Atomization device capable of stabilizing infusion
By adopting a rotating wheel and swirling channel design in a large-capacity electronic cigarette, the negative pressure problem caused by the reduction of e-liquid in the supply tank is solved, achieving stable e-liquid delivery, avoiding dry burning of the atomizing component, and improving the atomization effect.
Patent Information
- Application Number
- CN202520235281.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-14
AI Technical Summary
When the e-liquid in the supply tank of a large-capacity e-cigarette decreases, the negative pressure increases, making it difficult for e-liquid to be supplied to the storage tank in a timely and effective manner, thus affecting the atomization effect.
A stable liquid delivery atomizing device was designed. By combining a rotating wheel and a swirling channel, the air pressure balance between the oil supply chamber and the oil storage chamber is achieved, ensuring smooth delivery of e-liquid and avoiding the formation of negative pressure.
It achieves pressure balance between the oil supply chamber and the oil storage chamber, ensuring timely and effective supply of e-liquid, preventing the atomizing components from burning dry, and improving the atomization effect.
Smart Images

Figure CN223759247U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of atomization technology, and in particular to an atomization device for stable infusion. Background Technology
[0002] High-capacity electronic cigarettes generally consist of an outer shell, inside which are a reservoir and a supply tank. The reservoir contains a small amount of e-liquid. A mouthpiece is located at the top of the reservoir, and a base is located at the bottom. The base and the mouthpiece are connected by a tube with an inlet hole that connects to the reservoir. An atomizer coil is installed inside the tube and is connected to a circuit board via a lead wire. The circuit board is connected to a battery and controls the battery's output power. The atomizer coil atomizes the e-liquid in the reservoir, and the atomized vapor flows out from the mouthpiece.
[0003] The e-liquid supply compartment of this type of large-capacity e-cigarette generally has a capacity of more than 10 milliliters. In order to ensure the quality of the e-liquid, the supply compartment is usually sealed. During use, the e-liquid in the supply compartment is continuously output to the storage compartment through the e-liquid pump. As the e-liquid in the supply compartment decreases, a negative pressure is formed in the supply compartment, which increases the difficulty of transporting the e-liquid to the storage compartment through the pump, resulting in the e-liquid not being supplied in a timely and effective manner.
[0004] Therefore, it is necessary to design an electronic cigarette to overcome the above-mentioned defects. Utility Model Content
[0005] The main objective of this application is to provide a stable liquid delivery atomizing device to address the technical problem of ensuring sufficient oil supply to the oil storage tank.
[0006] To achieve the above objectives, this application proposes a stable infusion nebulizer, comprising:
[0007] A smoke cartridge, which has an oil storage tank;
[0008] One oil supply tank, which contains e-liquid;
[0009] An infusion assembly includes an inlet channel and an outlet channel. The inlet channel is connected to an oil supply tank, and the outlet channel is connected to an oil storage tank. The inlet channel and the outlet channel are connected by a cavity. A rotating wheel is installed in the cavity, and a swirling channel is formed on the side wall of the rotating wheel.
[0010] A return gas channel connects the oil storage tank and the oil supply tank;
[0011] The rotating wheel is driven to rotate, and the e-liquid in the oil supply chamber enters the vortex channel through the liquid inlet channel, and then enters the oil storage chamber through the liquid outlet channel. The air in the oil storage chamber enters the oil supply chamber through the air return channel.
[0012] The smoke cartridge is installed at the top of the oil supply chamber, and the top of the liquid outlet channel in the oil storage chamber is lower than the top of the gas return channel in the oil storage chamber.
[0013] The upper part of the cartridge is provided with a mouthpiece, and the lower opening of the cartridge is equipped with a first sealing element. The first sealing element has a first air inlet. An atomization channel is provided between the first air inlet and the mouthpiece. An atomization component is installed in the atomization channel. An oil inlet is provided on the side wall of the atomization channel. The oil inlet is connected to the oil storage tank. The first sealing element is also provided with a first liquid channel and a first air return channel. The top of the first liquid channel is lower than the top of the first air return channel.
