Atomizer and its liquid storage component, atomization component, and assembly method

By designing removable liquid storage components and atomization components, the high cost and liquid leakage of the atomizer are solved, and the effect of reusable and reducing user costs is achieved.

CN113208192BActive Publication Date: 2025-05-30JIWAN (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202110558465.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-21
Publication Date
2025-05-30
Estimated Expiration
2041-05-21

AI Technical Summary

Technical Problem

Currently, the cost of atomizer is high and is prone to liquid leakage problems, resulting in increased user costs and unreusable equipment.

Method used

A nebulizer including a liquid storage assembly and an atomization assembly is designed. The liquid storage assembly consists of a liquid cup, a vent pipe and a connecting pipe. The connecting pipe can slide under the action of external force so that the atomization pipe can enter the liquid storage space and be connected to the mist outlet channel to achieve atomization; when not in use, the connecting pipe and the vent pipe seal the liquid storage space to avoid liquid leakage.

Benefits of technology

The detachable design of the atomizer is realized, reducing user costs, avoiding liquid leakage problems, and allowing reuse of atomizing components.

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Abstract

The present application relates to an atomizer, a liquid storage assembly, an atomization assembly and an assembly method thereof. The liquid storage assembly includes: a liquid cup, which forms a liquid storage space. The liquid cup includes a top and a bottom which are oppositely arranged, and a mist outlet is formed at the top; a ventilation pipe, one end of which is connected to the top of the liquid cup and communicated with the mist outlet, and the other end is located in the liquid storage space; a connecting pipe, which is located in the liquid storage space, and one end of the connecting pipe is communicated with the ventilation pipe; a liquid cup seal is arranged between the other end and the bottom of the liquid cup. Wherein, the connecting pipe and the ventilation pipe are sleeved and connected, a connecting pipe seal is arranged between the connecting pipe and the ventilation pipe, and the connecting pipe can slide relative to the ventilation pipe from the bottom to the top under the action of an external force. In the liquid storage assembly of the present application, there is no need to provide an atomization pipe, and the atomization pipe can enter the liquid storage space through the connecting pipe to achieve atomization. Therefore, the liquid storage assembly of the present application can be disassembled, replaced and reused.
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Description

Technical Field

[0001] This application belongs to the technical field of atomization devices, and particularly relates to an atomizer and its liquid storage component, atomization component, and assembly method. Background Art

[0002] After the atomization component and the liquid storage component in the current atomizer are assembled together, they cannot be disassembled anymore. Generally, the user directly injects liquid into the liquid storage component, and at this time, liquid leakage problems are likely to occur; if it is directly discarded, it cannot be reused, which will increase the user cost. Summary of the Invention

[0003] This application provides an atomizer and its liquid storage component, atomization component, and assembly method to solve the problems of high cost and easy liquid leakage in the current atomizer.

[0004] To solve the above technical problems, this application proposes a liquid storage component of an atomizer, including: a liquid cup, the liquid cup forms a liquid storage space, the liquid cup includes a top and a bottom arranged oppositely, and a mist outlet is formed at the top; an air pipe, one end of the air pipe is connected to the top of the liquid cup and communicates with the mist outlet; the other end is located in the liquid storage space; a connecting pipe, the connecting pipe is located in the liquid storage space, one end of the connecting pipe communicates with the air pipe; a liquid cup seal is arranged between the other end and the bottom of the liquid cup; wherein, the connecting pipe and the air pipe are sleeved and connected, a connecting pipe seal is arranged between the connecting pipe and the air pipe, and the connecting pipe can slide relative to the air pipe from the bottom to the top under the action of an external force.

[0005] Wherein, both the connecting pipe and the bottom of the liquid cup extend out of the liquid cup seal.

[0006] Wherein, a liquid injection hole is arranged on the liquid cup seal, the liquid injection hole communicates with the liquid storage space, and a liquid injection plug is arranged in the liquid injection hole.

[0007] Wherein, a mist port plug is arranged at the top of the liquid cup, and the plug is placed at the mist outlet; a bottom plug is arranged at the bottom of the liquid cup, covering the connecting pipe and the liquid cup seal.

[0008] To solve the above technical problems, this application proposes an atomization component of an atomizer, including: a base, the base is provided with an electrode, an atomization tube, one end of the atomization tube is arranged on the base, the other end forms a mist discharge port, and a liquid inlet is formed on the atomization tube; a heating element, the heating element is arranged in the atomization tube and blocks the liquid inlet; the heating element is electrically connected to the electrode.

