Atomization structure with novel two-plus-ten opening mode and electronic atomizer
By using a silicone pull ring structure in the electronic atomizer to form an airtight seal, the amount of atomized liquid introduced is controlled, solving the problem of poor atomization effect caused by excessive atomized liquid, achieving stable and efficient atomization effect, and improving the user experience.
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
In existing electronic atomizers, when too much atomizing liquid is added, the heating element cannot quickly heat the liquid to a suitable temperature, resulting in a significantly lower vapor production than normal and a decreased user experience.
The system employs a silicone pull ring structure to form an airtight seal. By pulling down the silicone pull ring, the oil tank assembly and the atomizing assembly are connected, controlling the amount of atomizing liquid introduced. This ensures that the atomizing liquid stops being introduced when it reaches the preset capacity in the atomizing assembly, maintaining a stable and efficient atomization effect.
It effectively reduces atomizing fluid leakage, ensures that the atomizing fluid is within an appropriate range, maintains a stable and efficient atomization effect, and improves the user experience.
Smart Images

Figure CN224140182U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic atomizer technology, and in particular to an atomization structure and electronic atomizer with a novel two-plus-ten opening method. Background Technology
[0002] With continuous technological advancements and the release of growing market demand, the global electronic atomizer market is showing steady expansion. In today's society, the pursuit of personalized experiences and the advocacy of healthy lifestyles have become mainstream trends. As an ideal alternative to traditional tobacco, electronic atomizers have successfully attracted numerous consumers with their unique user experience and relatively low health risks, leading to ever-increasing market demand.
[0003] Electronic atomizers use batteries to power heating elements that convert liquid into inhalable vapor. During atomization, the appropriate atomization temperature plays a crucial role in the amount of vapor and the flavor. Typically, electronic atomizers are equipped with specific heating elements that heat the liquid at a preset power level.
[0004] However, in actual use, when too much atomizing liquid is immersed in the atomizing device, the excessive liquid will absorb a lot of heat, making it difficult for the heating element to quickly heat the liquid to a suitable temperature. This results in a significantly lower vapor volume than normal, leading to a decline in the user experience. Utility Model Content
[0005] This application provides a novel two-plus-ten opening method atomization structure and electronic atomizer to solve the above-mentioned technical problems.
[0006] The first aspect of this application provides a novel atomizing structure with a 2+10 opening method, comprising:
[0007] Silicone pull ring, oil tank assembly, atomizing assembly, and oil tank bottom cover assembly;
[0008] The oil tank assembly is connected to the oil tank bottom cover assembly, and the oil tank assembly is used to store atomizing liquid;
[0009] The atomizing component is disposed between the oil tank component and the oil tank bottom cover component;
[0010] The silicone pull ring is disposed in the oil tank assembly. The silicone pull ring is used to form an airtight structure with the oil tank assembly. When the silicone pull ring is pulled down into the oil tank bottom cover assembly, the oil tank assembly is connected to the atomizing assembly. The atomizing liquid in the oil tank assembly is introduced into the atomizing assembly, and the introduction of the atomizing liquid stops when the atomizing liquid in the atomizing assembly reaches a preset capacity.
[0011] Optionally, the silicone pull ring includes a silicone pull ring head and a silicone pull ring rod;
[0012] The silicone pull ring head is disposed on the oil tank assembly;
[0013] The silicone pull ring head is connected to the silicone pull ring rod. The silicone pull ring head is used to form an airtight structure with the oil tank assembly. The silicone pull ring rod is used to pull the silicone pull ring head. When the silicone pull ring head moves down to the oil tank bottom cover assembly with the silicone pull ring rod, the atomizing liquid is introduced into the atomizing assembly from the oil tank assembly, and the silicone pull ring rod separates from the silicone pull ring head.
[0014] Optionally, the oil tank assembly includes an oil tank, a lower sealing silicone, and a lower sealing silicone support.
