Atomizing equipment capable of adjusting taste of inhaled aerosol

By designing multiple ingredient boxes and heating elements in the atomizing device, and combining them with selective power supply from the control circuit, the problem of single flavor in existing atomizing devices is solved. This allows for easy adjustment and simplified replacement of multiple flavors, meeting users' personalized needs.

CN224084662UActive Publication Date: 2026-04-07SHENZHEN SKE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing atomizing devices can only provide a single flavor, and changing the cartridge is cumbersome, making it impossible to change the flavor of the aerosol during or between use.

Method used

Design an atomizing device with adjustable inhalation aerosol flavor, comprising multiple cartridges and heating elements, selectively powered by a control circuit to form aerosols of different flavors, the cartridges being detachable and capable of being connected in parallel or in series to achieve mixing of multiple flavor aerosols.

Benefits of technology

This device allows users to freely adjust the aerosol flavor during use, simplifies the cartridge replacement process, and offers a variety of flavor options to meet individual user needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses atomization equipment capable of adjusting the taste of inhaled aerosol, which comprises a shell, and a first heating element, a first atomization matrix used for accommodating first aerosol capable of generating first taste and a plurality of material boxes used for accommodating other tastes and capable of generating aerosol are arranged in the shell, and aerosol different from the first taste is generated through heating and is selectively mixed with the first aerosol so as to be sucked by a user.
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Description

Technical Field

[0001] This utility model relates to the field of electronic atomization equipment technology, and in particular to an atomization device with adjustable inhaled aerosol flavor. Background Technology

[0002] Atomizing device is an electronic product that atomizes an aerosol generating matrix to produce flavored aerosols for users to inhale. It includes an atomizing component and a mouthpiece. The atomizing component receives the aerosol generating matrix, and the aerosol generating matrix is ​​heated and atomized to produce aerosols. Users consume the aerosol generating matrix by inhaling the aerosols through the mouthpiece.

[0003] To meet user needs, atomizing devices are equipped with removable cartridges containing aerosol-generating matrix. The cartridges are pre-filled with the desired aerosol-generating matrix, and the desired flavor can be obtained by replacing different cartridges. However, this method only provides a single flavor, and the replacement process is cumbersome.

[0004] Users expect the ability to change the flavor of the aerosol while in use or between uses. Utility Model Content

[0005] The main purpose of this invention is to provide an atomizing device with adjustable inhaled aerosol flavor, which can solve the problem that the flavor of the aerosol generated by existing atomizing devices cannot be changed.

[0006] To achieve the above objectives, this application provides an atomizing device with adjustable inhaled aerosol flavor, comprising:

[0007] The housing has an air inlet and an air outlet that are opposite each other along the longitudinal direction. The housing contains multiple ingredient boxes with different flavors, multiple heating elements, and a control circuit. The control circuit can be selectively and continuously powered by at least one heating element to form a flavored aerosol by heating. The control circuit includes a battery.

[0008] In some embodiments, a first material box is disposed within a first housing, and a first atomizing chamber is disposed within the first material box. A first space for storing a first atomizing matrix is ​​defined between the first atomizing chamber and the first material box. The first atomizing chamber is connected to the air outlet, and a first heating element is housed within the first atomizing chamber. The first heating element receives the first atomizing matrix and heats the first atomizing matrix to form a first aerosol having a first flavor. In some embodiments, the first atomizing matrix contains synthetic nicotine.

[0009] In some embodiments, a first housing or a second housing detachably houses a second cartridge, the second cartridge being disposed adjacent to the air outlet. A second atomizing chamber is disposed within the second cartridge, defining a second space for storing a second atomizing matrix between the second atomizing chamber and the second cartridge. The second atomizing chamber communicates with the air outlet and houses a second heating element. The second heating element receives and heats the second atomizing matrix to form a second aerosol having a different flavor from the first aerosol. In some embodiments, the second atomizing matrix contains at least one of a compound that stimulates the sense of smell or a compound that stimulates the sense of taste. The olfactory stimulating compound may be, for example, a flavoring agent, and the taste stimulating compound may be, for example, a cooling agent or a sweetener. The second atomizing matrix does not contain nicotine or nicotine compounds.

