Two-plus-ten piercing type electronic atomizer

By employing a vacuum sealing structure and a design with long and short needles in the electronic atomizing device, the problem of atomizing liquid leakage caused by changes in oil tank pressure is solved, improving the safety and ease of use of the device.

CN224140171UActive 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
2025-03-25
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

During use, existing electronic atomizing devices suffer from leakage problems due to decreased sealing performance caused by changes in air pressure within the oil tank.

Method used

The device uses a combination of e-liquid bottle and e-liquid assembly to form a vacuum-sealed structure. The introduction and stop of e-liquid are controlled by the combination of long and short needles to ensure sealing performance and ease of use.

Benefits of technology

It effectively prevents leakage of atomizing fluid during transportation and storage, ensuring that users can continue using the product without interruption due to lack of fluid, thus improving the safety and reliability of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a two-plus-ten puncture type electronic atomizer which is used in the field of electronic equipment. The cigarette cartridge comprises a cigarette cartridge oil bottle, a cigarette cartridge assembly, a cigarette cartridge oil bin, a battery assembly, an atomization assembly and a cigarette cartridge shell. The smoke cartridge assembly is arranged in the smoke cartridge oil bottle, and the smoke cartridge oil bottle is used for storing tobacco tar and is matched with the smoke cartridge assembly to form a vacuum sealing structure; the cigarette cartridge oil bottle is detachably connected with the cigarette cartridge shell; the smoke cartridge assembly is connected with the atomization assembly through the smoke cartridge oil bin. The smoke cartridge oil bin is arranged in the smoke cartridge shell through the atomization assembly and electrically connected with the battery assembly. The battery assembly is connected with the smoke cartridge oil bottle and the smoke cartridge shell through magnets; the cigarette cartridge oil bin is provided with a long pricking needle and a short pricking needle, the long pricking needle and the short pricking needle are communicated with the cigarette cartridge oil bottle by piercing the cigarette cartridge assembly, and the long pricking needle is matched with the short pricking needle to be used for guiding cigarette tar in the cigarette cartridge oil bottle into the cigarette cartridge oil bin when the cigarette tar in the cigarette cartridge oil bin is in a consumed state. And when the tobacco tar in the smoke cartridge oil bin reaches the preset capacity, the tobacco tar is stopped from being guided into the smoke cartridge oil bin.
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Description

Technical Field

[0001] This application relates to the field of electronic devices, and more particularly to a 2+10 piercing electronic atomizer. Background Technology

[0002] With the increasing popularity of e-cigarettes, people are demanding greater convenience, safety, and reliability. As an alternative to traditional smoking, e-cigarettes need to reliably and efficiently convert e-liquid into vapor. However, leakage of e-liquid during transportation, storage, and use has become a major challenge, especially in terms of e-liquid tank design and e-liquid delivery mechanisms.

[0003] To address potential leakage issues during e-liquid introduction, existing technologies employ a sealing design to prevent leakage. Specifically, this sealing design typically includes the use of sealing elements and structures such as rubber sealing rings and threaded connections to create a tight seal between the e-liquid reservoir and the atomizer. These sealing designs effectively prevent e-liquid leakage to a certain extent, whether at rest or during normal use, thus improving the reliability and safety of electronic atomizing devices.

[0004] Although existing technologies have solved the problem of atomizing fluid leakage to some extent, changes in air pressure inside the oil tank during use may still lead to a decrease in sealing performance, thereby causing atomizing fluid leakage. Utility Model Content

[0005] To address the aforementioned technical problems, this application provides a 2+10 piercing electronic atomizer, the device comprising:

[0006] E-liquid cartridge bottle, e-liquid cartridge assembly, e-liquid cartridge tank, battery assembly, atomizing assembly, and e-liquid cartridge shell;

[0007] The cartridge assembly is disposed inside the cartridge oil bottle, which is used to store e-liquid and forms a vacuum-sealed structure in conjunction with the cartridge assembly.

[0008] The e-liquid cartridge bottle is detachably connected to the e-liquid cartridge shell;

[0009] The e-liquid tank of the cartridge is disposed inside the cartridge shell via the atomizing component;

[0010] The top of the e-liquid cartridge is connected to the e-liquid assembly, and the end of the e-liquid cartridge is electrically connected to the battery assembly through the atomizing assembly.

[0011] The battery assembly is connected to the e-liquid bottle and the e-liquid cartridge shell via magnets;

[0012] The e-liquid cartridge is equipped with a long needle and a short needle. The long needle and the short needle communicate with the e-liquid bottle by piercing the e-liquid cartridge assembly. The long needle and the short needle are used to transfer e-liquid from the e-liquid bottle into the e-liquid cartridge when the e-liquid in the cartridge is being consumed, and to stop transferring e-liquid when the e-liquid in the cartridge reaches a preset capacity.

[0013] Optionally, the cartridge assembly includes an oil tank sealing component and a cartridge bottom cover;

[0014] The oil tank sealing component is installed on the oil tank of the e-cigarette cartridge via the bottom cover of the cartridge.

[0015] The long needle and the short needle communicate with the e-liquid cartridge bottle by piercing the oil tank sealing component;

[0016] The e-liquid cartridge bottle is detachably connected to the e-liquid cartridge shell via the cartridge bottom cap.

