Atomization device with large smoke amount and electronic cigarette thereof
By using a hard porous oil guide block and a U-shaped airflow channel design in the electronic cigarette, the problems of poor atomization and oil leakage are solved, a larger smoke volume and a better user experience are achieved, and the intelligence of the electronic cigarette is enhanced.
Patent Information
- Application Number
- CN202422718032.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Existing electronic cigarettes have poor atomization effects, small amounts of smoke, and are prone to oil leakage, leaving room for improvement.
A hard porous oil guide block is used as the atomization core, and the heating elements are arranged in parallel on the sheet structure. Combined with the U-shaped airflow channel design, the atomization area and the smoke transfer path are increased. A control panel and sensors are set to optimize the atomization effect and user experience.
It improves the atomization effect, increases the amount of smoke, avoids oil leakage, optimizes the user experience, and enhances the intelligence of the electronic cigarette.
Smart Images

Figure CN223437899U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic atomization, in particular to an atomization device with large amount of smoke and an electronic cigarette. BACKGROUND
[0002] An electronic cigarette (also known as an "e-cigarette") is an electronic delivery system for generating aerosol from an atomized substrate for a user to inhale. The atomized substrate can be a liquid (e.g., e-liquid, etc.) or a solid or gel (e.g., tobacco extract, etc.).
[0003] Generally, a conventional electronic cigarette mainly includes a cartridge storing an atomized substrate and a power supply device, the cartridge having a heating or evaporation device, such as an atomizer including an atomizing core, and the power supply device supplies power to the atomizing core to convert the atomized substrate in the cartridge into aerosol for a user to inhale. In many electronic cigarettes, the user's inhalation activates the atomizing core to vaporize the atomized substrate in the form of liquid in the cartridge, and then the user inhales the generated aerosol through a mouthpiece.
[0004] The existing electronic cigarette generally adopts a hollow cylindrical ceramic core. Due to the limited contact area and the small internal air passage space of the hollow ceramic core, the atomization effect is poor, and the amount of smoke is small. At the same time, the existing electronic cigarette is prone to oil leakage, and there is room for improvement. SUMMARY
[0005] To overcome the technical defects of the prior art that the amount of smoke is small, the present application provides an atomization device with large amount of smoke, which includes a shell, the shell is provided with an oil storage cavity for storing an atomized substrate and an atomizing core for absorbing and heating the atomized substrate in the oil storage cavity, the atomizing core includes a hard porous oil guide block, at least one heating element is arranged on one side of the hard porous oil guide block, and the other side of the hard porous oil guide block faces the oil storage cavity to absorb the atomized substrate.
[0006] As one of the embodiments, the number of the heating elements is multiple, and the multiple heating elements are connected in parallel with each other.
[0007] As one of the embodiments, the hard porous oil guide block is made of quartz glass, ceramic or mica.
[0008] As one of the embodiments, each of the heating elements is in a mesh shape.
[0009] As one of the embodiments, one end of the shell is provided with a mouthpiece, the mouthpiece is formed with a smoke suction port, a first air inlet hole is arranged on the side wall of the shell, a first airflow channel is formed in the shell and communicates with the smoke suction port and the first air inlet hole respectively, the first airflow channel passes through the heating core, and the side of the hard porous oil guide block provided with the heating element faces the first airflow channel.
[0010] As one of the implementation manners, the first airflow channel comprises a first air passage, a second air passage and a third air passage which are sequentially communicated with each other, the first air passage and the third air passage are respectively located at two sides of the oil storage cavity, the second air passage is located at an end of the oil storage cavity away from the mouthpiece, and the side of the hard porous oil guide block provided with the heating element faces the second air passage; the first air inlet is communicated with the first air passage, and the third air passage is communicated with the smoking port.
[0011] As one of the implementation manners, the end of the oil storage cavity away from the mouthpiece is provided with a sealing element for sealing the oil storage cavity, and the side of the sealing element away from the oil storage cavity is further provided with a fixing seat for fixing the hard porous oil guide block, and the sealing element and the fixing seat are respectively provided with an oil inlet hole corresponding to the hard porous oil guide block.
[0012] As one of the implementation manners, the shell is provided with a second airflow channel, and the second airflow channel is communicated with the first airflow channel or the smoking port.
