Novel electronic atomizer adopting two-plus-ten atomizing core sinking technology

By using a silicone pull ring and liquid guiding channel in the electronic atomizer, the contact between the atomizing liquid and the atomizing components is isolated, solving the problem of the atomizing liquid changing taste or color during transportation, and ensuring improved atomization effect and user experience.

CN224140181UActive 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
2025-04-27
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

During transportation, the atomizing components of existing electronic atomizers come into prolonged contact with the atomizing liquid, causing the liquid to change taste and color and condense inside the atomizing components, thus affecting the performance.

Method used

The design incorporates a silicone pull ring and a liquid guiding channel to form an airtight structure that isolates the oil tank assembly from the atomizing assembly. This prevents the atomizing liquid from flowing in during transportation. When in use, the silicone pull ring is moved by pulling down the connecting rod, allowing the atomizing liquid to enter the atomizing assembly.

Benefits of technology

Ensure the cleanliness of the atomizing components during transportation and storage to guarantee the atomization effect during use, improve product performance and user experience, and extend storage period and service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel electronic atomizer adopting a two-plus-ten atomizing core sinking technology, and belongs to the field of electronic equipment. The device comprises an oil bin assembly, an atomization assembly, a liquid guide channel, a silica gel pull ring, a connecting rod and a battery assembly. The atomization assembly is arranged in the oil bin assembly; the battery assembly is connected with the atomization assembly; the liquid guide channel is arranged between the atomization assembly and the oil bin assembly, and the liquid guide channel is communicated with the atomization assembly; the silica gel pull ring is arranged at the bottom of the oil bin assembly and connected with the connecting rod, the silica gel pull ring is used for forming an airtight structure with the oil bin assembly, and the oil bin assembly is isolated from the atomization assembly through the liquid guide channel; when the silica gel pull ring pulls down the connecting rod from the outside, the silica gel pull ring moves downwards to the atomization assembly, and atomized liquid in the oil bin assembly enters the atomization assembly through the liquid guide channel.
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Description

Technical Field

[0001] This application relates to the field of electronic devices, and more particularly to an electronic atomizer with a novel 2+10 atomizer core sinking technology. Background Technology

[0002] With the booming development of the e-cigarette market, consumers are increasingly demanding higher quality and better taste from e-cigarette products. As the core component of an e-cigarette, the performance of the atomizing module directly affects the user experience.

[0003] Currently, most mainstream electronic atomizers on the market use porous ceramics, fiber cotton, and other materials for their atomization components, aiming to improve the adsorption and atomization efficiency of the e-liquid. These materials can meet atomization requirements to a certain extent.

[0004] However, during transportation, the atomizing components are in contact with the atomizing liquid for a long time, which can easily cause the atomizing liquid to change in taste and color, and may condense inside the atomizing components, leading to problems such as insufficient atomization during use, which seriously affects the user experience. Utility Model Content

[0005] To address the aforementioned technical issues, this application provides a novel electronic atomizer with a 2+10 atomizing coil sinking technology. The device includes: an oil tank assembly, an atomizing assembly, a liquid guiding channel, a silicone pull ring, a connecting rod, and a battery assembly.

[0006] The atomizing component is disposed within the oil tank component;

[0007] The battery assembly is connected to the atomizing assembly;

[0008] The liquid guiding channel is disposed between the atomizing component and the oil tank component, and the liquid guiding channel is connected to the atomizing component;

[0009] The silicone pull ring is placed at the bottom of the oil tank assembly and connected to the connecting rod. The silicone pull ring is used to form an airtight structure with the oil tank assembly and to isolate the oil tank assembly from the atomizing assembly through the liquid guiding channel. When the silicone pull ring is pulled down by the connecting rod from the outside, the silicone pull ring moves downward to the atomizing assembly, and the atomizing liquid in the oil tank assembly enters the atomizing assembly through the liquid guiding channel.

[0010] Optionally, the oil tank assembly includes an oil tank sealing component and an oil tank;

[0011] The oil tank sealing component is fastened and fixed inside the oil tank;

[0012] The silicone pull ring is disposed on the oil tank sealing component through the first through hole, and forms an airtight structure with the oil tank sealing component and the oil tank.

[0013] Optionally, the oil tank is equipped with an atomizing tube and a nozzle;

[0014] The atomizing tube is disposed inside the oil tank, and the bottom of the atomizing tube is connected to the atomizing assembly through the oil tank sealing component;

[0015] The top of the atomizing tube is connected to the mouthpiece;

[0016] The atomizing tube, the nozzle, and the oil tank are integrally formed.

