Leakage-proof electronic atomizer atomizing bomb

The sealed design of the atomizing chamber and atomizing chamber support assembly solves the problems of leakage and uneven atomization in electronic atomizers, achieving sealing and convenient replacement, and improving user experience and atomization efficiency.

CN224140186UActive Publication Date: 2026-04-21GUANGDONG YUERAN BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG YUERAN BIOTECHNOLOGY CO LTD
Filing Date
2025-05-12
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Traditional electronic atomizers suffer from problems such as leakage, uneven atomization, and inconvenience in carrying, which affect the user experience.

Method used

The atomizing chamber and atomizing chamber support assembly, upper sealing silicone, atomizing body silicone and other components are combined to form an independent sealing structure to prevent atomizing liquid leakage, and the atomizing cartridge design enables quick replacement.

Benefits of technology

It effectively prevents atomizing liquid leakage, enhances user experience, ensures cleanliness and convenience, and improves atomization efficiency and smoke quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electronic atomizer atomization bomb capable of preventing liquid leakage. The electronic atomizer atomization bomb comprises an atomization bin, an atomization bin support assembly, a liquid storage assembly and an atomization body assembly. The liquid storage assembly is connected with the atomization body assembly; the atomization body assembly is connected with the atomization bin support assembly. The atomization bin support assembly is connected with the atomization bin. The liquid storage assembly and the atomization body assembly are arranged in the atomization bin. The atomizing bin is used for storing atomized liquid and is matched with the atomizing bin support assembly to form a sealing structure capable of independently storing the atomized liquid. The atomization bin and the atomization bin support assembly are matched to form the atomization bomb, and the problem of leakage of atomization liquid in the storage and atomization process is effectively solved. The atomization bin and the atomization bin support assembly are matched to form the atomization bomb, after the atomization liquid in the atomization bomb is used up, a user can directly disassemble the old atomization bomb and replace the old atomization bomb with the new atomization bomb, the user does not need to spend a large amount of time to fill the atomization liquid, the overall cleanliness is guaranteed, and the user experience is improved.
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Description

Technical Field

[0001] This application relates to the field of medical device technology, and more particularly to a leak-proof electronic nebulizer nebulizer cartridge. Background Technology

[0002] With the continuous development of the e-cigarette market, consumers are placing higher demands on the safety and convenience of e-cigarette products. In response to the diversification of consumer needs, e-cigarettes, as a new type of e-cigarette product, are gradually emerging in the market. E-cigarettes produce vapor by heating e-liquid for user consumption, offering lower health risks and a wider range of flavor options.

[0003] However, the performance and user experience of e-cigarettes largely depend on the design of their internal structure. Traditional e-cigarettes often suffer from problems such as leakage, uneven atomization, and inconvenience in carrying, which seriously affect the user experience. Utility Model Content

[0004] This application provides a leak-proof electronic atomizer cartridge, including: an atomizing chamber, an atomizing chamber support assembly, a liquid storage assembly, and an atomizing body assembly;

[0005] The liquid storage component is connected to the atomizing body component;

[0006] The atomizing body assembly is connected to the atomizing chamber support assembly;

[0007] The atomizing chamber support assembly is connected to the atomizing chamber;

[0008] The liquid storage component and the atomizing body component are disposed inside the atomizing chamber;

[0009] The atomizing chamber is used to store atomizing liquid, and together with the atomizing chamber support assembly, it forms a sealed structure that can independently store atomizing liquid.

[0010] Optionally, the atomizing chamber support assembly includes: a metal bottom ring, a PCB board, absorbent cotton, and an atomizing chamber support;

[0011] The absorbent cotton is disposed on one side of the atomizing chamber support;

[0012] The PCB board is disposed inside the hardware bottom ring and connected to the absorbent cotton.

[0013] The metal bottom ring is connected to the atomizing chamber bracket, and the atomizing chamber bracket is connected to the atomizing chamber.

[0014] Optionally, the liquid storage assembly includes: an upper sealing silicone, a metal tube, and a liquid storage component;

[0015] One end of the hardware tube is sealed to the upper sealing silicone, the liquid storage component is disposed in the hardware tube, and the atomizing body assembly is placed in the liquid storage component.