[0013] As one of the implementation manners, the end of the shell away from the mouthpiece is open, and the opening is provided with a base, and the base or the shell is provided with a second air inlet hole communicated with the second airflow channel.
[0014] As one of the implementation manners, the base is provided with a magnetic element.
[0015] The mouthpiece is provided with a sealing plug.
[0016] The first air inlet hole and the second air inlet hole are respectively provided with a sealing patch.
[0017] As one of the implementation manners, the atomizing core is electrically connected with a control board for controlling the power supply of the atomizing core.
[0018] As one of the implementation manners, the control board is provided with an identification module for identifying the information of the power supply component.
[0019] As one of the implementation manners, the control board is provided with a tobacco oil detection module for detecting the residual amount of tobacco oil.
[0020] As one of the implementation manners, the control board is provided with a smoking monitoring module for recording the number of smoking times and the length of smoking time.
[0021] As one of the implementation manners, the first airflow channel is in a U shape.
[0022] As one of the implementations, the atomization device further comprises an airflow sensor arranged at the second airflow passage or the second air inlet hole, and the airflow sensor is electrically connected with the atomization core.
[0023] Another aspect of the present application provides an electronic cigarette comprising the atomization device and a power supply assembly for supplying power to the atomization device.
[0024] As one of the implementations, the power supply assembly comprises a shell, an electric core and an airflow sensor, the electric core and the airflow sensor are arranged in the shell, the airflow sensor is electrically connected with the electric core, the shell is provided with a third airflow passage, the third airflow passage is communicated with the second air inlet hole, the shell is provided with a third air inlet hole, the third air inlet hole is communicated with the third airflow passage, and the airflow sensor is arranged at the third airflow passage, the second air inlet hole or the third air inlet hole.
[0025] In summary, the present application has the following advantages: the hard porous oil guide block of the present application has a sheet structure, and a heating element is arranged at the side edge thereof, so that the contact area with the atomization substrate is larger, the airway space for smoke output can not be limited by the hollow space inside the traditional columnar atomization core, the atomization effect is better, and the smoke output is larger; secondly, the first airflow passage in the U-shaped structure avoids the situation that oil leakage at the atomization core pollutes the power supply assembly; the oil storage cavity of the present application is located in the middle of the first airflow passage in the U-shaped structure, the surrounding airway design prolongs the transmission path of the smoke, so that the smoke entering the user's mouth has enough time to cool down, avoiding the situation that the smoke temperature is too high to scald the mouth, optimizing the user's experience, and the space of the oil storage cavity can be larger; finally, the control board is arranged in the atomization device, and the recognition module, the tobacco tar detection module and the smoking monitoring module are arranged on the control board, so that the electronic cigarette is more intelligent and practical compared with the traditional electronic cigarette. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 FIG. 1 is a structural schematic view of an atomization device with large smoke amount in the present application.
[0027] Figure 2 FIG. 2 is a side view of the atomization device with large smoke amount in the present application.
[0028] Figure 3 FIG. 3 is an exploded view of the atomization device with large smoke amount in the present application.
[0029] Figure 4 FIG. 4 is a sectional view of the atomization device with large smoke amount in the present application.
[0030] Figure 5 FIG. 5 is a structural schematic view of a shell of the atomization device with large smoke amount in the present application.
[0031] Figure 6 Fig. 1 is a structural schematic diagram of a control board of a large-amount-of-smoke atomizing device according to an embodiment of the present disclosure.
[0032] Figure 7 Fig. 2 is a structural schematic diagram of an atomizing core of a large-amount-of-smoke atomizing device according to an embodiment of the present disclosure.
[0033] Figure 8 Fig. 3 is a structural schematic diagram of an electronic cigarette according to an embodiment of the present disclosure.
[0034] Legend of reference signs:
[0035] 100, atomizing device;
[0036] 10, shell; 11, oil storage cavity; 12, first air inlet hole; 13, first airflow channel; 131, first air passage; 132, second air passage; 133, third air passage; 14, second airflow channel;
[0037] 20, atomizing core; 21, hard porous oil guide block; 22, heating element;
[0038] 30, mouthpiece; 31, smoking port; 32, sealing plug; 33, sealing patch;
[0039] 40, sealing element; 41, oil inlet hole;
[0040] 50, fixing seat;
[0041] 60, base; 61, second air inlet hole;
[0042] 70, magnetic attraction element;
[0043] 80, control board; 81, identification module; 82, tobacco tar detection module; 83, smoking monitoring module;
[0044] 200, power supply assembly. DETAILED DESCRIPTION
[0045] The technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present disclosure.