[0009] Wherein, a plug-in groove is formed on one side surface of the base, the atomization tube is plugged into the plug-in groove; an electrode is arranged on the other side surface of the base, and the heating element passes through the base and is connected to the electrode.

[0010] Wherein, an atomizing seal is further provided at one end of the atomizing tube inserted into the insertion slot, and at least part of the atomizing seal is filled in the atomizing tube; the heating element passes through the atomizing seal and the base to be connected to the electrode.

[0011] Wherein, an air inlet is further formed on the atomizing tube, located between the liquid inlet and the atomizing seal; the heating element is located between the mist outlet and the air inlet.

[0012] To solve the above technical problems, the present application proposes an atomizer, including the above-mentioned liquid storage assembly and atomizing assembly. The atomizing assembly is inserted into the liquid storage assembly from the bottom of the liquid cup. The atomizing tube is communicated with the connecting tube, and the base is connected to the bottom of the liquid cup.

[0013] Wherein, a connecting portion is formed on the part of the connecting tube extending out of the liquid cup seal. A first sealing ring is provided on the connecting portion, and an abutting surface is formed between the connecting portion and other parts; the atomizing tube is sleeved on the connecting portion, sealed by the first sealing ring, and abuts against the abutting surface.

[0014] Wherein, an installation portion is formed on one side surface of the base where the atomizing tube is provided, and a second sealing ring is provided on the installation portion; the installation portion is inserted into the bottom of the liquid cup and sealed by the second sealing ring.

[0015] To solve the above technical problems, the present application proposes an assembling method for an atomizer. The atomizer is the above-mentioned atomizer. The method includes: docking the atomizing assembly with the liquid storage assembly so that the atomizing tube is inserted into the connecting tube; pushing the atomizing assembly, and the atomizing tube acts on the connecting tube so that the connecting tube slides from the bottom to the top relative to the air vent tube until the base is connected to the bottom of the liquid cup.

[0016] Different from the prior art, in the liquid storage assembly of the present application, the liquid cup realizes the liquid storage function. The connecting tube and the air vent tube in the liquid cup serve as the mist outlet channels. The connecting tube can slide relative to the air vent tube under an external force. Therefore, the atomizing tube can enter the liquid storage space by using the sliding of the connecting tube and be connected to the mist outlet channel, and then atomize and produce mist. When the atomizing tube is not in use, the connecting tube and the air vent tube are respectively connected to the top and bottom of the liquid cup to seal the liquid storage space. The liquid storage assembly can be disassembled and used, that is, the atomizing assembly can be reused, saving costs; the separation of the atomizing assembly and the liquid storage assembly can also avoid the problem of liquid leakage. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] By reading the following detailed description with reference to the accompanying drawings, the above and other objects, features, and advantages of the exemplary embodiments of the present disclosure will become readily understood. In the drawings, several embodiments of the present disclosure are shown in an exemplary rather than restrictive manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:

[0018] Figure 1 is the first cross-sectional structural schematic diagram of the liquid storage assembly of the atomizer of the present application;

[0019] Figure 2 is Figure 1 The second sectional structure schematic diagram of the liquid storage assembly shown;

[0020] Figure 3 is Figure 1 The disassembled structure schematic diagram of the liquid storage assembly shown;

[0021] Figure 4 is Figure 1 The structure schematic diagram of the liquid storage assembly shown;

[0022] Figure 5 is the first sectional structure schematic diagram of the atomizing assembly of the atomizer of the present application;

[0023] Figure 6 is Figure 5 The second sectional structure schematic diagram of the atomizing assembly shown;

[0024] Figure 7 is Figure 5 The disassembled structure schematic diagram of the atomizing assembly shown;

[0025] Figure 8 is Figure 5 The first perspective structure schematic diagram of the atomizing assembly shown;

[0026] Figure 9 is Figure 5 The second perspective structure schematic diagram of the atomizing assembly shown;

[0027] Figure 10 is the sectional structure schematic diagram of the atomizer of the present application before assembly;

[0028] Figure 11 is the sectional structure schematic diagram of the atomizer of the present application during assembly;

[0029] Figure 12 is the first sectional structure schematic diagram of the atomizer of the present application after assembly;

[0030] Figure 13 is the second sectional structure schematic diagram of the atomizer of the present application after assembly;

[0031] Figure 14 is the disassembled structure schematic diagram of the atomizer of the present application.

