Atomization device

By setting up multiple atomizers and independent airflow delivery channels in the atomizing device, the problems of monotonous aerosol flavor and cross-contamination caused by filling the atomizing cartridge with a single atomizing liquid are solved, thereby improving the purity of aerosol taste and enhancing the user experience.

CN223886228UActive Publication Date: 2026-02-10JOYETECH (SHENZHEN) ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520347059.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-10
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

The atomizing cartridge can only be filled with one type of atomizing liquid at a time, resulting in a single flavor of the atomized aerosol. Furthermore, when aerosols from different atomizing liquids flow out through the same nozzle, cross-contamination can easily occur, affecting the purity of the aerosol inhalation experience.

Method used

At least two atomizers are installed in the atomizing device, each storing a different aerosol forming matrix. The atomizers are controlled to work independently or simultaneously by an electronic control component, and the aerosols are discharged separately through independent airflow channels to avoid cross-contamination.

Benefits of technology

This technology improves the purity of the aerosol flavor when the atomizing device is operating with one or more atomizers, thereby enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an atomization device, at least two atomizers are arranged on an atomizer carrier, and aerosol forming matrixes stored in the at least two atomizers are different in taste. According to the atomization device, independent atomization work of a single atomizer in the at least two atomizers on the atomizer carrier can be controlled through the electric control assembly according to the use requirement of a user, or simultaneous atomization work of the at least two atomizers on the atomizer carrier is controlled through the electric control assembly, and switching of the atomization work modes of the atomization device is achieved. When a single atomizer works in an independent atomization mode or at least two atomizers work in an atomization mode at the same time, aerosol formed by atomization of the atomizers can flow out of the same atomization nozzle. According to the technical scheme, cross contamination of aerosols with different tastes formed by atomization of at least two atomizers can be avoided, the purity of the smoking taste of the aerosols can be improved, and therefore the use experience feeling of a user is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to atomization technical field, especially, relate to an atomization device. BACKGROUND

[0002] The atomization device usually includes an atomizer main body and a power supply electrically connected to the atomizer main body. The atomizer main body can heat and atomize the atomization liquid stored in the atomizer main body to form an aerosol under the electric drive of the power supply. Currently, the atomizer main body can only be filled with one kind of atomization liquid at a time and can only form one kind of aerosol with a certain taste. If the user wants to experience different tastes of aerosol, the atomizer inside the atomizer main body needs to be replaced, which brings poor experience to the user. At the same time, even if the atomizer inside the atomizer main body is replaced, the aerosols formed by the atomizers filled with different atomization liquids flow out through the same atomization nozzle, and different tastes of aerosol are easy to produce cross contamination and affect the purity of the aerosol suction taste. SUMMARY

[0003] Based on the above problems existing in the prior art, the purpose of the embodiments of the utility model is to provide an atomization device to solve the problems that the atomizer main body can only be filled with one kind of atomization liquid at a time and can only form one kind of aerosol with a certain taste in the prior art, and the aerosols formed by the atomizers filled with different atomization liquids flow out through the same atomization nozzle, and different tastes of aerosol are easy to produce cross contamination and affect the purity of the aerosol suction taste.

[0004] To achieve the above purpose, the utility model adopts the technical scheme of providing an atomization device, comprising:

[0005] The atomizer main body includes an atomizer carrier, at least two atomizers positioned on the atomizer carrier, and an atomization nozzle provided on the atomizer carrier. The tastes of the aerosol-forming substrates stored in the at least two atomizers are different.

[0006] The power supply is used to supply power to the at least two atomizers, and the power supply is connected to the atomizer main body.

[0007] The electronic control assembly is used to control the independent atomization work of a single atomizer in the at least two atomizers or to control the simultaneous atomization work of the at least two atomizers. The electronic control assembly is electrically connected to the power supply and the at least two atomizers.