[0017] Optionally, the atomizing component includes: a heating wire assembly, an oil storage assembly, and an oil tank bottom cover assembly;

[0018] The top of the oil storage assembly is connected to the atomizing tube, and the bottom of the oil storage assembly is connected to the liquid guiding channel;

[0019] The oil tank bottom cover assembly is fastened and fixed to the bottom of the oil tank;

[0020] The heating wire assembly is disposed within the oil storage assembly via the oil tank bottom cover assembly;

[0021] The heating wire assembly is electrically connected to the battery assembly via the oil tank bottom cover assembly.

[0022] Optionally, the oil tank bottom cover assembly includes: an oil tank bottom cover, oil-absorbing cotton, and electrode pins;

[0023] The oil tank bottom cover is fastened and fixed to the bottom of the oil tank;

[0024] The oil-absorbing cotton is disposed at the bottom of the heating wire assembly via the oil tank bottom cover;

[0025] The electrode pins are disposed inside the bottom cover of the oil tank and are electrically connected to the heating wire assembly and the battery assembly.

[0026] Optionally, the heating wire assembly is provided with a second through hole. When the silicone pull ring is placed in the second through hole, the atomizing liquid in the oil tank enters the liquid guiding channel through the first through hole.

[0027] Optionally, the battery assembly includes: PCBA components, cell components, bracket components, and main housing;

[0028] The top of the support component is connected to the bottom cover of the oil tank;

[0029] The battery cell component is fixed inside the main housing by the bracket component and is electrically connected to the electrode pin through the bracket component;

[0030] The PCBA component is located at the bottom of the bracket component and is connected to the battery cell component.

[0031] Optionally, the bracket component includes a battery bracket, a sealing component, and a spring pin;

[0032] The sealing component and the spring pin are fixed to the bracket component;

[0033] The bracket component is fastened and fixed to the main unit housing, and is detachably connected to the oil tank bottom cover;

[0034] The spring pin is electrically connected to the electrode pin and the battery cell component.

[0035] Optionally, a first magnet is provided on the top of the battery holder;

[0036] The bottom of the oil tank cover is provided with a second magnet part corresponding to the first magnet part;

[0037] The bracket component is detachably connected to the oil tank bottom cover by the cooperation of the first magnet part and the second magnet part.

[0038] Optionally, the PCBA components include: a PCBA board, a gas regulator switch, and silicone microphone material;

[0039] The PCBA board is disposed at the bottom of the bracket component and is electrically connected to the battery cell component;

[0040] The gas adjustment switch is fixed to the bottom of the PCBA board via the microphone silicone.

[0041] As can be seen from the above technical solutions, this application has the following advantages:

[0042] This application achieves a seamless connection between the e-cigarette and the tank assembly when not in use. The silicone pull ring, positioned at the bottom of the tank, creates an airtight seal, isolating the tank assembly from the atomizing component via a liquid channel. This prevents the atomized liquid from flowing into the atomizing component, avoiding prolonged contact during transport and preventing discoloration or condensation. When the e-cigarette is needed, simply pull down the connecting rod to move the silicone pull ring to the atomizing component, allowing the atomized liquid to flow smoothly through the channel. This design ensures the cleanliness of the atomizing component during transport and storage, maintains optimal atomization during use, significantly improves the e-cigarette's performance and user experience, and extends its shelf life and lifespan. Attached Figure Description

[0043] Figure 1This is a schematic diagram of the overall structure of the electronic atomizer using the novel 2+10 atomizing core sinking technology of this application.

[0044] Figure 2 This is an exploded structural diagram of the electronic atomizer using the novel 2+10 atomizer core sinking technology of this application;

[0045] Figure 3 This is a schematic cross-sectional view of the sealed state of the electronic atomizer using the novel 2+10 atomizing core sinking technology of this application.

[0046] Figure 4 This is a schematic diagram of the conductive state of the electronic atomizer using the novel 2+10 atomizing core sinking technology of this application. Detailed Implementation

[0047] To address the aforementioned technical problems, this application provides a novel electronic atomizer with a 2+10 atomizing core sinking technology. This addresses the issue that during transportation, the atomizing components are in prolonged contact with the atomizing liquid, causing the liquid to change flavor and color and condense inside the atomizing components, resulting in insufficient atomization when using the electronic atomizer.

[0048] 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.

[0049] 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.

[0050] 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.

[0051] 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.

[0052] 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.

[0053] Please see Figures 1 to 4 In one optional embodiment, this application provides a novel electronic atomizer with a 2+10 coil sinking technology, comprising:

[0054] Oil tank assembly 1, atomizing assembly 2, liquid guiding channel 3, silicone pull ring 4, connecting rod 5, and battery assembly 6;

[0055] The atomizing component 2 is disposed within the oil tank component 1;

[0056] The battery assembly 6 is connected to the atomizing assembly 2;

[0057] The liquid guiding channel 3 is disposed between the atomizing component 2 and the oil tank component 1, and the liquid guiding channel 3 is connected to the atomizing component 2;

[0058] The silicone pull ring 4 is placed at the bottom of the oil tank assembly 1 and connected to the connecting rod 5. The silicone pull ring 4 is used to form an airtight structure with the oil tank assembly 1 and to isolate the oil tank assembly 1 from the atomizing assembly 2 through the liquid guiding channel 3. When the silicone pull ring 4 is pulled down by the connecting rod 5 from the outside, the silicone pull ring 4 moves downward to the atomizing assembly 2, and the atomizing liquid in the oil tank assembly 1 enters the atomizing assembly 2 through the liquid guiding channel 3.