[0017] Optionally, the e-liquid cartridge bottle is equipped with an atomizing tube and a mouthpiece;

[0018] The atomizing tube is disposed inside the e-liquid cartridge bottle, and the bottom of the atomizing tube is connected to the e-liquid cartridge tank through the oil tank sealing component;

[0019] The top of the atomizing tube is connected to the mouthpiece;

[0020] The atomizing tube, the mouthpiece, and the e-liquid cartridge are integrally formed.

[0021] Optionally, the e-liquid cartridge is provided with an atomizing port, one end of which is connected to the atomizing tube by passing through the sealing component of the cartridge;

[0022] The other end of the atomizing port is connected to the atomizing component.

[0023] Optionally, the atomizing assembly includes a heating wire assembly, a first PCBA assembly, a gas regulating component, and a first cartridge holder;

[0024] The heating wire assembly is disposed in the e-liquid chamber of the e-liquid via the first e-liquid cartridge holder;

[0025] The end of the heating wire assembly is connected to the gas regulating component and the battery assembly through the first PCBA assembly;

[0026] The top of the heating wire assembly is connected to the atomizing port.

[0027] Optionally, the heating wire assembly includes a heating wire, a silicone base, an atomizing head, and an oil reservoir.

[0028] The heating wire is disposed inside the oil-absorbing cotton.

[0029] The end of the heating wire is connected to the first PCBA assembly by being fixed on the silicone base;

[0030] The top of the heating wire is connected to the atomizing port via the atomizing head.

[0031] Optionally, the first PCBA assembly includes: oil-absorbing cotton, a first PCBA board, a second cartridge holder, and a microphone silicone.

[0032] The oil-absorbing cotton is fixed between the first PCBA board and the silicone base by the second e-cigarette cartridge bracket;

[0033] The second cartridge holder is connected to the first cartridge holder;

[0034] The microphone silicone is fixed to the bottom of the first PCBA board, and the microphone silicone is connected to the air regulating component;

[0035] The first PCBA board is electrically connected to the heating wire and the battery assembly.

[0036] Optionally, the battery assembly includes: a battery bracket, battery cells, a second PCBA board, a battery casing, a battery lens, and a button component;

[0037] The battery holder connects the e-liquid cartridge bottle and the e-liquid cartridge shell via the magnet;

[0038] The battery cell and the second PCBA board are mounted inside the battery casing via the battery bracket;

[0039] The battery cell is fixed to the battery bracket via the second PCBA board, and the battery cell is electrically connected to the first PCBA board and the button via the second PCBA board;

[0040] The button component is disposed on one side of the battery housing via the battery lens.

[0041] Optionally, the atomizing head is provided with a sealing ring to prevent leakage of atomized gas.

[0042] Optionally, the cartridge shell is provided with electrode pins, and the first PCBA board is electrically connected to the second PCBA board through the electrode pins.

[0043] As can be seen from the above technical solutions, this application has the following advantages:

[0044] This application utilizes a vacuum-sealed structure formed by the combination of the e-liquid bottle and the e-liquid cartridge assembly. This significantly reduces the impact of pressure changes caused by external factors, fundamentally improving sealing performance and effectively preventing atomized liquid leakage during transportation and storage due to unstable pressure, thus ensuring product safety in various environments. Furthermore, the e-liquid cartridge compartment, equipped with long and short needles, accurately controls the flow of e-liquid from the bottle into the compartment, ensuring uninterrupted use without interruption due to insufficient e-liquid, enhancing ease of use. Finally, when the e-liquid in the compartment reaches the preset capacity, the combined action of the long and short needles precisely stops the flow, preventing pressure imbalance and leakage caused by excessive e-liquid, further enhancing reliability during use. Attached Figure Description

[0045] Figure 1 This is a schematic diagram of the overall structure of the two-plus-ten-pronged piercing electronic atomizer of this application;

[0046] Figure 2 This is an exploded structural diagram of the two-plus-ten-prick type electronic atomizer of this application;

[0047] Figure 3 This is a cross-sectional structural diagram of the two-plus-ten-pronged piercing electronic atomizer of this application;

[0048] Figure 4 This is a schematic cross-sectional view of the e-liquid tank of the two-plus-ten-prick type electronic atomizer of this application. Detailed Implementation

[0049] To address the aforementioned technical problems, this application provides a 2+10 piercing electronic atomizer, which solves the problem that during use, changes in the air pressure inside the oil tank may still lead to a decrease in sealing performance, thereby causing leakage of the atomizing liquid.

[0050] 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.

[0051] 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.

[0052] 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.

[0053] 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.

[0054] 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.

[0055] Please see Figures 1 to 4 In one optional embodiment, this application provides a 2+10 piercing electronic atomizer, comprising:

[0056] 1. E-liquid bottle, 2. E-liquid assembly, 3. E-liquid tank, 4. Battery assembly, 5. Atomizing assembly, and 6. E-liquid shell;

[0057] The cartridge assembly 2 is disposed inside the cartridge oil bottle 1. The cartridge oil bottle 1 is used to store e-liquid and forms a vacuum-sealed structure by cooperating with the cartridge assembly 2.

[0058] The cartridge oil bottle 1 is detachably connected to the cartridge shell 6;

[0059] The e-liquid tank 3 is disposed inside the e-liquid shell 6 via the atomizing component 5;

[0060] The top of the e-liquid cartridge 3 is connected to the e-liquid cartridge assembly 2, and the end of the e-liquid cartridge 3 is electrically connected to the battery assembly 4 through the atomizing assembly 5.