[0016] Optionally, the atomizing body assembly includes: an atomizing body and atomizing body silicone;

[0017] The atomizing body is disposed in the liquid storage component, and the silica gel of the atomizing body is connected to the atomizing body.

[0018] Optionally, one end of the atomizing body is disposed in the liquid storage component, and the other end is connected to the PCB board. The PCB board controls the heating of the atomizing body through an internal control circuit.

[0019] Optionally, the atomizing chamber is provided with a groove, and the atomizing chamber bracket is provided with a buckle. The atomizing chamber bracket is fixedly connected to the atomizing chamber by being fastened into the groove through the buckle.

[0020] Optionally, the atomizing chamber is used to store atomizing liquid. The atomizing chamber, together with the upper sealing silicone, the atomizing body silicone, and the atomizing chamber bracket, forms a sealed structure for storing the atomizing liquid and preventing leakage of the atomizing liquid.

[0021] Optionally, the hardware tube is provided with a through hole, through which the atomizing liquid in the atomizing chamber flows into the liquid storage component, and the liquid storage component is used to store the atomizing liquid to be atomized.

[0022] Optionally, the atomizing chamber is provided with an air outlet, which is used to deliver the atomized smoke to the user.

[0023] Optionally, the PCB board is provided with electrode plates for connecting to external host components and connecting to power.

[0024] As can be seen from the above technical solutions, this application has the following advantages:

[0025] 1. Through the cooperation of components such as the atomizing chamber, atomizing chamber support assembly, upper sealing silicone, and atomizing body silicone, an independent atomizing liquid storage space with excellent sealing performance is formed, which effectively prevents the atomizing liquid from leaking in high-pressure environments.

[0026] 2. The atomizing chamber and the atomizing chamber support assembly work together to form an atomizing cartridge. After the atomizing liquid in the cartridge is used up, the user can directly remove the old atomizing cartridge and replace it with a new one. This eliminates the need for users to spend a lot of time refilling the atomizing liquid, ensures overall cleanliness, and improves the user experience. Attached Figure Description

[0027] Figure 1A schematic diagram of the overall structure of a leak-proof electronic atomizer atomizing bullet provided in this application;

[0028] Figure 2 This is a schematic diagram of the atomizing chamber support structure provided in this application;

[0029] Figure 3 This is a schematic diagram of the liquid storage component structure provided in this application;

[0030] Figure 4 This is a schematic diagram of the atomizer component structure provided in this application;

[0031] Figure 5 This is a schematic diagram of the atomizing chamber structure provided in this application;

[0032] Figure 6 This is a schematic diagram of the atomizing chamber support structure provided in this application. Detailed Implementation

[0033] To address the aforementioned technical problems, this application provides a leak-proof electronic nebulizer cartridge for use in the field of medical device technology. Through the cooperation of the nebulizer chamber, nebulizer chamber support assembly, upper sealing silicone, and nebulizer body silicone, an independent, highly sealed nebulizer fluid storage space is formed, effectively preventing leakage of the nebulizer fluid in high-pressure environments. The nebulizer chamber and nebulizer chamber support assembly together form the nebulizer cartridge. After the nebulizer fluid in the cartridge is used up, the user can directly remove the old cartridge and replace it with a new one, eliminating the need for extensive refilling and ensuring overall cleanliness, thus improving the user experience.

[0034] In this application, the terms "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and other terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only used to describe the relative positional relationship between the components or parts and do not specifically limit the specific installation orientation of each component or part.

[0035] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0036] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0037] Furthermore, the structures, proportions, sizes, etc., drawn in the accompanying drawings of this application are only used to complement the content disclosed in the specification for those skilled in the art to understand and read, and are not intended to limit the conditions under which this application can be implemented. Therefore, they have no substantial technical significance. Any modification to the structure, change in the proportional relationship, or adjustment of the size, without affecting the effects and purposes that this application can produce, should still fall within the scope of the technical content disclosed in this application.

