Electronic atomization device

By adopting the combined design of airway adjustment parts and toggle switches, the complex operation in the existing technology is solved, simple airway switching and diversified taste experience are achieved, and the user experience is improved.

CN223365003UActive Publication Date: 2025-09-23SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Application Number
CN202422250038.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-09-23
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

Existing electronic atomization devices are complicated to operate when switching atomization core components, have complex structures and poor user experience, making it difficult to achieve simple airway switching and diversified flavor experience.

Method used

The airway adjustment part and the toggle switch are combined to realize the connection of the air inlet holes with the outside world individually or together by sliding the airway adjustment part. The switching circuit is combined to control the individual or collective operation of the atomizer core components, simplifying the operation process.

Benefits of technology

It realizes simple airway switching and multi-mode taste experience, improves the user's usage experience and enhances the user's operating experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides electronic atomization equipment, and belongs to the technical field of electronic atomization, the electronic atomization equipment comprises a shell assembly, a first atomization core assembly, a second atomization core assembly, an air channel adjusting part and a power supply assembly, the shell assembly is provided with an adjusting area, the adjusting area is provided with a first air inlet hole and a second air inlet hole which are through, and the air channel adjusting part is arranged in the adjusting area; the first air inlet hole and the second air inlet hole are communicated with the shell assembly and can slide in the first direction relative to the shell assembly, the power supply assembly comprises a toggle switch and a switching circuit, the toggle switch is electrically connected with the switching circuit, and the toggle switch is connected with the air channel adjusting piece and can move along with the air channel adjusting piece. The first atomizing core assembly and the second atomizing core assembly are arranged on the air channel adjusting part and synchronously drive the change-over switch to be switched to different gears, so that the first atomizing core assembly and the second atomizing core assembly work independently or jointly, a user can select aerosol of a single taste or aerosol of a mixed taste according to sliding of the air channel adjusting part, and the use experience of the user is improved.
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Description

Technical Field

[0001] The present application relates to the field of electronic atomization technology, and more specifically to an electronic atomization device. Background Art

[0002] At present, in order to achieve the diversity of functions and flavors of electronic atomization devices, the industry has designed electronic atomization devices with two atomization core assemblies. In this electronic atomization device, each atomization core assembly has an independent airway, but shares a suction nozzle. In this way, the electronic atomization device requires that the two atomization core assemblies can work separately to independently generate aerosols, and the two atomization core assemblies can work together at the same time to produce a mixture of two aerosols to enrich the flavor of the atomization device. A specific implementation method is to use a sliding or rotating suction nozzle to achieve the switching of the two atomization core assemblies. This switching method requires the size of the suction nozzle to be larger, and has greater restrictions on the appearance of the electronic atomization device. In addition, the structure and operation are complex, resulting in a poor user experience. Utility Model Content

[0003] The present application provides an electronic atomization device that can conveniently and synchronously start different atomization core components by switching the airways. It is simple to operate and can enhance the user experience.

[0004] The present application provides an electronic atomization device, comprising a shell assembly, a first atomization core assembly, a second atomization core assembly, an airway adjustment member and a power supply assembly, wherein the shell assembly has a mounting cavity, an adjustment area is provided on the shell assembly, and the adjustment area is provided with a first air inlet hole and a second air inlet hole that pass through; the first atomization core assembly is arranged in the mounting cavity, the first atomization core assembly has a first atomization channel, and the first atomization channel is connected to the first air inlet hole; the second atomization core assembly is arranged in the mounting cavity, the second atomization core assembly and the first atomization core assembly are independently arranged, the second atomization core assembly has a second atomization channel, and the second atomization channel is connected to the second air inlet hole The airway regulating member is provided in the regulating area and can slide relative to the shell assembly along a first direction, and the airway regulating member is used to regulate whether the first air inlet hole and the second air inlet hole are connected to the outside world individually or together; the power supply assembly includes a toggle switch and a switching circuit, the toggle switch is electrically connected to the switching circuit, the toggle switch is connected to the airway regulating member and can move with the airway regulating member, the toggle switch can switch to different gears when the first air inlet hole and the second air inlet hole are connected to the outside world individually or together, and the switching circuit is used to trigger the first atomization core assembly and the second atomization core assembly to work individually or together according to the different gears.