[0046] It should be noted that all directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present disclosure are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directionality indications will also change accordingly.
[0047] In the present disclosure, unless specifically defined and limited otherwise, the terms "connected", "fixed", and the like should be construed broadly and, for example, can be direct or indirect connection, can be internal connection of two elements or interaction relationship between two elements, unless specifically limited. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0048] In this document, "communication" means fluid communication, i.e. fluid (including liquid and / or gas) can flow from one component to another. In addition, in this document, communication between two components can mean direct communication between two components, for example, two holes are at least partially aligned, or communication through an intermediate medium.
[0049] In the present disclosure, unless otherwise stated, all numbers expressing components, technical effects, and the like used in the specification and claims are to be understood as being modified in any and all situations by the term "about" or "approximately". Therefore, unless indicated to the contrary, numerical parameters set forth in the following description and attached claims are approximations. Those skilled in the art can vary these numerical parameters according to the desired properties and effects sought to be obtained through the present disclosure, and each numerical value parameter should be interpreted according to the number of significant figures and the conventional rounding method, or in a manner understood by those skilled in the art.
[0050] In the present disclosure, the terms used in the description of various described examples are only for the purpose of describing the specific examples, and are not intended to be limiting. Unless the context clearly indicates otherwise, if the number of elements is not specifically limited, the element can be one or more. In addition, the term "and / or" used in the present disclosure encompasses any one of the listed items and all possible combinations.
[0051] "Atomized substrate" refers to a mixture or auxiliary substance that can be fully or partially atomized into an aerosol by an electronic device or similar device. The atomized substrate can be tobacco tar, tobacco liquid, tobacco extract, or oil, liquid, paste, medical drug, skin care lotion, etc. By atomizing these media, an aerosol can be delivered to the user for smoking or absorption.
[0052] "Aerosol" refers to a colloidal dispersion system formed by dispersing and suspending small particles of solids or liquids in a gaseous medium.
[0053] "Atomization device" refers to a device that forms an aerosol from stored atomizable substrate by heating or ultrasonic means. The atomization core is one of the main components of the atomizer.
[0054] An electronic cigarette refers to a system that generates aerosol (i.e., smoke) by atomizing a substrate, such as e-liquid, for human smoking, sucking, chewing, or nasal inhalation, etc. In some examples, the electronic cigarette can include a storage cavity for storing e-liquid and an atomizing core for adsorbing and atomizing e-liquid to form smoke.
[0055] The present application will be further described below with reference to the accompanying drawings:
[0056] Referring to Figures 1-7 , one aspect of the present application provides an atomizing device 100. Referring to Figure 8 , another aspect of the present application also provides an electronic cigarette, which includes an atomizing device 100 and a power supply assembly 200 for supplying power to the atomizing device 100.
[0057] The atomizing device 100 includes a housing 10, one end of the housing 10 is provided with a mouthpiece 30, the other end of the housing 10 away from the mouthpiece 30 is open and provided with a base 60, the housing 10 is formed with a storage cavity 11 for containing an atomizing substrate, specifically, the storage cavity 11 is formed between the housing 10 and the base 60, the housing 10 is provided with an atomizing core 20 for absorbing and heating the atomizing substrate in the storage cavity 11, as Figure 7 shown, the atomizing core 20 includes a hard porous oil guide block 21, at least one heating element 22 is arranged on one side of the hard porous oil guide block 21, the other side of the hard porous oil guide block 21 is arranged to absorb the atomizing substrate towards the storage cavity 11, in use, the atomizing substrate is absorbed by the side of the hard porous oil guide block 21 close to the storage cavity 11 and is transmitted to the side of the hard porous oil guide block 21 provided with the heating element 22, the heating element 22 works to atomize the atomizing substrate, and the atomized smoke is discharged from the mouthpiece 30 for the user to smoke.