[0059] The functions of each component in this embodiment are described in detail below:

[0060] The oil tank assembly 1 is the main storage structure of the entire device, providing space for the atomizing liquid. It contains the atomizing component 2 and the liquid guiding channel 3, and forms an airtight structure with the silicone pull ring 4. In the initial state, it prevents the atomizing liquid from entering the atomizing component 2 through the guiding channel, and ensures the cleanliness of the atomizing component 2 in the electronic atomizer during transportation and storage.

[0061] The atomizing component 2 is located inside the oil tank component 1 and is connected to the battery component 6. When the atomizing liquid in the oil tank component 1 flows in through the liquid guiding channel 3, powered by the battery component 6, the atomizing component 2 atomizes the atomizing liquid into a usable aerosol.

[0062] The liquid guiding channel 3 is located between the atomizing component 2 and the oil tank component 1, serving as a bridge connecting the oil tank component 1 and the atomizing component 2. In the initial state, it works with the silicone pull ring 4 to isolate the oil tank component 1 and the atomizing component 2; when the silicone pull ring 4 moves, it becomes a channel for the atomizing liquid to flow from the oil tank component 1 to the atomizing component 2, ensuring smooth delivery of the atomizing liquid.

[0063] The silicone pull ring 4 is placed at the bottom of the oil tank assembly 1 and connected to the connecting rod 5. In the initial state, it forms an airtight structure with the oil tank assembly 1. By pulling down the connecting rod 5 externally, the silicone pull ring 4 is moved downward, which breaks the airtightness and allows the atomizing liquid in the oil tank assembly 1 to enter the atomizing assembly 2 through the liquid guiding channel 3.

[0064] One end of the connecting rod 5 is connected to the silicone pull ring 4, serving as a transmission component between the external operation and the silicone pull ring 4. When the user pulls down the connecting rod 5 from the outside, it can transmit force to the silicone pull ring 4, causing the silicone pull ring 4 to move, thereby triggering the flow of atomizing liquid in the oil tank assembly 1 to the atomizing assembly 2, which is used to realize the internal atomizing liquid guiding function of the electronic atomizer.

[0065] Battery assembly 6 is connected to atomization assembly 2, providing power to the entire electronic atomizer. This ensures that, when power is available, atomization assembly 2 can successfully atomize the liquid delivered from the receiving tank assembly 1 into an aerosol.

[0066] Working principle:

[0067] In this embodiment, before the electronic atomizer is used, the silicone pull ring 4 is located at the bottom of the oil tank assembly 1, connected to the connecting rod 5, and forms an airtight structure with the oil tank assembly 1, isolating the oil tank assembly 1 from the atomizing assembly 2 and preventing the atomized liquid from flowing when not in operation. When the user pulls down the connecting rod 5 externally, it will cause the silicone pull ring 4 to move downward. As the position of the silicone pull ring 4 changes, the originally closed airtight structure is broken, and a conductive path is established between the oil tank assembly 1 and the atomizing assembly 2 through the liquid guiding channel 3. At this time, the atomized liquid stored in the oil tank assembly 1 smoothly enters the atomizing assembly 2 along the liquid guiding channel 3 under the action of gravity and internal pressure.

[0068] Specifically, once the e-liquid successfully enters the atomizing component 2 through the liquid guiding channel 3, and the user begins using the e-atomizer, the battery component 6, serving as the power source for the entire e-atomizer, connects to the atomizing component 2 and provides it with electrical power. Driven by the battery component 6, the heating element inside the atomizing component 2 begins to operate, generating high temperatures. When the e-liquid comes into contact with the high-temperature heating element, it rapidly vaporizes, changing from a liquid state to a gaseous state, forming a large number of tiny aerosol particles. Subsequently, the user inhales through the mouthpiece 10 of the e-atomizer. Under the action of suction, the aerosol particles are drawn into the user's mouth and respiratory tract, thus realizing the complete working process of the e-atomizer converting the e-liquid into an inhalable aerosol for the user's use.