[0005] In some embodiments, the toggle switch includes a first gear position, a second gear position, and a third gear position, so that the toggle switch can be switched between the first gear position, the second gear position, and the third gear position; in the first gear position, the first atomization core assembly is turned on and the second atomization core assembly is turned off; in the second gear position, the first atomization core assembly and the second atomization core assembly are turned on together; in the third gear position, the first atomization core assembly is turned off and the second atomization core assembly is turned on.

[0006] In some embodiments, when the first air inlet is connected to the outside world alone, the toggle switch is in the first position; when the second air inlet is connected to the outside world alone, the toggle switch is in the third position; when the first air inlet and the second air inlet are connected to the outside world together, the toggle switch is in the second position.

[0007] In some embodiments, the electronic atomization device further includes a mobile driving member, which is connected to the airway regulating member and is arranged in the middle of the airway regulating member, and the mobile driving member is used to drive the airway regulating member to move along the first direction.

[0008] In some embodiments, the airway adjustment member is provided with an adjustment hole, and the airway adjustment member slides relative to the housing assembly along the first direction so that the adjustment hole can be aligned with and communicate with the first air inlet hole and / or the second air inlet hole.

[0009] In some embodiments, there are multiple adjustment holes, and the multiple adjustment holes are arranged in sequence along the first direction. The airway adjustment member slides relative to the shell assembly along the first direction so that one of the adjustment holes can be aligned with and connected to the first air inlet hole or the second air inlet hole, or so that one of the adjustment holes can be aligned with and connected to the first air inlet hole, and the other adjustment hole can be aligned with and connected to the second air inlet hole.

[0010] In some embodiments, the housing assembly is provided with a movable track extending along the first direction, and the airway adjustment component is clamped on the movable track and can slide along the movable track.

[0011] In some embodiments, the toggle switch includes a toggle protrusion, the airway regulating component is provided with a mounting groove, the toggle protrusion is arranged in the mounting groove, and the toggle protrusion can move with the airway regulating component.

[0012] In some embodiments, the electronic atomization device further includes a seal, which is disposed between the shell assembly and the airway regulating component. The seal is provided with two through holes, and the two through holes are aligned one-to-one with the first air inlet hole and the second air inlet hole.

[0013] In some embodiments, the adjustment area is disposed on a side wall of the housing assembly.

[0014] According to the electronic atomization device in the above embodiment, it includes a shell assembly, a first atomization core assembly, a second atomization core assembly, an airway adjustment component and a power supply assembly. Since the airway adjustment component can slide relative to the shell assembly in a first direction and adjust the first air inlet hole and the second air inlet hole to communicate with the outside world separately or together, it can also synchronously drive the switch to switch to different gears to achieve the first atomization core assembly and the second atomization core assembly to work separately or together, so that the user can choose to switch one of the atomization core assemblies to work alone to produce a single-flavor aerosol or choose two atomization core assemblies to work simultaneously to produce a mixed-flavor aerosol according to the sliding of the airway adjustment component. The airway adjustment component has a simple structure and is easy to operate, which is conducive to improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 A cross-sectional view of the structure of an electronic atomization device in one embodiment;

[0016] Figure 2 This is an exploded view of the structure of an electronic atomization device in one embodiment;

[0017] Figure 3 This is a schematic structural diagram of a housing assembly in one embodiment;

[0018] Figure 4 A schematic structural diagram of an airway regulating member in one embodiment;

[0019] Figure 5 This is a schematic structural diagram of a mobile driving member in one embodiment;

[0020] Figure 6 A schematic diagram of the structure of a switch in an embodiment;

[0021] Figure 7 Schematic diagram of the appearance of an electronic atomization device in three working modes in one embodiment;

[0022] Figure 8 A top view of the structure of an electronic atomization device in one embodiment;

[0023] Figure 9 for Figure 8 Structural cross-sectional view and gas path schematic diagram in the AA direction;

[0024] Figure 10 Schematic diagram of different gears of the switch in three working modes of an electronic atomization device in one embodiment.