[0010] In some embodiments, when the first heating element is working, the user may choose to operate the second heating element to work simultaneously with the first heating element or not work at all.

[0011] In some embodiments, the first atomizing chamber and the second atomizing chamber are connected in parallel to the air outlet or air inlet, or the first atomizing chamber and the second atomizing chamber are connected in series to the air outlet. When a mouthpiece is provided at the air outlet of the housing, the aerosols generated by the first atomizing chamber and the second atomizing chamber can respectively converge in the mouthpiece or be inhaled by the user through the mouthpiece.

[0012] In some embodiments, a first housing or a second housing detachably houses a third material box disposed adjacent to the air outlet. The third material box contains a third atomization chamber, and the third atomization chamber and the third material box define a third space for storing a third atomization matrix. The third atomization chamber communicates with the air outlet. The third atomization chamber contains a third heating element, which receives the third atomization matrix and heats the third atomization matrix to form a third aerosol having a different flavor from the first aerosol or the second aerosol.

[0013] In some embodiments, the user may choose to operate the first heating element or operate the first heating element and one of the second or third heating elements simultaneously.

[0014] In some embodiments, the third atomizing matrix contains at least one of an olfactory stimulating compound or a taste stimulating compound, wherein the olfactory stimulating compound is such as a flavoring agent, the taste stimulating compound is such as a cooling agent or a sweetener, and the third atomizing matrix does not contain nicotine or nicotine compounds.

[0015] In some embodiments, a first air inlet is provided on the first housing, communicating with the air inlet end to receive external air, and a second air inlet communicating with the air inlet end to receive external air is provided between the first housing and the second housing. In some embodiments, a first atomizing chamber communicates the first air inlet with the air outlet end. In some embodiments, a second atomizing chamber communicates the second air inlet with the air outlet end.

[0016] In some embodiments, a first cartridge is disposed within the housing, and the housing includes a connecting portion adjacent to the air outlet, the connecting portion being configured to detachably connect the second cartridge and the third cartridge. The connecting portion may be configured to have an open receiving cavity into which at least one of the second and third cartridges is removably inserted.

[0017] In some embodiments, the first atomizing chamber is located within the first housing and defines a first airflow path communicating with the air outlet. The second housing is configured near the air outlet. The second atomizing chamber and the third atomizing chamber are respectively located within the second housing and define a second airflow path and a third airflow path communicating with the air outlet, wherein the third airflow path is parallel to or in series with the first airflow path or the second airflow path. When the air outlet of the housing is configured as a mouthpiece, the third airflow path and the first airflow path can respectively penetrate the housing, and the aerosol located on the third airflow path and the first airflow path is inhaled by the user through the mouthpiece.

[0018] In some embodiments, the third atomizing chamber connects the aforementioned second air inlet to the air outlet.

[0019] In some embodiments, the control circuit may selectively control the first heating element to operate; or control the first heating element and the second heating element to operate simultaneously; or control the first heating element and the third heating element to operate simultaneously; or control the first heating element, the second heating element, and the third heating element to operate simultaneously.

[0020] Compared with the prior art, this utility model has obvious advantages and beneficial effects. The atomizing device can be loaded with a variety of cartridges containing different flavors. Each cartridge can produce aerosols of different flavors, so that users can choose to control the working state of multiple heating elements to achieve individual or simultaneous inhalation of one or more desired flavors. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the atomizing device provided in the embodiments of this application;

[0022] Figure 2 This is a schematic cross-sectional view of the atomizing device in the embodiments provided in this application;

[0023] Figure 3 The atomizing device provided in the embodiments of this application has a cross-sectional view of a first feed box and a second feed box in series.

[0024] Figure 4 A cross-sectional view of the atomizing device provided in the embodiments of this application, which has a parallel first material box, a second material box and a common air outlet.

[0025] Figure 5 A cross-sectional view of the atomizing device provided in the embodiments of this application, which has a parallel first material box, a second material box and two independent air outlets;

[0026] Figure 6 A cross-sectional view of the atomizing device provided in the embodiments of this application, which has a first material box, a second material box, and a third material box;

[0027] Figure 7 A cross-sectional view of the atomizing device provided in the embodiments of this application, which has a first material box, a second material box, a third material box and two independent air outlets;

[0028] Figure 8 A cross-sectional view of the atomizing device provided in the embodiments of this application, which has a detachable first material box, a second material box, and a third material box;

[0029] Figure 9 The atomizing device provided in the embodiments of this application has a structural cross-sectional view of a detachable first housing and a second housing.