[0008] The atomizer carrier is provided with an air inlet for introducing outside air and at least two air outlets for supplying airflow. The atomizing nozzle is provided with at least two suction ports and at least two air supply channels that connect each suction port to the corresponding air outlet. The air inlet of each atomizer is connected to the air inlet port, and the air outlet of each atomizer is connected to the corresponding air outlet port.

[0009] Furthermore, the atomizer is provided in two quantities. The atomizing nozzle is provided with two inhalation ports and two air delivery channels. The atomizer carrier is provided with two air outlet ports. The air outlet of one atomizer is connected to the other air outlet port, and the air outlet of the other atomizer is connected to the other air outlet port. One air outlet port is connected to one inhalation port through one of the air delivery channels, and the other air outlet port is connected to the other inhalation port through the other air delivery channel.

[0010] Furthermore, the atomizer carrier is an atomizer bracket, and the atomizer bracket is provided with at least two slots, in which at least two atomizers are positioned and installed one-to-one in the at least two slots.

[0011] Furthermore, the atomizer bracket is an I-shaped bracket.

[0012] Furthermore, the power supply includes a housing, a positioning member housed and positioned within the housing, and a battery cell housed and positioned within a positioning cavity of the positioning member.

[0013] Furthermore, the positioning element is a battery bracket, which has a positioning cavity for accommodating and positioning the battery cell, and an elastic shock absorber.

[0014] Furthermore, the electronic control assembly includes a control board disposed in the housing and a button for switching at least two of the atomizer operating modes, the button being electrically connected to the control board, and the control board being electrically connected to the battery cell and at least two of the atomizers respectively.

[0015] Furthermore, the electronic control assembly also includes an air switch for controlling the operation of at least two of the atomizers based on the suction airflow rate and / or pressure, the air switch being electrically connected to the control board.

[0016] Furthermore, the outer shell is provided with a receiving cavity for accommodating and positioning the atomizer carrier, the atomizing cartridge body is provided with a first snap-fit ​​structure, and the outer shell is provided with a corresponding second snap-fit ​​structure for engaging with the first snap-fit ​​structure.

[0017] Furthermore, the atomizer includes an atomizer housing, an atomizing seat assembly disposed at the bottom of the atomizer housing, an atomizing tube assembly supported on the atomizing seat assembly and located inside the atomizer housing, and an atomizing core assembly for heating and atomizing the aerosol forming matrix. The atomizer housing is provided with the air outlet, the atomizing seat assembly is provided with the air inlet, the atomizing tube assembly is provided with an atomizing chamber communicating with the air inlet and an air guiding channel communicating with the air outlet, the atomizer housing is provided with a liquid storage chamber for storing the aerosol forming matrix, the atomizing tube assembly is provided with a liquid inlet communicating with the liquid storage chamber and the atomizing chamber, and the atomizing core assembly is disposed in the atomizing chamber at a position corresponding to the liquid inlet.

[0018] Compared with the prior art, one or more technical solutions in the embodiments of this utility model have at least one of the following beneficial effects:

[0019] The atomizing device in this embodiment of the invention comprises at least two atomizers mounted on an atomizer carrier. The aerosols stored within the at least two atomizers form matrices with different flavors. The atomizing device can be controlled by an electronic control component to allow individual atomizers on the atomizer carrier to atomize independently or simultaneously, according to the user's needs, thus switching between atomization modes. Whether a single atomizer atomizes independently or at least two atomizers atomize simultaneously, the aerosols formed by each atomizer flow from the same atomizing nozzle. Since the atomizing nozzle has independent airflow channels corresponding to each of the at least two atomizers, cross-contamination of the different flavored aerosols formed by the at least two atomizers is avoided, which helps improve the purity of the aerosol inhalation experience and thus enhances the user experience. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 A three-dimensional structural schematic diagram of the atomizing device provided in the embodiment of this utility model;

[0022] Figure 2 A cross-sectional view of the atomizing device provided in an embodiment of this utility model;