[0025] Wherein: 1. shell assembly; 11. mounting cavity; 12. adjustment area; 121. first air inlet hole; 122. second air inlet hole; 123. movable track; 13. mouthpiece; 131. mixed air channel; 14. first air inlet channel; 15. second air inlet channel; 16. first shell; 17. second shell; 2. first atomizer core assembly; 21. first atomization channel; 3. second atomizer core assembly; 31. second atomization channel; 4. air channel adjustment member; 41. mounting hole; 42. adjustment hole; 43. mounting groove; 44. fixing portion; 441. base section; 442. clamping section; 5. power supply assembly; 51. toggle switch; 511. toggle protrusion; 52. switching circuit; 6. movable driving member; 61. driving portion; 62. connecting portion; 621. extension section; 622. protruding section; 7. sealing member; 71. through hole; X, first direction. DETAILED DESCRIPTION

[0026] 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.

[0027] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various implementations, and the operational steps involved in each embodiment may be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a particular embodiment and do not imply a required composition and / or sequence.

[0028] 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 "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).

[0029] The present application provides an electronic atomization device (hereinafter referred to as the atomization device) that can be used to heat an atomization matrix to generate an aerosol that can be inhaled by a user. Of course, the atomization device can also be used in the fields of atomization, aromatherapy, etc.

[0030] It should be noted that the term "aerosol" refers to a dispersion of solid or liquid particles in a gas. As used herein, "aerosol" may generally refer to a substance that has been vaporized, atomized, in the form of a spray or jet, or otherwise converted from a solid or liquid form into an inhalable form containing suspended solid or liquid drug particles.

[0031] As used herein, the term "aerosolizing base" refers to any suitable compound or mixture of compounds that facilitates the formation of an aerosol (e.g., a stable aerosol that is substantially resistant to thermal degradation at the operating temperature of the system) during use. Suitable aerosolizing bases are well known in the art and include, but are not limited to: polyols such as triethylene glycol, 1,3-butylene glycol, and glycerol; esters of polyols such as glycerol mono-, di-, or triacetate; and aliphatic esters of mono-, di-, or polycarboxylic acids such as dimethyl dodecanedioate and dimethyl tetradecanedioate.

[0032] The atomized matrix may include nicotine. The atomized matrix may include water. The atomized matrix may include glycerol (also known as glycerol) having a higher boiling point than nicotine. The atomized matrix may include propylene glycol. The atomized matrix may include a plant-based material. The atomized matrix may include a homogeneous plant-based material. The homogeneous plant-based material may contain volatile compounds. These compounds may be released from the atomized matrix upon heating. The atomized matrix is ​​typically a liquid and is stored in a container or stored in a storage element made of a porous material having a liquid absorption and retention function (such as porous cotton fibers or porous ceramic materials).

[0033] See also Figures 1 to 10 The atomization device includes a shell assembly 1, a first atomization core assembly 2, a second atomization core assembly 3, an airway adjustment component 4 and a power supply assembly 5.

[0034] The housing assembly 1 can be understood as the collection of related components that make up the overall outer contour of the generating device. For example, the housing assembly 1 can be constructed from one or more components, and corresponding assembly structures are provided within or on the shell wall of the housing assembly 1 to facilitate the assembly of other components of the atomizing device to the housing assembly 1. The first atomizing core assembly 2, the second atomizing core assembly 3, and the power supply assembly 5 are disposed within the interior of the housing assembly 1, and the airway adjustment member 4 is disposed on the housing assembly 1. At least a portion of the airway adjustment member 4 can be exposed on the housing assembly 1 to facilitate manual operation by the user to adjust the movement of the airway adjustment member 4.