[0058] As Figure 7 shown, in some embodiments, the number of heating elements 22 is two, and the two heating elements 22 are connected in parallel with each other, in other embodiments, the number of heating elements 22 can be one or more as needed, the hard porous oil guide block 21 of the present application is in a sheet structure, which is convenient for arranging more heating elements 22 on the side edge, and each heating element 22 is in a mesh structure, which is arranged in a plurality of diamond shapes, or can be arranged in other shapes. The mesh structure has a larger contact area with the atomizing substrate, compared with the traditional hollow columnar atomizing core 20, the atomization effect is better, and the smoke output is larger. The heating element 22 is made of a resistive metal or a conductive ink, which generates heat after being electrified; the heating element 22 can also be made of graphene or carbon nanomaterials, such as carbon nanotubes, etc. The heating element 22 can be embedded on the hard porous oil guide block 21, or can be printed on the hard porous oil guide block 21 in the form of conductive ink.
[0059] In some embodiments, the hard porous oil guide block 21 is made of quartz glass, ceramic or mica, and its porous structure has good oil absorption effect. The hard porous oil guide block 21 is preferably made of quartz glass with regularly arranged micropores punched by laser or the like, so that the oil is more evenly guided.
[0060] like Figures 2-4 As shown, in some embodiments, the cigarette holder 30 is installed separately at one end of the shell 10, and in some other embodiments, the cigarette holder 30 can be integrally formed at one end of the shell 10, and the cigarette holder 30 is formed with a smoking port 31, and a first air inlet 12 is provided on the side wall of the shell 10, and a first air flow channel 13 is formed in the shell 10, which is respectively connected to the smoking port 31 and the first air inlet 12, and the first air flow channel 13 passes through the heating core, and the hard porous oil guide block 21 is provided with a heating element 22 on one side facing the first air flow channel 13, and the first air inlet 12 is provided on the side wall of the shell 10 to prevent oil leakage.
[0061] like Figure 4 As shown, in some embodiments, the first airflow channel includes a first airway 131, a second airway 132 and a third airway 133 that are interconnected in sequence. The first airflow channel 13 is roughly U-shaped, and can also be in other shapes. The first airway 131 and the third airway 133 are respectively located on both sides of the oil storage chamber 11, and the second airway 132 is located at the end of the oil storage chamber 11 away from the cigarette holder 30. The hard porous oil guide block 21 is provided with a heating element 22 on one side facing the second airway 132; the first air inlet 12 is connected to the first airway 131, and the third airway 133 is connected to the smoking port 31; when smoking, the outside air enters from the first air inlet 12, flows through the first airway 131, and flows into the mist in the second airway 132. After the smoke atomized by the atomizing core 20 is mixed, it flows through the third air channel 133 and finally flows out from the smoking port 31 for the user to inhale. The U-shaped first air flow channel 13 avoids the situation where oil leakage occurs at the atomizing core 20 and pollutes the power supply component 200. At the same time, the oil storage chamber 11 of the present application is located in the middle of the first air flow channel 13 of the U-shaped structure. This surround-type air channel design extends the transmission path of the smoke, so that the smoke entering the user's mouth has enough time to cool down, avoiding the situation where the smoke temperature is too high and burns the mouth, thereby optimizing the user experience.
[0062] In some embodiments, the oil storage cavity 11 is provided with a sealing member 40 at one end away from the mouthpiece 30 for sealing the oil storage cavity 11, and the side of the sealing member 40 away from the oil storage cavity 11 is further provided with a fixing seat 50 for fixing the hard porous oil guide block 21, and the sealing member 40 and the fixing seat 50 are respectively provided with an oil inlet hole 41 corresponding to the hard porous oil guide block 21; specifically, the fixing seat 50 is installed on the base 60, the hard porous oil guide block 21 is installed on the fixing seat 50, the sealing member 40 is sleeved on the side of the fixing seat 50 close to the oil storage cavity 11 to prevent oil leakage, the second air passage 132 is formed on the fixing seat 50, and the hard porous oil guide block 21 is installed at the oil inlet hole 41 of the fixing seat 50. The sealing member 40 is made of silica gel, plastic, latex or rubber.