[0014] The upper part of the oil supply tank is provided with a second sealing plug. The second sealing plug is equipped with a second liquid channel and a second return gas channel. The bottom of the second liquid channel is lower than the bottom of the second return gas channel. The upper part of the second liquid channel is connected to the lower part of the first liquid channel. The second liquid channel and the first liquid channel together form a liquid outlet channel. The lower part of the first return gas channel is connected to the upper part of the second return gas channel. The first return gas channel and the second return gas channel together form a return gas channel.
[0015] The cavity is located at the bottom of the oil supply chamber. The cavity has an oil inlet and an oil outlet. The rotating wheel is located between the oil inlet and the oil outlet. The oil inlet is connected to the liquid inlet channel, and the oil outlet is connected to the bottom of the second liquid channel.
[0016] A rotating shaft is provided on the side wall of the oil supply tank. One end of the rotating shaft is fixed to the rotating wheel, and the other end of the rotating wheel is fixed to a motor. The swirling channel is spirally arranged along the side wall of the rotating wheel.
[0017] It also includes a power supply assembly, which includes a housing, a battery, a circuit board, a microphone, and an air intake channel inside the housing. The battery is connected to the circuit board, the microphone is connected to the circuit board, the air intake channel is connected to a first air intake hole, the sensing end of the microphone is connected to the air intake channel, the battery is installed in the power supply assembly, a first magnetic attraction assembly is provided on the upper side wall of the housing, a second magnetic attraction assembly is provided on the lower side wall of the housing, a third magnetic attraction assembly is provided on the side wall of the cartridge, and a fourth magnetic attraction assembly is provided on the side wall of the e-liquid compartment. The first and third magnetic attraction assemblies are mutually attracted, as are the second and fourth magnetic attraction assemblies.
[0018] The lower part of the first seal is equipped with a bracket, the bracket is equipped with a second seal, the second seal has a first transfer channel and a second transfer channel, the lower part of the first liquid channel is connected to the first transfer channel, and the lower part of the first return gas channel is connected to the second transfer channel.
[0019] The upper part of the oil supply tank is provided with a third sealing plug. The third sealing plug is equipped with a third liquid channel and a third return gas channel. The bottom of the third liquid channel is lower than the bottom of the third return gas channel. The upper part of the third liquid channel is connected to the lower part of the first transfer channel. The third liquid channel, the first transfer channel and the first liquid channel together constitute the liquid outlet channel. The lower part of the second transfer channel is connected to the upper part of the third return gas channel. The first return gas channel, the second transfer channel and the third return gas channel together constitute the return gas channel.
[0020] The first seal is also equipped with a motor, and the motor shaft is inserted into the third liquid channel through the second seal. There is a gap between the shaft and the third liquid channel. The bottom of the shaft is connected to a rotating wheel. The cavity is located at the bottom of the oil supply chamber.
[0021] This application drives the rotating wheel to rotate, and the e-liquid in the supply chamber enters the vortex channel through the liquid inlet channel, and then enters the storage chamber through the liquid outlet channel. The air in the storage chamber enters the supply chamber through the air return channel, which can ensure the air pressure balance in the supply chamber and the storage chamber, achieve dynamic balance, and avoid the difficulty of delivering the e-liquid in the supply chamber to the storage chamber. This effectively ensures that the e-liquid in the supply chamber is delivered to the storage chamber in a timely and effective manner, prevents negative pressure in the supply chamber, and prevents the atomizing component in the storage chamber from burning dry. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, 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 application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0023] Figure 1 This is an exploded perspective view of the atomizing device in an embodiment of this design;
[0024] Figure 2 This is a cross-sectional view of the atomizing device in an embodiment of this design.
[0025] Figure 3 This is a cross-sectional view of the atomizing device as a whole in an embodiment of this design;
[0026] Figure 4 This is an exploded perspective view of the infusion assembly in an embodiment of this design;
[0027] Figure 5 This is a cross-sectional view of the atomizing device in the second embodiment of this design.
[0028] Figure 6 This is an exploded perspective view of the cigarette cartridge in the second embodiment of this design.
[0029] Figure 7 An exploded perspective view of the smoke cartridge and fuel tank in the second embodiment of this design;
[0030] Figure 8 This is a perspective view of the second seal in the second embodiment of this design.