[0035] In some specific embodiments, the housing assembly 1 has an installation cavity 11, and the first atomizer core assembly 2 and the second atomizer core assembly 3 are both disposed within the installation cavity 11. The second atomizer core assembly 3 and the first atomizer core assembly 2 are disposed independently of each other, that is, the first atomizer core assembly 2 and the second atomizer core assembly 3 do not interfere with each other, thereby preventing cross-flavoring. The housing assembly 1 is provided with an adjustment area 12, which is provided with a first air inlet hole 121 and a second air inlet hole 122 that pass through the adjustment area 12. The first air inlet hole 121 and the second air inlet hole 122 can communicate with the outside world. The first atomizer core assembly 2 has a first atomization channel 21 that communicates with the first air inlet hole 121. The second atomizer core assembly 3 has a second atomization channel 31 that communicates with the second air inlet hole 122. The airway adjustment member 4 is disposed in the adjustment area 12 and can slide back and forth relative to the housing assembly 1 along the first direction X, thereby enabling the airway adjustment member 4 to block or expose at least a portion of the first air inlet hole 12. 1 and / or the second air inlet hole 122, thereby adjusting the first air inlet hole 121 and the second air inlet hole 122 to be connected to the outside world separately or together, thereby realizing the switching of different airways. When the first air inlet hole 121 is connected to the outside world separately, the airway regulating component 4 exposes at least part of the first air inlet hole 121 and blocks the second air inlet hole 122. When the second air inlet hole 122 is connected to the outside world separately, the airway regulating component 4 exposes at least part of the second air inlet hole 122 and blocks the first air inlet hole 121. When the first air inlet hole 121 and the second air inlet hole 122 are connected to the outside world together, the airway regulating component 4 exposes at least part of the first air inlet hole 121 and the second air inlet hole 122. The power supply assembly 5 includes a toggle switch 51 and a switching circuit 52. The toggle switch 51 and the switching circuit 52 are electrically connected. The toggle switch 51 is connected to the airway regulating member 4 and can move with the airway regulating member 4. The toggle switch 51 can switch to different gears when the first air inlet hole 121 and the second air inlet hole 122 are connected to the outside world individually or together. The switching circuit 52 is used to trigger different working modes of the atomization device according to different gears. The working modes include the first atomization core assembly 2 working alone, the second atomization core assembly 3 working alone, and the first atomization core assembly 2 and the second atomization core assembly 3 working together.

[0036] The power supply assembly 5 further includes a power supply battery (not shown in the figure), which is electrically connected to the first atomizer core assembly 2 and the second atomizer core assembly 3 to provide power required for their operation.

[0037] Since the toggle switch 51 moves along with the movement of the airway regulating member 4, the first atomizing core assembly 2 and the second atomizing core assembly 3 can be controlled to work individually or together while switching the airways, thereby simplifying the operation of the atomizing device, making it convenient for users to switch between different working modes according to their needs, and helping to improve the user experience.

[0038] In some specific embodiments, the first atomization core assembly 2 and the second atomization core assembly 3 both have a liquid storage chamber, in which an atomization matrix is ​​provided. In order to meet the user's usage requirements for different tastes, different atomization matrices can be stored in the two liquid storage chambers, such as one is an unflavored atomization matrix, and the other is an atomization matrix containing a sweet flavor such as fruit flavor or an atomization matrix containing a mint flavor that can bring a cool feeling. Users can choose the working mode corresponding to the taste according to their needs.

[0039] Of course, in some other embodiments, the liquid storage chambers of the first atomizer core assembly 2 and the second atomizer core assembly 3 may contain the same atomizer matrix, and different operating modes may be selected to achieve different atomization volume experiences. For example, when a larger atomization volume is required, the first atomizer core assembly 2 and the second atomizer core assembly 3 may be selected to work together. It should be noted that the atomization volume refers to the concentration of the aerosol during a single puff.

[0040] Furthermore, the housing assembly 1 is provided with a mouthpiece 13 having a mixed air passage 131 therein. The mixed air passage 131 is connected to both the first atomization passage 21 and the second atomization passage 31. Regardless of the selected operating mode, the user can inhale the aerosol through the mouthpiece 13. Because the airway switching and operating mode switching are achieved through the airway regulating member 4, there is no need to move or rotate the mouthpiece 13, which facilitates the miniaturization of the mouthpiece 13 and, consequently, the atomization device.

[0041] In some specific embodiments, the toggle switch 51 includes a first gear position, a second gear position, and a third gear position, so that the toggle switch 51 can be switched between the first gear position, the second gear position, and the third gear position; in the first gear position, the first atomizer core assembly 2 is turned on and the second atomizer core assembly 3 is turned off; in the second gear position, the first atomizer core assembly 2 and the second atomizer core assembly 3 are turned on together; in the third gear position, the first atomizer core assembly 2 is turned off and the second atomizer core assembly 3 is turned on. Along the first direction X, the first gear position, the second gear position, and the third gear position correspond to the three positions of the toggle switch 51, please refer to Figure 10 The first gear corresponds to the left position in the figure, the second gear corresponds to the middle position, and the third gear corresponds to the right position. The position of the toggle switch 51 is switched by moving the airway adjustment member 4, and the operation is simple.

