Electronic atomizer

By employing an independent chamber and atomizing component design in the electronic atomizer, the problems of stringent e-liquid ratio requirements and ingredient conflicts in hybrid electronic atomizers are solved, achieving purity of vapor and stability of flavor, and providing a rich experience of mixed flavors.

CN224098780UActive Publication Date: 2026-04-10SHENZEN ZUN YI PIN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing hybrid electronic atomizers have strict requirements on the e-liquid mixing ratio, which can easily lead to poor vapor taste or strange flavor, and different e-liquid ingredients can easily cause adverse reactions.

Method used

Different flavored liquid media are stored in separate first and second chambers, and are converted into gaseous media by first and second atomizing components in the smoke exhaust channel, respectively, avoiding direct mixing and realizing a method of atomization before mixing.

Benefits of technology

It ensures the purity and safety of the vapor, improves the harmony and stability of the mixed flavors, avoids the sharp decline in flavor that is common in traditional hybrid e-vaporizers, and provides a rich and delicate mixed flavor experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electronic atomizer which comprises a smoke cartridge shell provided with a smoke exhaust port and a liquid injection port. A first cavity and a second cavity are formed in the smoke cartridge shell, the liquid injection opening is communicated with the first cavity, the second cavity is located on the side, away from the smoke exhaust opening, of the first cavity, and the first cavity and the second cavity are used for storing liquid media; a smoke discharging channel penetrating through the first cavity and the second cavity is further arranged in the smoke cartridge shell, and the smoke discharging opening communicates with the first cavity and the second cavity through the smoke discharging channel; the first atomization component is arranged in the smoke exhaust channel and used for converting the liquid medium in the first cavity into a gas medium; the second atomization component is arranged in the smoke exhaust channel and used for converting the liquid medium in the second cavity into a gas medium; the problem that an existing mixed type electronic atomizer is harsh in mixing proportion requirement and prone to causing poor smoke taste is solved, the independent atomization process of different liquid media is achieved, and adverse chemical reaction or physical incompatibility caused by direct mixing of the different liquid media is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of atomization equipment, and in particular to an electronic atomizer. BACKGROUND

[0002] As a new type of nicotine intake method, electronic atomizers have shown many advantages over traditional cigarettes. Instead of burning tobacco to release nicotine, electronic atomizers heat a liquid containing nicotine and other ingredients, commonly known as e-liquid, to produce a vapor that can be inhaled. This method not only avoids harmful substances such as tar and carbon monoxide produced by burning, but also greatly reduces the harm to smokers and their surroundings. In addition, electronic atomizers can provide a variety of flavor options to meet the individual needs of different users, and they do not produce noticeable odors or residues during use, providing a cleaner and more convenient experience for users.

[0003] Current market designs of hybrid electronic atomizers aim to allow users to enjoy a combination of multiple flavors. These devices usually have multiple separate chambers for storing different flavored e-liquids, which are then mixed in a specially designed mixing chamber in a certain ratio. Once the mixing process is complete, the mixed e-liquid is delivered to the heating element, where it is converted into fine mist for the user to inhale. This design allows users to freely adjust the ratio of different flavored e-liquids according to personal preferences, creating a unique mixed flavor experience and greatly enriching the user's sensory enjoyment.

[0004] However, existing hybrid electronic atomizers have some shortcomings. First, in order to ensure that the taste of the mixed flavor does not decrease significantly, the mixing ratio of various e-liquids must be strictly controlled, which requires users to have high operating skills or rely on precise automated systems. Second, different flavored e-liquids often contain different ingredient components, and if these components react adversely, it can cause the taste of the final mixed flavor to deteriorate sharply, affecting the user experience. CONTENT OF THE UTILITY MODEL

[0005] The electronic atomizer provided in the embodiments of the present application solves the technical problems of existing hybrid electronic atomizers, which have strict mixing ratio requirements, and when the mixing ratio of liquid media does not match or the ingredient components of liquid media conflict, it is easy to cause the smoke taste to be poor or the flavor to be strange. The technical solution is as follows:

[0006] An electronic atomizer is provided in the embodiments of the present application, comprising: a cartridge shell provided with a smoke outlet and a liquid injection port; the cartridge shell is provided with a first chamber and a second chamber, the liquid injection port is communicated with the first chamber, the second chamber is located on the side of the first chamber away from the smoke outlet, and the first chamber and the second chamber are used for storing liquid medium; the cartridge shell further has a smoke discharge channel penetrating the first chamber and the second chamber, and the smoke outlet is communicated with the first chamber and the second chamber through the smoke discharge channel; a first atomization component is arranged in the smoke discharge channel and used for converting the liquid medium in the first chamber into gaseous medium; and a second atomization component is arranged in the smoke discharge channel and used for converting the liquid medium in the second chamber into gaseous medium.

