Electronic cigarette atomization core assembly capable of adjusting airflow
By designing multiple atomizing core modules and electronically controlled valves in the e-cigarette, airflow regulation is achieved, solving the problem that traditional e-cigarette atomizing cores cannot be adjusted, and providing a personalized smoking experience and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional e-cigarettes have simple, non-adjustable atomizing coil designs, making it difficult for users to obtain a personalized smoking experience.
The design incorporates multiple atomizing coil modules and power supply components, combined with airflow switching ducts and electronically controlled valves. Airflow can be adjusted via a control panel to switch between different smoking flavors, while ensuring that each atomizing coil module is powered independently.
Provides a personalized smoking experience, ensures the independent operation and stability of the atomizing core module, and improves user satisfaction.
Smart Images

Figure CN224055341U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an electronic cigarette, specifically to an electronic cigarette atomizing core assembly with adjustable airflow. Background Technology
[0002] In the e-cigarette industry, users are increasingly demanding higher standards in terms of taste, performance, and personalization. Traditional e-cigarettes typically consist of a battery, heating element, e-liquid reservoir, atomizer coil, and mouthpiece. Users inhale through the mouthpiece, and the heating element heats the e-liquid to produce vapor for the user to inhale. Early e-cigarettes had relatively simple atomizer coil designs, usually with only one coil that was not adjustable, making it difficult for users to obtain a personalized smoking experience. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an electronic cigarette atomizing core assembly with adjustable airflow to solve the problems existing in the background art.
[0004] The adjustable airflow electronic cigarette atomizing core assembly of this utility model is achieved through the following technical solution, including multiple atomizing core modules and a power supply assembly disposed on the electronic cigarette shell, wherein a power supply socket is disposed below each atomizing core module, and e-liquid is disposed in the oil storage chamber inside the atomizing core module.
[0005] An end cap is provided on the top of the electronic cigarette casing. The end cap is provided with an atomizing core plug and a power plug, which limit the atomizing core module and the power component. An airflow switching pipe is provided on the end cap, and the air inlet of the airflow switching pipe corresponds to the atomization position of the atomizing core module. The air outlet of the airflow switching pipe is located on the top of the end cap.
[0006] As a preferred technical solution, the e-cigarette shell has atomizer core mounting positions on both sides, and the atomizer core module is located in the atomizer core mounting positions;
[0007] The electronic cigarette casing has battery cavities at both ends, and the power supply components are located inside the battery cavities. Each power supply component provides power to the power supply socket of the corresponding atomizing core module.
[0008] As a preferred technical solution, both ends of the air inlet of the airflow switching pipe are equipped with electrically controlled valves, and the airflow switching and mixing are realized by switching the electrically controlled valves.
[0009] The end cap has a filter cotton at the atomizing core plug, which filters the smoke atomized by the atomizing core module.
[0010] As a preferred technical solution, the atomizing core module is composed of an outer shell, a first inner tube, and a second inner tube;
[0011] Furthermore, an oil storage chamber is formed between the outer shell and the first inner tube, an oil suction chamber is formed between the first inner tube and the second inner tube, and an atomizing chamber is provided inside the second inner tube;
[0012] The oil absorption chamber is equipped with oil-absorbing cotton, and a connecting hole is provided between the oil storage chamber and the oil absorption chamber. The oil guide rod absorbs the e-liquid in the oil storage chamber through the connecting hole.
[0013] The atomizing chamber is equipped with oil-guiding cotton, which passes through the second inner tube and comes into contact with the oil-absorbing cotton, so that the e-liquid is placed inside the atomizing chamber.
[0014] As a preferred technical solution, a heating wire is arranged around the oil-wicking cotton, and the heating wire is connected to the power supply terminal of the corresponding power supply socket.
[0015] As a preferred technical solution, the electronic cigarette casing has a control panel on the front, and the control panel has a main control switch and a secondary control switch; the secondary control switch controls the operation of the corresponding power supply socket and electronic control valve.