[0042] Furthermore, when the first air inlet 121 is connected to the outside world alone, the toggle switch 51 is in the first position; when the second air inlet 122 is connected to the outside world alone, the toggle switch 51 is in the third position; when the first air inlet 121 and the second air inlet 122 are connected to the outside world together, the toggle switch 51 is in the second position.

[0043] See also Figure 7 and Figure 9In the left figure, when the airway adjustment member 4 moves so that the first air inlet 121 is exposed and connected to the outside world separately, the first atomization channel 21 is connected to the outside world. As the user inhales, the outside air can enter the first atomization channel 21 through the adjustment hole 42 and the first air inlet 121 in sequence. The toggle switch 51 is switched to the first gear position on the left. The switching circuit 52 triggers the control of the first atomization core assembly 2 to work, heat the atomization matrix to generate aerosol, and the aerosol can flow from the first atomization channel 21 into the mixed air channel 131 and be inhaled by the user through the mouthpiece 13 along the mixed air channel 131. The air and the air carrying the aerosol circulate as shown in FIG. Figure 9 As shown in the left picture.

[0044] See also Figure 7 and Figure 9 In the middle figure, when the airway adjustment member 4 moves so that the first air inlet hole 121 and the second air inlet hole 122 are exposed and connected to the outside world, the first atomization channel 21 and the second atomization channel 31 are connected to the outside world respectively. As the user inhales, one path of air from the outside can pass through the adjustment hole 42 and the first air inlet hole 121 in sequence into the first atomization channel 21, and the other path of air from the outside can pass through the adjustment hole 42 and the second air inlet hole 122 in sequence into the second atomization channel 31. The toggle switch 51 is switched to the second gear in the middle position, and the switching circuit 52 triggers the control of the first atomization core assembly 2 and the second atomization core assembly 3 to work, heat the atomization matrix to generate aerosol, and the two flavors of aerosol can flow from the first atomization channel 21 and the second atomization channel 31 respectively. After being mixed in the mixed air channel 131, they are inhaled by the user through the mouthpiece 13. The air and the air carrying the aerosol circulate as shown in FIG. Figure 9 As shown in the middle picture.

[0045] See also Figure 7 and Figure 9 In the right figure, when the airway adjustment member 4 moves so that the second air inlet hole 122 is exposed and connected to the outside world separately, the second atomization channel 31 is connected to the outside world, and the outside air can enter the second atomization channel 31 through the adjustment hole 42 and the second air inlet hole 122 in sequence. The toggle switch 51 is switched to the third gear on the right side, and the switching circuit 52 triggers the control of the second atomization core assembly 3 to work, heating the atomization matrix to generate aerosol. The aerosol can flow from the second atomization channel 31 into the mixed air channel 131 and be inhaled by the user through the mouthpiece 13 along the mixed air channel 131. The air and the air carrying the aerosol circulate as shown in FIG. Figure 9 As shown in the picture on the right.

[0046] In some embodiments, the electronic atomization device further includes a mobile driving member 6, which is connected to the airway regulating member 4 and is disposed in the middle of the airway regulating member 4. The mobile driving member 6 is used to drive the airway regulating member 4 to move along the first direction X. A through mounting hole 41 is provided in the middle of the airway regulating member 4, and the mobile driving member 6 is clamped in the mounting hole 41. When the mobile driving member 6 is pushed by human power to move, the airway regulating member 4 can be driven to move synchronously.