[0038] The technical solutions of this application will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0039] Please see Figures 1 to 6 This application provides a leak-proof electronic atomizer cartridge, including: an atomizing chamber 01, an atomizing chamber support assembly 02, a liquid storage assembly 03, and an atomizing body assembly 04;

[0040] The liquid storage component 03 is connected to the atomizing body component 04;

[0041] The atomizing body assembly 04 is connected to the atomizing chamber support assembly 02;

[0042] The atomizing chamber support assembly 02 is connected to the atomizing chamber 01;

[0043] The liquid storage component 03 and the atomizing body component 04 are disposed inside the atomizing chamber;

[0044] The atomizing chamber 01 is used to store atomizing liquid, and together with the atomizing chamber support assembly 02, it forms a sealed structure that can independently store atomizing liquid.

[0045] The atomizing chamber 01 is the main component for storing the atomizing liquid. Through a tight fit with the atomizing chamber support assembly 02, it forms a sealed structure capable of independently storing the atomizing liquid (hereinafter referred to as the atomizing cartridge). The atomizing cartridge provided in this application effectively prevents leakage of the atomizing liquid during storage. The liquid storage assembly 03 is tightly connected to the atomizing body assembly 04. The atomizing liquid in the liquid storage assembly 03 is transported to the atomizing body assembly 04 through its internal structure. The atomizing body assembly 04 is used to atomize the atomizing liquid and assist in maintaining the sealing of the atomizing cartridge. The bottom of the atomizing chamber support assembly 02 is provided with a power connection for connecting to an external power source. When the external power source is connected to the atomizing cartridge, power is supplied through the atomizing chamber support assembly 02, energizing the control circuit on the atomizing chamber support assembly 02. When the user uses the cartridge, the atomizing chamber support assembly 02 provides electrical energy to the atomizing body assembly 04 through the control circuit. The atomizing component 04 is heated by electrical energy, which heats the atomizing liquid inside the atomizing component 04 into smoke. The atomized liquid forms smoke and is transported to the atomizing chamber 01 through the channel between the atomizing component 04 and the liquid storage component 03. The smoke is then delivered to the user through the channel on the atomizing chamber 01.

[0046] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: The atomizing chamber 01 and the atomizing chamber support assembly 02 cooperate to form an atomizing cartridge, allowing the atomizing liquid to be stored within it. Due to the excellent airtightness of the atomizing cartridge, leakage of the atomizing liquid is prevented. The atomizing liquid can flow directly into the liquid storage assembly 03 within the atomizing cartridge. The liquid storage assembly 03 stores the atomizing liquid to be atomized, allowing it to be heated evenly and quickly by the atomizing body assembly 04 and transformed into fine vapor, ensuring a high-quality user experience. Because the atomizing cartridge is an independent product, it can be completely replaced after use. The new atomizing cartridge is directly installed into the electronic atomizer host, achieving a quick replacement effect, simplifying user operation, saving time on adding atomizing liquid, and improving convenience.

[0047] In an optional embodiment, the atomizing chamber support assembly 02 includes: a metal bottom ring 021, a PCB board 022, absorbent cotton 023, and an atomizing chamber support 024;

[0048] The absorbent cotton 023 is disposed on one side of the atomizing chamber support 024;

[0049] The PCB board 022 is disposed inside the hardware bottom ring 021 and connected to the absorbent cotton 023;

[0050] The metal bottom ring 021 is connected to the atomizing chamber bracket 024, and the atomizing chamber bracket 024 is connected to the atomizing chamber 01.

[0051] The metal base ring 021 provides a mounting reference for fixing other components. The PCB board 022 houses the control circuit, which receives external power and supplies power to the atomizer assembly 04. The absorbent cotton 023, made of oleophilic microfiber non-woven fabric, absorbs any leaked atomizing liquid and condensate produced after atomization, ensuring the cleanliness of the atomizing chamber 01. The atomizing chamber bracket 024 supports and secures the atomizing chamber 01, and connects to both the chamber and the metal base ring 021, ensuring the stability of the entire atomizing chamber bracket assembly 02. The atomizing chamber bracket assembly 02 contains a PCB board 022 for connecting to an external power source, which powers the control circuit. When in use, the control circuit on the PCB board 022 supplies power to the atomizer assembly 04. The atomizing component 04 is heated by electrical energy, which heats the atomizing liquid inside the atomizing component 04 into smoke. The atomized liquid forms smoke and is transported to the atomizing chamber 01 through the channel between the atomizing component 04 and the liquid storage component 03. The smoke is then delivered to the user through the channel on the atomizing chamber 01.