[0031] Explanation of icon numbers:
[0032]
[0033]
[0034] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0035] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0036] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0037] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0038] the following Figure 1-8This section will primarily describe the specific structure of the atomizing device. Please refer to the figure below. A stable liquid delivery atomizing device includes: a cartridge 1, an e-liquid chamber 2, and a power supply assembly 3. The cartridge 1 is mounted on the upper part of the e-liquid chamber 2 and is made of plastic. The power supply assembly 3 includes a housing 31, which can be made of plastic or metal, such as stainless steel. Inside the housing 31 are a battery 32, a circuit board 33, a microphone 34, and an air intake channel 35. The battery 32 is connected to the circuit board 33, and the microphone 34... A first magnetic component 36 is provided on the upper side wall of the connecting circuit board 33, a second magnetic component 37 is provided on the lower side wall of the housing 31, a third magnetic component (unlabeled) is provided on the side wall of the cartridge 1, and a fourth magnetic component (unlabeled) is provided on the side wall of the e-liquid tank 2. The first and third magnetic components 36 and 37 are mutually attracted to each other, facilitating the assembly and disassembly of the cartridge, e-liquid tank, and housing. The first, second, and fourth magnetic components 36, 37, 3, and 4 can all be made of magnets. The e-liquid tank 2 contains a large amount of e-liquid, such as 10 ml, 15 ml, or 20 ml. A small amount of e-liquid can be reserved in the cartridge 1 to prevent dry burning.
[0039] A stable liquid delivery atomizing device includes: a cartridge 1 having an oil storage tank 12; an oil supply tank 2 containing e-liquid; a liquid delivery assembly including an inlet channel and an outlet channel, the inlet channel connecting to the oil supply tank 2, the outlet channel connecting to the oil storage tank 12, the inlet channel and the outlet channel being connected by a cavity 24, the cavity 24 containing a rotating wheel 25, the side wall of the rotating wheel 25 having a swirling channel 251; and a return air channel connecting the oil storage tank 12 and the oil supply tank 2.
[0040] The rotating wheel 25 is driven to rotate, and the e-liquid in the supply chamber 2 enters the vortex channel 251 through the liquid inlet channel, and then enters the storage chamber 12 through the liquid outlet channel. The air in the storage chamber 12 enters the supply chamber 2 through the air return channel, which can ensure the air pressure balance in the supply chamber 2 and the storage chamber 12, effectively ensuring that the e-liquid in the supply chamber 2 is delivered to the storage chamber 12 in a timely and effective manner, preventing negative pressure in the supply chamber 2, achieving dynamic balance, avoiding difficulty in delivering the e-liquid in the supply chamber 2 to the storage chamber 12, and preventing the atomizing component in the storage chamber 12 from burning dry.
[0041] Viewed vertically, the top of the liquid outlet channel in the oil storage tank 12 is lower than the top of the return air channel in the oil storage tank 12, which facilitates the outflow of e-liquid in the liquid outlet channel and the discharge of gas in the oil storage tank 12. It also facilitates the entry of gas in the oil storage tank 12 into the return air channel. If there is too much e-liquid in the oil storage tank 12, the e-liquid in the oil storage tank 12 can also flow into the oil supply tank 2 through the return air channel.
[0042] This design has two embodiments, which will be described separately. Embodiment 1 will be introduced first.
[0043] The upper part of the cartridge 1 is provided with a mouthpiece 11, and the lower opening of the cartridge 1 is equipped with a first sealing element 13. The first sealing element 13 has a first air inlet 133. An atomizing channel 14 is provided between the first air inlet 133 and the mouthpiece. An atomizing component 15 is installed in the atomizing channel 14. An oil inlet 141 is provided on the side wall of the atomizing channel 14, and the oil inlet 141 is connected to the oil storage tank 12. The first sealing element 13 is also provided with a first liquid channel 131 and a first air return channel 132. The first liquid channel 131 and the first air return channel 132 are independent of each other. The top of the first liquid channel 131 is lower than that of the first air return channel 132. At the top, a first liquid channel 131 is formed in the first seal 13, and a first return air channel 132 protrudes from the upper surface of the first seal 13. The top of the first liquid channel 131 is lower than the height of the oil inlet 141, and the top of the first return air channel 132 is higher than the height of the oil inlet 141. In other designs, the top of the first liquid channel 131 can also be higher than the height of the oil inlet 141 to facilitate the outflow of e-liquid and to facilitate the direct entry of the outflowing e-liquid into the oil inlet 141, avoiding backflow into the first liquid channel 131. Furthermore, the inner wall of the cartridge 1, the upper part of the first seal 13, and the outer wall of the atomizing channel 14 form an oil storage chamber 12. The air intake channel 35 of the power assembly 3 is connected to the first air intake 133, the sensing end of the microphone 34 is connected to the air intake channel 35, and the battery 32 is installed in the power assembly 3.