[0047] See also Figure 5 In some specific embodiments, the mobile driver 6 includes a driving portion 61 and a connecting portion 62. The connecting portion 62 includes an extension section 621 extending axially along the mounting hole 41 and a raised section 622 protruding radially from the extension section 621 approximately along the mounting hole 41. The extension section 621 may be elastic. During installation, it is manually compressed so that it can extend into the mounting hole 41. After extending from one side of the airway regulating member 4 to the other side, the connecting portion 62 is released, and the raised section 622 can engage with the airway regulating member 4 around the mounting hole 41, thereby achieving installation of the mobile driver 6. To improve the stability of the connection, at least two connecting portions 62 are provided, for example, two, three, or four. The connecting portions 62 are symmetrically arranged so that the airway regulating member 4 is evenly stressed and can move smoothly. In this embodiment, the driving portion 61 and the connecting portion 62 can be an integrally molded structure.

[0048] In some specific embodiments, the driving portion 61 is provided with a plurality of protrusions, which may be in the form of strips, blocks, or dots, increasing friction on the driving portion 61 and facilitating user operation. In other embodiments, the driving portion 61 may be covered with a rubber sleeve with protrusions, which can provide a better operating feel and enhance the user's experience.

[0049] See also Figure 4In some embodiments, an adjustment hole 42 is provided on the air duct adjustment member 4, and the air duct adjustment member 4 slides relative to the shell assembly 1 along the first direction X so that the adjustment hole 42 can be aligned with and connected to the first air inlet hole 121 and / or the second air inlet hole 122. When the air duct regulating member 4 moves to the point where only the regulating hole 42 is aligned and connected with the first air inlet hole 121, the rest of the air duct regulating member 4 blocks the second air inlet hole 122, and the first atomizing channel 21 is connected to the outside world through the first air inlet hole 121 and the regulating hole 42 in turn. When the air duct regulating member 4 moves to the point where only the regulating hole 42 is aligned and connected with the second air inlet hole 122, the rest of the air duct regulating member 4 blocks the first air inlet hole 121, and the second atomizing channel 31 is connected to the outside world through the second air inlet hole 122 and the regulating hole 42 in turn. When the air duct regulating member 4 moves to the point where the regulating hole 42 is aligned and connected with the first air inlet hole 121 and the second air inlet hole 122, the first atomizing channel 21 is connected to the outside world through the first air inlet hole 121 and the regulating hole 42 in turn, and the second atomizing channel 31 is connected to the outside world through the second air inlet hole 122 and the regulating hole 42 in turn. In a specific embodiment, there can be one adjustment hole 42, and the size of the adjustment hole 42 is not less than the interval between the first air inlet hole 121 and the second air inlet hole 122, so that when the adjustment hole 42 is located between the first air inlet hole 121 and the second air inlet hole 122, the first air inlet hole 121 and the second air inlet hole 122 can be connected to the outside world.

[0050] Of course, in some other embodiments, multiple adjustment holes 42 may be provided, and the multiple adjustment holes 42 are spaced apart in sequence along the first direction X. The airway adjustment member 4 slides relative to the housing assembly 1 along the first direction X so that one of the adjustment holes 42 can be aligned with and communicate with the first air inlet hole 121 or the second air inlet hole 122, or so that one of the adjustment holes 42 can be aligned with and communicate with the first air inlet hole 121, and another of the adjustment holes 42 can be aligned with and communicate with the second air inlet hole 122. Specifically, when one of the adjustment holes 42 is aligned with and communicates with the first air inlet hole 121, the other adjustment holes 42 are not aligned with the second air inlet hole 122, and the first air inlet hole 121 is independently communicated with the outside world. When one of the adjustment holes 42 is aligned with and communicates with the second air inlet hole 122, the other adjustment holes 42 are not aligned with the first air inlet hole 121, and the second air inlet hole 122 is independently communicated with the outside world. When one of the adjustment holes 42 is aligned with and connected to the first air inlet 121, and the other adjustment hole 42 is aligned with and connected to the second air inlet 122, both the first air inlet 121 and the second air inlet 122 are now connected to the outside world. In this embodiment, the size of the adjustment holes 42 should be compatible with the size of the first air inlet 121 and the second air inlet 122. When the adjustment holes 42 are aligned and connected to the first air inlet 121 and the second air inlet 122, there is a one-to-one correspondence. In other embodiments, multiple adjustment holes 42 may be aligned with and connected to the first air inlet 121 or the second air inlet 122.