[0032] Description of main reference numerals:

[0033] 100 - Liquid storage assembly, 11 - Liquid cup, 111 - Mist outlet, 12 - Vent pipe, 13 - Connecting pipe, 131 - Connecting part, 132 - Abutting surface, 133 - First sealing ring, 14 Liquid cup seal, 141 - Liquid injection plug, 15 - Connecting pipe seal, 16 - Mist port plug, 17 - Bottom plug;

[0034] 200 - Atomizing assembly, 21 - Base, 211 - Insertion slot, 212 - Mounting portion, 213 - Second sealing ring, 22 - Atomizing tube, 221 - Mist discharge port, 222 - Liquid inlet, 223 - Air inlet, 23 - Heating element, 24 - Electrode, 25 - Atomizing seal, 26 - Electrode seal;

[0035] 300 - Atomizer. Detailed implementation manner

[0036] Next, the technical solutions in the embodiments of the present disclosure will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all of the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative efforts fall within the protection scope of the present disclosure.

[0037] The following will describe in detail the specific implementation manner of the present disclosure in conjunction with the accompanying drawings.

[0038] In the accompanying drawings Figures 1 - 4 are related schematic diagrams of the liquid storage assembly of the atomizer, Figures 5 - 10 are related schematic diagrams of the atomizing assembly in the atomizer, Figures 11 - 14 are related schematic diagrams of the liquid storage assembly and the atomizing assembly assembled to form an atomizer.

[0039] In this embodiment, the atomizer 300 includes a liquid storage assembly 100 and an atomizing assembly 200. Among them, both the liquid storage assembly 100 and the atomizing assembly 200 are independent components and can be sold separately. The two cooperate to form an atomizer, which can atomize the atomizing liquid. Among them, the liquid storage assembly 100 is used to store the atomizing liquid. After the atomizing assembly 200 is assembled with the liquid storage assembly 100, the atomizing liquid therein can be atomized, and the components for realizing atomization are arranged in the atomizing assembly 200. When the atomizing liquid in the liquid storage assembly 100 is used up, the atomizing assembly 200 and the liquid storage assembly 100 can also be disassembled, and another new liquid storage assembly 100 can be replaced on the atomizing assembly 200 to achieve reuse.

[0040] First, please refer to Figures 1 - 4 , the liquid storage assembly 100 includes a liquid cup 11, a ventilation pipe 12, and a connecting pipe 13.

[0041] Among them, the liquid cup 11 forms a liquid storage space, which includes a top and a bottom arranged opposite to each other. The top is formed with a mist outlet 111. One end of the ventilation pipe 12 is connected to the top of the liquid cup 11 and communicates with the mist outlet 111, and the other end is located inside the liquid storage space. The connecting pipe 13 is also located inside the liquid storage space. One end communicates with the ventilation pipe 12, and a liquid cup seal 14 is provided between the other end and the bottom of the liquid cup 11. The connecting pipe 13 is specifically sleeved and connected to the ventilation pipe 12, and a connecting pipe seal 15 is provided between the connecting pipe 13 and the ventilation pipe 12.

[0042] Thus, when the liquid storage assembly 100 is not in use, the liquid cup 11, the ventilation pipe 12, the connecting pipe 13 and the liquid cup seal 14 enclose a closed liquid storage space, and almost no leakage of the atomized liquid occurs therein.

[0043] In this embodiment, the material of the connecting pipe seal 15 may include cotton or other porous materials, so that while having a certain sealing property, it can also infiltrate part of the atomized liquid, facilitating subsequent rapid oil supply. Further, the connecting pipe seal 15 can extend to one end of the connecting pipe 13 close to the bottom of the liquid cup 11, enabling the atomizing pipe to be filled with oil better.

[0044] A liquid injection hole is further provided on the liquid seal 14. The liquid injection hole communicates with the liquid storage space, and then the atomized liquid can be injected into the liquid storage assembly. A liquid injection plug 141 is provided on the liquid injection hole to ensure the sealing property. There are multiple groups of matching annular ridges and annular grooves on the contact surfaces of the liquid injection plug 141 and the liquid injection hole, and the two cooperate to enhance the sealing property; in addition, the contact surfaces of the liquid injection plug 141 and the liquid injection hole can also be set to a matching threaded connection structure. The end of the liquid injection plug 141 can also be provided with concave patterns, such as cross patterns or straight patterns, which are convenient for disassembling and assembling the liquid injection plug for liquid injection while improving the sealing property. By using the liquid injection plug 141, after the user uses up the liquid in the liquid storage assembly 100, the liquid can be injected or the liquid storage assembly 100 can be replaced.