[0015] The lower sealing silicone is disposed on the lower sealing silicone bracket;
[0016] The lower sealing silicone support is disposed inside the oil tank;
[0017] The lower sealing silicone bracket is provided with a first through hole. When the silicone pull ring head is placed in the first through hole, the silicone pull ring head and the oil tank assembly form an airtight structure.
[0018] Optionally, the atomizing component includes a heating wire and heating wire silicone, wherein the heating wire and the heating wire silicone are fixedly connected.
[0019] Optionally, the atomizing component further includes an oil-retaining cotton, which is wrapped around the heating wire.
[0020] Optionally, the oil tank bottom cover assembly includes an oil tank bottom cover, a magnet, and electrode pins;
[0021] The oil tank bottom cover is fastened and fixed to the bottom of the oil tank;
[0022] The magnet is disposed on the bottom cover of the oil tank and is electrically connected to the electrode nail;
[0023] The electrode pin is electrically connected to the atomizing component;
[0024] The bottom cover of the oil tank is provided with a second through hole. When the silicone pull ring head is placed in the second through hole, the oil tank assembly is connected to the atomizing assembly.
[0025] Optionally, the oil tank bottom cover assembly further includes oil-absorbing cotton, which is disposed in the oil tank bottom cover.
[0026] Optionally, the atomizing component further includes a steel pipe, which is sleeved on the oil-retaining cotton.
[0027] Optionally, the oil tank assembly also includes an upper sealing silicone, an atomizing tube, and a nozzle;
[0028] The nozzle is fitted onto the atomizing tube;
[0029] The atomizing tube is connected to the steel pipe via the upper sealing silicone, which is used to prevent leakage of the atomizing liquid.
[0030] The second aspect of this application provides an electronic atomizer with a novel 2+10 opening method, the electronic atomizer comprising: a main unit with the novel 2+10 opening method and an atomizing structure with the novel 2+10 opening method; the atomizing structure with the novel 2+10 opening method is mounted on the main unit with the novel 2+10 opening method.
[0031] As can be seen from the above technical solutions, this application has the following advantages:
[0032] The silicone pull ring in the tank assembly separates the atomizer component from the tank assembly, and the silicone pull ring and tank assembly form an airtight structure, which can reduce the problem of atomizer leakage before the e-cigarette is used. By pulling down the silicone pull ring into the bottom cover assembly of the tank assembly, the tank assembly and the atomizer assembly are connected. At this time, the atomizer in the tank assembly can be introduced into the atomizer assembly. The introduction of atomizer in the atomizer assembly stops when the atomizer assembly reaches the preset volume, thus controlling the atomizer within an appropriate range, maintaining a stable and efficient atomization effect, and improving the user experience. Attached Figure Description
[0033] Figure 1 This application provides an exploded structural diagram of the atomization structure of the novel two-plus-ten opening method;
[0034] Figure 2 This application provides a schematic diagram of the sealed state cross-sectional structure of the atomization structure of the novel two-plus-ten opening method;
[0035] Figure 3 This application provides a schematic diagram of the conductive state cross-sectional structure of the atomization structure of the novel two-plus-ten opening method. Detailed Implementation
[0036] To address the aforementioned technical issues, this application provides a novel two-plus-ten opening mechanism for atomization structures and electronic atomizers, which maintain stable and efficient atomization effects and enhance user experience.
[0037] 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.
[0038] 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.
[0039] 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.
[0040] 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.
[0041] 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.