[0061] The battery assembly 4 is connected to the e-liquid bottle 1 and the e-liquid shell 6 via a magnet 10;

[0062] The e-liquid cartridge 3 is equipped with a long needle 7 and a short needle 8. The long needle 7 and the short needle 8 are connected to the e-liquid bottle 1 by piercing the e-liquid cartridge assembly 2. The long needle 7 and the short needle 8 are used to transfer e-liquid from the e-liquid bottle 1 into the e-liquid cartridge 3 when the e-liquid in the e-liquid cartridge 3 is being consumed, and to stop transferring e-liquid when the e-liquid in the e-liquid cartridge 3 reaches a preset capacity.

[0063] The functions of each component in this embodiment will be described in detail below:

[0064] The e-liquid cartridge bottle 1 is equipped with a cartridge assembly 2, an atomizing tube 12, and a mouthpiece 13, and is detachably connected to the cartridge shell 6. It primarily functions with the cartridge assembly 2 to form a vacuum-sealed structure for storing e-liquid, and the internal atomizing tube directs the atomized vapor to the mouthpiece for user use. When the user needs to replace the e-liquid cartridge bottle 1, it can be replaced and maintained through the detachable connection design with the cartridge shell 6.

[0065] The cartridge assembly 2 is placed inside the e-liquid bottle 1 and forms a vacuum seal structure with the e-liquid bottle 1. When the long needle 7 and the short needle 8 penetrate the cartridge assembly 2 and communicate with the e-liquid bottle 1, leakage can be prevented during the process of e-liquid being introduced from the e-liquid bottle 1 into the e-liquid tank 3.

[0066] The e-liquid tank 3 is fixed inside the e-liquid cartridge shell 6 by the atomizing component 5. The e-liquid tank 3 is equipped with long needles 7 and short needles 8, which are mainly used to pierce the e-liquid component 2 to receive e-liquid from the e-liquid bottle 1. At the same time, the e-liquid tank 3 is also the area where e-liquid is directly supplied to the atomizing component 5, and it stores the e-liquid that is about to be atomized.

[0067] Battery assembly 4 is the power source of the electronic atomizer, responsible for providing electrical energy to atomization component 5. Battery assembly 4 is connected to e-liquid bottle 1 and e-liquid shell 6 via magnet 10, making it convenient for users to disassemble and replace battery assembly 4.

[0068] The atomizing component 5 is responsible for converting e-liquid into vapor. It is located inside the cartridge shell 6 and connected to the e-liquid tank 3. When the battery assembly 4 provides power, the atomizing component 5 heats and atomizes the e-liquid, producing vapor that the user can inhale.

[0069] The cartridge shell 6 is the external structure of the electronic atomizing device, responsible for protecting the internal components and providing a handheld part for the user. It is detachably connected to the e-liquid bottle 1, making it convenient for the user to replace the e-liquid bottle 1 or clean the shell. At the same time, the cartridge shell 6 also provides space for the installation and fixation of the battery assembly 4, atomizing assembly 5, etc.

[0070] A long needle 7 is positioned on the e-liquid tank 3, establishing an e-liquid flow channel between the e-liquid bottle 1 and the e-liquid tank 3 by penetrating the e-liquid assembly 2. When the e-liquid in the e-liquid tank 3 reaches a preset capacity, it can stop further e-liquid introduction by cooperating with the short needle 8.

[0071] A short needle 8 is positioned on the e-liquid cartridge compartment 3, establishing an e-liquid flow channel between the e-liquid bottle 1 and the e-liquid compartment 3 by penetrating the e-liquid cartridge assembly 2. In conjunction with the long needle 7, it helps regulate the e-liquid flow rate or volume, and when the e-liquid in the e-liquid compartment 3 reaches a preset capacity, it can also stop further e-liquid introduction by cooperating with the long needle 7.

[0072] Working principle:

[0073] In this embodiment, the e-liquid bottle 1 serves as the main storage container for the e-liquid, tightly fitting with the e-liquid assembly 2 to form a vacuum-sealed structure, ensuring that the e-liquid will not leak during storage and use. When the user begins to use the electronic atomization device, the air pressure inside the e-liquid chamber 3 gradually decreases, creating a negative pressure. At this time, the e-liquid in the e-liquid bottle 1 is drawn into the e-liquid chamber 3 through the long needle 7 and short needle 8 under the action of the air pressure difference, providing a continuous supply of e-liquid to the atomization assembly 5. Then, the atomization assembly 5 heats and atomizes the e-liquid in the e-liquid chamber 3 using electrical energy supplied by the battery assembly 4, producing fine vapor. The vapor is then delivered to the user for inhalation through the mouthpiece 13 provided by the e-liquid bottle 1.