[0052] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: The metal base ring 021, as a structure, ensures the stability of the parts connected to the atomizing chamber bracket 024 during long-term use, reducing the risk of damage caused by vibration. The absorbent cotton 023 is used to quickly absorb condensate and leaked atomizing liquid after user use, improving product cleanliness and enhancing the user experience. The control circuit on the PCB board 022 can control the working state of the atomizing body assembly 04, ensuring the stability of the atomizing liquid during atomization.

[0053] In an optional embodiment, the liquid storage assembly 03 includes: an upper sealing silicone 031, a hardware tube 032, and a liquid storage component 033;

[0054] One end of the hardware tube 032 is sealed to the upper sealing silicone 031, the liquid storage component 033 is disposed in the hardware tube 032, and the atomizing body assembly 04 is placed in the liquid storage component 033.

[0055] The upper sealing silicone 031 is a sealant used to ensure the airtightness between the hardware tube 032 and the atomizing chamber 01, as well as other components, preventing leakage of the atomizing liquid. The hardware tube 032 is a hollow tubular structure used to house the liquid storage component 033. The liquid storage component 033 stores the atomizing liquid to be atomized and is typically made of a material with good oil absorption properties, such as sponge or fiber. The liquid storage component 033 can absorb and store a small amount of atomizing liquid and transport the excess liquid to the atomizing body assembly 04 for atomization into vapor. When the user uses the device, the control circuit on the PCB board 022 inside the atomizing chamber support assembly 02 provides electrical energy to the atomizing body assembly 04. The atomizing body assembly 04 is heated by the electrical energy, heating the atomizing liquid inside into vapor. The atomized liquid forms vapor, which is transported to the atomizing chamber 01 through the channel formed between the atomizing body assembly 04 and the hardware tube 032, and then delivered to the user through the channel on the atomizing chamber 01.

[0056] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: The sealed connection between the upper sealing silicone 031 and the hardware tube 032 ensures the stability of the atomizing liquid during storage and atomization, preventing leakage. This not only improves the safety of the electronic atomizer but also avoids equipment contamination and damage caused by leakage, extending the equipment's service life. The liquid storage component 033 is made of a material with good oil absorption properties, capable of absorbing and storing the atomizing liquid, ensuring a continuous and stable supply of atomizing liquid to the atomizing body assembly 04 during atomization, thereby improving atomization efficiency and vapor quality. The hardware tube 032, as the supporting structure for the liquid storage component 033 and the atomizing body assembly 04, provides high strength and stability, enabling the electronic atomizer to maintain structural integrity during long-term use and reducing the risk of damage caused by vibration or impact. Simultaneously, the design of the hardware tube 032 facilitates connection and fixation with other components, improving the overall stability of the equipment.

[0057] In an optional embodiment, the atomizer assembly 04 includes: an atomizer 041 and an atomizer silicone 042 or 042;

[0058] The atomizing body is disposed in the liquid storage component 033, and the atomizing body silicone 042 is connected to the atomizing body.

[0059] One end of the atomizing body 041 is disposed in the liquid storage component 033, and the other end is connected to the PCB board 022. The PCB board 022 controls the atomizing body 041 to be heated through an internal control circuit.