[0042] Please see Figures 1 to 3 The first aspect of this application provides an embodiment of a novel atomizing structure with a two-plus-ten opening method, the embodiment including:
[0043] Silicone pull ring 1, oil tank assembly 2, atomizing assembly 3, and oil tank bottom cover assembly 4;
[0044] The oil tank assembly 2 is connected to the oil tank bottom cover assembly 4, and the oil tank assembly 2 is used to store the atomizing liquid;
[0045] The atomizing component 3 is disposed between the oil tank component 2 and the oil tank bottom cover component 4;
[0046] The silicone pull ring 1 is installed in the oil tank assembly 2. The silicone pull ring 1 is used to form an airtight structure with the oil tank assembly 2. When the silicone pull ring 1 is pulled down into the oil tank bottom cover assembly 4, the oil tank assembly 2 is connected to the atomizing assembly 3. The atomizing liquid in the oil tank assembly 2 is introduced into the atomizing assembly 3, and the introduction of atomizing liquid stops when the atomizing liquid in the atomizing assembly 3 reaches the preset capacity.
[0047] The functions of each component in this embodiment are described in detail below:
[0048] Silicone pull ring 1: The silicone pull ring 1 is installed in the tank assembly 2 and is adapted to the mounting part in the tank assembly 2. The silicone pull ring 1 is made of silicone, giving it a certain degree of elasticity and chemical stability. Under normal conditions, i.e., before the e-cigarette is used, the silicone pull ring 1 maintains a stable shape and is tightly connected to the mounting part of the tank assembly 2, forming an airtight structure that seals the atomized liquid within the tank assembly 2, preventing the liquid from flowing into the atomizing assembly 3 when the e-cigarette is not in use. When the silicone pull ring 1 is subjected to external force, it can change its shape or position, thereby opening the communication channel between the tank assembly 2 and the atomizing assembly 3, controlling the introduction of the atomized liquid.
[0049] Oil tank assembly 2: Oil tank assembly 2 is tightly connected to oil tank bottom cover assembly 4. Its internal structure is hollow, primarily used to store the atomizing liquid and prevent it from being contaminated by external factors, providing a continuous and stable supply of atomizing liquid during the atomization process. Oil tank assembly 2 can be made of materials such as plastic or glass, which are low-cost to manufacture and chemically stable, preventing chemical reactions with the atomizing liquid and reducing the risk of liquid deterioration due to material variations, thus affecting atomization performance.
[0050] Atomizing Component 3: The atomizing component 3 integrates an element for heating the atomizing liquid and is located between the oil tank assembly 2 and the oil tank bottom cover assembly 4, facilitating the reception of atomizing liquid from the oil tank assembly 2. When the atomizing liquid is introduced into the atomizing component 3 from the oil tank assembly 2, the internal heating element heats the liquid, atomizing it into mist that can be inhaled by the user.
[0051] Tank bottom cap assembly 4: The tank bottom cap assembly 4 has a shape that matches the bottom of the tank assembly 2. One end is tightly connected to the tank assembly 2 to form a relatively closed whole, and the other end is detachably connected to the electronic atomizer body. As the bottom sealing component of the tank assembly 2, the tank bottom cap assembly 4 can prevent the atomizing liquid from leaking from the bottom and provide space for the silicone pull ring 1 after it is pulled down.
[0052] Working Principle: Before using the e-cigarette, the silicone pull ring 1 is located in the oil tank assembly 2, forming an airtight structure with the oil tank assembly 2, allowing the atomized liquid to be stored in the oil tank assembly 2. When using the e-cigarette, pull down the silicone pull ring 1, causing it to move from the oil tank assembly 2 to the oil tank bottom cover assembly 4, connecting the oil tank assembly 2 and the atomizing assembly 3. Air enters the oil tank assembly 2, pushing the atomized liquid from the oil tank assembly 2 into the atomizing assembly 3. When the atomized liquid in the atomizing assembly 3 reaches the preset capacity, the air pressure between the oil tank assembly 2 and the atomizing assembly 3 reaches a balanced state, stopping the flow of atomized liquid from the oil tank assembly 2 into the atomizing assembly 3. When the atomized liquid in the atomizing assembly 3 is heated to atomization by the atomizing assembly 3, the air pressure between the oil tank assembly 2 and the atomizing assembly 3 changes, allowing the atomized liquid in the oil tank assembly 2 to continue flowing into the atomizing assembly 3, maintaining the atomization effect.