[0069] In practical applications, by placing the silicone pull ring 4 at the bottom of the tank assembly 1, the e-cigarette can form an airtight structure with the tank assembly 1 when not in use. The liquid channel 3 isolates the tank assembly 1 from the atomizing assembly 2, preventing the atomized liquid in the tank assembly 1 from flowing into the atomizing assembly 2. This avoids prolonged contact between the atomized liquid and the atomizing assembly 2 during transportation, preventing the atomized liquid from changing flavor or color, and also eliminating the possibility of condensation inside the atomizing assembly 2. When the e-cigarette needs to be used, simply pull down the connecting rod 5 connected to the silicone pull ring 4 to move the silicone pull ring 4 down to the atomizing assembly 2, allowing the atomized liquid in the tank assembly 1 to smoothly enter the atomizing assembly 2 through the liquid channel 3. This design ensures the cleanliness of the atomizing assembly 2 during transportation and storage, while also ensuring the atomization effect during use, greatly improving the product performance and user experience of the e-cigarette, and extending the product's storage period and lifespan.

[0070] In an optional embodiment, the oil tank assembly 1 includes an oil tank sealing component 7 and an oil tank 8;

[0071] The oil tank sealing component 7 is fastened and fixed inside the oil tank 8;

[0072] The silicone pull ring 4 is disposed on the oil tank sealing component 7 through the first through hole 14, and forms an airtight structure with the oil tank sealing component 7 and the oil tank 8.

[0073] This embodiment proposes a specific implementation of an oil tank assembly 1, which consists of an oil tank sealing component 7 and an oil tank 8. The oil tank sealing component 7 is snapped and fixed inside the oil tank 8. Specifically, the oil tank sealing component 7 adopts a groove or flange design that matches the shape of the inner wall of the oil tank 8. Through snap-fit, interference fit, or threaded connection, the oil tank sealing component 7 is ensured to fit tightly against the inner wall of the oil tank 8, forming a preliminary physical sealing barrier. Subsequently, a first through hole 14 is pre-set on the oil tank sealing component 7. The position and size of the first through hole 14 are consistent with the movement path and size of the silicone pull ring 4 to ensure that the silicone pull ring 4 can be installed smoothly without affecting the sealing performance. Next, the silicone pull ring 4 is fixed to the first through hole 14. Utilizing the flexibility and elasticity of the silicone material, the silicone pull ring 4, in its fixed state, tightly adheres to the contact surface of the oil tank sealing component 7. Simultaneously, through the internal pressure of the oil tank 8 or external pressure, an effective sealing contact is also formed between the silicone pull ring 4 and the inner wall of the oil tank 8. Thus, together with the oil tank sealing component 7 and the oil tank 8, they constitute a complete airtight structure. In practical applications, the airtight structure not only effectively prevents liquid leakage but also allows for the convenient opening and closing of the oil tank 8 through the silicone pull ring 4, meeting the dual requirements of sealing performance and operability in practical use.

[0074] In an optional embodiment, the oil tank 8 is provided with an atomizing tube 9 and a nozzle 10;

[0075] The atomizing tube 9 is disposed inside the oil tank 8, and the bottom of the atomizing tube 9 is connected to the atomizing assembly 2 through the oil tank sealing component 7;

[0076] The top of the atomizing tube 9 is connected to the mouthpiece 10;

[0077] The atomizing tube 9, the nozzle 10, and the oil tank 8 are integrally formed.

[0078] This embodiment provides a specific implementation of the oil tank 8, in which the oil tank 8 is provided with an atomizing tube 9 and a mouthpiece 10. The atomizing tube 9 is installed inside the oil tank 8, and the bottom of the atomizing tube 9 is connected to the atomizing assembly 2 through the oil tank sealing component 7. When the atomizing assembly 2 converts the atomized liquid into an aerosol for the user to inhale, the aerosol in the atomizing assembly 2 rises along the atomizing tube 9 and is finally inhaled by the user from the mouthpiece 10. In practical applications, the atomizing tube 9 is directly connected to the atomizing assembly 2, ensuring efficient and smooth transmission of the atomized aerosol. After the atomized liquid is converted into an aerosol in the atomizing assembly 2, it can quickly and stably rise along the atomizing tube 9 to the mouthpiece 10, improving the user experience. Moreover, this design not only optimizes the flow path of the atomized liquid and reduces energy loss, but also improves the purity and taste of the aerosol. At the same time, the oil tank 8 integrates the functions of storing atomized liquid and atomizing transmission, making it easy to carry and use, meeting the needs of modern consumers for convenience and efficiency.

[0079] It should be noted that the integrated molding design means that the connection between the atomizing tube 9, the mouthpiece 10, and the oil tank 8 is a non-detachable connection, such as integral casting molding. No specific limitation is made here. The connection between the atomizing tube 9, the mouthpiece 10, and the oil tank 8 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 atomizing liquid and aerosol, improves the sealing performance of the oil tank 8, and simplifies the manufacturing process and reduces assembly steps.