[0007] In an embodiment, the cartridge shell further has a third chamber, the third chamber is arranged in the first chamber, and the smoke discharge channel penetrates the third chamber and the second chamber; the electronic atomizer further comprises: an oil guide plate arranged outside the third chamber and located in the first chamber, the third chamber and the first chamber are communicated through the oil guide plate, and the third chamber can absorb the liquid medium in the first chamber, and the smoke discharge channel is communicated with the first chamber through the third chamber.

[0008] In an embodiment, the oil guide plate is built-in with a first oil guide section and a second oil guide section communicated with each other, the first oil guide section extends along a first direction and is communicated with the first chamber, the second oil guide section extends along a second direction and is communicated with the third chamber, the first direction is perpendicular to the second direction, so as to form a bent oil guide channel through the first oil guide section and the second oil guide section.

[0009] In an embodiment, further comprising: a first oil storage cotton arranged in the third chamber, the first oil storage cotton is attached to the oil guide plate and the first atomization component, and used for transmitting the liquid medium in the oil guide plate to the first atomization component; the first atomization component has a first receiving part and a first smoke outlet hole; the first receiving part is embedded in the first oil storage cotton, and the first smoke outlet hole is communicated with the smoke discharge channel.

[0010] In an embodiment, further comprising: a second oil storage cotton arranged in the second chamber, the second oil storage cotton is attached to the second atomization component, and used for transmitting the liquid medium in the second chamber to the second atomization component; the second atomization component has a second receiving part and a second smoke outlet hole; the second receiving part is embedded in the second oil storage cotton, and the second smoke outlet hole is communicated with the smoke discharge channel.

[0011] In an embodiment, further comprising: a first sealing member supported on the inner wall of the cartridge shell in an interference fit manner and located between the first chamber and the second chamber, the first sealing member is provided with a first mounting hole, the smoke discharge channel is embedded in the first mounting hole, and the first sealing member is used for sealing and isolating the first chamber and the second chamber.

[0012] In an embodiment, further comprising: a second seal supported on the inner wall of the cartridge shell in an interference fit, located on a side of the second chamber facing away from the first seal, the second seal being provided with a second mounting hole, and the smoke discharge channel being embedded in the second mounting hole at an end facing away from the smoke discharge port, the second seal being configured to seal the second chamber.

[0013] In an embodiment, further comprising: a control mechanism configured on the second seal, configured to control the output power of the first atomization component and the second atomization component.

[0014] In an embodiment, the control mechanism comprises: a first control chip electrically connected to the first atomization component via the smoke discharge channel; a second control chip electrically connected to the second atomization component via the smoke discharge channel; an adjustment switch connected in parallel to the first control chip and the second control chip, the adjustment switch being embedded on the side wall of the cartridge shell and configured to adjust the output mode of the first control chip and / or the second control chip; the second seal being provided with a first mounting position and a second mounting position on a side facing away from the second chamber, the first control chip being configured on the first mounting position, and the second control chip being configured on the second mounting position.

[0015] In an embodiment, further comprising: a liquid injection plug connected to the outer wall of the cartridge shell and configured to cover the liquid injection port.

[0016] Compared with the prior art, the electronic atomizer provided in the above technical solution stores different liquid media in the first chamber and the second chamber respectively, and the smoke discharge channel is embedded in the first chamber and the second chamber and communicates with the first chamber and the second chamber, so that each liquid medium can be atomized into a gas medium in the respective atomization component. This way avoids the adverse chemical reaction or physical incompatibility that may be caused by direct mixing of different liquid media, thereby ensuring the purity and safety of the mixed smoke generated. Specifically, by configuring the first atomization component and the second atomization component in the smoke discharge channel, the independent heating and atomization process of different liquid media of different flavors is realized. Therefore, compared with the traditional mixing of smoke oil, the smoke mixing method provided by the present application can achieve a more rich and delicate mixed flavor experience. Since the present application adopts the method of atomizing first and then mixing, the risk of forming adverse compounds is greatly reduced. The overall mixed flavor coordination and stability are significantly improved, and the common situation of sharp taste decline in traditional mixed electronic atomizers is avoided.