[0045] In this embodiment, the ventilation pipe 12 and the connecting pipe 13 are used to discharge the mist, so the two need to be used in cooperation with the atomizing assembly 200. Their structural features are that the connecting pipe 13 can slide relative to the ventilation pipe from the bottom to the top under an external force, that is, to give space for the atomizing assembly 200 to enter the liquid storage space. The atomizing assembly atomizes the atomized liquid in the liquid storage space, and then discharges the atomized mist through the ventilation pipe 12 and the connecting pipe 13.

[0046] In this embodiment, the bottom of the connecting pipe 13 and the liquid cup 11 need to extend out of the liquid cup seal 14 to facilitate connection with the atomizing assembly 200. In other embodiments, the bottom of the connecting pipe 13 and the liquid cup 11 may not extend out of the liquid cup seal 14, and the atomizing assembly 200 can extend into the connecting pipe 13 to achieve connection.

[0047] In addition, when the liquid storage assembly 100 is sold separately, as a product, a mist outlet plug 16 and a bottom plug 17 are respectively provided at its top and bottom. The mist outlet plug 16 is plugged into the mist outlet 111, and the bottom plug 17 covers the connecting pipe 13 and the liquid cup seal 14 to prevent dust from entering the liquid cup 11 or liquid leakage.

[0048] For the atomization assembly 200 combined with the liquid storage assembly 100, please refer to Figures 5 - 9 , the atomization assembly 200 includes a base 21, an atomization tube 22 and a heating element 23.

[0049] Among them, an electrode 24 is provided on the base 21. The electrode 24 is used to supply current to the heating element 23 to make the heating element 23 generate heat for atomizing the atomization liquid. One end of the atomization tube 22 is arranged on the base 21, and the other end is provided with a mist outlet 221. An inlet 222 is also formed on the atomization tube 22. The heating element 23 is arranged in the atomization tube 22 and blocks the inlet 222. The heating element 23 is connected to the electrode 24, that is, the atomization liquid can be heated and atomized by the heating element 23 from the inlet 222, and the formed mist can be discharged from the atomization tube 22.

[0050] Specifically, a plug-in groove 211 is formed on one side surface of the base 21, and the atomization tube 22 is plugged into the plug-in groove 211. The electrode 24 is arranged on the other side surface of the base 21, and the heating element 23 needs to pass through the base 21 to be connected to the electrode 21.

[0051] An atomization seal 25 is also provided at one end of the atomization tube 22 plugged into the plug-in groove 211. The atomization seal 25 is specifically filled in the atomization tube 22 and abuts against the base. It can be completely filled in the atomization tube 22 or partially filled in the atomization tube 22. The heating element 23 needs to pass through the atomization seal 25 and the base 21 to be connected to the electrode 21.

[0052] Since the atomization tube 22 needs to use air to atomize the liquid in the liquid storage assembly, an air inlet 223 is also formed on the atomization tube 22. The air inlet 223 is located between the inlet 222 and the atomization seal 25, and the heating element 23 is located between the mist outlet 221 and the air inlet 223. That is, the air inlet 223 is located below, and air enters the air inlet 223 and the heating element 23 in sequence from the electrode air hole on the base 21, and then is discharged from the mist outlet 221.

[0053] In addition, a liquid holding groove is provided at the bottom of the atomization tube 22. For example, in this embodiment, the liquid holding groove is provided on the atomization seal 25 for storing a small amount of leaked atomization liquid. The heating element 23 can be extended to the liquid holding groove, or a liquid guiding member can be provided to connect the liquid holding groove and the heating element 23, so as to facilitate the full atomization of the atomization liquid and reduce the risk of liquid leakage.

[0054] For the assembly and use of the liquid storage component 100 and the atomization component 200, please refer to Figures 10 - 14 The atomization component 200 is inserted into the liquid storage component 100 from the bottom of the liquid cup 11.

[0055] Before the insertion assembly, as Figure 10 Align the atomization tube 22 with the connecting tube 13, and then insert the atomization component 200 and the liquid storage component 100. Obviously, during this process, the bottom plug 17 of the liquid storage component 100 needs to be removed.

[0056] During the insertion assembly process, as Figure 11 The atomization tube 22 is connected to the connecting tube 13. A connecting portion 131 is formed on the part of the connecting tube 13 extending out of the liquid cup seal 14. An abutting surface 131 is formed between the connecting portion 131 and other parts. The atomization tube 22 is sleeved on the connecting portion 131 and abuts against the abutting surface 132. Then, the connecting tube 13 can be pushed to slide relative to the ventilation tube 12, so that the atomization tube 22 can enter the liquid storage space. A first sealing ring 133 is also provided between the atomization tube 22 and the connecting portion 131 to prevent the atomization liquid from entering.