[0051] See also Figure 3 and Figure 4 In some specific embodiments, to ensure smooth and consistent movement of the airway regulating member 4, the housing assembly 1 is provided with a movable track 123 extending along the first direction X and disposed in the regulating region 12. The airway regulating member 4 is secured to the movable track 123 and is capable of sliding along the movable track 123. The airway regulating member 4 is provided with a fixing portion 44. The fixing portion 44 comprises a continuously arranged base segment 441 and a clamping segment 442. The clamping segment 442 protrudes from the sidewall of the base segment 441, and the extending axis of the clamping segment is arranged at an angle to the extending axis of the base segment 441. The clamping segment is capable of being secured to the movable track 123 and sliding along the movable track 123. To enhance smooth movement, at least two movable tracks 123 and at least two fixing portions 44 can be provided. Each movable track 123 is provided with at least one fixing portion 44. For example, four fixing portions 44 and four movable tracks 123 can each be provided, with the fixing portions 44 and movable tracks 123 being connected in a one-to-one correspondence.

[0052] See also Figure 6In some embodiments, the toggle switch 51 includes a toggle protrusion 511 , and the airway regulating member 4 is provided with a mounting groove 43 . The toggle protrusion 511 is disposed in the mounting groove 43 , and the toggle protrusion 511 can move synchronously with the airway regulating member 4 .

[0053] In some specific embodiments, the size of the mounting groove 43 may be larger than the size of the toggle protrusion 511, so as to form a gap between the toggle protrusion 511 and the mounting groove 43 for facilitating fine-tuning of the airway adjustment component 4. The toggle protrusion 511 is inserted into the mounting groove 43. Due to the existence of the gap, when the airway adjustment component 4 is fine-tuned, the toggle protrusion 511 will not move therewith, thereby not switching different working modes through the switching circuit 52. In the same working mode, the airway adjustment component 4 can change the exposed area of ​​the first air inlet hole 121 and / or the second air inlet hole 122 by fine-tuning, thereby realizing the adjustment of the air intake volume in the same working mode to change the content during subsequent aerosol inhalation.

[0054] In order to improve the air tightness and avoid affecting the suction effect due to poor sealing, the electronic atomization device also includes a seal 7, which is provided with two through holes 71. The two through holes 71 are aligned with the first air inlet hole 121 and the second air inlet hole 122 in a one-to-one correspondence, which can ensure the circulation of airflow. The seal 7 is arranged between the shell assembly 1 and the airway adjustment component 4, and can seal the gap between the shell assembly 1 and the airway adjustment component 4 to avoid the airflow at the first air inlet hole 121 and the second air inlet hole 122 from running around.

[0055] In some specific embodiments, the adjustment region 12 is disposed on the sidewall of the housing assembly 1, that is, the airway adjustment member 4 is disposed on the sidewall of the housing assembly 1, facilitating assembly and operation. Since the first and second atomizer core assemblies 2 and 3 are arranged side by side along a first direction X, and the power supply assembly 5 is disposed on one side of the first and second atomizer core assemblies 2 and 3 perpendicular to the first direction X, disposing the airway adjustment member 4 on the sidewall of the housing assembly 1 does not hinder assembly and disassembly of the power supply assembly 5. The housing assembly 1 may include a first portion for accommodating the first and second atomizer core assemblies 2 and 3, and a second portion for accommodating the power supply assembly 5. The first and second portions are detachably connected, facilitating recycling of the first and second atomizer core assemblies 2 and 3, or the power supply assembly 5. The airway adjustment member 4 is disposed on the sidewall of the first portion, shortening the airflow path and simplifying the structure of the airway adjustment member 4. The first and second portions may be connected by a detachable connection method such as magnetic attraction, snap-on connection, or threaded connection.

[0056] In some specific embodiments, the shell assembly 1 includes a first shell 16 and a second shell 17 nested inside and outside, the first shell 16 is arranged on the outside, the movable track 123 is arranged on the second shell 17, and the airway adjustment component 4 is arranged between the first shell 16 and the second shell 17. Only part of the structure of the driving part 61 of the movable driving component 6 is exposed on the shell assembly 1 to provide a fulcrum for the customer, and the shell assembly 1 can also be used to accommodate and protect other components.