[0017] The above summary is intended to illustrate only and is not intended to be limiting in any way. Further aspects, embodiments and features of the present application will be readily apparent from the following detailed description, taken in conjunction with the drawings and the following detailed description. BRIEF DESCRIPTION OF DRAWINGS

[0018] In the drawings, like reference numerals refer to like elements throughout the several views. The drawings are not necessarily to scale, the emphasis instead being placed upon illustrating principles of the application. It should be understood that the drawings are merely depictions of some embodiments in accordance with the disclosure and should not be construed as limiting the scope of the application.

[0019] Figure 1 Structure diagram of an electronic atomizer according to an embodiment of the present application;

[0020] Figure 2 Enlarged view of a cartridge of an electronic atomizer according to an embodiment of the present application;

[0021] Figure 3 Structure diagram of a first atomizing component according to an embodiment of the present application;

[0022] Figure 4 Structure diagram of a second atomizing component according to an embodiment of the present application;

[0023] Figure 5 Structure diagram of a first sealing member according to an embodiment of the present application;

[0024] Figure 6 Structure diagram of a second sealing member according to an embodiment of the present application.

[0025] Reference numerals:

[0026] 1, cartridge housing;

[0027] 11, smoke outlet; 12, liquid injection port; 13, oil guide plate; 14, first oil storage cotton; 15, second oil storage cotton; 16, liquid injection plug;

[0028] 101, first chamber; 102, second chamber; 103, third chamber; 131, first oil guide section; 132, second oil guide section;

[0029] 2, smoke outlet passage;

[0030] 3, first atomizing component; 31, first receiving portion; 32, first smoke outlet hole;

[0031] 4, second atomizing component; 41, second receiving portion; 42, second smoke outlet hole;

[0032] 5, first sealing member; 50, first mounting hole;

[0033] 6, second sealing member; 60, second mounting hole; 61, first mounting position; 62, second mounting position;

[0034] 7, first control chip; 8, second control chip; 9, adjustment switch. DETAILED DESCRIPTION

[0035] In the following, certain example embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and description are to be regarded as illustrative in nature and not as restrictive.

[0036] With reference to Figure 1 As shown in the drawings, the electronic atomizer in the embodiments of the present application can include: a cartridge shell 1 provided with a smoke outlet 11 and a liquid injection port 12; a first chamber 101 and a second chamber 102 are arranged in the cartridge shell 1, the liquid injection port 12 is communicated with the first chamber 101, the second chamber 102 is located on the side of the first chamber 101 away from the smoke outlet 11, and the first chamber 101 and the second chamber 102 are used to store liquid medium; the cartridge shell 1 further has a smoke discharge passage 2 penetrating the first chamber 101 and the second chamber 102, the smoke outlet 11 is communicated with the first chamber 101 and the second chamber 102 through the smoke discharge passage 2; a first atomizing component 3 arranged in the smoke discharge passage 2 is used to convert the liquid medium in the first chamber 101 into gaseous medium; and a second atomizing component 4 arranged in the smoke discharge passage 2 is used to convert the liquid medium in the second chamber 102 into gaseous medium.