[0080] In an optional embodiment, the atomizing component 2 includes: a heating wire assembly 11, an oil storage assembly 12, and an oil tank bottom cover assembly 13;

[0081] The top of the oil storage assembly 12 is connected to the atomizing tube 9, and the bottom of the oil storage assembly 12 is connected to the liquid guiding channel 3;

[0082] The oil tank bottom cover assembly 13 is fastened and fixed to the bottom of the oil tank 8;

[0083] The heating wire assembly 11 is disposed within the oil storage assembly 12 via the oil tank bottom cover assembly 13;

[0084] The heating wire assembly 11 is electrically connected to the battery assembly 6 via the oil tank bottom cover assembly 13.

[0085] This embodiment provides a specific implementation of the atomizing component 2, which consists of a heating wire assembly 11, an oil storage assembly 12, and an oil tank bottom cover assembly 13. The top of the oil storage assembly 12 is tightly connected to the atomizing tube 9 through a dedicated interface to establish an aerosol transport path. The bottom of the oil storage assembly 12 is connected to the liquid guiding channel 3 through a dedicated liquid guiding channel to form a complete atomizing liquid transport system. The oil tank bottom cover assembly 13 is fixed to the bottom of the oil tank 8. The fixing method can be achieved by snap-fit ​​connection methods such as clips or connectors. The specific connection method is not specifically limited. At the same time, the oil tank bottom cover assembly 13 serves as the supporting base for the heating wire assembly 11 and has components for transmitting current inside.

[0086] When the user pulls down the connecting rod 5, the silicone pull ring 4 moves downwards simultaneously, releasing the mechanical lock between itself and the oil tank sealing component 7, thus disabling the airtight structure formed inside the oil tank 8. At this time, the atomizing liquid in the oil tank 8 will flow into the oil storage component 12 through the liquid guiding channel 3 under the action of gravity, completing the pre-filling of the atomizing liquid in the oil storage component 12.

[0087] Next, since the heating wire assembly 11 is located within the oil storage assembly 12, when the user activates the e-cigarette, the battery assembly 6 supplies electrical energy to the heating wire assembly 11 through the conductive components of the oil tank bottom cover assembly 13. Furthermore, the heating wire assembly 11 instantly heats up to the atomization temperature under the influence of the current, and its surface temperature field causes the atomized liquid in the oil storage assembly 12 to rapidly vaporize, generating aerosol particles. These aerosols are directionally transported along the atomization tube 9 by the airflow and ultimately output to the user's mouth through the mouthpiece 10 for enjoyment.

[0088] In practical applications, the top of the oil storage component 12 is directly connected to the atomizing tube 9, and the bottom is connected to the liquid guiding channel 3 through a dedicated liquid guiding channel, forming an efficient and closed atomizing liquid delivery system. This ensures the stability of the atomizing liquid transmission and effectively prevents leakage, improving the safety and reliability of the product. Next, the oil tank bottom cover component 13 uses a snap-fit ​​or connecting buckle connection method, making assembly convenient and secure. This not only simplifies the production assembly process but also enhances the stability of the overall structure and extends the product's service life. Furthermore, the heating wire component 11 is precisely positioned within the oil storage component 12 through the oil tank bottom cover component 13, achieving efficient conversion of electrical energy into heat energy. This allows the atomizing liquid to rapidly vaporize into aerosol particles, improving atomization efficiency and taste quality.

[0089] In an optional embodiment, the oil tank bottom cover assembly 13 includes: an oil tank bottom cover 15, oil-absorbing cotton 16, and electrode nails 17;

[0090] The oil tank bottom cover 15 is fastened and fixed to the bottom of the oil tank 8;

[0091] The oil-absorbing cotton 16 is disposed at the bottom of the heating wire assembly 11 via the oil tank bottom cover 15;

[0092] The electrode nail 17 is disposed inside the oil tank bottom cover 15 and is electrically connected to the heating wire assembly 11 and the battery assembly 6.

[0093] This embodiment provides a specific implementation of the oil tank bottom cover assembly 13, which consists of an oil tank bottom cover 15, absorbent cotton 16, and electrode pins 17. When the atomizing liquid begins to atomize, the electrical energy in the battery assembly 6 is conducted to the heating wire assembly 11 through the electrode pins 17 in the oil tank bottom cover 15, causing the heating wire assembly 11 to heat up rapidly according to the electrical energy, thus atomizing the atomizing liquid. The absorbent cotton 16 is located at the bottom of the heating wire assembly 11 through the oil tank bottom cover 15 to prevent atomizing liquid leakage from affecting the circuit and ensuring the normal operation of the electronic atomizer. When the atomizing liquid is atomized in the heating wire assembly 11, if some condensation flows back, the absorbent cotton 16 can absorb it again, preventing the atomizing liquid from interfering with the atomization effect. The oil tank bottom cover 15 is fastened to the bottom of the oil tank 8 using a specific mechanical structure, ensuring a firm connection and good sealing, and further preventing atomizing liquid leakage.