[0060] The atomizer 041 stores a portion of the atomizing liquid to be atomized. This liquid is delivered to the atomizer 041 via the liquid storage component 033. The atomizer 041 is responsible for converting the liquid into vapor. When current passes through it, the atomizer 041 rapidly heats up, heating the liquid. The atomizer silicone 042 is a soft, high-temperature resistant sealing material used to secure the atomizer 041 within the liquid storage component 033, preventing leakage of the atomizing liquid from the gap between the atomizer 041 and the liquid storage component 033. The atomizer 041 is placed within the liquid storage component 033, and the silicone 042 is tightly connected to it, ensuring that no leakage of the liquid in the atomizer 041 or the liquid storage component 033 occurs during atomization. When the user uses the device, the control circuit on the PCB board 022 within the atomizer chamber support assembly 02 provides power to the atomizer 041. The atomizer 041 is connected to the PCB board 022. When electrical energy flows through the control circuit of the PCB board 022, it provides power to the atomizer 041. Under the action of electrical energy, the atomizer 041 is heated, and the atomizing liquid in the atomizer 041 is heated into smoke. The atomized liquid forms smoke and is transported to the atomizing chamber 01 through the hardware tube 032. It is then delivered to the user through the channel on the atomizing chamber 01.

[0061] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: The atomizing body 041 is connected to the liquid storage component 033, allowing the atomizing liquid to be transported into the atomizing body 041 through the liquid storage component 033. The connection between the atomizing body 041 and the atomizing body silicone 042 ensures excellent airtightness between the liquid storage component 03 and the atomizing body component 04. The sealing effect of the atomizing body silicone 042 effectively prevents leakage of the atomizing liquid during the atomization process, ensuring the purity and stability of the smoke. By transporting the atomizing liquid into the atomizing body 041 through the liquid storage component 033 that encloses the atomizing body 041, the atomizing body 041 can uniformly heat the atomizing liquid, producing finer smoke particles and ensuring that the atomizing liquid can be heated and atomized efficiently and quickly. This design improves atomization efficiency, making the smoke production faster and finer, thereby enhancing the user experience.

[0062] In an optional embodiment, the atomizing chamber 01 is provided with a groove, and the atomizing chamber bracket 024 is provided with a buckle. The atomizing chamber bracket 024 is fixedly connected to the atomizing chamber 01 by being fastened into the groove through the buckle.

[0063] The atomizing chamber 01 is used to hold and atomize the liquid. A groove is provided on the inner wall of the atomizing chamber 01, which engages with a clip on the atomizing chamber bracket 024. The atomizing chamber bracket 024 is a structural component that supports and secures the atomizing chamber 01. Clips are provided on the atomizing chamber bracket 024 corresponding to the groove in the atomizing chamber 01. The clips are elastic, able to deform to fit the shape of the groove, and return to their original shape after deformation, thus firmly securing the atomizing chamber 01. The atomizing chamber 01 is placed in the predetermined position on the atomizing chamber bracket 024. During installation, align the groove on the atomizing chamber 01 with the clip on the atomizing chamber bracket 024. Push the atomizing chamber 01 into place forcefully, causing the clip to engage in the groove. The clip returns to its original shape after deformation, generating a certain locking force, firmly fixing the atomizing chamber 01 to the bracket. Once the clips are fully engaged in the groove, a secure connection is formed between the atomizing chamber 1 and the atomizing chamber bracket 024. This connection method is not only stable and reliable, but also easy to disassemble and replace.

[0064] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: the cooperation between the groove and the snap-fit ​​structure makes the connection between the atomizing chamber 01 and the atomizing chamber bracket 024 more secure and stable, effectively preventing the atomizing chamber 01 from loosening or falling off, and ensuring the overall performance and safety of the device. Compared with traditional screw fixing or adhesive fixing methods, the groove and snap-fit ​​structure makes the disassembly of the atomizing chamber 01 more convenient. The atomizing chamber 01 can be easily removed from the atomizing chamber bracket 024 without the use of tools, making equipment maintenance more convenient.

[0065] In an optional embodiment, the atomizing chamber 01 is used to store atomizing liquid. The atomizing chamber 01, together with the upper sealing silicone 031, the atomizing body silicone 042 and the atomizing chamber bracket 024, forms a sealed structure for storing atomizing liquid and preventing leakage of atomizing liquid.