[0023] Figure 3 A cross-sectional structural schematic diagram of the atomizing projectile body provided in an embodiment of this utility model;

[0024] Figure 4 Exploded view of the atomizing device provided in the embodiment of this utility model;

[0025] Figure 5 An exploded view of the atomizing nozzle and atomizer carrier provided for an embodiment of this utility model;

[0026] Figure 6 A three-dimensional structural schematic diagram of the positioning component provided in an embodiment of this utility model;

[0027] Figure 7 A three-dimensional structural diagram of the atomizer provided in the embodiment of this utility model;

[0028] Figure 8 An exploded view of the atomizer provided in an embodiment of this utility model.

[0029] The following are the labeling elements in the figure:

[0030] 1-Atomizing cartridge body; 11-Atomizer carrier; 111-Air inlet port; 112-Air outlet port; 113-Clocking position; 12-Atomizer; 121-Atomizer shell; 1211-Air outlet; 122-Atomizer base assembly; 1221-Base; 1222-Insulating heat insulation base; 1223-Air inlet; 123-Atomizing tube assembly; 1231-Atomizing tube; 1232-Air guide tube; 1233-Atomizing chamber; 1234-Liquid inlet; 124-Atomizing core assembly; 1241-Liquid suction element; 1242-Heating element; 13-Atomizing nozzle; 131-Suction port; 132-Air delivery channel; 14-Sealing element; 141-Connecting hole;

[0031] 2-Power supply; 21-Housing shell; 211-Receiving cavity; 22-Positioning component; 221-Positioning cavity; 23-Battery cell;

[0032] 3-Electrical control components; 31-Control board; 32-Buttons; 33-Air switch;

[0033] 4-Elastic shock absorber; 5-First snap-fit ​​structure; 6-Second snap-fit ​​structure;

[0034] 7-Liquid storage chamber; 8-Gas delivery channel. Detailed Implementation

[0035] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0036] It should be noted that when a component is referred to as "connected to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0037] Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first," "second," or "third" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.

[0038] In the description of this utility model, it should be understood that the terms "center", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the present invention.

[0039] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0040] Throughout this specification, references to "an embodiment" or "an embodiment" mean that a specific feature, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of this application. Therefore, the phrases "in one embodiment," "in some embodiments," or "in some of these embodiments" appear in various places throughout the specification, and not all refer to the same embodiment. Furthermore, in one or more embodiments, specific features, structures, or characteristics may be combined in any suitable manner.