[0037] Specifically, in the technical solution adopted in the present application, the first chamber 101 and the second chamber 102 in the cartridge shell 1 are used to store liquid medium, such as tobacco tar. According to the user's needs, the first chamber 101 and the second chamber 102 can store tobacco tar capable of forming different flavored smoke, the cartridge shell 1 is provided with a liquid injection port 12 communicated with the first chamber 101, so that the first chamber 101 can be repeatedly injected with tobacco tar of the required flavor, and the tobacco tar stored in the second chamber 102 can be standard tobacco tar provided by the manufacturer, and the user can use the tobacco tar in the first chamber 101 and the second chamber 102 in combination. The smoke discharge passage 2 is penetratingly arranged in the first chamber 101 and the second chamber 102, one end of the smoke discharge passage 2 is communicated with the smoke outlet 11 on the cartridge shell 1 and communicated with the first chamber 101 and the second chamber 102, the first atomizing component 3 and the second atomizing component 4 used to convert the tobacco tar into gaseous medium are arranged in the smoke discharge passage 2, the first atomizing component 3 corresponds to the first chamber 101, and the second atomizing component 4 corresponds to the second chamber 102, and in the present embodiment, the gaseous medium can be smoke generated by heating tobacco tar. In use, the tobacco tar stored in the first chamber 101 contacts the first atomizing component 3, and the tobacco tar stored in the second chamber 102 contacts the second atomizing component 4, and after the first atomizing component 3 and the second atomizing component 4 are operated, the tobacco tar can be converted into smoke, and when the user inhales at the smoke outlet 11, the smoke of different flavors is discharged from the smoke outlet 11 through the smoke discharge passage 2.

[0038] Further, referring to Figure 1 As shown in the figure, in some embodiments, the third chamber 103 is further arranged in the cartridge shell 1, the third chamber 103 is arranged in the first chamber 101, and the smoke discharge channel 2 is arranged in the third chamber 103 and the second chamber 102; the electronic atomizer further comprises an oil guide plate 13 arranged outside the third chamber 103 and in the first chamber 101, the third chamber 103 and the first chamber 101 are communicated through the oil guide plate 13, and the third chamber 103 can suck the liquid medium in the first chamber 101, and the smoke discharge channel 2 and the first chamber 101 are communicated through the third chamber 103.

[0039] Specifically, in the technical scheme adopted in the present application, the third chamber 103 is used to prevent the tobacco tar in the first chamber 101 from directly pouring into the smoke discharge channel 2, so as to avoid serious oil leakage, and specifically, the tobacco tar in the first chamber 101 is slowly sucked; and in the present embodiment, the oil guide plate 13 is arranged in the first chamber 101, and the third chamber 103 and the first chamber 101 are communicated through the oil guide plate 13, so that the tobacco tar in the first chamber 101 is transferred to the third chamber 103 through the oil guide plate 13, thereby effectively reducing the oil suction pressure of the third chamber 103, and the time for conducting the tobacco tar is prolonged by the oil guide plate 13, so as to improve the upper limit of the third chamber 103. In order to achieve the above effect, the smoke discharge channel 2 is arranged in the third chamber 103 and the second chamber 102 in the present embodiment, and the smoke discharge channel 2 is communicated with the first chamber 101 through the third chamber 103, so that the first atomizing component 3 heats the tobacco tar sucked from the first chamber 101 by the third chamber 103, and the tobacco tar is converted into smoke, and then discharged from the smoke discharge port 11 through the smoke discharge channel 2.

[0040] Further, referring to Figure 2 As shown in the figure, in some embodiments, the oil guide plate 13 is internally provided with a first oil guide section 131 and a second oil guide section 132 communicated with each other, the first oil guide section 131 extends along a first direction and communicates with the first chamber 101, the second oil guide section 132 extends along a second direction and communicates with the third chamber 103, and the first direction is perpendicular to the second direction, so as to form a bent oil guide channel through the first oil guide section 131 and the second oil guide section 132.

[0041] Specifically, in the technical scheme adopted in the present application, the first direction can be the layout direction of the first chamber 101 and the second chamber 102, and the second direction can be the layout direction of the first chamber 101 and the third chamber 103, so that after the first oil guiding section 131 extends along the first direction and the second oil guiding section 132 extends along the second direction, the first oil guiding section 131 and the second oil guiding section 132 form a bent oil guiding channel, compared with a straight-through oil guiding channel, the flow rate of the tobacco tar in the first chamber 101 flowing into the third chamber 103 can be further slowed down. In the embodiment, the port of the first oil guiding section 131 is in communication with the first chamber 101, and the port of the second oil guiding section 132 is in communication with the third chamber 103. The port of the first oil guiding section 131 can be provided in a flared structure to guide the tobacco tar in the first chamber 101 to flow into the flow guide plate, and the port of the second oil guiding section 132 is provided in a tapered structure to limit the flow of the tobacco tar flowing into the third chamber 103.