[0066] The atomizing chamber 01 is placed on the atomizing chamber bracket 024 and fixedly connected to the bracket 024 via a specific snap-fit ​​connection. The upper sealing silicone 031 is installed inside the atomizing chamber 01 and tightly connected to the mouthpiece. The atomizing body silicone 042 is connected to the atomizing body and tightly wraps around the atomizing body 041. Together with the atomizing chamber 01 and the bracket 024, they form a complete sealed structure for storing the atomizing liquid and preventing leakage. The atomizing liquid is stored in the atomizing chamber 01 and flows into the atomizing body 041 through the liquid storage component 033 for heating. After heating, it is atomized into mist for the user. During normal use, the sealing structure effectively prevents the atomizing liquid from leaking out of the atomizing chamber 01 due to changes in air pressure.

[0067] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: The atomizing chamber 01, through the tight fit between the upper sealing silicone 031, the atomizing body silicone 042, and the atomizing chamber bracket 024, forms a highly efficient sealing structure, effectively preventing leakage of the atomizing liquid from the atomizing chamber 01 and its connecting parts. This reduces equipment damage caused by atomizing liquid leakage and improves the user experience. The sealing structure not only prevents the leakage of atomizing liquid but also ensures the stability of the internal environment of the atomizing chamber 01, helping to maintain the quality of the atomizing liquid and avoiding deterioration or quality degradation of the atomizing liquid due to interference from external environmental factors. The reliable sealing structure ensures that the atomizing liquid is continuously delivered to the atomizing body 041 through the siphon effect during the atomization process, avoiding poor atomization effect or decreased user experience due to insufficient or interrupted atomizing liquid.

[0068] In an optional embodiment, the hardware tube 032 is provided with a through hole, through which the atomizing liquid in the atomizing chamber 01 flows into the liquid storage component 033, which is used to store the atomizing liquid to be atomized.

[0069] The hardware tube 032 serves as a structural component, and through holes are specifically provided on it. These through holes act as channels, allowing liquid to flow into the liquid storage component 033. When the atomizing liquid in the atomizing chamber 01 reaches a certain pressure and level, it flows into the liquid storage component 033 through these through holes via a siphon effect. The main function of the liquid storage component 033 is to store the atomizing liquid to be atomized. Once the atomizing liquid flows into the liquid storage component 033 through the through holes, it is temporarily stored there, awaiting the subsequent atomization process. During this process, the liquid storage component 033 acts as a buffer and storage unit, ensuring a continuous and stable supply of atomizing liquid during atomization.

[0070] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: By providing through holes on the hardware tube 032, the atomizing liquid can flow more directly and efficiently from the atomizing chamber 01 into the liquid storage component 033, reducing resistance and loss during the atomizing liquid transmission process, ensuring the continuity and stability of the atomizing liquid transmission, thereby improving the efficiency of the entire atomization process. The direct flow of the atomizing liquid into the liquid storage component 033 through the through holes makes the filling process of the liquid storage component 033 simpler and faster. The fit between the hardware tube 032 and the liquid storage component 033, as well as the design of the through holes, helps prevent leakage of the atomizing liquid during transmission, ensuring the safety and stability of the atomizing liquid during storage and transmission, and avoiding equipment damage caused by leakage.

[0071] In an optional embodiment, the atomizing chamber 01 is provided with an air outlet for delivering the atomized smoke to the user.

[0072] The PCB board 022 is provided with electrode plates for connecting to external host components and connecting to power.

[0073] PCB board 022 is one of the core components of the electronic atomizer, responsible for connecting the external power supply to the various electronic components inside the device. PCB board 022 connects to the external main unit via electrode plates, ensuring power is transmitted to the atomizing element. The circuit layout and component design on PCB board 022 ensure efficient and safe current transmission. After entering the device through the electrode plates, the current is transmitted to the atomizing element via the control circuit on PCB board 022. During atomization, the control circuit on PCB board 022 monitors and adjusts the power of the heating element to ensure stable and efficient atomization of the e-liquid into vapor. The atomizing cartridge connects to the power supply of the external main unit via the electrode plates on PCB board 022, providing power to the atomizing element 041. When the user uses the device, the control circuit on PCB board 022 within the atomizing chamber support assembly 02 provides power to the atomizing element 041. The atomizing body 041 is heated by electrical energy, which heats the atomizing liquid inside the atomizing body 041 into smoke. The atomized liquid forms smoke, which is transported to the atomizing chamber 01 through the channel formed between the atomizing body 041 and the hardware tube 032. The upper sealing silicone 031 and the air outlet are used to ensure that the smoke does not leak, and then it is delivered to the user through the air outlet on the atomizing chamber 01.