[0030] Explanation of icon numbers:

[0031] 1-Atomizing device; 2-Air inlet; 3-Air outlet;

[0032] 10-First material box; 11-First space; 12-First heating element; 13-First atomization chamber; 14-First electrode;

[0033] 20 - Second feed box; 21 - Second space; 22 - Second heating element; 23 - Second atomization chamber; 24 - Second electrode;

[0034] 30-Third feed box; 31-Third space; 32-Third heating element; 33-Third atomization chamber; 34-Third electrode;

[0035] 40 - Battery; 50 - First housing; 51 - Receiving cavity; 60 - Second housing; 70 - Wall. Detailed Implementation

[0036] To make the above-mentioned objects, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0037] In the description of this application, unless otherwise expressly specified and defined, the terms "installation," "connection," "linking," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly defined. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0038] Nebulization devices can be used in various fields, including but not limited to electronic atomizers used in industries such as medical atomization, beauty atomization, and cigarette alternatives. They are primarily used to atomize an aerosol-generating matrix to form an aerosol. This matrix can be a liquid matrix of medicine, nutrient solution, etc. Taking an electronic atomizer as an example, when the atomizer is working, the aerosol-generating matrix contains nicotine or synthetic nicotine, which can be atomized by the atomizing components to form an aerosol. Of course, flavorings or sweeteners that stimulate the taste or smell can also be added to the aerosol-generating matrix. Existing atomization methods can be either heated or non-heated. Heated atomization includes resistance heating, electromagnetic heating, laser heating, infrared heating, and microwave heating; non-heated atomization includes ultrasonic atomization, pressure atomization, mechanical vibration atomization, and compressed air atomization.

[0039] like Figure 1 As shown, this application provides an atomizing device with adjustable inhaled aerosol flavor, the atomizing device 1 as follows: Figure 2As shown, it includes: a housing having an air inlet 2 and an air outlet 3 longitudinally opposed to each other; the housing contains multiple cartridges with different flavors, multiple atomizing chambers, multiple heating elements, and a control circuit; the control circuit is selectively and continuously powered by at least one heating element to heat an aerosol generating matrix to form a flavored aerosol; the control circuit includes a battery 40. The control circuit can simultaneously power two heating elements to heat the aerosol generating matrix of their respective cartridges to atomize it into a flavored aerosol for the user to inhale. In some embodiments, adjacent atomizing chambers may be connected in series, with one atomizing chamber located near the air outlet 3. In some embodiments, multiple atomizing chambers are connected in series, and at least two atomizing chambers are parallel on one side near the air outlet 3. In some embodiments, multiple different flavored aerosols can be mixed at the air outlet 3 of the atomizing device 1 and then inhaled by the user. In some embodiments, any flavored aerosol can be mixed with other flavored aerosols passing through the current atomizing chamber in a downstream atomizing chamber. In some embodiments, aerosols of various flavors can be inhaled into the mouth by the user from the outlet 3 and then mixed together.

[0040] In some embodiments, battery 40 is non-rechargeable. In some embodiments, battery 40 is rechargeable. In some embodiments, battery 40 is electrically connected to a plurality of heating elements.

[0041] In some embodiments, the atomizing device 1 further includes a switch that activates the heating element. In some embodiments, the switch is a microphone switch activated by airflow. When a user inhales into the atomizing device 1 through the air outlet 3, external air enters from the air inlet 2 of the housing and triggers the switch. The control circuit then controls the heating element desired by the user to heat and atomize the desired flavor aerosol. In some embodiments, the switch is a touch switch. In some embodiments, the switch is a mechanical switch attached to the housing that can be pressed or toggled. When the user uses the switch, at least one of the plurality of heating elements can perform the heating operation on the aerosol generating matrix.