[0041] Please refer to the following: Figures 1 to 8 The atomizing device provided in the embodiments of this utility model will now be described. Please refer to the following for further details. Figure 2, Figure 3 and Figure 4The atomizing device provided in this embodiment of the invention includes an atomizing cartridge body 1, a power supply 2, and an electronic control assembly 3. The atomizing cartridge body 1 includes an atomizer carrier 11, at least two atomizers 12 housed and fixed on the atomizer carrier 11, and an atomizing nozzle 13 disposed on the atomizer carrier 11. The aerosol forming matrix stored inside the at least two atomizers 12 has different flavors. It should be noted that the number of atomizers 12 detachably mounted on the atomizer carrier 11 can be two or more, with at least two atomizers 12 having different flavors of aerosol forming matrix stored inside. The power supply 2 is used to supply power to the at least two atomizers 12 on the atomizer carrier 11. The power supply 2 is connected to the atomizing cartridge body 1, and the outer shell 21 of the power supply 2 can be detachably connected to, fixedly connected to, or integrally formed with the atomizing cartridge body 1. The electronic control component 3 can control a single atomizer 12 out of at least two atomizers 12 on the atomizer carrier 11 to atomize independently, or it can control at least two atomizers 12 on the atomizer carrier 11 to atomize simultaneously. The electronic control component 3 is electrically connected to the power supply 2 and the at least two atomizers 12 on the atomizer carrier 11. The atomizer carrier 11 is provided with an air inlet 111 for introducing outside air and at least two air outlets 112 for supplying airflow. The atomizing nozzle 13 is provided with at least two suction ports 131 and at least two air supply channels 132 connecting each suction port 131 to the corresponding air outlet 112. The air inlet 1223 of each atomizer 12 is connected to the air inlet 111, and the air outlet 1211 of each atomizer 12 is connected to the corresponding air outlet 112. It should be noted that the number of air outlet ports 112 is consistent with the number of atomizers 12, and the air outlet ports 112 and the air outlets 1211 of the atomizers 12 are set one-to-one; the number of air delivery channels 132 is consistent with the number of atomizers 12, and the number of inhalation ports 131 is also consistent with the number of atomizers 12, and the air delivery channels 132 are set one-to-one with the air outlet ports 112 and the inhalation ports 131. When the atomizing device is working, the electronic control component 3 can control one of the at least two atomizers 12 on the atomizer carrier 11 to work independently. Under the suction negative pressure of the user's mouth holding the atomizing nozzle 13, external air is introduced into the interior of the atomizer 12 through the air inlet port 111 on the atomizer carrier 11 and the air inlet 1223 of the independently working atomizer 12. The aerosol formed by the atomization of the independently working atomizer 12 is carried by the suction airflow and flows out to the user's mouth in sequence through the air outlet port 112 on the atomizer 12, the corresponding air supply channel 132 on the atomizing nozzle 13 and the corresponding suction port 131, so that the user can inhale the aerosol of the corresponding flavor.When the atomizing device is working, at least two atomizers 12 on the atomizer carrier 11 can be controlled by the electronic control component 3 to atomize simultaneously. Under the suction negative pressure of the user's mouth holding the atomizing nozzle 13, external air is introduced into the interior of each atomizer 12 through the air inlet port 111 on the atomizer carrier 11 and the air inlet port 1223 of each atomizer 12. The aerosol formed by the atomization of each atomizer 12 is carried by the suction airflow and flows out to the user's mouth in sequence through the air outlet port 112 on each atomizer 12, the corresponding air supply channel 132 on the atomizing nozzle 13 and the corresponding suction port 131, so that the user can inhale at least two different flavors of aerosol at the same time.

[0042] Compared with the prior art, the atomizing device provided in this embodiment of the utility model has at least two atomizers 12 arranged on the atomizer carrier 11. The aerosols stored inside the at least two atomizers 12 form a matrix with different flavors. The electronic control component 3 can control a single atomizer 12 on the at least two atomizers 12 on the atomizer carrier 11 to atomize independently or simultaneously, according to the user's needs, thereby switching the atomization mode of the atomizing device. When a single atomizer 12 atomizes independently or when at least two atomizers 12 atomize simultaneously, the aerosols formed by each atomizer 12 can flow out from the same atomizing nozzle 13. Since the atomizing nozzle 13 has an independent airflow delivery channel corresponding to each of the at least two atomizers 12, cross-contamination of the different flavored aerosols formed by the at least two atomizers 12 can be avoided, which helps to improve the purity of the aerosol inhalation port 131, thereby enhancing the user experience. Understandably, the airflow delivery channel includes an air delivery channel 132 and a corresponding suction port 131.