[0074] Specifically, the long needle 7 and the short needle 8 are fixed structures located at different heights within the e-liquid cartridge compartment 3. The end of the long needle 7 extends to a preset low threshold at the bottom of the e-liquid cartridge compartment 3, while the end of the short needle 8 is located at a preset high threshold on the side wall of the e-liquid cartridge compartment 3. Initially, the end of the long needle 7 is submerged in e-liquid, and the e-liquid cartridge bottle 1 is isolated from the e-liquid cartridge compartment 3 via a vacuum structure. The long needle 7 is exposed to the air layer at the top of the compartment, and external air enters the e-liquid cartridge bottle 1 through the long needle 7, disrupting its internal vacuum. At this time, the e-liquid in the e-liquid cartridge bottle 1 flows into the e-liquid cartridge compartment 3 under atmospheric pressure through the long needle 7. When the liquid level rises to the end of the short needle 8, the end of the short needle 8 is submerged in e-liquid. At this point, the pressure inside the e-liquid cartridge bottle 1 is equal to that in the e-liquid cartridge compartment 3, and the e-liquid stops flowing, thus preventing excessive or insufficient e-liquid from entering the e-liquid cartridge compartment 3.

[0075] Battery assembly 4 serves as the power source for the electronic atomization device, providing electrical energy to atomization component 5. When installing battery assembly 4, simply place it near the designated position on the cartridge shell 6 and e-liquid bottle 1, and the magnetic force of magnet 10 will securely install battery assembly 4 next to them. In practical applications, this installation method is not only simple to operate but also ensures a stable and reliable electrical connection between battery assembly 4 and the cartridge shell 6 and e-liquid bottle 1. Once battery assembly 4 is installed, it provides continuous electrical energy to atomization component 5, supporting the normal operation of the electronic atomization device. Simultaneously, the use of magnet 10 facilitates the user's disassembly and replacement of battery assembly 4 and e-liquid tank 3.

[0076] In practical applications, the vacuum seal structure formed by the e-liquid bottle 1 and the e-liquid cartridge assembly 2 greatly reduces the impact of pressure changes caused by external factors, fundamentally improving sealing performance and effectively preventing e-liquid leakage due to unstable pressure during transportation and storage, thus ensuring product safety in various environments. Furthermore, the e-liquid cartridge compartment 3, equipped with long needles 7 and short needles 8, accurately controls the flow of e-liquid from the e-liquid bottle 1 into the compartment 3, ensuring uninterrupted use and enhancing ease of use. Finally, when the e-liquid in the compartment 3 reaches the preset capacity, the long needles 7 and short needles 8 precisely stop the e-liquid flow, preventing pressure imbalance and leakage due to excessive e-liquid, further enhancing reliability during use.

[0077] In an optional embodiment, the cartridge assembly 2 includes an oil tank sealing component 9 and a cartridge bottom cover 11;

[0078] The oil tank sealing component 9 is mounted on the e-cigarette cartridge oil tank 3 via the cartridge bottom cover 11;

[0079] The long needle 7 and the short needle 8 communicate with the e-liquid bottle 1 by piercing the oil tank sealing component 9;

[0080] The e-liquid cartridge bottle 1 is detachably connected to the e-liquid cartridge shell 6 via the cartridge bottom cap 11.

[0081] This embodiment provides a specific implementation of a cartridge assembly 2, which consists of an oil tank sealing component 9 and a cartridge bottom cover 11. The oil tank sealing component 9 is fixed to the top of the cartridge oil tank 3 via the cartridge bottom cover 11. Its main function is to ensure that the e-liquid in the cartridge oil bottle 1 is smoothly introduced into the cartridge oil tank 3, preventing e-liquid leakage to the external environment during the introduction process. Long needles 7 and short needles 8, as fixing structures, vertically penetrate the oil tank sealing component 9, with their ends extending to the low and high thresholds of the cartridge oil tank 3, respectively. When the e-liquid is consumed, causing the liquid level to drop below the low threshold, the long needle 7 is exposed to the air layer of the oil tank, breaking the vacuum state of the cartridge oil bottle 1, allowing the e-liquid in the cartridge oil bottle 1 to flow into the cartridge oil tank 3 under atmospheric pressure through the long needle 7. When the liquid level rises back to the high threshold, the end of the short needle 8 is submerged in e-liquid, forming a communicating vessel effect to terminate the e-liquid replenishment to the cartridge oil tank 3.

[0082] It should be noted that the cartridge bottom cap 11 adopts a snap-fit ​​structure to achieve a detachable connection between the cartridge oil bottle 1 and the cartridge shell 6. This design not only ensures the convenience of replacing the cartridge oil bottle 1, but also, through the cooperation between the cartridge bottom cap 11 and the oil tank sealing component 9, forms a dynamic seal when the piercing needle penetrates the sealing component, preventing e-liquid from leaking into the atomizing component 5.

[0083] In an optional embodiment, the e-liquid cartridge 1 is provided with an atomizing tube 12 and a mouthpiece 13;

[0084] The atomizing tube 12 is disposed inside the e-liquid cartridge bottle 1, and the bottom of the atomizing tube 12 is connected to the e-liquid cartridge 3 through the oil tank sealing component 9;

[0085] The top of the atomizing tube 12 is connected to the mouthpiece 13;

[0086] The atomizing tube 12, the mouthpiece 13, and the e-liquid cartridge bottle 1 are integrally formed.