[0094] In an optional embodiment, the heating wire assembly 11 is provided with a second through hole 18. When the silicone pull ring 4 is placed in the second through hole 18, the atomizing liquid in the oil tank 8 enters the liquid guiding channel 3 through the first through hole 14.

[0095] This embodiment provides a specific implementation of the second through hole 18, in which the second through hole 18 is disposed on the heating wire assembly 11. When the user pulls down the connecting rod 5 to move the silicone pull ring 4 to the position of the second through hole 18, the silicone pull ring 4 and the edge of the second through hole 18 form a tightly fitting sealing structure, at which time the inside of the oil tank 8 is in the open state. Under the action of gravity, the atomizing liquid stored in the oil tank 8 flows into the liquid guiding channel 3 through the first through hole 14. Then, the liquid guiding channel 3 transports the atomizing liquid to the oil storage assembly 12 for subsequent atomization. Throughout the process, the silicone pull ring 4, under the action of elastic restoring force, tightly fits the second through hole 18, realizing the automatic sealing of the second through hole 18. This automatic sealing mechanism effectively prevents the leakage of atomizing liquid during atomization. Even when the electronic atomizer is vibrated or tilted, it can keep the atomizing liquid from leaking when the electronic atomizer is in use, improving the safety and reliability of the electronic atomizer.

[0096] In an optional embodiment, the battery assembly 6 includes: a PCBA component 19, a cell component 20, a support component 21, and a main housing 22;

[0097] The top of the support component 21 is connected to the bottom cover 15 of the oil tank;

[0098] The battery cell component 20 is fixed inside the main housing 22 by the bracket component 21, and is electrically connected to the electrode nail 17 by the bracket component 21;

[0099] The PCBA component 19 is disposed at the bottom of the bracket component 21 and is connected to the battery cell component 20.

[0100] This embodiment provides a specific implementation of a battery assembly 6, in which the battery assembly 6 comprises a PCBA component 19, a cell component 20, a support component 21, and a main housing 22. During installation, the cell component 20, as the core of energy storage, is placed within a specific slot or fixed structure of the support component 21. The support component 21 not only provides physical support but also contains built-in conductive lines to ensure that the positive and negative terminals of the cell component 20 can be stably and reliably electrically connected to the electrode pins 17 through the conductive lines within the support component 21. Next, the PCBA component 19 is installed at the bottom of the support component 21 and electrically connected to the cell component 20. Further, the assembled structure of the cell component 20, PCBA component 19, and support component 21 is embedded into the reserved space of the main housing 22. The main housing 22, with its shape and size perfectly matched to the support component 21, ensures stable installation and achieves good sealing, effectively preventing the intrusion of external dust, moisture, and other harmful substances, thereby avoiding adverse effects on the performance of the internal cell component 20. Finally, the battery assembly 6, once fully installed, is connected to the oil tank bottom cover 15 via the bracket component 21. This allows the battery assembly 6 to be installed together with the atomizing component 2 and the oil tank component 1, thus completing the assembly of the electronic atomizer.

[0101] In practical applications, when a user activates the e-cigarette, the battery cell component 20, as the core energy storage component, releases current. At this time, the PCBA component 19, as the circuit control center of the battery assembly 6, responds instantly upon activation of the e-cigarette and adjusts the current output according to internal preset parameters. The current originates from the battery cell component 20 and is transmitted to the electrode pins 17 via conductive circuits designed within the support component 21. Furthermore, upon receiving the current, the electrode pins 17 conduct it to the heating wire assembly 11. Under the influence of the current, the heating wire assembly 11 rapidly heats up, vaporizing the surrounding atomizing liquid and ultimately converting it into aerosol particles that can be inhaled by the user.

[0102] In this embodiment, from a structural stability perspective, the battery cell component 20 is fixed within the main housing 22 structure by the bracket component 21. The bracket component 21 provides physical support, and its built-in conductive lines ensure electrical connection between the positive and negative terminals of the battery cell component 20 and the electrode pins 17. Furthermore, the matching main housing 22 ensures a stable overall installation of the electronic atomizer, effectively preventing loosening of internal components of the battery assembly 6. The PCBA component 19 is installed at the bottom of the bracket component 21 and electrically connected to the battery cell component 20. This compact layout helps improve the overall performance of the battery assembly 6. Moreover, the main housing 22 ensures a stable installation of the battery assembly 6, preventing the intrusion of external dust, moisture, and other harmful substances, thus protecting the performance of the battery cell component 20.

[0103] In an optional embodiment, the bracket component 21 includes a battery bracket 23, a sealing component 24, and a spring pin 25;

[0104] The sealing component 24 and the spring pin 25 are fixed on the bracket component 21;

[0105] The bracket component 21 is fastened and fixed to the main housing 22, and is detachably connected to the oil tank bottom cover 15;

[0106] The spring pin 25 is electrically connected to the electrode pin 17 and the battery cell component 20.

