is also provided, comprising a shell, and an atomization assembly and an air intake adjustment assembly arranged in the shell; the air intake adjustment assembly is the air intake adjustment assembly described in any one of the above items; the shell is provided with an air intake port, and the air intake port is connected to the atomization air duct of the atomization assembly.

[0016] According to the air intake adjustment assembly and atomization device of the above embodiment, by adding a docking piece and providing an air sealing structure between the docking piece and the adjustment piece, the defect of poor sealing of the adjustment switch in the prior art is avoided, and the device has the advantages of good sealing, accurate adjustment, and good suction resistance stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a perspective schematic diagram of an air intake adjustment assembly in one embodiment;

[0018] Figure 2 A schematic exploded perspective view of an air intake adjustment assembly in one embodiment;

[0019] Figure 3 A partial cross-sectional schematic diagram of an air intake adjustment component of an atomizing device in an embodiment in a closed state;

[0020] Figure 4 A schematic cross-sectional view from another angle showing an air intake adjustment assembly of an atomizing device in a closed state according to an embodiment;

[0021] Figure 5 A partial cross-sectional schematic diagram of an air intake regulating assembly of an atomizing device in an air intake state in one embodiment;

[0022] Figure 6 A schematic cross-sectional view of an air intake regulating assembly of an atomizing device in an embodiment in an air intake state from another angle;

[0023] Figure 7 A schematic cross-sectional view of a convex ring sealing an air regulating hole of an air intake regulating assembly according to an embodiment;

[0024] Figure 8 This is a schematic exploded perspective view of an air intake adjustment assembly according to an embodiment;

[0025] Figure 9 This is a three-dimensional exploded schematic diagram of an atomization device in an embodiment;

[0026] Figure 10 A three-dimensional schematic diagram of an atomizing device in an embodiment;

[0027] The accompanying drawings are marked as follows: 1-atomizing device, 11-housing, 111-allowing hole, 12-atomizing assembly, 13-battery, 14-power regulating switch, 15-air inlet, 20-air inlet regulating assembly, 21-docking member, 212-docking hole, 213-bump, 22-adjusting member, 221-main body, 222-adjusting hole, 2221-first adjusting hole, 2222-second adjusting hole, 2223-third adjusting hole, 223-slot, 2 24-guide part, 225-guide part, 226-button hole, 227-connecting part, 23-air sealing structure, 231-convex ring, 232-convex ring, 24-operating part, 241-connecting hole, 242-connecting rod part, 243-holding part, 25-airway part, 251-air inlet channel, 252-structural wall, 253-support bone position, 254-accommodation groove, 255-make room, 256-guide groove, 257-limiting groove, 258-limiting part. DETAILED DESCRIPTION

[0028] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.

[0029] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various embodiments. Furthermore, the steps or actions in the method description may be reordered or adjusted in a manner readily apparent to those skilled in the art. Therefore, the various sequences in the specification and drawings are provided solely for the purpose of clearly describing a particular embodiment and are not intended to be mandatory, unless otherwise specified.

[0030] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connected" and "coupled" in this application include both direct and indirect connections unless otherwise specified.

[0031] In response to the problem of poor sealing of the regulating switch of the atomizer device of existing products, this application avoids the defect of poor sealing of the regulating switch of the existing technology by adding a docking piece and setting an air sealing structure between the docking piece and the regulating piece, and has the advantages of good sealing, accurate adjustment, and good draw resistance stability.

[0032] like Figures 1 to 10 As shown, in one embodiment, an air intake adjustment component 20 is provided, which can be applied to an atomizing device 1 having an air intake 15. The air intake adjustment component 20 can adjust the air intake amount entering the atomizing device 1 to improve the user experience of the atomizing device 1.

[0033] The air intake adjustment assembly 20 includes a mating member 21, an adjustment member 22, and an air sealing structure 23 disposed between the mating member 21 and the adjustment member 22. The air sealing structure 23 can be disposed on the mating member 21 to ensure airtightness between the mating member 21 and the adjustment member 22, thereby ensuring accurate adjustment of the air intake volume and improving the smoking experience.

[0034] The docking member 21 is disposed at the air inlet 15 of the atomizing device and is provided with a docking hole 212. The docking hole 212 passes through the docking member 21 and is communicated with the air inlet 15 to receive outside air.