[0087] This embodiment provides a specific implementation of a cartridge oil bottle 1, in which the cartridge oil bottle 1 is provided with an atomizing tube 12 and a mouthpiece 13. The atomizing tube 12 is installed inside the cartridge oil bottle 1, and the bottom of the atomizing tube 12 is connected to the cartridge oil tank 3 via an oil tank sealing component 9. The oil tank sealing component 9 is crucial, as it not only ensures a seal between the cartridge oil tank 3 and the cartridge oil bottle 1 to prevent e-liquid leakage, but also ensures the stability of the connection between the atomizing tube 12 and the cartridge oil tank 3. The e-liquid in the cartridge oil tank 3 is introduced into the cartridge oil tank 3 at an appropriate time through long needles 7 and short needles 8, and then atomized into vapor by the atomizing component 5. When the user inhales, the vapor in the cartridge oil tank 3 rises along the atomizing tube 12 and is finally inhaled by the user through the mouthpiece 13. In practical applications, this design makes the entire process of e-liquid from storage to atomization to inhalation by the user seamless and efficient, providing a convenient user experience.

[0088] It should be noted that the one-piece molding design means that the connection between the atomizing tube 12, the mouthpiece 13, and the e-liquid cartridge 1 is a non-detachable connection, such as one-piece casting. No specific limitation is made here. The connection between the atomizing tube 12, the mouthpiece 13, and the e-liquid cartridge 1 avoids problems such as loosening, falling off, or poor sealing that may occur due to the separation of parts. It also avoids the potential risk of leakage of e-liquid and atomized material, improves the sealing performance of the e-liquid cartridge 1, and simplifies the manufacturing process and reduces assembly steps.

[0089] In an optional embodiment, the e-liquid cartridge 3 is provided with an atomizing port 14, one end of which is connected to the atomizing tube 12 by passing through the cartridge sealing component 9.

[0090] The other end of the atomizing port 14 is connected to the atomizing component 5.

[0091] In this embodiment, a specific implementation of the atomizing port 14 is provided, wherein the atomizing port 14 is disposed on the e-liquid tank 3. When the e-liquid is atomized into smoke by the atomizing component 5, the smoke in the atomizing component 5 enters the atomizing tube 12 through the atomizing port 14, and then the atomizing tube 12 transmits the smoke to the mouthpiece 13 for the user to inhale.

[0092] Specifically, when the smoke enters the atomizing tube 12 through the atomizing port 14, the oil tank sealing component 9 will tightly wrap the connection between the atomizing port 14 and the atomizing tube 12, ensuring that the smoke can only enter the atomizing tube 12 through the atomizing port 14, preventing the smoke from leaking into other components, and also preventing the e-liquid from leaking into the connection between the atomizing tube 12 and the atomizing port 14, thus improving the user experience.

[0093] In an optional embodiment, the atomizing component 5 includes a heating wire assembly 15, a first PCBA assembly 16, a gas regulating component 17, and a first cartridge holder 18.

[0094] The heating wire assembly 15 is disposed in the e-liquid chamber 3 via the first e-liquid cartridge holder 18;

[0095] The end of the heating wire assembly 15 is connected to the gas regulating component 17 and the battery assembly 4 through the first PCBA assembly 16;

[0096] The top end of the heating wire assembly 15 is connected to the atomizing port 14.

[0097] This embodiment provides a specific implementation of the atomizing component 5, which includes a heating wire assembly 15, a first PCBA assembly 16, a gas regulating component 17, and a first cartridge holder 18. When a user starts using the electronic atomizing device, gas is directed through the gas regulating component 17, through the first PCBA assembly 16 connected to the gas regulating component 17, and to the heating wire assembly 15 according to the user's inhalation action. Simultaneously, the battery assembly 4, as the part providing electrical power to the entire electronic atomizing device, transmits current to the heating wire assembly 15 through the first PCBA assembly 16. Since the heating wire assembly 15 is located within the cartridge oil tank 3 via the first cartridge holder 18, and the top of the heating wire assembly 15 is connected to the atomization port 14, the e-liquid in the cartridge oil tank 3 flows into the area surrounding the heating wire assembly 15. Under the influence of electrical energy, the heating wire assembly 15 rapidly heats up, mixing and atomizing the gas entering from the gas regulating component 17 and the flowing e-liquid, causing the e-liquid to transform from a liquid state into vapor. The smoke then enters the atomizing tube 12 connected to it through the atomizing port 14, and the atomizing tube 12 then transmits the smoke to the mouthpiece 13 for the user to inhale.

[0098] In practical applications, the airflow regulator 17 can flexibly adjust the airflow volume according to different inhalation intensities when the user inhales. For example, during quiet rest and light inhalation, the airflow regulator 17 precisely controls a small amount of air to enter, mixing finely with the e-liquid, so that the heating coil assembly 15 generates a soft and delicate mist, satisfying the user's needs without producing excessive smoke to disturb others. During relaxed deep inhalation, the airflow regulator 17 significantly increases the airflow, promoting full atomization of the e-liquid and providing the user with a rich and full mist for a satisfying experience. The heating coil assembly 15 is placed in the e-liquid tank 3 via the first cartridge holder 18, ensuring that the e-liquid can flow around the heating coil assembly 15, providing sufficient energy for the atomization process. At the same time, the end of the heating coil assembly 15 is connected to the battery assembly 4 via the first PCBA assembly 16, which not only achieves precise current transmission but also ensures rapid heating of the heating coil assembly 15. Furthermore, the top of the heating wire assembly 15 is connected to the atomizing port 14, which ensures that the atomized smoke can smoothly enter the atomizing tube 12 and finally be transmitted to the mouthpiece 13, providing the user with an excellent smoking experience.