[0053] In this embodiment, the silicone pull ring 1 in the oil tank assembly 2 separates the atomizing assembly 3 from the oil tank assembly 2, and the silicone pull ring 1 and the oil tank assembly 2 form an airtight structure, which can reduce the problem of excessive immersion of atomizing liquid in the atomizing assembly 3 or leakage of atomizing liquid before use of the electronic atomizer. By pulling down the silicone pull ring 1 into the bottom cover assembly 4 of the oil tank, the oil tank assembly 2 and the atomizing assembly 3 are connected. At this time, the atomizing liquid in the oil tank assembly 2 can be introduced into the atomizing assembly 3, and the introduction of atomizing liquid stops when the atomizing liquid in the atomizing assembly 3 reaches a preset capacity, thus controlling the atomizing liquid within an appropriate range, maintaining a stable and efficient atomization effect, and improving the user experience.
[0054] In an optional embodiment, the silicone pull ring 1 includes a silicone pull ring head 5 and a silicone pull ring rod 6;
[0055] The silicone pull ring head 5 is mounted on the oil tank assembly 2;
[0056] The silicone pull ring head 5 is connected to the silicone pull ring rod 6. The silicone pull ring head 5 is used to form an airtight structure with the oil tank assembly 2. The silicone pull ring rod 6 is used to pull the silicone pull ring head 5. When the silicone pull ring head 5 is pulled down to the oil tank bottom cover assembly 4 by the silicone pull ring rod 6, the atomizing liquid is introduced from the oil tank assembly 2 into the atomizing assembly 3, and the silicone pull ring rod 6 separates from the silicone pull ring head 5.
[0057] In this embodiment, the silicone pull ring 1 is a separable structure formed by the silicone pull ring head 5 and the silicone pull ring rod 6. Before the atomizer is used, the silicone pull ring head 5 is tightly fitted to the tank assembly 2, forming a closed space to prevent the atomized liquid from flowing out of the tank assembly 2 and excessively immersing into the atomizing assembly 3. When the atomizer needs to be used, the user applies a pulling force to the silicone pull ring rod 6, causing the silicone pull ring rod 6 to pull the silicone pull ring head 5 downwards into the tank bottom cover assembly 4. At this time, the channel between the tank assembly 2 and the atomizing assembly 3 is opened, and the atomized liquid in the tank assembly 2 is introduced into the atomizing assembly 3. The tank bottom cover assembly 4 is provided with a limiting structure to prevent the silicone pull ring head 5 from moving excessively downwards under pulling. When the silicone pull ring head 5 moves down to the limiting structure of the tank bottom cover 14, the silicone pull ring rod 6 extends out of the tank bottom cover assembly 4. At this point, if the user continues to apply pulling force to the silicone pull ring rod 6, the silicone pull ring rod 6 will separate from the silicone pull ring head 5 and fall off, making the bottom of the oil tank bottom cover assembly 4 flat. This facilitates a tight connection between the entire atomization structure of the 2+10 new opening method and the main unit of the 2+10 new opening method. Meanwhile, the silicone pull ring head 5 remains in the oil tank bottom cover assembly 4, forming a closed space for the entire atomization structure of the 2+10 new opening method, preventing the atomized liquid from leaking from the oil tank bottom cover 14.
[0058] In an optional embodiment, the oil tank assembly 2 includes an oil tank 7, a lower sealing silicone 8, and a lower sealing silicone support 9.
[0059] The lower sealing silicone 8 is mounted on the lower sealing silicone bracket 9;
[0060] The lower sealing silicone bracket 9 is installed inside the oil tank 7;
[0061] The lower sealing silicone bracket 9 is provided with a first through hole 10. When the silicone pull ring head 5 is placed in the first through hole 10, the silicone pull ring head 5 and the oil tank assembly 2 form an airtight structure.