[0044] The oil supply chamber 2, also known as the oil bottle, is made of plastic or glass. A second sealing plug 21, made of silicone, is installed at the top of the oil supply chamber 2. The second sealing plug 21 is equipped with a second liquid channel 22 and a second return air channel 23. The second liquid channel 22 is a plastic or metal tube, and the second return air channel 23 is a plastic tube. The bottom of the second liquid channel 22 is lower than the bottom of the second return air channel 23, facilitating the entry of e-liquid into the second liquid channel 22 and the entry of gas into the oil supply chamber 2 through the second return air channel 23. The upper part of the second liquid channel 22 connects to the lower part of the first liquid channel 131. The second liquid channel 22 and the first liquid channel 131 together form the liquid outlet channel. The lower part of the first return air channel 132 connects to the upper part of the second return air channel 23. The first return air channel 132 and the second return air channel 23 together form the return air channel. In this design, there are two return air channels, located on either side of the liquid outlet channel, or there may be only one return air channel.
[0045] The cavity 24 is located at the bottom of the oil supply chamber 2. The cavity 24 has an oil inlet 241 and an oil outlet 242. The rotating wheel 25 is located between the oil inlet 241 and the oil outlet 242. The oil inlet 241 is connected to the liquid inlet channel, and the oil outlet 242 is connected to the bottom of the second liquid channel 22. This allows for the full utilization of the e-liquid in the oil supply chamber 2, minimizing waste. The liquid inlet channel includes the oil inlet 241 and an unlabeled hole located above the oil inlet 241.
[0046] A rotating shaft 26 is provided on the side wall of the oil supply tank 2. One end of the rotating shaft 26 is fixed to the rotating wheel 25, and the other end of the rotating wheel 25 is fixed to a motor 4. The swirling channel 251 is spirally arranged along the side wall of the rotating wheel 25. The rotating shaft 26 can rotate and protrudes from the outside of the oil supply tank 2 to facilitate the connection of the external motor 4. The cavity 24 is horizontally arranged, and the rotating wheel 25 is horizontally arranged. There is a gap between the rotating wheel 25 and the inner side wall of the cavity 24 to facilitate the rotation of the rotating wheel 25 within the cavity 24.
[0047] In terms of circuitry: Battery 32 provides power to circuit board 33, circuit board 33 is connected to motor 4, circuit board 33 controls motor 4 to rotate, motor 4 rotates and drives rotating shaft 26 to rotate, rotating shaft 26 drives rotating wheel 25 to rotate, circuit board 33 controls the atomizing components 15 to be connected by wires or by a combination of spring pins and wires, circuit board 33 controls the power of atomizing components 15.
[0048] Regarding the oil supply system: E-liquid from the supply tank 2 enters the cavity 24 through the inlet 241 on the right side and flows into the vortex channel 251. Alternatively, the rotating wheel 25 carries the e-liquid into the vortex channel 251. As the rotating wheel 25 rotates, the e-liquid flows within the vortex channel 251 and exits from the outlet 242 on the left side. The e-liquid continuously enters the vortex channel 251. After reaching the outlet 242, the e-liquid enters through the bottom of the second liquid channel 22. Driven by the power, the e-liquid moves upward to the top of the first liquid channel 131 and then flows into the oil storage tank 12. The e-liquid in the oil storage tank 12 enters the atomizing assembly 15 through the inlet 141 and is heated into a gaseous state by the atomizing assembly 15. The atomizing assembly 15 includes wicking cotton and a heating wire. The wicking cotton absorbs the e-liquid, and the heating wire, when energized, heats the e-liquid absorbed by the wicking cotton, turning it into vapor. E-liquid enters the oil storage chamber 12, and the air in the oil storage chamber 12 enters the oil supply chamber 2 through the first return air duct 132 and the second return air duct 23, so that the air pressure in the oil storage chamber 12 and the oil supply chamber 2 is kept balanced.