[0099] In an optional embodiment, the heating wire assembly 15 includes a heating wire 19, a silicone base 20, an atomizing head 21, and an oil reservoir 22;

[0100] The heating wire 19 is disposed inside the oil-absorbing cotton 22;

[0101] The end of the heating wire 19 is connected to the first PCBA assembly 16 by being fixed on the silicone base 20;

[0102] The top end of the heating wire 19 is connected to the atomizing port 14 via the atomizing head 21.

[0103] This embodiment provides a specific implementation of a heating wire assembly 15, which includes a heating wire 19, a silicone base 20, an atomizing head 21, and a reservoir cotton 22. When a user starts inhaling, the e-liquid in the cartridge bottle 1 enters the cartridge compartment 3. Then, the e-liquid in the cartridge compartment 3 soaks the reservoir cotton 22. Since the heating wire 19 is located inside the reservoir cotton 22, the e-liquid is in full contact with the heating wire 19. At the same time, the electrical energy of the battery assembly 4 is conducted to the end of the heating wire 19 through the first PCBA assembly 16. Subsequently, the heating wire 19, which receives electrical energy, heats up rapidly. The high temperature causes the e-liquid in contact with it to be heated and atomized into smoke. Furthermore, since the top of the heating wire 19 is connected to the atomizing port 14 through the atomizing head 21, the smoke is transmitted to the atomizing port 14 through the atomizing head 21. At the same time, the gas regulating component 17 mixes the gas provided by the user's inhalation action with the smoke, and finally transmits it to the mouthpiece 13 through the atomizing tube 12 for the user to inhale.

[0104] In practical applications, by placing the heating wire 19 within the oil-retaining cotton 22, it is ensured that the e-liquid can evenly and fully saturate the heating wire 19, thereby improving atomization efficiency and the consistency of vapor production, resulting in a smoother user experience. Secondly, the end of the heating wire 19 is connected to the first PCBA assembly 16 via the silicone base 20. This design not only enhances structural stability but also effectively prevents safety hazards such as e-liquid leakage and short circuits, improving the safety of the e-vaporization device. Furthermore, the top of the heating wire 19 is connected to the atomizing port 14 via the atomizing head 21. This structure optimizes the vapor output path, reduces vapor loss during transmission, and enhances the user experience.

[0105] In an optional embodiment, the first PCBA assembly 16 includes: oil-absorbing cotton 23, a first PCBA board 24, a second cartridge holder 25, and a microphone silicone 26;

[0106] The oil-absorbing cotton 23 is fixed between the first PCBA board 24 and the silicone base 20 by the second e-cigarette cartridge bracket 25;

[0107] The second cartridge holder 25 is connected to the first cartridge holder 18;

[0108] The microphone silicone 26 is fixed to the bottom of the first PCBA board 24, and the microphone silicone 26 is connected to the air regulating component 17;

[0109] The first PCBA board 24 is electrically connected to the heating wire 19 and the battery assembly 4.

[0110] This embodiment provides a specific implementation of the first PCBA component 16, which includes an oil-absorbing cotton 23, a first PCBA board 24, a second cartridge holder 25, and a microphone silicone 26. When the e-liquid begins to atomize, the battery component 4 provides electrical energy to the first PCBA board 24. Then, according to the circuit design, the first PCBA board 24 conducts the electrical energy to the heating wire 19, causing the heating wire 19 to heat up rapidly according to the electrical energy, thus atomizing the e-liquid.

[0111] The oil-absorbing cotton 23 employs a two-layer structure, fixed between the first PCBA board 24 and the silicone base 20 via the second cartridge holder 25. On one hand, the two layers of oil-absorbing cotton 23 absorb any potential e-liquid leakage, preventing it from affecting the circuitry and ensuring the normal operation of the first PCBA board 24. On the other hand, when the e-liquid is atomized at the heating coil 19, any condensation or backflow can be absorbed again by the two layers of oil-absorbing cotton 23, preventing e-liquid from interfering with the atomization effect. The second cartridge holder 25 connects to the first cartridge holder 18, enhancing the overall stability of the electronic atomizing device and ensuring the coordinated operation of all components. The microphone silicone 26 is fixed to the bottom of the first PCBA board 24 and connected to the airflow regulator 17. Changes in airflow caused by variations in the user's inhalation intensity are transmitted to the airflow regulator 17 via the microphone silicone 26, allowing the regulator 17 to adjust the airflow accordingly. Meanwhile, the microphone silicone 26 provides a certain degree of sealing and protection for the first PCBA board 24, preventing external impurities from entering and ensuring the stable operation of the first PCBA board 24 in complex environments, thus providing strong support for the stable operation of the electronic atomization device.

[0112] In an optional embodiment, the battery assembly 4 includes: a battery bracket 27, a battery cell 28, a second PCBA board 29, a battery casing 30, a battery lens 31, and a button component 32;

[0113] The battery bracket 27 connects the e-liquid bottle 1 and the e-liquid shell 6 via the magnet 10;

[0114] The battery cell 28 and the second PCBA board 29 are disposed within the battery casing 30 via the battery bracket 27;

[0115] The battery cell 28 is fixed on the battery bracket 27 via the second PCBA board 29, and the battery cell 28 is electrically connected to the first PCBA board 24 and the button via the second PCBA board 29;

[0116] The button component 32 is disposed on one side of the battery housing 30 via the battery lens 31.