[0062] In this embodiment, the oil tank assembly 2 mainly consists of an oil tank 7, a lower sealing silicone 8, and a lower sealing silicone support 9. The lower sealing silicone support 9 primarily supports the lower sealing silicone 8, placing it inside the oil tank 7 and providing a stable mounting base for the lower sealing silicone 8. Furthermore, the lower sealing silicone support 9 has a first through hole 10, which is used to cooperate with the silicone pull ring head 5 to seal the oil tank 7. When the e-cigarette is not in use, the silicone pull ring head 5 is embedded in the first through hole 10 of the lower sealing silicone support 9, tightly fitting against the lower sealing silicone support 9, creating a complete airtight space inside the oil tank 7. At this time, the oil tank 7 is used to store the atomizing liquid, and the sealing structure formed by the lower sealing silicone 8, the lower sealing silicone support 9, and the silicone pull ring head 5 effectively prevents leakage or evaporation of the atomizing liquid. When the user needs to use the e-cigarette, pulling the silicone pull ring bar 6 causes the silicone pull ring head 5 to disengage from the first through hole 10 under the pull of the silicone pull ring bar 6, breaking the original airtight structure. The channel between the oil tank 7 and the atomizing component 3 is connected, and due to the pressure difference, the atomizing liquid in the oil tank 7 flows to the atomizing component 3.
[0063] The silicone pull ring head 5, together with the lower sealing silicone 8 and the lower sealing silicone bracket 9, forms a double sealing protection mechanism. When not in use, this prevents the atomizing liquid from contacting the outside environment, reducing the risk of leakage and preventing equipment damage or contamination of other components. Operating the silicone pull ring head 5 controls the connection between the oil tank 7 and the atomizing assembly 3, achieving precise control over the atomizing liquid delivery. Users can flexibly open the atomizing liquid delivery channel according to actual usage needs, preventing a decrease in atomization effect due to excessive immersion of the atomizing assembly 3 in the atomizing liquid.
[0064] In an optional embodiment, the atomizing component 3 includes a heating wire 11 and a heating wire silicone 12, wherein the heating wire 11 and the heating wire silicone 12 are fixedly connected.
[0065] This embodiment provides a specific method for implementing the heating function of the atomizing component 3. In this implementation, the atomizing component 3 includes a heating wire 11 and a heating wire silicone 12, with the heating wire 11 and the heating wire silicone 12 fixedly connected. When the electronic atomizer is working, current passes through the heating wire 11, causing the heating wire 11 to generate heat, thereby heating the atomized liquid to an atomized state. The heating wire silicone 12 is used to fix the heating wire 11, providing support and protection for the heating wire 11, keeping the heating wire 11 in a stable position in the atomizing component 3, preventing the heating wire 11 from shifting or loosening during use, and also isolating the heating wire 11 from other components, reducing problems such as atomized liquid leakage and short circuits.
[0066] In an optional embodiment, the atomizing component 3 further includes an oil-retaining cotton 13, which is wrapped around the heating wire 11.
[0067] In this embodiment, the oil-retaining cotton 13 has good liquid absorption. When the atomizing liquid in the oil tank assembly 2 is introduced into the atomizing assembly 3, the oil-retaining cotton 13 can absorb and store a certain volume of atomizing liquid. Since the oil-retaining cotton 13 is wrapped around the heating wire 11, the atomizing liquid will fully contact the heating wire 11. By wrapping the oil-retaining cotton 13 around the heating wire 11, it is ensured that the atomizing liquid can evenly and fully wet the heating wire 11, thereby improving the atomization efficiency and atomization stability, and making the user experience smoother.
[0068] In an optional embodiment, the oil tank bottom cover assembly 4 includes an oil tank bottom cover 14, a magnet 15, and an electrode nail 16;
[0069] The bottom cover 14 of the oil tank is fastened and fixed to the bottom of the oil tank 7;
[0070] Magnet 15 is mounted on the bottom cover 14 of the oil tank and is electrically connected to electrode nail 16;
[0071] Electrode pin 16 is electrically connected to atomizing component 3;
[0072] The bottom cover 14 of the oil tank is provided with a second through hole 17. When the silicone pull ring head 5 is placed in the second through hole 17, the oil tank assembly 2 is connected to the atomizing assembly 3.