[0043] Please refer to further details. Figure 3 , Figure 4 and Figure 5In some embodiments, two atomizers 12 are provided. The atomizing nozzle 13 is provided with two suction ports 131 and two air supply channels 132. The atomizer carrier 11 is provided with two air outlet ports 112. The air outlet 1211 of one atomizer 12 is connected to one of the air outlet ports 112. One of the air outlet ports 112 is connected to one of the suction ports 131 through one of the air supply channels 132. The air outlet 1211 of the other atomizer 12 is connected to the other air outlet port 112. The other air outlet port 112 is connected to the other suction port 131 through the other air supply channel 132. With the above structural arrangement, two atomizers 12 are installed on the atomizer carrier 11. The aerosols stored inside the two atomizers 12 form different flavors of the matrix. The electronic control component 3 can control one atomizer 12 on the atomizer carrier 11 to atomize independently or both atomizers 12 on the atomizer carrier 11 to atomize simultaneously, according to the user's needs, thus switching the atomization mode of the atomizing device. When a single atomizer 12 atomizes independently or both atomizers 12 atomize simultaneously, the aerosols formed by each atomizer 12 can flow out from the same atomizing nozzle 13. Since the atomizing nozzle 13 has independent airflow delivery channels for each of the two atomizers 12, the dual independent airflow delivery channel design can effectively avoid cross-contamination of the different flavored aerosols formed by the two atomizers 12, which is beneficial to improving the purity of the aerosol inhalation port 131, thereby enhancing the user experience. Understandably, in some other embodiments, when the number of atomizers 12 is three or more, the above-mentioned multi-independent airflow delivery channel design can also effectively avoid cross-contamination of aerosols with different flavors formed by the atomizers 12, which is beneficial to improving the purity of the aerosol inhalation port 131.

[0044] Please refer to further details. Figure 3 , Figure 4 and Figure 5 In some embodiments, the atomizer carrier 11 is an atomizer support, which has at least two locking slots 113, in which at least two atomizers 12 are positioned and installed. By setting the atomizer support inside the atomizing cartridge body 1, it is only necessary to position and install at least two atomizers 12 in the at least two locking slots 113 on the atomizer support, which can quickly and securely install the atomizers 12 and facilitate the subsequent disassembly and replacement of the atomizers 12. In some specific embodiments, the atomizer support can be set as an I-shaped support, which can save structural space and make the entire atomizer 12 device compact and proportionally harmonious.

[0045] Please refer to further details. Figure 1 , Figure 2 andFigure 4 In some embodiments, the power supply 2 includes a housing 21, a positioning member 22 housed and positioned within the housing 21, and a battery cell 23 housed and positioned within a positioning cavity 221 of the positioning member 22. The battery cell 23 is positioned within the housing 21 by the positioning member 22. The battery cell 23 is electrically connected to the electronic control assembly 3 and at least two atomizers 12 on the atomizer carrier 11, respectively, and is capable of supplying power to the at least two atomizers 12 on the atomizer carrier 11.

[0046] Please refer to further details. Figure 2 , Figure 4 and Figure 6 In some embodiments, the positioning member 22 is a battery bracket, which has a positioning cavity 221 for accommodating and positioning the battery cell 23. The battery bracket also has an elastic shock absorber 4, which provides shock absorption and drop protection for the atomizing bullet body 1, which is accommodated and positioned in the outer shell 21. It should be noted that the elastic shock absorber 4 can be, but is not limited to, elastic materials such as silicone.

[0047] Please refer to further details. Figure 1 , Figure 3 and Figure 4 In some embodiments, the electronic control component 3 includes a control board 31 disposed in the housing 21 and a button 32 for switching the operating modes of at least two atomizers 12. The button 32 is electrically connected to the control board 31, and the control board 31 is electrically connected to the battery cell 23 and the at least two atomizers 12. By pressing the button 32, the user can control a single atomizer 12 on the atomizer carrier 11 to operate independently or simultaneously, thereby switching the atomization mode of the atomizing device.

[0048] Please refer to further details. Figure 2 and Figure 4 In some embodiments, the electronic control component 3 further includes an air switch 33 for controlling the operation of at least two atomizers 12 according to the inhalation airflow rate and / or pressure. The air switch 33 is electrically connected to the control board 31. When the air switch 33 senses a change in the inhalation airflow rate and / or pressure, or when the air switch 33 senses that the inhalation airflow rate and / or pressure has reached a preset value, the control board 31 controls a single atomizer 12 on the atomizer carrier 11 to operate independently or simultaneously, according to the user's usage requirements. It should be noted that the air switch 33 may be, but is not limited to, the microphone.