[0117] This embodiment provides a specific implementation of the battery assembly 4, which includes a battery bracket 27, a battery cell 28, a second PCBA board 29, a battery casing 30, a battery lens 31, and a button component 32. When it is necessary to disassemble the battery assembly 4 to replace the e-liquid cartridge 3, the magnetic attraction between the battery bracket 27 and the e-liquid cartridge bottle 1 and the cartridge casing 6 generated by the magnet 10 is first overcome by manually applying force, so that the battery bracket 27 can be separated from them, and the e-liquid cartridge 3 can continue to be replaced. If it is necessary to replace or maintain the battery assembly 4, the battery casing 30 needs to be further opened. Since the battery cell 28 and the second PCBA board 29 are housed in the casing via the battery bracket 27, and the battery cell 28 is fixed to the battery bracket 27 by means of the second PCBA board 29, the battery cell 28 and the second PCBA board 29 can be gradually removed from the battery bracket 27 by unscrewing the screws that fix the battery cell 28 to the second PCBA board 29 and the battery bracket 27, or by opening the fasteners and other fixing devices, thereby completing the separation and disassembly of the internal components of the battery assembly 4.

[0118] When it is necessary to install the battery assembly 4 and restore the e-cigarette device to a usable state, the battery cell 28 must first be fixed to the battery bracket 27 via the second PCBA board 29 according to the predetermined circuit connection method. Then, the assembled battery cell 28, the second PCBA board 29, and the battery bracket 27 are placed into the battery housing 30 and secured with screws or clips. Next, the button component 32 is installed on one side of the battery housing 30 via the battery lens 31. Finally, using the magnet 10, the battery bracket is magnetically connected to the e-liquid bottle 1 and the e-liquid shell 6, thus completing the installation of the entire battery assembly 4.

[0119] When using the electronic atomizing device, the user can press the button component 32 located on the battery lens 31 on one side of the battery housing 30. The button component 32 will transmit a pressing signal to the second PCBA board 29. Then, based on the received pressing signal, the second PCBA board 29 will amplify the electrical energy of the battery cell 28 and conduct it to the first PCBA board 24, and then the first PCBA board 24 will conduct it to the heating wire 19, so that the heating wire 19 can perform atomization of the e-liquid.

[0120] In practical applications, the ingenious combination of the battery bracket 27, battery cell 28, second PCBA board 29, battery housing 30, battery lens 31, and button component 32 achieves efficient integration and convenient disassembly and installation of the electronic atomization device. The battery bracket 27 not only stably supports the battery cell 28 and the second PCBA board 29, but also allows for flexible connection to the e-liquid cartridge bottle 1 and the cartridge housing 6 via magnet 10, facilitating user replacement of parts within the e-liquid cartridge compartment 3 and battery assembly 4. The battery cell 28 is electrically connected to the first PCBA board 24 and the button via the second PCBA board 29, ensuring accurate and stable power transmission and improving the device's operational reliability. Simultaneously, the button component 32 is positioned on one side of the battery housing 30 via the battery lens 31, making operation more intuitive and convenient, thus enhancing the user experience.

[0121] In an optional embodiment, the atomizing head 21 is provided with a sealing ring 33 to prevent leakage of the atomized gas.

[0122] This embodiment provides a specific implementation of the atomizing head 21, in which the atomizing head 21 is provided with a sealing ring 33. When the heating wire assembly 15 atomizes the e-liquid, the generated atomized gas needs to be transmitted to the atomizing port 14 through the atomizing head 21. At this time, the sealing ring 33, which is set at a specific position on the atomizing head 21, is tightly installed at the connection between the atomizing head 21 and the atomizing port 14 during assembly. During the smoke transmission process, as the smoke flows outward from the inside of the atomizing head 21, a certain pressure is generated on the sealing ring 33. Due to its own elasticity, the sealing ring 33 undergoes slight deformation under this pressure, further tightly adhering to the surface of the surrounding components, filling any possible tiny gaps, thereby forming an effective sealing barrier. This sealing barrier prevents smoke from leaking from the connection between the atomizing head 21 and the atomizing port 14, ensuring that the smoke can only be output along the predetermined path. In addition, the sealing ring 33 also prevents, to a certain extent, un-atomized e-liquid from directly entering the atomizing port 14 and being inhaled by the user.

[0123] In an optional embodiment, the cartridge shell 6 is provided with electrode pins 34, and the first PCBA board 24 is electrically connected to the second PCBA board 29 through the electrode pins 34.

[0124] This embodiment provides a specific implementation of the electrode pin 34. In this implementation, the electrode pin 34 is disposed on the cartridge shell 6, serving as a bridge for the conduction of electrical energy between the first PCBA board 24 and the second PCBA board 29. When the electronic atomizing device is activated, the electrical energy of the battery 28 is conducted to the electrode pin 34 through the second PCBA board 29. Since the electrode pin 34 is electrically connected to the first PCBA board 24, it stably conducts electrical energy to the first PCBA board 24. Then, after receiving the electrical energy, the first PCBA board 24 conducts the electrical energy to the heating wire 19 according to a preset circuit, causing the heating wire 19 to generate heat, thereby atomizing the e-liquid into vapor that can be inhaled by the user.