[0035] The adjusting member 22 is movably mounted on the docking member 21 and defines at least two air-regulating holes 222. These holes 222 extend through the adjusting member 22 and connect the docking hole to the outside atmosphere. The adjusting member 22 is configured to be movable relative to the docking member 21. By moving the adjusting member 22, the relative position of the air-sealing structure 23 between the docking member 21 and the adjusting member 22 is altered, thereby adjusting the area of ​​communication between the docking hole 212 and the at least two air-regulating holes 222, thereby adjusting the air intake to meet different suction requirements.

[0036] The air sealing structure 23 is disposed between the docking member 21 and the adjusting member 22 , and is used to seal at least a portion of the docking hole 212 and / or the air regulating hole 222 .

[0037] When the push regulating member 22 is in the Figure 3 、 4 In the position shown, all the air regulating holes 222 are completely staggered with the docking holes 212, and the air sealing structure 23 is located between the docking holes 212 and the air regulating holes 222, so that the docking holes 212 and the air regulating holes 222 are isolated from each other, and the connecting area is zero, so that the outside air cannot enter the air inlet channel 251 through the docking holes 212, and the atomizing device 1 is in an inoperative state.

[0038] When the push regulating member 22 is in the Figure 5 、 6 In the position shown, at least one air regulating hole 222 is opposite to and connected to the docking hole 212, and the air sealing structure 23 is located on the periphery of the docking hole 212, forming a closed space in the space where the air regulating hole 222 and the docking hole 212 are connected, so that the outside air can only enter the docking hole 212 through the air regulating hole 222, and then enter the air intake channel 251, thereby ensuring the air intake volume, so that the suction ventilation volume can be better controlled to improve the smoking taste.

[0039] It is understandable that when the adjustment member 22 is pushed to move to different positions, the communication area between the air adjustment hole 222 and the docking hole 212 can be adjusted, thereby adapting to different suction ventilation requirements.

[0040] In one embodiment, the air sealing structure 23 includes a convex ring 231. In one embodiment, as Figure 2 As shown, the protruding ring 231 is disposed on the docking member 21 and surrounds the docking hole 212, protruding toward the adjusting member 22. The adjusting member 22 abuts against the protruding ring 231, forming a sealed boundary between the mating surfaces of the adjusting member 22 and the docking member 21. The portions of at least two air adjustment holes 222 located inside the protruding ring 231 communicate with the docking hole 212, while the portions located outside the protruding ring 231 are isolated from the docking hole 212, thereby varying the connection area between the docking hole 212 and the air adjustment holes 222.

[0041] In one embodiment, if Figure 7 As shown, in the direction of movement of the regulating member 22, the width of the protruding ring 231 is at least greater than or equal to the width of the air regulating hole 222 closest to the docking hole 212, thereby blocking the air regulating hole 222. The wider protruding ring 231 blocks the air regulating hole 222, and when the regulating member 22 is moved to change position, the area of ​​the air regulating hole 222 that enters the inner side of the protruding ring 231 can be controlled as needed, thereby changing the connection area between the docking hole 212 and the air regulating hole 222, thereby achieving more precise air intake adjustment to meet different suction and ventilation requirements.

[0042] In one embodiment, if Figure 2 As shown, the air sealing structure 23 may further include at least two protruding rings 231, 232. The at least two protruding rings 231, 232 are arranged at the periphery of the docking hole 212 in a concentric ring-like manner, and a sealing area is formed between two adjacent protruding rings 231, 232 to seal the portion of the at least two air regulating holes 222 located between the corresponding two protruding rings 231, 232.

[0043] In this embodiment, a raised ring 232 is provided on the mating member and is located outside the raised ring 231, protruding toward the adjusting member 22. The top surface of the raised ring 232 contacts the end surface of the adjusting member 22, forming a sealed area between the raised ring 231 and the raised ring 232. The provision of the raised ring 232 allows the adjusting member 22 to remain within the second sealing boundary formed by the raised ring 232 even when it is not fully moved into position, for example, when the air adjustment hole 222 is not fully aligned with the mating hole 212, thereby further improving airtightness.