[0016] The beneficial effects of this utility model are:
[0017] This invention allows users to adjust the flavor of the electronic cigarette through airflow switching pipes and electronically controlled valves, providing different smoking experiences. Each atomizing core module has an independent power supply socket, powered by a corresponding power supply component, ensuring the independent operation and stability of each atomizing core module. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model 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 utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0020] Figure 2 This is a cross-sectional structural diagram of the present invention;
[0021] Figure 3 This is a schematic diagram of the exploded structure of this utility model;
[0022] Figure 4 This is a cross-sectional schematic diagram of the present invention;
[0023] Explanation of reference numerals in the attached figures:
[0024] 1. Electronic cigarette shell; 2. Atomizer core module; 3. Power supply assembly; 4. Power supply socket; 5. End cap; 6. Atomizer core plug; 7. Power plug; 8. Airflow switching pipe; 9. Electronic control valve; 10. Atomizer core mounting position; 11. Battery chamber; 12. Filter cotton; 13. Outer shell; 14. First inner tube; 15. Second inner tube; 16. Oil suction chamber; 17. Atomizing chamber; 18. Oil storage chamber; 19. Connecting hole; 20. Oil-absorbing cotton; 21. Oil guide rod; 22. Heating wire; 23. Control panel; 24. Main control switch; 25. Secondary control switch. Detailed Implementation
[0025] All features disclosed in this specification, or all steps in all disclosed methods or processes, may be combined in any way, except for mutually exclusive features and / or steps.
[0026] like Figures 1-4 As shown, the present invention provides an adjustable airflow electronic cigarette atomizing core assembly, comprising a plurality of atomizing core modules 2 disposed on an electronic cigarette housing 1 and a power supply assembly 3, characterized in that: a power supply base 4 is disposed below each of the atomizing core modules 2, and e-liquid is disposed in an oil storage chamber 18 inside the atomizing core module 2.
[0027] An end cap 5 is provided on the top of the electronic cigarette housing 1. An atomizing core plug 6 and a power plug 7 are provided on the end cap 5. The atomizing core module 2 and the power component 3 are limited by the atomizing core plug 6 and the power plug 7. An airflow switching pipe 8 is provided on the end cap 5, and the air inlet of the airflow switching pipe 8 corresponds to the atomization position of the atomizing core module 2. The air outlet of the airflow switching pipe 8 is located above the end cap 5.
[0028] For ease of installation, in this embodiment, atomizer core mounting positions 10 are provided on both sides of the inside of the electronic cigarette housing 1, and the atomizer core module 2 is disposed within the atomizer core mounting positions 10;
[0029] The electronic cigarette housing 1 has battery chambers 11 at both ends, and power supply components 3 are located inside the battery chambers 11. Each power supply component 3 provides power to the power supply socket 4 of the corresponding atomizing core module 2.
[0030] Among them, both ends of the air inlet of the airflow switching pipe 8 are equipped with electrically controlled valves 9, and the airflow switching and mixing are realized by opening and closing the electrically controlled valves 9;
[0031] The end cap 5 has a filter cotton 12 at the atomizing core plug 6, which filters the smoke atomized by the atomizing core module 2.
[0032] The atomizing core module 2 is composed of an outer shell 13, a first inner tube 14, and a second inner tube 15.
[0033] Furthermore, an oil storage chamber 18 is formed between the outer shell 13 and the first inner tube 14, an oil suction chamber 16 is formed between the first inner tube 14 and the second inner tube 15, and an atomizing chamber 17 is provided inside the second inner tube 15.
[0034] The oil absorption chamber 16 is provided with oil-absorbing cotton 20, and a connecting hole 19 is provided between the oil storage chamber 18 and the oil absorption chamber 16. The oil guide rod 21 absorbs the e-oil in the oil storage chamber 18 through the connecting hole 19.
[0035] The atomizing chamber 17 is provided with oil-guiding cotton, which passes through the second inner tube 15 and contacts the oil-absorbing cotton 20, so that the e-liquid is placed in the atomizing chamber 17.