[0063] In some embodiments, the shell 10 is provided with a second air flow passage 14, which is in communication with the first air flow passage 13 or the smoking port 31; the base 60 or the shell 10 is provided with a second air inlet hole 61, which is in communication with the second air flow passage 14.
[0064] In some embodiments, the base 60 is provided with a magnetic member 70 for magnetic connection with the power supply assembly 200, facilitating disassembly and replacement of the atomization device 100, and the position of the magnetic member 70 also plays a role in preventing the device from being stolen. The magnetic member 70 can be made of iron or a magnet.
[0065] In some embodiments, the mouthpiece 30 is provided with a sealing plug 32, and the first air inlet hole 12 and the second air inlet hole 61 are respectively provided with sealing stickers 33; the sealing plug 32 and the sealing stickers 33 can prevent the evaporation and loss of tobacco tar during transportation, prolonging the service life of the atomization device 100. The sealing plug 32 is made of silica gel, plastic, latex or rubber. The sealing stickers 33 are stickers or plastic patches.
[0066] Referring to Figure 6In some embodiments, the atomization core 20 is electrically connected with a control panel 80 for controlling the power supply of the atomization core 20. By controlling the power supply of the atomization core 20, the opening and closing of the atomization core 20 and the adjustment of the atomization strength are realized. The structure of the control panel 80 and its control principle are prior art and will not be described here. The control panel 80 is provided with an identification module 81 for identifying the information of the power supply assembly 200. Specifically, whether the power supply assembly 200 is compatible with the atomization device 100 can be identified to prevent the compatibility. The identification module 81 can also identify the power information and power supply of the power supply assembly 200. The control panel 80 is provided with a tobacco detection module 82 for detecting the tobacco residue. The control panel 80 is provided with a smoking monitoring module 83 for recording the number of smoking times and the length of smoking time, so as to detect and feedback the user's smoking habit to the user. The identification module 81, the tobacco detection module 82, and the smoking monitoring module 83 can adopt the existing sensing detection elements on the market. The structure and working principle thereof will not be described here, and the type thereof will not be limited specifically as long as the function thereof meets the requirements of the present application.
[0067] The power supply assembly 200 includes a shell and an electric core installed in the shell.
[0068] In some embodiments, the atomization device 100 further includes an airflow sensor, that is, the airflow sensor is located in the atomization device. The airflow sensor is arranged at the second airflow passage 14 or the second air inlet hole 61, and is electrically connected with the atomization core 20. The airflow sensor of the present embodiment is a microphone, and the structure and working principle of the microphone are prior art and will not be described here. In other embodiments, the airflow sensor can be selected as required. When the user smokes, the airflow sensor senses the gas flow in the second airflow passage 14 and controls the power supply assembly 200 to supply power to the atomization core 20 to heat and atomize the tobacco oil. In another embodiment, the power supply assembly includes an airflow sensor, that is, the airflow sensor is installed in the power supply assembly 200, and the airflow sensor is electrically connected with the electric core. A third airflow passage is arranged in the shell, and the third airflow passage is in communication with the second air inlet hole 61. A third air inlet hole is arranged in the shell, and the third air inlet hole is in communication with the third airflow passage. The airflow sensor is arranged at the third airflow passage, the second air inlet hole 61, or the third air inlet hole. The airflow sensor of the present embodiment is a microphone, and the structure and working principle of the microphone are prior art and will not be described here. In other embodiments, the airflow sensor can be selected as required. When the user smokes, the gas flow at the smoking port 31 is sensed by the airflow sensor, and the electric core is controlled to supply power to the atomization core 20 to heat and atomize the tobacco oil.
[0069] The above merely describes the embodiments or examples of the present disclosure, and does not limit the patent scope of the present disclosure, and any equivalent structural transformation made by using the content of the present disclosure and the drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present disclosure. Various elements in the embodiments or examples can be omitted or replaced by equivalent elements thereof. In addition, each step can be performed in an order different from that described in the present disclosure. Further, various elements in the embodiments or examples can be combined in various ways. It is important that many of the elements described herein can be replaced by equivalent elements that appear after the present disclosure as technology evolves.