[0057] In some specific embodiments, a first air inlet channel 14 and a second air inlet channel 15 are provided in the shell assembly 1, the first air inlet channel 14 and the second air inlet channel 15 are isolated from each other, the first atomization channel 21 is connected to the first air inlet hole 121 through the first air inlet channel 14, and the second atomization channel 31 is connected to the second air inlet hole 122 through the second air inlet channel 15.

[0058] 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 electronic atomization device, characterized in that: include: A housing assembly having a mounting cavity therein and an adjustment area provided on the housing assembly, wherein the adjustment area has a first air inlet hole and a second air inlet hole extending therethrough; a first atomizing core assembly, the first atomizing core assembly being disposed in the mounting cavity, the first atomizing core assembly having a first atomizing channel, the first atomizing channel being in communication with the first air inlet; a second atomizer core assembly, the second atomizer core assembly being disposed in the mounting cavity, the second atomizer core assembly and the first atomizer core assembly being disposed independently of each other, the second atomizer core assembly having a second atomization channel, the second atomization channel being in communication with the second air inlet; an airway regulating member, the airway regulating member being disposed in the regulating area and being capable of sliding relative to the housing assembly in a first direction, the airway regulating member being used to regulate whether the first air inlet and the second air inlet are individually or jointly communicated with the outside world; as well as A power supply assembly includes a toggle switch and a switching circuit, the toggle switch is electrically connected to the switching circuit, the toggle switch is connected to the airway regulating member and can move with the airway regulating member, the toggle switch can be switched to different gears when the first air inlet and the second air inlet are individually or jointly connected to the outside world, and the switching circuit is used to trigger the first atomization core assembly and the second atomization core assembly to work individually or jointly according to the different gears.

2. The electronic atomization device according to claim 1, characterized in that The toggle switch includes a first gear position, a second gear position, and a third gear position, so that the toggle switch can be switched among the first gear position, the second gear position, and the third gear position; in the first gear position, the first atomizer core assembly is turned on and the second atomizer core assembly is turned off; in the second gear position, the first atomizer core assembly and the second atomizer core assembly are turned on together; in the third gear position, the first atomizer core assembly is turned off and the second atomizer core assembly is turned on.

3. The electronic atomization device according to claim 2, characterized in that: When the first air inlet is connected to the outside world alone, the toggle switch is in the first gear; when the second air inlet is connected to the outside world alone, the toggle switch is in the third gear; when the first air inlet and the second air inlet are connected to the outside world together, the toggle switch is in the second gear.

4. The electronic atomization device according to claim 1, characterized in that The electronic atomization device further includes a movable driving member, which is connected to the airway regulating member and is disposed in the middle of the airway regulating member. The movable driving member is used to drive the airway regulating member to move along the first direction.

5. The electronic atomization device according to claim 1, characterized in that: The airway regulating member is provided with an regulating hole, and the airway regulating member slides relative to the housing assembly along the first direction so that the regulating hole can be aligned with and communicated with the first air inlet hole and / or the second air inlet hole.

6. The electronic atomization device according to claim 5, characterized in that: There are multiple adjustment holes, and the multiple adjustment holes are sequentially spaced along the first direction, and one of the adjustment holes can be aligned with and communicated with the first air inlet hole or the second air inlet hole; or, One of the adjustment holes can be aligned with and communicated with the first air inlet hole, and the other adjustment hole can be aligned with and communicated with the second air inlet hole.

7. The electronic atomization device according to claim 1, characterized in that: The housing assembly is provided with a movable track extending along the first direction, and the airway regulating member is clamped on the movable track and can slide along the movable track.

8. The electronic atomization device according to claim 1, characterized in that The toggle switch includes a toggle protrusion. The airway regulating member is provided with a mounting groove. The toggle protrusion is arranged in the mounting groove. The toggle protrusion can move along with the airway regulating member.

9. The electronic atomization device according to claim 1, characterized in that: The electronic atomization device also includes a seal, which is arranged between the shell assembly and the airway adjustment component. The seal is provided with two through holes, and the two through holes are aligned with the first air inlet hole and the second air inlet hole in a one-to-one correspondence.

10. The electronic atomization device according to claim 1, characterized in that: The adjustment area is arranged on the side wall of the housing assembly.