[0036] In order to achieve the atomization of e-liquid, in this embodiment, a heating wire 22 is arranged around the oil-guiding cotton, and the heating wire 22 is connected to the power supply terminal of the corresponding power supply base 4.
[0037] For ease of adjustment and control, in this embodiment, a control panel 23 is provided on the front of the electronic cigarette housing 1, and a main control switch 24 and a secondary control switch 25 are provided on the control panel 23; the secondary control switch 25 controls the operation of the corresponding power supply socket 4 and the electronic control valve 9.
[0038] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any changes or substitutions conceived without inventive effort should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope defined in the claims.
Claims
1. An electronic cigarette atomization core assembly capable of adjusting airflow, comprising a plurality of atomization core modules (2) arranged on an electronic cigarette shell (1) and a power supply assembly (3), characterized in that: The lower part of the atomization core module (2) is provided with a power supply seat (4), and the tobacco tar is arranged in the oil storage cavity (18) in the atomization core module (2); The upper part of the electronic cigarette shell (1) is provided with an end cover (5), the end cover (5) is provided with an atomization core plug (6) and a power supply plug (7), the atomization core module (2) and the power supply assembly (3) are limited by the atomization core plug (6) and the power supply plug (7); the airflow switching pipeline (8) is arranged on the end cover (5), and the air inlet end of the airflow switching pipeline (8) corresponds to the atomization position of the atomization core module (2); the air outlet end of the airflow switching pipeline (8) is arranged above the end cover (5).
2. The adjustable airflow e-cig atomizer core assembly of claim 1, wherein: The inside of the electronic cigarette shell (1) is provided with an atomization core mounting position (10) on both sides, and the atomization core module (2) is arranged in the atomization core mounting position (10); The inside of the electronic cigarette shell (1) is provided with a battery cavity (11) at both ends, and the power supply assembly (3) is arranged in the battery cavity (11), and each power supply assembly (3) separately supplies power to the power supply seat (4) of the corresponding atomization core module (2).
3. The adjustable airflow e-cig atomizer core assembly of claim 1, wherein: The air inlet ends of the airflow switching pipeline (8) are provided with electric control valves (9), and the switching and mixing of the airflow are realized by the opening and closing of the electric control valves (9); The atomization core plug (6) of the end cover (5) is provided with filter cotton (12), and the smoke atomized by the atomization core module (2) is filtered by the filter cotton (12).
4. The adjustable airflow e-cig atomizer core assembly of claim 1, wherein: The atomization core module (2) is composed of an outer shell (13), a first inner tube (14) and a second inner tube (15); The oil storage cavity (18) is formed between the outer shell (13) and the first inner tube (14), the oil absorption cavity (16) is formed between the first inner tube (14) and the second inner tube (15), and the atomization cavity (17) is arranged in the second inner tube (15); The oil absorption cavity (16) is provided with oil absorption cotton (20), and the oil storage cavity (18) and the oil absorption cavity (16) are provided with a communication hole (19), and the oil guide rod (21) adsorbs the tobacco tar in the oil storage cavity (18) through the communication hole (19); The oil absorption cotton (20) is arranged in the atomization cavity (17), and the oil absorption cotton (20) passes through the second inner tube (15) and contacts the oil absorption cotton (20), so that the tobacco tar is arranged in the atomization cavity (17).
5. The adjustable airflow e-cig atomizer core assembly of claim 4, wherein: The heating wire (22) is arranged on the oil absorption cotton, and the heating wire (22) is connected with the power supply end of the corresponding power supply seat (4).
6. The adjustable airflow e-cig atomizer core assembly of claim 1, wherein: The front of the electronic cigarette shell (1) is provided with a control panel (23), and the control panel (23) is provided with a main control switch (24) and a sub-control switch (25); the sub-control switch (25) controls the working of the corresponding power supply seat (4) and the electric control valve (9).