Claims
1. An atomizing device with a large amount of smoke, comprising a housing, characterized in that: The shell is provided with an oil storage chamber for containing an atomized matrix and an atomizer core for absorbing and heating the atomized matrix in the oil storage chamber. The atomizer core includes a hard porous oil guide block. One side of the hard porous oil guide block is provided with at least one heating element, and the other side of the hard porous oil guide block absorbs the atomized matrix toward the oil storage chamber.
2. The atomizing device with a large amount of smoke according to claim 1, characterized in that: There are multiple heating elements, and the multiple heating elements are connected in parallel.
3. The atomizing device with a large amount of smoke according to claim 1, characterized in that: The hard porous oil guide block is made of quartz glass, ceramic or mica.
4. The atomizing device with a large amount of smoke according to claim 1, characterized in that: Each of the heating elements is in a mesh shape.
5. The atomizing device with a large amount of smoke according to claim 1, characterized in that: A mouthpiece is provided at one end of the shell, and a smoking port is formed on the mouthpiece. A first air inlet is provided on the side wall of the shell, and a first air flow channel is formed in the shell, which is respectively connected to the smoking port and the first air inlet. The first air flow channel is provided with a heating core, and the hard porous oil guide block is provided with a heating element on one side facing the first air flow channel.
6. The atomizing device with a large amount of smoke according to claim 5, characterized in that: The first air flow channel includes a first air channel, a second air channel and a third air channel which are interconnected in sequence. The first air channel and the third air channel are respectively located on both sides of the oil storage chamber, the second air channel is located at an end of the oil storage chamber away from the cigarette holder, and the side of the hard porous oil guide block with a heating element faces the second air channel; the first air inlet is connected to the first air channel, and the third air channel is connected to the smoking port.
7. The atomizing device with a large amount of smoke according to claim 6, characterized in that: A sealing member for sealing the oil storage chamber is provided at one end of the oil storage chamber away from the cigarette holder, and a fixing seat for fixing the hard porous oil guide block is also provided on the side of the sealing member away from the oil storage chamber. Oil inlet holes are respectively provided on the sealing member and the fixing seat, and the oil inlet holes correspond to the hard porous oil guide block.
8. The atomizing device with a large amount of smoke according to claim 5, characterized in that: A second air flow channel is provided in the shell, and the second air flow channel is connected to the first air flow channel or to the smoking port.
9. The atomizing device with a large amount of smoke according to claim 8, characterized in that: The shell has an opening at one end away from the cigarette holder and a base is provided at the opening. The base or the shell has a second air inlet hole, and the second air inlet hole is communicated with the second air flow channel.
10. The atomizing device with a large amount of smoke according to claim 9, characterized in that: The base is provided with a magnetic attraction component; A sealing plug is provided at the cigarette holder; Sealing stickers are respectively provided at the first air inlet hole and the second air inlet hole.
11. The atomizing device with a large amount of smoke according to claim 1, characterized in that: The atomizer core is electrically connected to a control board for controlling the power supply of the atomizer core.
12. The atomizing device with a large amount of smoke according to claim 11, characterized in that: The control board is provided with an identification module for identifying power supply component information.
13. The atomizing device with a large amount of smoke according to claim 11, characterized in that: The control panel is provided with a smoke oil detection module for detecting the remaining amount of smoke oil.
14. The atomizing device with a large amount of smoke according to claim 11, characterized in that: The control panel is provided with a smoking monitoring module for recording the number of times of smoking and the duration of smoking.
15. The atomizing device with a large amount of smoke according to claim 6, characterized in that: The first air flow channel is U-shaped.
16. The atomizing device with a large amount of smoke according to claim 8, characterized in that: The atomization device further includes an airflow sensor, which is arranged at the second airflow channel or the second air inlet, and is electrically connected to the atomization core.
17. An electronic cigarette, characterized in that: The invention comprises an atomizing device as described in any one of claims 1 to 15 and a power supply component for supplying power to the atomizing device.
18. The electronic cigarette according to claim 17, characterized in that The power supply assembly includes a shell, a battery cell and an airflow sensor. The battery cell and the airflow sensor are installed in the shell. The airflow sensor is electrically connected to the battery cell. A third airflow channel is provided in the shell. The third airflow channel is connected to the second air inlet. The shell is provided with a third air inlet. The third air inlet is connected to the third airflow channel. The airflow sensor is provided at the third airflow channel, the second air inlet or the third air inlet.