[0049] Regarding the airflow path: Outside air flows in through the air intake channel 35, then enters the first air intake hole 133. The air continues to flow upward, entering the atomization channel 14. After flowing through the atomization component 15, it carries the smoke upward and flows out from the mouthpiece. When the air enters the air intake channel 35, it causes a change in air pressure at the microphone 34. The sensor end of the microphone 34 senses the change in air pressure in the air intake channel 35, and the microphone 34 is triggered. The microphone 34 sends an electrical signal to the circuit board 33. The circuit board 33 notifies the battery 32 to supply power to the atomization component 15. At the same time, the circuit board 33 also notifies the battery 32 to supply power to the motor 4, and the motor starts to rotate.
[0050] The following is a second embodiment of this design, which is based on the same principle as the first embodiment, with simple structural adjustments. A brief introduction is given below.
[0051] Inside the cartridge 1, a bracket 17 is installed at the lower part of the first sealing member 13, and a second sealing member 18 is installed on the bracket 17. The second sealing member 18 has a first transition channel 181 and a second transition channel 182. The lower part of the first liquid channel 131 is connected to the first transition channel 181, and the lower part of the first return air channel 132 is connected to the second transition channel 182. The cartridge 1 includes a first sealing member 13, which is also provided with a first liquid channel 131 and a first return air channel 132. The first liquid channel 131 and the first return air channel 132 are independent of each other. The top of the first liquid channel 131 is lower than the top of the first return air channel 132. The cartridge 1 also includes an atomizing channel 14, which is equipped with an atomizing component 15. An oil inlet hole 141 is opened on the side wall of the atomizing channel 14.
[0052] The upper part of the oil supply tank 2 is provided with a third sealing plug 27. The third sealing plug 27 is equipped with a third liquid channel 271 and a third gas return channel 273. The bottom of the third liquid channel 271 is lower than the bottom of the third gas return channel 273. The upper part of the third liquid channel 271 is connected to the lower part of the first transfer channel 181. The third liquid channel 271, the first transfer channel 181 and the first liquid channel 131 together constitute the liquid outlet channel. The lower part of the second transfer channel 182 is connected to the upper part of the third gas return channel 273. The first gas return channel 132, the second transfer channel 182 and the third gas return channel 273 together constitute the gas return channel.
[0053] The first sealing element 13 is also equipped with a motor 4. The rotating shaft 272 of the motor 4 is inserted into the third liquid channel 271 through the second sealing element 18. There is a gap between the rotating shaft 272 and the third liquid channel 271. The cavity 24 is vertically arranged and located at the bottom of the oil supply chamber 2. The second sealing element 18 can seal the rotating shaft 272 to prevent e-liquid from passing through. The e-liquid flows through the gap between the rotating shaft 272 and the third liquid channel 271. The bottom of the rotating shaft 272 of the motor 4 is connected to a rotating wheel 25, which allows the motor 4 to drive the rotating wheel 25 to rotate.
[0054] Regarding the oil circuit: E-liquid in the supply tank 2 enters the cavity 24 through the bottom inlet 241. The rotating wheel 25 carries the e-liquid into the vortex channel 251. The e-liquid flows in the vortex channel 251 and flows out from the top outlet 242. Then, it flows upward through the gap between the rotating shaft 272 and the third liquid channel 271, and flows out through the third liquid channel 271, the first transfer channel 181, and the first liquid channel 131, entering the oil storage tank 12. The e-liquid in the oil storage tank 12 enters the atomizing component 15 through the inlet 141 and is heated into a gaseous state by the atomizing component 15. The gas in the oil storage tank 12 enters the supply tank 2 through the first return air channel 132, the second transfer channel 182, and the third return air channel 273.
[0055] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the inventive concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.