[0049] Please refer to further details. Figure 2 ,Figure 4 and Figure 7 In some embodiments, the outer shell 21 is provided with a receiving cavity 211 for accommodating and positioning the atomizer carrier 11, the atomizing cartridge body 1 is provided with a first snap-fit ​​structure 5, and the outer shell 21 is provided with a corresponding second snap-fit ​​structure 6 for engaging the first snap-fit ​​structure 5. Specifically, the first snap-fit ​​structure 5 is a protrusion on the atomizing cartridge body 1, and the second snap-fit ​​structure 6 is a slot on the outer shell 21. The detachable connection between the atomizer carrier 11 and the outer shell 21 is achieved through the engaging action of the protrusion and the slot. Specifically, the first snap-fit ​​structure 5 is a protrusion on the atomizer 12. By placing the protrusion and the slot externally, not only is structural space saved and the atomizing device miniaturized, but it is also possible to visually observe from the outside of the atomizer carrier 11 whether the atomizer 12 is installed. By placing the protrusion at the upper end of the atomizer 12, it is easier for the user to directly press the atomizer 12 and remove the atomizing cartridge body 1 and the atomizer 12 as a whole from the receiving cavity 211, reducing the risk that the atomizing cartridge body 1 and the atomizer 12 cannot be removed if the protrusion and the slot are stuck.

[0050] Please refer to further details. Figure 3 , Figure 4 and Figure 5 In some embodiments, the atomizing bullet body 1 further includes a sealing member 14 disposed between the atomizing nozzle 13 and the atomizer carrier 11. The sealing member 14 is provided with at least two connecting holes 141, and each connecting hole 141 connects the corresponding air outlet port 112 with the corresponding air supply channel 132. By providing a sealing member 14 between the atomizing nozzle 13 and the atomizer carrier 11, the airtightness of the connection between the atomizing nozzle 13 and the atomizer carrier 11 can be enhanced.

[0051] Please refer to further details. Figure 2 , Figure 4 and Figure 8In some embodiments, the atomizer 12 includes an atomizer housing 121, an atomizing seat assembly 122 disposed at the bottom of the atomizer housing 121, an atomizing tube assembly 123 supported on the atomizing seat assembly 122 and located inside the atomizer housing 121, and an atomizing core assembly 124 for heating and atomizing the aerosol to form a matrix. The atomizer housing 121 is provided with an air outlet 1211, the atomizing seat assembly 122 is provided with an air inlet 1223, and the atomizing tube assembly 123... The atomizer housing 121 has an atomizing chamber 1233 connected to the air inlet 1223 and an air guide channel 8 connecting the atomizing chamber 1233 to the air outlet 1211. Inside the atomizer housing 121, outside the atomizing tube assembly 123, a liquid storage chamber 7 is formed for storing the aerosol-forming matrix. The atomizing tube assembly 123 has a liquid inlet 1234 connecting the liquid storage chamber 7 and the atomizing chamber 1233. The atomizing core assembly 124 is located in the atomizing chamber 1233 at a position corresponding to the liquid inlet 1234. Specifically, the atomizing base assembly 122 includes a base 1221 that closes the bottom opening of the atomizer housing 121 and an insulating and heat-insulating base 1222 disposed on the base 1221. The insulating and heat-insulating base 1222 can be, but is not limited to, a silicone base. The atomizing tube assembly 123 includes an atomizing tube 1231 supported at the bottom on an insulating heat-insulating base 1222 and an air guide tube 1232 connected to the atomizing tube 1231. The top end of the air guide tube 1232 communicates with the air outlet 1211 on the atomizer housing 121, and the cavity of the air guide tube 1232 forms an air guide channel 8. An atomizing chamber 1233 is formed inside the atomizing tube 1231, and a liquid inlet 1234 is provided on the atomizing tube 1231. The atomizing core assembly 124 includes a liquid-absorbing element 1241 and a heating element 1242 disposed in the atomizing tube 1231. The liquid-absorbing element 1241 can transfer the aerosol forming matrix flowing into the atomizing chamber 1233 from the liquid inlet 1234 to the heating element 1242. The heating element 1242 can be, but is not limited to, a metal heating element or a ceramic heating element.