[0044] In one embodiment, if Figure 2 As shown, the docking member 21 is provided with a plurality of protrusions 213, and a plurality of protrusions 231 are spaced apart around the air sealing structure 23. The adjusting member 22 is slidably provided on the plurality of protrusions 213. The provision of the protrusions 213 can support the adjusting member 22 and, at the same time, reduce the contact area between the adjusting member 22 and the docking member, thereby reducing the friction between the adjusting member 22 and the docking member 21 when the adjusting member 22 moves, making the movement of the adjusting member 22 more labor-saving and convenient.

[0045] In one embodiment, the air intake adjustment assembly 20 may further include an airway component 25. The airway component 25 is disposed between the air intake port 15 and the docking component 21, allowing the docking component 21 to be mounted on the atomization device. The airway component 25 includes an air intake channel 251 and a receiving groove 254. The docking component 21 is sealedly connected to the receiving groove 254. The air intake channel 251 connects the docking hole 212 and the air intake port 15, respectively. In some embodiments, the shape of the docking component 21 matches the shape of the receiving groove 254, and can form a tight fit with the inner wall of the structural wall 252 where the receiving groove 254 is located.

[0046] The adjusting member 22 is slidably arranged in the receiving groove 254 and is located on the side of the docking member 21 away from the air inlet 15. By moving and adjusting the relative position of the adjusting member 22 in the receiving groove 254, the sealing position of the air sealing structure 23 is adjusted to achieve the adjustment of the air intake volume.

[0047] The airway component 25 includes a structural wall 252 and a support frame 253. The support frame is disposed inside the structural wall 252, and the structural wall 252 and the support frame 253 together enclose an air inlet passage 251. The side of the docking component 21 facing away from the adjustment component 22 abuts against the support frame 253, providing support for the docking component 21.

[0048] During assembly, the docking piece 21 is installed in the receiving groove 254 and supported by the support frame 253. Then, the docking piece 21 is pressed and installed in the receiving groove 254 using the adjustment piece 22. The outer wall of the docking piece is tightly connected to the inner wall of the receiving groove and supported by the support frame 253, so that the air intake channel 251 is only connected to the docking hole 212, so that the outside air enters the air intake channel 251 through the docking hole 212.

[0049] In one embodiment, if Figure 1 As shown, the airway member 25 defines a clearance space 255. This clearance space 255 is located outside the structural wall 252 downstream of the air inlet channel 251 and matches the shape of the battery 13 of the atomizer device 1. The provision of this clearance space 255 can reduce the volume of the airway member 25 to accommodate the assembly of the battery 13, thereby reducing the volume of the entire atomizer device.

[0050] In one embodiment, a guide structure is provided between the structural wall and the adjusting member to guide the sliding of the adjusting member in the accommodating groove, so that the movement of the adjusting member is more stable.

[0051] The guide structure includes a guide groove 256 and a guide portion 224. The guide groove 256 is formed in the structural wall 252 where the receiving groove is located and extends along the movement direction of the adjusting member 22. The guide portion 224 is protruded from the side wall of the adjusting member 22 at the position corresponding to the guide groove 256 and slides in the guide groove 256. This prevents the adjusting member 22 from falling out of the receiving groove 254, and the guide portion 224 can move in the guide groove 256, achieving stable guided movement.

[0052] In one embodiment, if Figure 8 As shown, in order to position the adjusting member 22 in the receiving groove 254, the guide structure further includes a limiting groove 257 and a limiting portion 258. The limiting groove 257 is provided on the inner wall of the receiving groove 254 and has a wave-shaped structure.

[0053] The limiting portion 258 is protruding from the side wall of the adjusting member 22 at a position corresponding to the limiting groove 257, and the limiting portion 258 is locked in the limiting groove 257. When the adjusting member 22 moves and is in place, the limiting groove 257 and the limiting portion 258 cooperate to relatively position the adjusting member 22, thereby further improving the alignment accuracy of the air adjustment hole 222 and the docking hole 212, and further ensuring stable control of the air intake volume.

[0054] When moving the adjusting member 22, the limiting portion 258 can be snapped into position at different limiting grooves 257, and the limiting portion 258 can be snapped into the limiting grooves 257 in sequence, thereby realizing step-by-step adjustment of the adjusting member 22, so that different numbers of air adjustment holes 222 are connected to the docking station, thereby realizing step-by-step adjustment of the air intake volume.