[0042] Specifically, such as Figure 3As shown, this application provides an atomizing device 1, which has a longitudinally arranged air inlet 2 and air outlet 3. The atomizing device 1 includes a first feed box 10, a second feed box 20, a first atomizing chamber 13, a second atomizing chamber 23, a first heating element 12, and a second heating element 22. The first feed box 10 is disposed near the air inlet 2 of the atomizing device 1. The first atomizing chamber 13 is disposed within the first feed box 10 and communicates with the air inlet 2 of the atomizing device 1. A first space 11 containing nicotine or synthetic nicotine is formed between the first atomizing chamber 13 and the first feed box 10. The first atomizing matrix containing nicotine or synthetic nicotine is filled in the first space 11. The first heating element 12 is disposed near the first feed box 20. Within an atomization chamber 13, a first heating element 12 absorbs a first atomizing matrix from a first space 11 via a conductive medium. A second material box 20 is positioned near the outlet 3 of the atomization device 1. A second space 21 is formed between the second atomization chamber 23 and the second material box 20, containing a second atomizing matrix that stimulates the sense of smell or taste. The second atomization chamber 23 is connected to the first atomization chamber 13. A second heating element 22 is positioned within the second atomization chamber 23 and absorbs the second atomizing matrix from the second space 21 via a conductive medium. When the first heating element 12 is operating, the aerosol formed by atomizing the first atomizing matrix is ​​inhaled by the user through the outlet 3 via the second atomization chamber 23. Similarly, when the second heating element 22 is operating, the second aerosol formed by atomizing the second atomizing matrix can mix with the first aerosol in the second atomization chamber 23 to create a flavor that stimulates the sense of smell or taste as desired by the user. Understandably, when a user activates the atomizing device 1, the first heating element 12 operates first, providing the user with a basic first aerosol containing nicotine or synthetic nicotine. When the user wishes to change the flavor of the first aerosol to have a flavor that stimulates the sense of smell or taste, they can choose to operate the second heating element 22 to work in conjunction with the first heating element 12 to produce a second aerosol with a sense of smell or taste that mixes with the first aerosol at the outlet 3 or in the user's mouth.

[0043] like Figure 4As shown, this application provides an atomizing device 1, which has a longitudinally arranged air inlet 2 and air outlet 3. The atomizing device 1 includes a first feed box 10, a second feed box 20, a first atomizing chamber 13, a second atomizing chamber 23, a first heating element 12, and a second heating element 22. The first feed box 10 and the second feed box 20 are arranged in parallel on one side near the air inlet 2 of the atomizing device 1. The first atomizing chamber 13 is disposed within the first feed box 10 and communicates with the air inlet 2 of the atomizing device 1. A first space 11 containing nicotine or... A first atomizing matrix of synthetic nicotine is filled in a first space 11. A first heating element 12 is disposed in a first atomization chamber 13. The first heating element 12 absorbs the first atomizing matrix in the first space 11 through a conductive medium and heats it to form a first aerosol, which is discharged from the outlet end 3. A second space 21 is formed between the second atomization chamber 23 and the second cartridge 20. The second atomizing matrix, which stimulates the sense of smell or taste, is filled in the second space 21. A second heating element 22 is disposed in the second atomization chamber 23 and absorbs the second atomizing matrix in the second space 21 through a conductive medium and heats it to form a second aerosol, which is discharged from the outlet end 3. When the first heating element 12 is working, the first aerosol formed by atomizing the first atomizing matrix is ​​inhaled by the user through the outlet end 3. Similarly, the second aerosol formed by atomizing the second atomizing matrix is ​​also inhaled by the user through the outlet end 3. The first aerosol and the second aerosol do not interfere with each other before entering the user's mouth. In some embodiments, the air outlet 3 is divided into two independent air passages by the wall 70, and the two air passages are respectively connected to the first atomizing chamber 13 and the second atomizing chamber 23. When the user activates the atomizing device 1, the first heating element 12 operates first to provide the user with a basic first aerosol containing nicotine or synthetic nicotine. When the user wishes to change the flavor of the first aerosol to have a flavor that stimulates the sense of smell or taste, the second heating element 22 can be operated to work in conjunction with the first heating element 12 to generate a second aerosol with a sense of smell or taste that mixes with the first aerosol at the air outlet 3 or in the user's mouth.