[0042] Further, referring to Figure 2 and Figure 3 shown, in some embodiments, further comprising: a first oil storage cotton 14 arranged in the third chamber 103, the first oil storage cotton 14 being attached to the first atomization component 3 and the oil guiding plate 13, for transmitting the liquid medium in the oil guiding plate 13 to the first atomization component 3; the first atomization component 3 having a first receiving portion 31 and a first smoke outlet hole 32; the first receiving portion 31 being embedded in the first oil storage cotton 14, and the first smoke outlet hole 32 being in communication with the smoke discharging channel 2.

[0043] Specifically, in the technical scheme adopted in the present application, the first oil storage cotton 14 is filled in the third chamber 103 to absorb the tobacco tar flowing into the third chamber 103 from the oil guiding plate 13, so as to prevent the tobacco tar in the third chamber 103 from directly flowing into the smoke discharging channel 2. In use, the first oil storage cotton 14 after fully absorbing the tobacco tar wraps around the first receiving portion 31, and the first atomization component 3 heats the tobacco tar in the first oil storage cotton 14 to convert the tobacco tar into smoke which is then delivered to the smoke discharging channel 2 through the first smoke outlet hole 32.

[0044] Further, referring to Figure 2 and Figure 4 shown, in some embodiments, further comprising: a second oil storage cotton 15 arranged in the second chamber 102, the second oil storage cotton 15 being attached to the second atomization component 4, for transmitting the liquid medium in the second chamber 102 to the second atomization component 4; the second atomization component 4 having a second receiving portion 41 and a second smoke outlet hole 42; the second receiving portion 41 being embedded in the second oil storage cotton 15, and the second smoke outlet hole 42 being in communication with the smoke discharging channel 2.

[0045] Specifically, in the technical scheme adopted in the present application, the second oil storage cotton 15 is filled in the second chamber 102. In use, the second oil storage cotton 15 fully absorbing the tobacco tar is attached to the second atomization component 4, specifically, the second oil storage cotton 15 is wrapped around the second receiving part 41, and the second atomization component 4 heats the tobacco tar in the second oil storage cotton 15, so that the tobacco tar is converted into smoke which is delivered to the smoke discharge channel 2 through the second smoke discharge hole 42, so that the smoke discharge port 11 can simultaneously discharge smoke of different flavors, thereby improving the interest of the electronic atomizer in the present application. Compared with the existing hybrid electronic atomizer, the difference is that the tobacco tar of different flavors is converted by independent atomization components, rather than mixed tobacco tar being converted together. When the user tastes the smoke, the taste of the smoke of different flavors is clear, avoiding the risk of producing strange taste which reduces the experience when converting the smoke by mixing the tobacco tar. When the user uses the product, the user can clearly perceive two different flavors through the sense of taste, thereby improving the taste and diversity of the selection of the electronic atomizer.

[0046] Further, referring to Figures 1 to 5 , in some embodiments, further comprising: a first sealing member 5 supported on the inner wall of the cartridge shell 1 in an interference fit manner, located between the first chamber 101 and the second chamber 102, the first sealing member 5 is provided with a first mounting hole 50, and the smoke discharge channel 2 is embedded in the first mounting hole 50, and the first sealing member 5 is used to seal and isolate the first chamber 101 and the second chamber 102.

[0047] Specifically, in the technical scheme adopted in the present application, the first sealing member 5 is used to separate the first chamber 101 and the second chamber 102 into independent chambers, thereby avoiding the mixing of the tobacco tar in the first chamber 101 and the tobacco tar in the second chamber 102 due to leakage of the tobacco tar, which reduces the taste of the smoke. The first sealing member 5 is made of silica gel material, and the first sealing member 5 is interference-fitted against the inner wall of the cartridge shell 1, thereby separating the first chamber 101 and the second chamber 102. The first sealing member 5 can be provided with a first mounting hole 50 having a smaller size than the size of the smoke discharge channel 2, and the smoke discharge channel 2 is embedded in the first mounting hole 50, thereby realizing the communication of the smoke discharge channel 2 with the third chamber 103 and the second chamber 102. Since the first sealing member 5 is made of silica gel material, the inner wall of the first mounting hole 50 is tightly attached to the outer wall of the smoke discharge channel 2 through flexible deformation, so that the first sealing member 5 with the first mounting hole 50 still has a sealing effect.