[0055] In one embodiment, the adjusting member 22 includes a main body 221 and a connecting portion 227. The main body 221 is adapted to fit within the receiving groove 254 and has a shape that matches the receiving groove 254. The main body 221 is slidably disposed within the receiving groove 254. At least two air adjustment holes 222 are formed through the main body 221 to communicate with the docking holes 212 of the docking member 21 in the receiving groove 254.

[0056] The connecting portion 227 is disposed on one side of the main body 221, outside the receiving groove 254. A through-hole 226 is also provided on the connecting portion 227. The through-hole 226 is configured to engage with the power adjustment switch 14 of the atomizing device 1, allowing simultaneous adjustment of the power adjustment switch 14 via the connecting portion 227. When the adjustment member is moved, the connecting portion 227 can drive the power adjustment switch 14 to move synchronously, thereby achieving synchronous adjustment of the output power of the atomizing device.

[0057] For example, when the adjustment member 22 is in the starting position and the communication area between the air adjustment hole 222 and the docking hole 212 is zero, the power adjustment switch 14 is in the closed state, the atomizing device does not output power, and the entire atomizing device is in a shutdown state.

[0058] When the adjusting member 22 is moved so that the connection area between the air adjustment hole 222 and the docking hole 212 changes, the power adjusting switch 14 is simultaneously pushed open, and the connection area changes according to the moving distance of the adjusting member 22. The position of the power adjusting switch 14 is also adjusted synchronously, thereby adapting to the output power required for different connection areas, realizing synchronous adjustment of ventilation volume and output power to adapt to different suction requirements and improving user experience.

[0059] like Figure 1 As shown, in one embodiment, in order to facilitate pushing the adjustment member 22, the air intake adjustment assembly 20 further includes an operating member 24. The operating member 24 is movably disposed on the outside of the housing 11 of the atomizing device 1. The user can push the operating member 24 to move the adjustment member 22, thereby adjusting the relative position of the adjustment member 22 and the docking member 21, thereby switching between the closed state and the air intake state, and adjusting the air intake volume.

[0060] The operating member 24 may include a plurality of holding portions 243 and a connecting rod portion 242. Correspondingly, a clearance hole 111 for installing the operating member 24 is provided in the housing 11, and the holding portions 243 are clamped in the clearance hole 111.

[0061] When the operating member 24 is assembled to the housing 11 of the atomizing device 1, the clamping portion 243 can be buckled onto the inner wall of the housing 11, so that the operating member 24 can be slidably mounted on the housing 11. It is understood that the operating member 24 and the housing 11 can also be connected in various other ways.

[0062] The adjusting member 22 is provided with a plurality of slots 223. Each connecting rod portion 242 is inserted into a corresponding slot 223 through the clearance hole 111, so that the operating member 24 drives the adjusting member 22 to move synchronously. After assembly, the connecting rod portion 242 can be inserted into the slot 223. When the operating member 24 is pushed to move, the adjusting member 22 can be driven to move by the connecting rod portion 242. The connection method using the connecting rod portion 242 and the slot 223 has a simple connection structure and is easy to assemble. It is understood that in other embodiments, the operating member 24 and the adjusting member 22 can also be connected by other methods, such as screws, bolts, rivets, snaps, etc.

[0063] The operating member 24 is provided with at least one connecting hole 241. The connecting hole 241 connects the air regulating hole 222 with the outside atmosphere. It is understandable that in some embodiments, the connecting hole 241 may not be provided, and the air regulating hole 222 may directly communicate with the outside to introduce outside air. Figure 1 As shown, in some embodiments, there may be three communicating holes 241. Of course, the number of communicating holes 241 may be one or more. A communicating space may be formed between the operating member 24 and the regulating member 22, through which the communicating holes 241 and the air-regulating holes 222 communicate. External air may enter through the communicating holes 241 and enter the air-regulating holes 222 through the communicating space. It is understood that the communicating holes 241 and the air-regulating holes 222 may also be connected in other ways, such as by providing independent circulation channels.

[0064] In one embodiment, the diameter of the docking hole 212 is larger than the diameter of the air-adjusting hole 222 , so that the docking hole 212 can be connected to the plurality of air-adjusting holes 222 .