[0052] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An atomizing device, characterized in that, include: The atomizing cartridge body includes an atomizer carrier, at least two atomizers positioned on the atomizer carrier, and an atomizing nozzle disposed on the atomizer carrier, wherein the aerosols stored inside the at least two atomizers form a matrix with different flavors; A power supply unit for supplying power to at least two of the atomizers, the power supply unit being connected in conjunction with the atomizing cartridge body; as well as An electronic control component is used to control a single atomizer in at least two of the atomizers to atomize independently or to control at least two atomizers to atomize simultaneously. The electronic control component is electrically connected to the power supply and at least two of the atomizers, respectively. The atomizer carrier is provided with an air inlet for introducing outside air and at least two air outlets for supplying airflow. The atomizing nozzle is provided with at least two suction ports and at least two air supply channels that connect each suction port to the corresponding air outlet. The air inlet of each atomizer is connected to the air inlet port, and the air outlet of each atomizer is connected to the corresponding air outlet port.

2. The atomizing device as described in claim 1, characterized in that, The atomizer is provided in two parts. The atomizing nozzle is provided with two inhalation ports and two air delivery channels. The atomizer carrier is provided with two air outlet ports. The air outlet of one atomizer is connected to the other air outlet port, and the air outlet of the other atomizer is connected to the other air outlet port. One air outlet port is connected to one inhalation port through one of the air delivery channels, and the other air outlet port is connected to the other inhalation port through the other air delivery channel.

3. The atomizing device as described in claim 1, characterized in that, The atomizer carrier is an atomizer bracket, which has at least two slots, and at least two atomizers are positioned and installed in the at least two slots in a one-to-one correspondence.

4. The atomizing device as described in claim 3, characterized in that, The atomizer bracket is an I-shaped bracket.

5. The atomizing device as described in claim 1, characterized in that, The power supply includes a housing, a positioning element housed and positioned within the housing, and a battery cell housed and positioned within a positioning cavity of the positioning element.

6. The atomizing device as described in claim 5, characterized in that, The positioning component is a battery bracket, which has a positioning cavity for accommodating and positioning the battery cell, and an elastic shock absorber.

7. The atomizing device as described in claim 5, characterized in that, The electronic control assembly includes a control board disposed in the housing and a button for switching at least two of the atomizer operating modes. The button is electrically connected to the control board, and the control board is electrically connected to the battery cell and at least two of the atomizers respectively.

8. The atomizing device as described in claim 7, characterized in that, The electronic control assembly also includes an air switch for controlling the operation of at least two of the atomizers based on the suction airflow rate and / or pressure, the air switch being electrically connected to the control board.

9. The atomizing device as described in claim 5, characterized in that, The outer shell is provided with a receiving cavity for accommodating and positioning the atomizer carrier, the atomizing cartridge body is provided with a first snap-fit ​​structure, and the outer shell is provided with a corresponding second snap-fit ​​structure for engaging with the first snap-fit ​​structure.

10. The atomizing device according to any one of claims 1 to 9, characterized in that, The atomizer includes an atomizer housing, an atomizing seat assembly located at the bottom of the atomizer housing, an atomizing tube assembly supported on the atomizing seat assembly and located inside the atomizer housing, and an atomizing core assembly for heating and atomizing an aerosol forming matrix. The atomizer housing has an air outlet, the atomizing seat assembly has an air inlet, the atomizing tube assembly has an atomizing chamber communicating with the air inlet and an air guiding channel communicating with the air outlet, the atomizer housing has a liquid storage chamber for storing the aerosol forming matrix, the atomizing tube assembly has a liquid inlet communicating with the liquid storage chamber and the atomizing chamber, and the atomizing core assembly is located in the atomizing chamber corresponding to the liquid inlet.