[0048] Further, referring to Figure 1 , Figure 2 , and Figure 6As shown, in some embodiments, further comprising: a second sealing member 6 supported on the inner wall of the cartridge shell 1 in an interference fit manner on the side of the second chamber 102 away from the first sealing member 5, a second mounting hole 60 is provided on the second sealing member 6, and the end of the smoke discharge channel 2 away from the smoke discharge port 11 is embedded in the second mounting hole 60, and the second sealing member 6 is used to seal the second chamber 102.

[0049] Specifically, in the technical scheme adopted in the present application, the second sealing member 6 can seal the second chamber 102 through cooperation with the first sealing member 5, and the second sealing member 6 is arranged on the side of the second chamber 102 away from the first sealing member 5, and the second sealing member 6 is made of silica gel material, and the second sealing member 6 is in interference fit abutment on the inner wall of the cartridge shell 1, thereby closing the side of the second chamber 102 away from the first sealing member 5. The second sealing member 6 can be provided with a second mounting hole 60 with a smaller diameter than the smoke discharge channel 2, and the end of the smoke discharge channel 2 away from the smoke discharge port 11 is embedded in the second mounting hole 60. Since the second sealing member 6 is made of silica gel material, the inner wall of the second mounting hole 60 is tightly fitted on the outer wall of the smoke discharge channel 2 through flexible deformation, so that the second sealing member 6 with the second mounting hole 60 still has a sealing effect, so as to supply power to the first atomizing component 3 and the second atomizing component 4 through the end port of the smoke discharge channel 2.

[0050] Further, in some embodiments, further comprising: a control mechanism configured on the second sealing member 6 for controlling the output power of the first atomizing component 3 and the second atomizing component 4.

[0051] Specifically, in the technical scheme adopted in the present application, the output power of the first atomizing component 3 and the second atomizing component 4 can be adjusted through the control mechanism, so that the amount of smoke of different flavors can be selected during use, so as to adjust according to the different needs of the user. It should be noted that different amounts of smoke also include stopping the output of one flavor of smoke, so as to realize that the user experiences single-flavor smoke by adjusting the control mechanism.

[0052] Further, referring to Figure 1 and Figure 2 As shown, in some embodiments, the control mechanism comprises: a first control chip 7 electrically connected to the first atomizing component 3 through the smoke discharge channel 2; a second control chip 8 electrically connected to the second atomizing component 4 through the smoke discharge channel 2; an adjustment switch 9 connected in parallel with the first control chip 7 and the second control chip 8, the adjustment switch 9 is embedded on the side wall of the cartridge shell 1, and is used to adjust the output mode of the first control chip 7 and / or the second control chip 8; the side of the second sealing member 6 away from the second chamber 102 is provided with a first mounting position 61 and a second mounting position 62, the first control chip 7 is arranged on the first mounting position 61, and the second control chip 8 is arranged on the second mounting position 62.

[0053] Specifically, in the technical solution adopted in the present application, the first control chip 7 is used to adjust the output power of the first atomization component 3, and the second control chip 8 is used to adjust the output power of the second atomization component 4, so that the smoke output of the tobacco oil stored in the first chamber 101 and the second chamber 102 can be independently controlled, so as to realize that when one of the atomization components is closed, the other atomization component is not affected, for example: when the second control chip 8 closes the second atomization component 4, the first control chip 7 can control the first atomization component 3 to continue to run, and they do not affect each other, so as to realize independent control of the first atomization component 3 and the second atomization component 4. The adjustment switch 9 is used to adjust the output mode of the first control chip 7 and the second control chip 8 to the atomizer, so that the user can select different smoke modes by turning the adjustment switch 9.

[0054] In one embodiment, the adjustment switch 9 can be provided with two turning gears, which are a first gear and a second gear. When the adjustment switch 9 is switched to the first gear, the first atomization component 3 and the second atomization component 4 operate simultaneously, so that different taste smoke can be generated in the smoke discharge channel 2; when the adjustment switch 9 is switched to the second gear, the second atomization component 4 is closed and the first atomization component 3 is opened, so that smoke converted from the tobacco oil stored in the first chamber 101 is generated in the smoke discharge channel 2, that is, single-taste smoke. In this embodiment, considering that the first chamber 101 can be repeatedly refilled through the oil injection hole, and the tobacco oil in the first chamber 101 is the taste selected by the user, the tobacco oil in the single-taste mode is preferentially selected from the tobacco oil in the first chamber 101. It should be noted that the tobacco oil in the first chamber 101 flows into the third chamber 103 through the oil guide plate 13 and is absorbed by the first oil storage cotton 14 of the third chamber 103, and the first oil storage cotton 14 is wrapped on the first receiving part 31, not directly supplied to the first atomization component 3 from the first chamber 101, so that in this embodiment, it can also be understood that the tobacco oil is supplied to the first atomization component 3 through the third chamber 103 in the single-taste mode.