[0125] In practical applications, the electrode pin 34 acts as a bridge connecting the first PCBA board 24 and the second PCBA board 29 for electrical conduction, effectively realizing the electrical conduction between the heating wire assembly 15 and the battery assembly 4. Through the connection of the electrode pin 34, the electrical energy of the battery cell 28 can be conducted to the first PCBA board 24 via the second PCBA board 29, ensuring the reliability of electrical conduction, simplifying the internal structure of the electronic atomization device, and improving the efficiency of electrical conduction. Simultaneously, the introduction of the electrode pin 34 allows the heating wire 19 to receive electrical energy promptly, thereby quickly generating heat and atomizing the e-liquid into vapor, enhancing the user experience.

[0126] 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 two-plus-ten puffer electronic atomizer, characterized by, include: E-liquid cartridge bottle, e-liquid cartridge assembly, e-liquid cartridge tank, battery assembly, atomizing assembly, and e-liquid cartridge shell; The cartridge assembly is disposed inside the cartridge oil bottle, which is used to store e-liquid and forms a vacuum-sealed structure in conjunction with the cartridge assembly. The e-liquid cartridge bottle is detachably connected to the e-liquid cartridge shell; The e-liquid tank of the cartridge is disposed inside the cartridge shell via the atomizing component; The top of the e-liquid cartridge is connected to the e-liquid assembly, and the end of the e-liquid cartridge is electrically connected to the battery assembly through the atomizing assembly. The battery assembly is connected to the e-liquid bottle and the e-liquid cartridge shell via magnets; The e-liquid cartridge is equipped with a long needle and a short needle. The long needle and the short needle communicate with the e-liquid bottle by piercing the e-liquid cartridge assembly. The long needle and the short needle are used to transfer e-liquid from the e-liquid bottle into the e-liquid cartridge when the e-liquid in the cartridge is being consumed, and to stop transferring e-liquid when the e-liquid in the cartridge reaches a preset capacity.

2. The two-plus-ten puffer electronic atomizer of claim 1, wherein, The cartridge assembly includes an oil tank sealing component and a cartridge bottom cover; The oil tank sealing component is installed on the oil tank of the e-cigarette cartridge via the bottom cover of the cartridge. The long needle and the short needle communicate with the e-liquid cartridge bottle by piercing the oil tank sealing component; The e-liquid cartridge bottle is detachably connected to the e-liquid cartridge shell via the cartridge bottom cap.

3. The two-plus-ten puffer electronic atomizer of claim 2, wherein, The e-liquid cartridge is equipped with an atomizing tube and a mouthpiece; The atomizing tube is disposed inside the e-liquid cartridge bottle, and the bottom of the atomizing tube is connected to the e-liquid cartridge tank through the oil tank sealing component; The top of the atomizing tube is connected to the mouthpiece; The atomizing tube, the mouthpiece, and the e-liquid cartridge are integrally formed.

4. The two-plus-ten puffer electronic atomizer of claim 3, wherein, The cartridge oil tank is provided with an atomizing port, and one end of the atomizing port is connected to the atomizing tube by passing through the oil tank sealing component; The other end of the atomizing port is connected to the atomizing component.

5. The two-plus-ten puffer electronic atomizer of claim 4, wherein, The atomizing component includes a heating wire assembly, a first PCBA assembly, a gas regulating component, and a first cartridge holder; The heating wire assembly is disposed in the e-liquid chamber of the e-liquid via the first e-liquid cartridge holder; The end of the heating wire assembly is connected to the gas regulating component and the battery assembly through the first PCBA assembly; The top of the heating wire assembly is connected to the atomizing port.

6. The two-plus-ten puffer electronic atomizer of claim 5, wherein, The heating wire assembly includes a heating wire, a silicone base, an atomizing head, and an oil reservoir. The heating wire is disposed inside the oil-absorbing cotton. The end of the heating wire is connected to the first PCBA assembly by being fixed on the silicone base; The top of the heating wire is connected to the atomizing port via the atomizing head.

7. The two-plus-ten puffer electronic atomizer of claim 6, wherein, The first PCBA assembly includes: oil-absorbing cotton, a first PCBA board, a second cartridge holder, and silicone microphone. The oil-absorbing cotton is fixed between the first PCBA board and the silicone base by the second e-cigarette cartridge bracket; The second cartridge holder is connected to the first cartridge holder; The microphone silicone is fixed to the bottom of the first PCBA board, and the microphone silicone is connected to the air regulating component; The first PCBA board is electrically connected to the heating wire and the battery assembly.

8. The two-plus-ten puffer electronic atomizer of claim 7, wherein, The battery assembly includes: a battery bracket, battery cells, a second PCBA board, a battery casing, a battery lens, and a button component; The battery holder connects the e-liquid bottle and the e-liquid cartridge shell via the magnet; The battery cell and the second PCBA board are mounted inside the battery casing via the battery bracket; The battery cell is fixed to the battery bracket via the second PCBA board, and the battery cell is electrically connected to the first PCBA board and the button via the second PCBA board; The button component is disposed on one side of the battery housing via the battery lens.

9. The two-plus-ten puffer electronic atomizer of claim 6, wherein, The atomizing head is equipped with a sealing ring to prevent leakage of atomized gas.

10. The two-plus-ten puffer electronic atomizer of claim 8, wherein, The cartridge shell is provided with electrode pins, and the first PCBA board is electrically connected to the second PCBA board through the electrode pins.