[0065] In one embodiment, at least two air-regulating holes 222 are arranged in an interval arrangement along the direction of movement of the regulating member 22, and the opening sizes of the at least two air-regulating holes 222 gradually increase or decrease in sequence to achieve step-by-step adjustment of the air intake volume. Accordingly, the power regulating switch 14 has at least three gears, corresponding to the connection area between the at least two air-regulating holes 222 and the docking hole 212. For example, when the connection area between the at least two air-regulating holes 222 and the docking hole 212 is zero, the power regulating switch 14 is in the off gear; when one air-regulating hole 222 is connected to the docking hole 212, the power regulating switch 14 is in the first power output gear; when two air-regulating holes 222 are connected to the docking hole 212, the power regulating switch 14 is in the second power output gear.

[0066] In other embodiments, the air adjustment holes 222 include at least three air adjustment holes, such as a first air adjustment hole 2221, a second air adjustment hole 2222, and a third air adjustment hole 2223 arranged in the direction of movement of the adjustment member 22. The apertures of the at least three air adjustment holes gradually increase or decrease in size. It is understood that the number of air adjustment holes 222 can be adjusted according to actual needs, such as two, four, or more.

[0067] Correspondingly, the communication areas between the at least three air adjustment holes 222 and the docking hole 212 correspond to the at least three power levels of the atomization device 1 .

[0068] Under the first air intake connection area, the first air adjustment hole 2221 is connected to the docking hole 212. Under the second air intake connection area, the first air adjustment hole 2221 and the second air adjustment hole 2222 are simultaneously connected to the docking hole 212. Under the third air intake connection area, the first air adjustment hole 2221, the second air adjustment hole 2222, and the third air adjustment hole 2223 are simultaneously connected to the docking hole 212. The corresponding air intake state can be selected by pushing the adjustment member 22, thereby obtaining different air intake volumes, thereby adapting to different suction requirements. Correspondingly, the power adjustment switch 14 can also be set to an off gear, a first power output gear, a second power output gear, and a third power output gear.

[0069] In some other embodiments, the adjusting member 22 is provided with a guide portion 225 that cooperates with the outer wall of the accommodating groove 254. By cooperating with the guide portion 225 and the outer wall of the accommodating groove 254, better guidance can be provided when the adjusting member 22 is moved, making the movement of the adjusting member 22 more stable.

[0070] In some other embodiments, the docking member 21 may be a silicone member. The docking member 21 is made of silicone material, which can avoid defects such as burrs and large tolerances caused by materials such as plastic.

[0071] In one embodiment, if Figure 6 、 7As shown, the present application also provides an atomizer device 1, comprising a housing 11, an atomizer assembly 12 disposed within the housing 11, and an air intake adjustment assembly 20. The housing 11 is provided with an air intake port 15, which communicates with the atomization air passage of the atomizer assembly 12. The air intake adjustment assembly 20 can be any of the above-described embodiments. The air intake adjustment assembly 20 controls the amount of air entering the air intake passage 251, thereby coordinating the atomization power of the atomizer assembly 12 and thereby improving the user's puffing experience.

[0072] It is understandable that the atomizing device 1 may further include a nozzle, a control circuit, a battery, etc., which will not be described in detail here.

[0073] The above specific examples are used to illustrate the present application, which is only used to help understand the present application and is not intended to limit the present application. For those skilled in the art of the present application, based on the concept of the present application, they can also make some simple deductions, modifications or substitutions.

Claims

1. An air intake regulating assembly, applied to an atomizing device, characterized in that: The atomizing device has an air inlet, and the air inlet regulating assembly includes: A docking piece is provided at the position of the air inlet, the docking piece is provided with a docking hole, and the docking hole is communicated with the air inlet; an adjusting member movably disposed on the docking member, the adjusting member being provided with at least two air regulating holes, the at least two air regulating holes being used to connect the docking hole with the outside atmosphere; and an air sealing structure, provided on the docking member, opposite to the adjusting member, and used for sealing at least a portion of the docking hole and / or the air regulating hole; The adjusting member is configured to be movable relative to the docking member, and the relative position between the docking member and the adjusting member is changed by moving the adjusting member so as to adjust the communication area between the docking hole and at least two of the air regulating holes.