[0055] In one embodiment, the adjustment switch 9 can also be configured with three toggle positions. The first two positions are the same as in the above embodiment, namely the first and second positions. The difference is the addition of a third position. When the adjustment switch 9 is switched to the third position, the first atomizing component 3 is turned off, and the second atomizing component 4 is turned on, so that vapor converted from the e-liquid stored in the second chamber 102 is generated in the exhaust channel 2, which is also a single-flavor vapor. It should be noted that in this application, to avoid the user's inhaled vapor developing an off-flavor due to poor mixing during the pairing process, the second chamber 102 cannot be refilled with e-liquid. Furthermore, the e-liquid in the second chamber 102 is injected by the manufacturer during the manufacturing process of the electronic atomizer. This avoids the first chamber 101 and the second chamber 102 storing the same inferior e-liquid, ensuring that after inferior e-liquid is injected into the first chamber 101, the e-liquid in the second chamber 102 can maintain the normal operation of the electronic atomizer until the e-liquid in the second chamber 102 is depleted. It should be noted that when the e-liquid in the second chamber 102 is exhausted, if the user wishes to continue to experience inhaling different flavors of vapor, they can simply replace the cartridge with a new one.

[0056] Furthermore, refer to Figure 1 and Figure 2 As shown, in some embodiments, it further includes: a liquid injection plug 16, connected to the outer wall of the cartridge shell 1, for covering the liquid injection port 12.

[0057] Specifically, in the technical solution adopted in this application, the liquid injection plug 16 is made of silicone material, and one end of the liquid injection plug 16 is installed on the outer wall of the cartridge shell 1. Due to the flexible properties of the silicone material, the liquid injection plug 16 covering the liquid injection port 12 can be flipped upwards to open the liquid injection port 12. This achieves the purpose of injecting e-liquid into the first chamber 101 while simultaneously sealing the liquid injection port 12 to prevent e-liquid leakage from the first chamber 101. The liquid injection plug 16 may include a plug head, the diameter of which is larger than the diameter of the liquid injection port 12. The plug head is inserted into the liquid injection port 12 with an interference fit. Through the flexible deformation of the silicone material, the plug head can tightly fit against the inner wall of the liquid injection port 12, thereby achieving the effect of sealing the liquid injection port 12.

[0058] In the description of the application, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in one or more embodiments or examples. In addition, different embodiments or examples described in the specification and characteristics of different embodiments or examples can be combined and combined by those skilled in the art without contradiction.

[0059] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the application, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0060] Any process or method descriptions in flow charts or described elsewhere herein can be understood as representing code modules, segments, or portions of code that include one or more executable instructions for implementing specific logic functions or other processes. And the various embodiments of the application can include additional or fewer steps or processes in comparison to those shown in the figures.

[0061] The logic and / or steps represented in flow charts or otherwise described herein, for example, can be embodied in computer-readable instructions, which can be used to cause one or more processors to perform the actions indicated in the logic flow diagrams. The computer-readable instructions can be stored on one or more storage media or memories, such as a computer-readable medium, which can be non-transitory.

[0062] It should be understood that parts of the application can be implemented in hardware, software, firmware or a combination thereof. In the above-described embodiments, a plurality of steps or methods can be implemented by software or firmware stored in a memory and executed by a suitable instruction execution system. All or part of the steps of the above-described embodiment method can be instructed by the relevant hardware through a program, which can be stored in a computer-readable storage medium, and the program includes one or a combination of the steps of the method embodiment when executed.

[0063] In addition, each of the function units in each embodiment of the present application can be integrated in one processing module, or each unit can be physically present separately, or two or more units can be integrated in one module. The integrated module can be realized in the form of hardware or in the form of a software function module. When the integrated module is realized in the form of a software function module and sold or used as an independent product, it can also be stored in a computer readable storage medium. The storage medium can be a read-only memory, a magnetic disk or an optical disk, etc.