[0074] As can be seen from the above embodiments, the beneficial effects of this solution are as follows: The air outlet ensures that the atomized smoke can be smoothly and efficiently delivered to the user, providing a richer and more delicate smoke experience. The atomizer 041 and the electrode plate on the PCB board 022 work closely together to achieve control over the atomization of the atomizing liquid, improving the efficiency and stability of atomization. By integrating the electrode plate onto the PCB board 022, the need for additional connecting wires and components is reduced, making the entire device structure more compact and lightweight. This not only improves the portability of the device but also reduces production costs and assembly complexity. By precisely controlling the power and atomization efficiency of the atomizer 041, unnecessary energy consumption and atomizing liquid waste are reduced, meeting the requirements of modern society for environmental protection and energy conservation.

[0075] It should be noted that the above description of the disclosed embodiments enables those skilled in the art to implement or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A liquid leakage preventing electronic atomizer cartridge, characterized in that, include: Atomizing chamber, atomizing chamber support assembly, liquid storage assembly, and atomizing body assembly; The liquid storage component is connected to the atomizing body component; The atomizing body assembly is connected to the atomizing chamber support assembly; The atomizing chamber support assembly is connected to the atomizing chamber; The liquid storage component and the atomizing body component are disposed inside the atomizing chamber; The atomizing chamber is used to store atomizing liquid, and together with the atomizing chamber support assembly, it forms a sealed structure that can independently store atomizing liquid.

2. The leak-resistant electronic atomizer cartridge of claim 1, wherein, The atomizing chamber support assembly includes: a metal bottom ring, a PCB board, absorbent cotton, and an atomizing chamber support; The absorbent cotton is disposed on one side of the atomizing chamber support; The PCB board is disposed inside the hardware bottom ring and connected to the absorbent cotton. The metal bottom ring is connected to the atomizing chamber bracket, and the atomizing chamber bracket is connected to the atomizing chamber.

3. The leak-resistant electronic atomizer cartridge of claim 2, wherein, The liquid storage assembly includes: an upper sealing silicone, a hardware tube, and a liquid storage component; One end of the hardware tube is sealed to the upper sealing silicone, the liquid storage component is disposed in the hardware tube, and the atomizing body assembly is placed in the liquid storage component.

4. The leak-free electronic atomizer cartridge of claim 3, wherein, The atomizing body assembly includes: an atomizing body and atomizing body silicone; The atomizing body is disposed in the liquid storage component, and the silica gel of the atomizing body is connected to the atomizing body.

5. The leak-resistant electronic atomizer cartridge of claim 4, wherein, One end of the atomizing body is disposed in the liquid storage component, and the other end is connected to the PCB board. The PCB board controls the heating of the atomizing body through an internal control circuit.

6. The leak-free electronic atomizer cartridge of claim 4, wherein, The atomizing chamber has a groove, and the atomizing chamber bracket has a buckle. The atomizing chamber bracket is fixedly connected to the atomizing chamber by being fastened into the groove through the buckle.

7. The leak-free electronic atomizer cartridge of claim 4, wherein, The atomizing chamber is used to store the atomizing liquid. The atomizing chamber, together with the upper sealing silicone, the atomizing body silicone and the atomizing chamber bracket, forms a sealed structure for storing the atomizing liquid and preventing leakage of the atomizing liquid.

8. The leak-free electronic atomizer cartridge of claim 7, wherein, The hardware tube is provided with a through hole, and the atomizing liquid in the atomizing chamber flows into the liquid storage component through the through hole. The liquid storage component is used to store the atomizing liquid to be atomized.

9. The leak-free electronic atomizer cartridge of claim 8, wherein, The atomizing chamber is provided with an air outlet, which is used to deliver the atomized smoke to the user.

10. The leak-free electronic atomizer cartridge of claim 5, wherein, The PCB board is equipped with electrode plates for connecting to external host components and powering them on.