[0044] In some embodiments, such as Figure 3 As shown, the air inlets of the first atomizing chamber 13 and the second atomizing chamber 23 are respectively connected to the air inlet end 2, and the air outlets of the first atomizing chamber 13 and the second atomizing chamber 23 converge with the air outlet end 3. In some embodiments, as shown in 4, the air inlet of the first atomizing chamber 13 is connected to the air inlet end 2, the air outlet of the first atomizing chamber 13 is connected to the air inlet of the second atomizing chamber 23, and the air outlet of the second atomizing chamber 23 is connected to the air outlet end 3. In some embodiments, when a mouthpiece is constructed on the air outlet end 3 of the housing, the aerosols generated by the first atomizing chamber 13 and the second atomizing chamber 23 can respectively converge in the mouthpiece or be inhaled by the user through the mouthpiece.

[0045] In some embodiments, such as Figure 5As shown, this application provides an atomizing device 1, which has a longitudinally arranged air inlet 2 and air outlet 3. The atomizing device 1 includes a first material box 10, a second material box 20, a third material box 30, a first atomizing chamber 13, a second atomizing chamber 23, a third atomizing chamber 33, and a first heating element 12, a second heating element 22, and a third heating element 32. The first material box 10 and the second material box 20 are arranged in parallel on one side near the air inlet 2 of the atomizing device 1, and the first atomizing chamber 13 is disposed in the first material box 10. Inside, the first atomizing chamber 13 is connected to the air inlet 2 of the atomizing device 1. A first space 11 containing nicotine or synthetic nicotine is formed between the first atomizing chamber 13 and the first material box 10. The first atomizing matrix containing nicotine or synthetic nicotine is filled in the first space 11. The first heating element 12 is disposed in the first atomizing chamber 13. The first heating element 12 absorbs the first atomizing matrix in the first space 11 through a conductive medium and heats it to form a first aerosol, which is discharged from the air outlet 3. A second space 21 containing nicotine is formed between the second atomizing chamber 23 and the second material box 20. A second atomizing matrix containing olfactory or gustatory stimuli is filled in the second space 21. A second heating element 22 is disposed in the second atomizing chamber 23 and absorbs the second atomizing matrix in the second space 21 through a conductive medium and heats it to form a second aerosol. The second atomizing chamber 23 is connected to the first atomizing chamber 13 and the air outlet 3, so that the first aerosol can mix with the formed second aerosol when passing through the second atomizing chamber 23. A third material box 30 is disposed adjacent to the air outlet 3, side by side with the second material box 20. The third material box 30 is provided with... A third atomizing chamber 33 defines a third space 31 for storing a third atomizing matrix between the third atomizing chamber 33 and the third material box 30. The third atomizing matrix, containing a substance that stimulates the sense of smell or taste, is filled in the third space 31. The third atomizing chamber 33 is connected to the air outlet 3. The third atomizing chamber 33 also houses a third heating element 32, which receives and heats the third atomizing matrix to form a third aerosol with a different flavor from the first or second aerosol. It is understood that in some embodiments, when the second space 21 is filled with a material that stimulates the sense of smell, the third space 31 is filled with a material that stimulates the sense of taste, allowing the user to have different choices when obtaining the atomizing device 1, such as a mixture of the first and second aerosols; a mixture of the first and third aerosols; or a mixture of the first, second, and third aerosols.

[0046] Furthermore, in some embodiments, such as Figure 6As shown, the first atomizing chamber 13 defines a first airflow path connected to the air outlet 3, the second atomizing chamber 23 defines a second airflow path connected to the air outlet 3, and the second airflow path is connected in series with the first airflow path. The third atomizing chamber 33 defines a third airflow path connected to the air outlet 3. The air inlet of the third airflow path is connected to the air inlet 2 of the atomizing device 1, and the air outlet of the third airflow path is connected to the air outlet 3 of the atomizing device 1. When the air outlet 3 of the atomizing device 1 is configured as a mouthpiece, the second airflow path and the third airflow path merge with the mouthpiece, and the aerosol flowing through the two airflow paths is discharged from the single air outlet of the mouthpiece.