[0107] This embodiment provides a specific implementation of the bracket component 21, which consists of a battery bracket 23, a sealing component 24, and a spring pin 25. When installing the bracket component 21, the battery cell component 20 is first installed inside the battery bracket 23. Then, the spring pin 25 is positioned and fixed at a preset mounting position on the battery bracket 23, and electrically connected to the battery cell component 20. Subsequently, the sealing component 24 is installed on the battery bracket 23, ensuring a tight fit to form a reliable sealing structure, effectively preventing external impurities from entering and internal liquid leakage. Furthermore, the assembled bracket component 21 is snapped onto the main housing 22 using matching snap-fit ​​structures on the battery bracket 23 and the main housing 22, achieving a stable connection and ensuring the stability of the entire bracket component 21. Finally, by detachably connecting the bracket component 21 fixed inside the main housing 22 to the oil tank bottom cover 15, the spring pin 25 is brought into contact with the electrode pin 17, establishing a stable electrical transmission channel. It should be noted that a detachable connection is a mechanical connection method that allows components to be easily connected when needed and easily separated when necessary without causing permanent damage to the components.

[0108] In practical applications, the battery bracket 23 serves as the main frame, providing a stable mounting base for all components. Its snap-fit ​​connection with the main housing 22 ensures a tight connection of the entire battery assembly 6, effectively reducing issues such as component loosening or displacement caused by shaking or external impacts during use. The sealing component 24 forms a reliable barrier between the battery bracket 23 and the oil tank bottom cover 15, effectively preventing the intrusion of harmful substances such as dust and moisture, protecting key components such as the internal battery cell 20, and extending the lifespan of the electronic atomizer. The spring-loaded pin 25 ensures stable current transmission, and its elastic structure provides a certain degree of cushioning, absorbing external impacts to further enhance the safety and durability of the battery assembly 6.

[0109] In an optional embodiment, a first magnet portion 26 is provided on the top of the battery holder 23;

[0110] The bottom of the oil tank cover 15 is provided with a second magnet part 27 corresponding to the first magnet part 26;

[0111] The bracket component 21 is detachably connected to the oil tank bottom cover 15 through the cooperation of the first magnet part 26 and the second magnet part 27.

[0112] In this embodiment, another specific implementation of the battery holder 23 is provided. In this implementation, a first magnet portion 26 is provided on the outer side of the battery holder 23 to ensure a stable connection with the oil tank bottom cover 15. The oil tank bottom cover 15 is provided with a second magnet portion 27 corresponding to the first magnet portion 26. The shape and position of the second magnet portion 27 match the first magnet portion 26 so that the two can be tightly joined together. When assembling the electronic atomizer, the user aligns the first magnet portion 26 of the holder component 21 with the second magnet portion 27 of the oil tank bottom cover 15. Due to the magnetic attraction between magnets, when the two are close to a certain distance, the first magnet portion 26 and the second magnet portion 27 generate a strong magnetic attraction, automatically guiding the oil tank bottom cover 15 to precisely align with the holder component 21, and tightly fitting together under the action of the magnetic attraction, thereby achieving a detachable connection between the holder component 21 and the oil tank bottom cover 15.

[0113] In practical applications, this magnetic connection method requires no additional tools, is simple and convenient to operate, and provides a strong and reliable connection. When disassembly is required, only a certain external force needs to be applied to overcome the magnetic attraction, and the two parts can be easily separated, greatly saving assembly time. Furthermore, the cooperation between the first magnet part 26 and the second magnet part 27 ensures a stable connection between the oil tank bottom cover 15 and the support component 21, and can effectively improve the overall structural stability of the electronic atomizer, preventing the oil tank bottom cover 15 from falling off or loosening from the support component 21.

[0114] In an optional embodiment, the PCBA component 19 includes: a PCBA board 28, a gas regulator switch 29, and a microphone silicone 30;

[0115] The PCBA board 28 is disposed at the bottom of the bracket component 21 and is electrically connected to the battery cell component 20;

[0116] The gas regulating switch 29 is fixed to the bottom of the PCBA board 28 by the microphone silicone 30.

[0117] This embodiment provides a specific implementation of a PCBA component 19, which comprises a PCBA board 28, a gas regulator switch 29, and a microphone silicone sealant 30. During installation, the PCBA board 28 is positioned and securely mounted at the bottom of the support component 21 to ensure a reliable electrical connection with the battery cell component 20, thereby guaranteeing the stability of the power supply. Next, the gas regulator switch 29 is fixed to the bottom of the PCBA board 28 using the microphone silicone sealant 30. The microphone silicone sealant 30, with its elasticity and adhesive properties, can tightly and firmly connect the gas regulator switch 29 to the PCBA board 28, forming a stable overall structure.