Claims
1. A nebulizer device for stabilizing an infusion solution, characterized in that The application relates to a cigarette cartridge and a supply cartridge. The cigarette cartridge comprises a storage tank, a supply tank, a liquid inlet channel and a liquid outlet channel, a cavity, a rotating wheel, a spiral channel, a gas return channel and a rotating shaft. The supply tank is arranged on the upper part of the supply cartridge, the top of the liquid outlet channel in the storage tank is lower than the top of the gas return channel in the storage tank. The upper part of the cigarette cartridge is provided with a cigarette holder, the opening of the lower part of the cigarette cartridge is provided with a first sealing element, the first sealing element is provided with a first air inlet hole, an atomization channel is arranged between the first air inlet hole and the cigarette holder, an atomization assembly is arranged in the atomization channel, an oil inlet hole is arranged in the side wall of the atomization channel, the oil inlet hole is connected with the storage tank, the first sealing element is further provided with a first liquid channel and a first gas return channel, and the top of the first liquid channel is lower than the top of the first gas return channel. The upper part of the supply cartridge is provided with a second sealing plug, the second sealing plug is provided with a second liquid channel and a second gas return channel, the bottom of the second liquid channel is lower than the bottom of the second gas return channel, the upper part of the second liquid channel is connected with the lower part of the first liquid channel, the second liquid channel and the first liquid channel jointly form the liquid outlet channel, the lower part of the first gas return channel is connected with the upper part of the second gas return channel, and the first gas return channel and the second gas return channel jointly form the gas return channel. The cavity is arranged at the bottom of the supply cartridge, the cavity is provided with an oil inlet and an oil outlet, the rotating wheel is arranged between the oil inlet and the oil outlet, the oil inlet is connected with the liquid inlet channel, and the oil outlet is connected with the bottom of the second liquid channel.
2. The stable nebulizer of claim 1, wherein The side wall of the supply cartridge is provided with a rotating shaft, one end of the rotating shaft is fixed to the rotating wheel, the other end of the rotating shaft is fixed to a motor, and the spiral channel is arranged in a spiral shape along the side wall of the rotating wheel.
3. The stable nebulizer of claim 2, wherein The application further relates to a power supply assembly, the power supply assembly comprises a shell, a battery, a circuit board, a microphone, an air inlet channel and a first magnetic attraction assembly, the battery is connected with the circuit board, the microphone is connected with the circuit board, the air inlet channel is connected with the first air inlet hole, the sensing end of the microphone is connected with the air inlet channel, the battery is arranged in the power supply assembly, the first magnetic attraction assembly is arranged on the side wall of the upper part of the shell, a second magnetic attraction assembly is arranged on the side wall of the lower part of the shell, a third magnetic attraction assembly is arranged on the side wall of the cigarette cartridge, a fourth magnetic attraction assembly is arranged on the side wall of the supply cartridge, the first magnetic attraction assembly and the third magnetic attraction assembly are attracted to each other, and the second magnetic attraction assembly and the fourth magnetic attraction assembly are attracted to each other.
4. The stable nebulizer of claim 2, wherein The lower part of the first sealing element is provided with a support, the support is provided with a second sealing element, the second sealing element is provided with a first adapter channel and a second adapter channel, the lower part of the first liquid channel is connected with the first adapter channel, and the lower part of the first gas return channel is connected with the second adapter channel.
5. The stable nebulizer of claim 4, wherein 6. The stable nebulizer of claim 5, wherein 7. The stable nebulizer of claim 6, wherein 8. The stable nebulizer of claim 3, wherein 9. The stable nebulizer of claim 8, wherein The upper part of the oil supply bin is provided with a third sealing plug, the third sealing plug is provided with a third liquid channel and a third gas return channel, the bottom of the third liquid channel is lower than the bottom of the third gas return channel, the upper part of the third liquid channel is communicated with the lower part of the first adapter channel, the third liquid channel, the first adapter channel and the first liquid channel jointly constitute an outlet liquid channel, the lower part of the second adapter channel is communicated with the upper part of the third gas return channel, the first gas return channel, the second adapter channel and the third gas return channel jointly constitute a gas return channel.
10. The stable nebulizer of claim 9, wherein The first sealing member is further provided with a motor, the rotating shaft of the motor is inserted into the third liquid channel through the second sealing member, there is a gap between the rotating shaft and the third liquid channel, the bottom of the rotating shaft is connected with a rotating wheel, and the cavity is located at the bottom of the oil supply bin.