[0047] In some embodiments, such as Figure 7 As shown, the first atomizing chamber 13 defines a first airflow path connected to the air outlet 3, the second atomizing chamber 23 defines a second airflow path connected to the air outlet 3, and the second airflow path is connected in series with the first airflow path. The third atomizing chamber 33 defines a third airflow path connected to the air outlet 3. The air inlet of the third airflow path is connected to the air inlet 2 of the atomizing device 1, and the air outlet of the third airflow path is connected to the air outlet 3 of the atomizing device 1. When the air outlet 3 of the atomizing device 1 is configured as a mouthpiece, the inside of the mouthpiece is divided by the wall 70 into two air channels that are connected to the second airflow path and the third airflow path respectively. The two air channels are independently connected to the outside atmosphere of the mouthpiece. The aerosol flowing in the two airflow paths is discharged from the mouthpiece and then merges in the user's mouth or the outside atmosphere.

[0048] Furthermore, the first heating element 12 can selectively operate independently or operate simultaneously with one of the second heating element 22 and the third heating element 32.

[0049] In some embodiments, such as Figure 7 As shown, this application provides an atomizing device 1, the housing of which is constructed as two separable first housing 50 and second housing 60. The air inlet 2 of the atomizing device 1 is disposed on the first housing 50, and the air outlet 3 is disposed on the second housing 60. The housing is... (The sentence is incomplete and requires further context to translate accurately.) Figure 8 As shown, the first housing 50 and the second housing 60 can be connected together by magnetic adsorption, threaded connection or plug-in connection, wherein the first housing 50 is provided with a first air inlet that communicates with the air inlet end 2 of the atomizing device 1 to receive the external atmosphere.

[0050] like Figure 9 The first housing 50 has an open receiving cavity 51 on the side near the air outlet 3 of the atomizing device 1, and the second housing 60 is removably inserted into the receiving cavity 51 to form a connection with the first housing 50. Furthermore, at least one of the second cartridge 20 and the third cartridge 30 is removably inserted into the receiving cavity 51.

[0051] In some embodiments, a first housing 50 is provided with a first material box 10, a first atomizing chamber 13, and a first heating element 12, wherein the first atomizing chamber 13 forms a first space 11 for containing the first aerosol within the first material box 10; a second housing 60 is provided with a second material box 20, a second atomizing chamber 23, and a second heating element 22, wherein the second atomizing chamber 23 forms a second space 21 for containing the second aerosol within the second material box 20. In some embodiments, a second air inlet communicating with the air inlet end 2 to receive external atmosphere is provided between the first housing 50 and the second housing 60, and the second atomizing chamber 23 can communicate with the external atmosphere through the second air inlet.

[0052] In some embodiments, a third material box 30 is also disposed within the second housing 60, wherein the second material box 20 and the third material box 30 are independent of each other.

[0053] In some embodiments, the third material box 30 is disposed inside the second housing 60, and the third atomizing chamber 33 connects the second air inlet between the first housing 50 and the second housing 60 to the air outlet 3 of the atomizing device 1.

[0054] like Figures 3-5 As shown, the first heating element 12 includes a first electrode 14 electrically connected to the battery 40, and the second heating element 22 includes a second electrode 24 electrically connected to the battery 40. Wherein, as Figures 3-5 As shown, the first electrode 14 and the second electrode 24 are electrically connected in parallel. Figures 6 to 8 As shown, the atomizing device also includes a third heating element 32 in addition to the first heating element 12 and the second heating element 22. The third heating element 32 includes a third electrode 34 electrically connected to the battery 40. Wherein, as... Figure 6 As shown, the first electrode 14 is electrically connected in parallel with the second electrode 24 and the third electrode 32. Furthermore, the user of the atomizing device can selectively control the operation of the first heating element 12 via the control circuit; or control the first heating element 12 and the second heating element 22 to operate simultaneously; or control the first heating element 12 and the third heating element 32 to operate simultaneously; or control the first heating element 12, the second heating element 22, and the third heating element 32 to operate simultaneously. Each cartridge stores aerosol-forming matrix capable of producing different flavors, allowing the user to select and control the operating states of multiple heating elements to achieve individual or simultaneous inhalation of one or more desired flavors.

[0055] In some embodiments, the battery 40 forms a first conductive contact in the receiving cavity 51 of the first housing 50, and the second electrode 24 and the third electrode 34 may form a second conductive contact in the second housing 60. When the first housing 50 and the second housing 60 are connected, the first conductive contact and the second conductive contact are electrically connected.