[0118] In actual use, when the user's inhalation intensity changes, the resulting airflow change is precisely and quickly transmitted to the vapor adjustment switch 29 via the microphone silicone 30. Upon receiving the airflow change signal, the vapor adjustment switch 29 automatically adjusts the airflow volume to meet different user needs. Simultaneously, the microphone silicone 30 also plays a crucial sealing and protective role for the PCBA board 28, effectively preventing external dust, moisture, and other impurities from entering the PCBA board 28. This ensures stable operation of the PCBA board 28 even in complex and changing environments, providing solid support for the stable operation of the electronic atomizer.

[0119] 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. An electronic atomizer of a novel two-plus-ten atomizing core sinking technology, characterized in that, include: Oil tank assembly, atomizing assembly, liquid guiding channel, silicone pull ring, connecting rod, and battery assembly; The atomizing component is disposed within the oil tank component; The battery assembly is connected to the atomizing assembly; The liquid guiding channel is disposed between the atomizing component and the oil tank component, and the liquid guiding channel is connected to the atomizing component; The silicone pull ring is placed at the bottom of the oil tank assembly and connected to the connecting rod. The silicone pull ring is used to form an airtight structure with the oil tank assembly and to isolate the oil tank assembly from the atomizing assembly through the liquid guiding channel. When the silicone pull ring is pulled down by the connecting rod from the outside, the silicone pull ring moves downward to the atomizing assembly, and the atomizing liquid in the oil tank assembly enters the atomizing assembly through the liquid guiding channel.

2. The electronic atomizer of claim 1, wherein, The oil tank assembly includes an oil tank sealing component and an oil tank; The oil tank sealing component is fastened and fixed inside the oil tank; The silicone pull ring is disposed on the oil tank sealing component through the first through hole, and forms an airtight structure with the oil tank sealing component and the oil tank.

3. The electronic atomizer of claim 2, wherein, The oil tank is equipped with an atomizing tube and a nozzle; The atomizing tube is disposed inside the oil tank, and the bottom of the atomizing tube is connected to the atomizing assembly through the oil tank sealing component; The top of the atomizing tube is connected to the mouthpiece; The atomizing tube, the nozzle, and the oil tank are integrally formed.

4. The electronic atomizer of claim 3, wherein, The atomizing component includes: a heating wire assembly, an oil storage assembly, and an oil tank bottom cover assembly; The top of the oil storage assembly is connected to the atomizing tube, and the bottom of the oil storage assembly is connected to the liquid guiding channel; The oil tank bottom cover assembly is fastened and fixed to the bottom of the oil tank; The heating wire assembly is disposed within the oil storage assembly via the oil tank bottom cover assembly; The heating wire assembly is electrically connected to the battery assembly via the oil tank bottom cover assembly.

5. The electronic atomizer of claim 4, wherein, The oil tank bottom cover assembly includes: an oil tank bottom cover, oil-absorbing cotton, and electrode pins; The oil tank bottom cover is fastened and fixed to the bottom of the oil tank; The oil-absorbing cotton is disposed at the bottom of the heating wire assembly via the oil tank bottom cover; The electrode pins are disposed inside the bottom cover of the oil tank and are electrically connected to the heating wire assembly and the battery assembly.

6. The electronic atomizer of claim 5, wherein, The heating wire assembly is provided with a second through hole. When the silicone pull ring is placed in the second through hole, the atomizing liquid in the oil tank enters the liquid guiding channel through the first through hole.

7. The electronic atomizer of claim 5, wherein, The battery assembly includes: PCBA components, cell components, bracket components, and main housing; The top of the support component is connected to the bottom cover of the oil tank; The battery cell component is fixed inside the main housing by the bracket component and is electrically connected to the electrode pin through the bracket component; The PCBA component is located at the bottom of the bracket component and is connected to the battery cell component.

8. The electronic atomizer of claim 7, wherein, The bracket component includes a battery bracket, a sealing component, and a spring pin; The sealing component and the spring pin are fixed to the bracket component; The bracket component is fastened and fixed to the main unit housing, and is detachably connected to the oil tank bottom cover; The spring pin is electrically connected to the electrode pin and the battery cell component.

9. The electronic atomizer of claim 8, wherein, The top of the battery holder is provided with a first magnet. The bottom of the oil tank cover is provided with a second magnet part corresponding to the first magnet part; The bracket component is detachably connected to the oil tank bottom cover by the cooperation of the first magnet part and the second magnet part.

10. The electronic atomizer of claim 9, wherein, The PCBA components include: PCBA board, gas regulator switch, and microphone silicone; The PCBA board is disposed at the bottom of the bracket component and is electrically connected to the battery cell component; The gas adjustment switch is fixed to the bottom of the PCBA board via the microphone silicone.