[0073] In this embodiment, the oil tank bottom cover 14 is tightly fixed to the bottom of the oil tank 7 via a snap-fit connection, forming a stable connection structure. It also provides a mounting base for the internal magnet 15 and electrode pins 16. The second through hole 17 in the oil tank bottom cover 14 is used to connect the oil tank assembly 2 and the atomizing assembly 3 via the silicone pull ring head 5. In the initial state of the electronic atomizer, the silicone pull ring head 5 is located inside the oil tank assembly 2, separating the oil tank assembly 2 from the atomizing assembly 3, preventing the atomized liquid in the oil tank 7 from flowing into the atomizing assembly 3. When the electronic atomizer needs to be used, the user pulls the silicone pull ring bar 6, pulling the silicone pull ring head 5 down into the second through hole 17 of the oil tank bottom cover 14. At this time, the channel between the oil tank assembly 2 and the atomizing assembly 3 is opened, and the atomized liquid in the oil tank 7 flows into the atomizing assembly 3 under the influence of air pressure difference or gravity. At the same time, the magnet 15 transmits the electrical energy generated by the host of the two-plus-ten new opening method to the electrode nail 16, and the electrode nail 16 then transmits the electrical energy to the atomizing component 3 to power the heating wire 11 and other electrical components. After the heating wire 11 is energized, it generates heat to heat and atomize the flowing atomizing liquid.
[0074] The bottom cover 14 of the oil tank is fixed to the bottom of the oil tank 7 with a snap-fit connection, making installation and disassembly simple and convenient, facilitating user maintenance or replacement of the atomizing fluid in the oil tank assembly 2. Simultaneously, the magnet 15, electrode pins 16, and other components are integrated together, resulting in a compact overall structure with minimal space occupation, which is beneficial for the miniaturization design of electronic atomizers. The design of the magnet 15 also facilitates connection with the main unit featuring the new 2+10 opening mechanism. The engagement of the silicone pull ring head 5 with the second through hole 17 allows the silicone pull ring head 5 to be pulled down and embedded in the bottom cover 14 of the oil tank, forming a relatively closed structure between the bottom cover 14 and the oil tank 7. This prevents impurities from entering the atomization structure, contaminating the atomizing fluid, or affecting the atomization effect.
[0075] In an optional embodiment, the oil tank bottom cover assembly 4 further includes an oil-absorbing cotton 18 disposed in the oil tank bottom cover 14.
[0076] In this embodiment, an oil-absorbing cotton 18 is fixed inside the oil tank bottom cover 14. The oil-absorbing cotton 18 can absorb leaked atomizing liquid and prevent the atomizing liquid from affecting the circuit. If the atomizing liquid drips from the oil storage cotton 13, the oil-absorbing cotton 18 can absorb the dripping atomizing liquid. When the heating wire 11 heats and atomizes the atomizing liquid, if some of the atomized atomizing liquid condenses and flows back, the oil-absorbing cotton 18 can absorb it, avoiding the condensed atomizing liquid from interfering with the atomization effect and preventing atomizing liquid leakage.
[0077] In an optional embodiment, the atomizing component 3 further includes a steel pipe 19, which is sleeved on the oil-retaining cotton 13.
[0078] In this embodiment, the steel pipe 19 is sleeved on the oil-collecting cotton 13, which can protect and support the oil-collecting cotton 13 and the heating wire 11 inside the oil-collecting cotton 13. At the same time, when the heating wire 11 heats the atomizing liquid on the oil-collecting cotton 13, the atomized liquid will disperse in all directions. When the steel pipe 19 is sleeved on the oil-collecting cotton 13, it can guide the atomized liquid to be transported along a fixed route, reducing the loss of atomized liquid, thereby improving the atomization effect and user experience.