[0056] The above description is only a part or preferred embodiment of this utility model. Neither the text nor the drawings should limit the scope of protection of this utility model. All equivalent structural transformations made using the content of this utility model specification and drawings under the overall concept of this utility model, or direct / indirect applications in other related technical fields, are included within the scope of protection of this utility model.

Claims

1. A nebulizer with adjustable inhalation aerosol flavor, characterized in that, include: The housing has opposing air inlet and air outlet ends; A first material box containing a first atomizing matrix is ​​disposed adjacent to the air inlet end. A first atomizing chamber is disposed inside the first material box. A first space for storing the first atomizing matrix is ​​defined between the first atomizing chamber and the first material box. The first atomizing chamber is connected to the air outlet end. A first heating element is disposed in the first atomizing chamber to receive the first atomizing matrix and heat the first atomizing matrix to form a first aerosol having a first flavor; A second material box containing a second atomizing matrix is ​​disposed adjacent to the air outlet end. A second atomizing chamber is disposed inside the second material box. A second space for storing the second atomizing matrix is ​​defined between the second atomizing chamber and the second material box. The second atomizing chamber is connected to the air outlet end. A second heating element is disposed in the second atomizing chamber to receive the second atomizing matrix and heat the second atomizing matrix to form a second aerosol with a different flavor from the first aerosol; Wherein, the first atomizing matrix contains synthetic nicotine, and the second atomizing matrix is ​​at least one of a compound that stimulates the sense of smell or a compound that stimulates the sense of taste; The second heating element can be operated simultaneously with the first heating element.

2. The atomizing device according to claim 1, characterized in that, The second cartridge can be removed from the housing.

3. The atomizing device according to claim 1, characterized in that, The second atomizing chamber and the first atomizing chamber are respectively connected to the air inlet; or the second atomizing chamber and the first atomizing chamber are respectively connected to the air outlet; or the first atomizing chamber is connected to the second atomizing chamber and then connected to the air outlet.

4. The atomizing device according to claim 1, characterized in that, The atomizing device further includes a third heating element and a third material box containing a third atomizing matrix disposed adjacent to the air outlet. The third material box contains a third atomizing chamber. The third atomizing chamber and the third material box define a third space for storing the third atomizing matrix. The third atomizing chamber is connected to the air outlet. A third heating element is disposed in the third atomizing chamber to receive the third atomizing matrix and heat the third atomizing matrix to form a third aerosol with a different flavor from the first aerosol or the second aerosol. The first heating element is operable to operate simultaneously with at least one of the second heating element and the third heating element.

5. The atomizing device according to claim 4, characterized in that, The third container can be removed from the housing.

6. The atomizing device according to claim 4, characterized in that, The third atomizing matrix is ​​at least one of a compound that stimulates the sense of smell or a compound that stimulates the sense of taste.

7. The atomizing device according to claim 4, characterized in that, The housing includes a first housing and a second housing that are detachably connected. The first housing is disposed on the side near the air inlet end. The first atomizing chamber is located inside the first housing and defines a first airflow path communicating with the air outlet end. The second housing is disposed on the side near the air outlet end. The second atomizing chamber is located inside the second housing and defines a second airflow path communicating with the air outlet end. The third atomizing chamber is located in the second housing and defines a third airflow path communicating with the air outlet end. The third airflow path is parallel to the second airflow path, or the third airflow path is connected in series with the first airflow path.

8. The atomizing device according to claim 7, characterized in that, The first housing is provided with a first air inlet communicating with the air inlet end to receive external air, and a second air inlet communicating with the air inlet end to receive external air is provided between the first housing and the second housing.

9. The atomizing device according to claim 4, characterized in that, The first material box is disposed inside the housing, and the housing includes a connecting portion disposed adjacent to the air outlet, the connecting portion being configured to detachably connect the second material box and the third material box.

10. The atomizing device according to claim 4, characterized in that, The atomizing device further includes a control circuit configured to selectively supply power to the first heating element to heat the first atomizing matrix, and selectively supply power to at least one of the second and third heating elements while supplying power to the first heating element, so as to simultaneously output aerosols of different flavors at the outlet end.