[0064] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of various changes or replacements within the technical scope disclosed in the present application, and these should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. An electronic atomizer, characterized in that, The electronic atomizer comprises: a cartridge shell provided with a smoke outlet and a liquid injection port; a first chamber and a second chamber are arranged in the cartridge shell, the liquid injection port is communicated with the first chamber, the second chamber is located on a side of the first chamber away from the smoke outlet, and the first chamber and the second chamber are used for storing liquid medium; the cartridge shell further has a smoke discharge channel penetrating the first chamber and the second chamber, and the smoke outlet is communicated with the first chamber and the second chamber through the smoke discharge channel; a first atomization component is arranged in the smoke discharge channel and used for converting the liquid medium in the first chamber into gaseous medium; and a second atomization component is arranged in the smoke discharge channel and used for converting the liquid medium in the second chamber into gaseous medium.

2. The electronic atomizer according to claim 1, wherein the cartridge shell further has a third chamber, the third chamber is arranged in the first chamber, and the smoke discharge channel penetrates the third chamber and the second chamber; the electronic atomizer further comprises: an oil guide plate arranged outside the third chamber and located in the first chamber, the third chamber and the first chamber are communicated through the oil guide plate, the third chamber can absorb the liquid medium in the first chamber, and the smoke discharge channel is communicated with the first chamber through the third chamber.

3. The electronic atomizer according to claim 2, wherein the oil guide plate is internally provided with a first oil guide section and a second oil guide section communicated with each other, the first oil guide section extends along a first direction and is communicated with the first chamber, the second oil guide section extends along a second direction and is communicated with the third chamber, the first direction is perpendicular to the second direction, and a bent oil guide channel is formed through the first oil guide section and the second oil guide section.

4. The electronic atomizer of claim 2, wherein, Further comprising: a first oil storage cotton arranged in the third chamber, the first oil storage cotton is attached to the oil guide plate and the first atomization component, and used for transmitting the liquid medium in the oil guide plate to the first atomization component; the first atomization component has a first receiving portion and a first smoke outlet hole; the first receiving portion is embedded in the first oil storage cotton, and the first smoke outlet hole is communicated with the smoke discharge channel.

5. The electronic atomizer of claim 1 or 4, wherein, Further comprising: a second oil storage cotton arranged in the second chamber, the second oil storage cotton is attached to the second atomization component, and used for transmitting the liquid medium in the second chamber to the second atomization component; the second atomization component has a second receiving portion and a second smoke outlet hole; the second receiving portion is embedded in the second oil storage cotton, and the second smoke outlet hole is communicated with the smoke discharge channel.

6. The electronic atomizer of claim 1, wherein, Further comprising: a first sealing member supported on an inner wall of the cartridge shell in an interference fit manner and located between the first chamber and the second chamber, the first sealing member is provided with a first mounting hole, the smoke discharge channel is embedded in the first mounting hole, and the first sealing member is used for sealing and isolating the first chamber and the second chamber.

7. The electronic atomizer of claim 6, wherein, Further comprising: A second seal is supported on the inner wall of the cartridge shell in an interference fit, on the side of the second chamber away from the first seal. The second seal is provided with a second mounting hole, and an end of the smoke discharge passage away from the smoke discharge port is embedded in the second mounting hole. The second seal is used to seal the second chamber.

8. The electronic atomizer of claim 7, wherein, Further comprising: A control mechanism is arranged on the second seal, and is used to control the output power of the first atomization component and the second atomization component.

9. The electronic atomizer of claim 8, wherein, The control mechanism comprises: A first control chip is electrically connected with the first atomization component through the smoke discharge passage; A second control chip is electrically connected with the second atomization component through the smoke discharge passage; An adjustment switch is connected in parallel with the first control chip and the second control chip. The adjustment switch is embedded on the side wall of the cartridge shell, and is used to adjust the output mode of the first control chip and / or the second control chip. The side of the second seal away from the second chamber is provided with a first mounting position and a second mounting position. The first control chip is arranged on the first mounting position, and the second control chip is arranged on the second mounting position.

10. The electronic atomizer of claim 1, wherein, Further comprising: An injection plug is connected to the outer wall of the cartridge shell, and is used to cover the injection port.