[0079] In an optional embodiment, the oil tank assembly 2 further includes an upper sealing silicone 20, an atomizing tube 21, and a nozzle 22;
[0080] The nozzle 22 is fitted onto the atomizing tube 21;
[0081] The atomizing tube 21 is connected to the steel tube 19 via an upper sealing silicone 20, which is used to prevent leakage of the atomizing liquid.
[0082] In this embodiment, the nozzle 22 is the component where the user directly contacts and uses the atomized emulsion, and it is fixedly connected to the top of the oil tank 7. An atomizing tube 21 is provided in the nozzle 22, and the atomizing tube 21 is connected to the steel pipe 19 in the atomizing assembly 3. The atomizing tube 21 is used to transport the atomized emulsion. When the oil-retaining cotton 13 absorbs the emulsion, the heating wire 11 generates heat when energized, heating the emulsion on the oil-retaining cotton 13, causing the emulsion to atomize rapidly. The atomized emulsion rises along the steel pipe 19 of the atomizing assembly 3, then enters the atomizing tube 21, and is finally used by the user through the nozzle 22. A sealing silicone 20 is wrapped around the connection between the atomizing tube 21 and the steel pipe 19, effectively preventing leakage of the atomized emulsion from this connection, enhancing the sealing of the entire atomizing system, avoiding emulsion waste and internal component contamination, and ensuring the stability and reliability of the electronic atomizer.
[0083] The second aspect of this application provides an electronic atomizer with a novel 2+10 opening method, the electronic atomizer comprising: a main unit with the novel 2+10 opening method and an atomizing structure with the novel 2+10 opening method; the atomizing structure with the novel 2+10 opening method is mounted on the main unit with the novel 2+10 opening method.
[0084] The 2+10 new type of electronic atomizer consists of two parts: the main unit and the atomizing structure. These two parts are detachably connected. The main unit is the power core of the entire atomizer, housing a battery, control circuitry, and other components that provide power. The atomizing structure stores and heats the e-liquid, including a silicone pull ring 1, a tank assembly 2, an atomizing component 3, and a tank bottom cover assembly 4. The atomizing component 3 heats the e-liquid and typically consists of a heating wire 11 and a reservoir cotton 13. The silicone pull ring 1 and the tank assembly 2 form an airtight structure, sealing the e-liquid within the tank assembly 2. When the user pulls down the silicone pull ring 1 into the tank bottom cover assembly 4, the e-liquid in the tank assembly 2 is transferred into the atomizing component 3. When the atomizing liquid soaks into the oil storage cotton 13 of the atomizing component 3, the atomizing liquid in the oil tank component 2 stops being introduced into the atomizing component 3. After the atomizing structure of the 2+10 new opening method is installed on the main unit of the 2+10 new opening method, the main unit magnet of the 2+10 new opening method attracts the magnet 15 of the atomizing structure, connecting the electrode parts to form a complete circuit. At this time, when the user starts the electronic atomizer, the main unit of the 2+10 new opening method will transfer the battery's electrical energy to the heating wire 11 of the atomizing component 3 in the atomizing structure of the 2+10 new opening method. The heating wire 11 generates heat under the action of electrical energy, causing the atomizing liquid on the oil storage cotton 13 to rapidly heat up and atomize.
[0085] In this embodiment, the main unit and the atomizing structure of the 2+10 novel opening method are detachably connected. When the atomizing liquid in the atomizing structure of the 2+10 novel opening method is used up or the atomizing component 3 malfunctions, only the atomizing structure needs to be replaced, without repairing or replacing the entire electronic atomizer, reducing usage costs and maintenance difficulty. The silicone pull ring 1 and the oil tank assembly 2 form an airtight structure, which can effectively seal the atomizing liquid in the oil tank 7, preventing leakage of atomizing liquid when not in use, and ensuring the safety and cleanliness of the product during transportation and storage. By pulling down the silicone pull ring 1, the atomizing liquid is controlled to flow from the oil tank assembly 2 into the atomizing component 3, and the flow can be automatically stopped when the oil storage cotton 13 is wetted, realizing precise control of the atomizing liquid usage, ensuring a stable atomization effect, and improving the user experience.