2. The air intake adjustment assembly according to claim 1, characterized in that: The air sealing structure includes at least one convex ring, which is arranged on the docking piece and surrounds the periphery of the docking hole, and the adjusting piece abuts against the convex ring; the parts of the at least two air adjusting holes located on the inner side of the convex ring are connected to the docking hole, and the parts located on the outer side of the convex ring are isolated from the docking hole.

3. The air intake adjustment assembly according to claim 2, characterized in that: The air sealing structure includes at least two convex rings, which are arranged at the periphery of the docking hole with concentric ring intervals, and a closed area is formed between two adjacent convex rings to seal the part of the at least two air adjustment holes located between the corresponding two convex rings.

4. The air intake adjustment assembly according to claim 1, characterized in that: The docking member is provided with a plurality of protrusions, and the plurality of protrusions are arranged at intervals on the peripheral side of the air sealing structure, and the adjusting member is slidably arranged on the plurality of protrusions.

5. The air intake adjustment assembly according to claim 1, characterized in that: The air intake adjustment assembly also includes an air duct part, which is arranged between the air inlet and the docking part. The air duct part has an air intake channel and a receiving groove. The docking part is sealed and connected to the receiving groove. The air intake channel is connected to the docking hole and the air inlet respectively. The adjustment part is slidably arranged in the receiving groove and is located on the side of the docking part away from the air inlet.

6. The air intake adjustment assembly according to claim 5, characterized in that: The airway component includes a structural wall and a supporting bone position; The support frame is arranged on the inner side of the structural wall, and the structural wall and the support frame together enclose the air intake channel; the side of the docking member away from the adjusting member abuts against the support frame; And / or, a guide structure is provided between the structural wall and the adjusting member to guide the sliding of the adjusting member in the accommodating groove.

7. The air intake adjustment assembly according to claim 6, characterized in that: The guide structure includes a guide groove and a guide portion; The guide groove is opened at the structural wall where the accommodating groove is located; The guide portion is protruded on the side wall of the adjusting member at a position corresponding to the guide groove, and is slidably arranged in the guide groove; And / or, the guide structure further includes a limiting groove and a limiting portion; The limiting groove is provided on the inner wall of the accommodating groove, and the limiting groove has a wave-shaped structure; The limiting portion is protruded from the side wall of the adjusting member at a position corresponding to the limiting groove, and the limiting portion is clamped in the limiting groove.

8. The air intake adjustment assembly according to claim 5, characterized in that: The adjusting member includes a main body and a connecting portion; The at least two air-adjusting holes are formed on the main body; the main body is adapted to fit in the receiving groove, and the main body is slidably disposed in the receiving groove; The connecting portion is arranged on one side of the main body, located outside the accommodating groove, and is provided with a penetrating buckle hole; the buckle hole is configured to cooperate with the power adjustment switch of the atomization device to simultaneously adjust the power adjustment switch through the connecting portion.

9. The air intake adjustment assembly according to any one of claims 1 to 8, characterized in that: The air intake adjustment assembly further includes an operating member, and the atomizing device further includes a housing. The operating member is movably disposed outside the housing, and the operating member includes a plurality of clamping portions and a plurality of connecting rod portions. The housing is provided with a clearance hole for installing the operating member, and the plurality of clamping parts are clamped on the clearance hole; The adjusting member is provided with a plurality of slots, and each connecting rod portion passes through the clearance hole and is inserted into the corresponding slot, so that the operating member drives the adjusting member to move synchronously; The operating member is provided with a plurality of communicating holes, and the plurality of communicating holes are connected with the air regulating hole and the outside atmosphere.

10. The air intake adjustment assembly according to any one of claims 1 to 8, characterized in that: The aperture size of the docking hole is larger than the aperture size of the air adjustment hole; And / or, the adjusting member comprises at least three air regulating holes, the at least three air regulating holes are arranged at intervals along the moving direction of the adjusting member, and the aperture sizes of the at least three air regulating holes gradually increase or decrease in sequence; The communication areas between the at least three air-adjusting holes and the docking hole respectively correspond to the at least three power levels of the atomizing device.

11. An atomizing device, characterized in that: It comprises a housing, and an atomizing assembly and an air intake regulating assembly arranged in the housing; the air intake regulating assembly is the air intake regulating assembly according to any one of claims 1 to 10; The shell is provided with an air inlet, and the air inlet is connected to the atomizing air passage of the atomizing assembly.