[0086] 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 novel opening type atomization structure, characterized in that, include: Silicone pull ring, oil tank assembly, atomizing assembly, and oil tank bottom cover assembly; The oil tank assembly is connected to the oil tank bottom cover assembly, and the oil tank assembly is used to store atomizing liquid; The atomizing component is disposed between the oil tank component and the oil tank bottom cover component; The silicone pull ring is disposed in the oil tank assembly. The silicone pull ring is used to form an airtight structure with the oil tank assembly. When the silicone pull ring is pulled down into the oil tank bottom cover assembly, the oil tank assembly is connected to the atomizing assembly. The atomizing liquid in the oil tank assembly is introduced into the atomizing assembly, and the introduction of the atomizing liquid stops when the atomizing liquid in the atomizing assembly reaches a preset capacity.
2. The atomizing structure of claim 1, wherein The silicone pull ring includes a silicone pull ring head and a silicone pull ring rod; The silicone pull ring head is disposed on the oil tank assembly; The silicone pull ring head is connected to the silicone pull ring rod. The silicone pull ring head is used to form an airtight structure with the oil tank assembly. The silicone pull ring rod is used to pull the silicone pull ring head. When the silicone pull ring head moves down to the oil tank bottom cover assembly with the silicone pull ring rod, the atomizing liquid is introduced into the atomizing assembly from the oil tank assembly, and the silicone pull ring rod separates from the silicone pull ring head.
3. The atomizing structure of claim 2, wherein The oil tank assembly includes an oil tank, a lower sealing silicone, and a lower sealing silicone support; The lower sealing silicone is disposed on the lower sealing silicone bracket; The lower sealing silicone support is disposed inside the oil tank; The lower sealing silicone bracket is provided with a first through hole. When the silicone pull ring head is placed in the first through hole, the silicone pull ring head and the oil tank assembly form an airtight structure.
4. The atomizing structure of claim 1, wherein The atomizing component includes a heating wire and heating wire silicone, and the heating wire and heating wire silicone are fixedly connected.
5. The atomizing structure of claim 4, wherein The atomizing component also includes an oil-retaining cotton, which is wrapped around the heating wire.
6. The atomizing structure of claim 3, wherein The oil tank bottom cover assembly includes an oil tank bottom cover, a magnet, and electrode pins; The oil tank bottom cover is fastened and fixed to the bottom of the oil tank; The magnet is disposed on the bottom cover of the oil tank and is electrically connected to the electrode nail; The electrode pin is electrically connected to the atomizing component; The bottom cover of the oil tank is provided with a second through hole. When the silicone pull ring head is placed in the second through hole, the oil tank assembly is connected to the atomizing assembly.
7. The atomizing structure of claim 6, wherein The oil tank bottom cover assembly also includes oil-absorbing cotton, which is disposed in the oil tank bottom cover.
8. The atomizing structure according to claim 5, characterized in that, The atomizing component also includes a steel pipe, which is sleeved on the oil-retaining cotton.
9. The atomizing structure of claim 8, wherein The oil tank assembly also includes an upper sealing silicone, an atomizing tube, and a nozzle; The nozzle is fitted onto the atomizing tube; The atomizing tube is connected to the steel pipe via the upper sealing silicone, which is used to prevent leakage of the atomizing liquid.
10. A two-plus-ten novel opening method electronic atomizer, characterized in that, The electronic atomizer includes: a main unit with a novel 2+10 opening method and an atomizing structure with a novel 2+10 opening method as described in any one of claims 1 to 9; the atomizing structure with the novel 2+10 opening method is installed on the main unit with the novel 2+10 opening method.