[0057] After the assembly is completed, as Figure 12 The atomization component 200 and the liquid storage component 100 need to be assembled and installed together to form a complete atomizer 300. In this embodiment, on one side of the base 21 where the atomization tube 22 is provided, that is, the side cooperating with the liquid storage component 100, an installation portion 212 is formed. A part of the liquid cup 11 extends out of the liquid cup seal 14, and then the installation portion 212 is inserted into the bottom of the liquid cup 11. To ensure the stable cooperation between the two, a convex structure can be provided on the outer surface of the installation portion 212 to achieve an interference fit between the two. A second sealing ring 213 is provided on the installation portion 212, and the two can be sealed through the second sealing ring 213.

[0058] And after the assembly is completed, the liquid inlet 222 on the atomization tube 22 is located in the liquid storage space of the liquid cup 11. The heating element 23 in the atomization tube 22 can heat the atomization liquid in the liquid storage space, and then generate mist, which passes through the atomization tube 22, the connecting tube 13 and the ventilation tube 12 and is discharged from the mist outlet 11.

[0059] In one implementation manner, when the atomizer is assembled, the connecting tube 13 abuts against the top of the oil cup 11, thereby increasing the structural stability. Further, at the abutting portion between the connecting tube 13 and the oil cup 11, silica gel can also be provided to prevent the atomization liquid from entering between the ventilation tube 12 and the connecting tube 13.

[0060] Based on the above structure of the atomizer 300, the assembly method for realizing the above atomizer 300 includes the following steps.

[0061] S101: Dock the atomization component 200 with the liquid storage component 100 so that the atomization tube 22 is inserted into the connecting tube 13.

[0062] S102: Push the atomization component 200. The atomization tube 22 acts on the connecting tube 13, causing the connecting tube 13 to slide upward from the bottom relative to the ventilation tube 12 until the base 21 is connected to the bottom of the liquid cup 11.

[0063] In this embodiment, the liquid cup 21 in the liquid storage component 100 realizes the liquid storage function. The connecting tube 13 and the ventilation tube 12 in the liquid cup 21 serve as the mist outlet channels. The connecting tube 13 can slide relative to the ventilation tube 12 under an external force. Therefore, the atomization tube 22 in the atomization component 200 can utilize the sliding of the connecting tube 13 to enter the liquid storage space and connect with the mist outlet channels, thereby realizing atomization and mist output. When the atomization tube 22 is not in use, the connecting tube 13 and the ventilation tube 12 are respectively connected to the top and bottom of the liquid cup 11 to seal the liquid storage space. The liquid storage component 100 can be detachably used, that is, the atomization component 200 can be reused, saving costs; the separation of the atomization component 200 and the liquid storage component 100 can also avoid the problem of liquid leakage.

[0064] In the above description of this specification, unless otherwise clearly specified and limited, terms such as "fixed", "installed", "connected" or "coupled" should be understood in a broad sense. For example, regarding the term "connected", it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, or it can be the internal communication of two components or the interaction relationship between two components. Therefore, unless clearly limited in this specification, those skilled in the art can understand the specific meanings of the above terms in this application according to specific circumstances.

[0065] According to the above description of this specification, those skilled in the art can also understand the following terms used, such as "upper", "lower", "front", "rear", "left", "right", "length", "width", "thickness", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", "center", "longitudinal", "transverse", "clockwise" or "counterclockwise", etc. The terms indicating the orientation or position relationship are based on the orientation or position relationship shown in the drawings of this specification. They are only for the purpose of facilitating the description of the solution of this application and simplifying the description, rather than explicitly or implicitly indicating that the devices or components involved must have the specific orientation, be constructed and operate in the specific orientation. Therefore, the above terms of orientation or position relationship cannot be understood or interpreted as a limitation to the solution of this application.

[0066] In addition, the terms "first" or "second" used in this specification, which are terms used to refer to numbers or ordinals, are for descriptive purposes only and should not be construed as explicitly or implicitly indicating relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" or "second" may explicitly or implicitly include at least one such feature. In the description of this specification, the meaning of "a plurality" is at least two, such as two, three or more, etc., unless otherwise specifically defined.

[0067] Although this specification has shown and described multiple embodiments of the present application, it will be apparent to those skilled in the art that such embodiments are provided by way of example only. Those skilled in the art will think of many changes, alterations and alternative ways without departing from the spirit and idea of the present application. It should be understood that various alternative solutions to the embodiments of the present application described herein may be adopted in the process of practicing the present application. The appended claims are intended to define the scope of protection of the present application and thus cover the module compositions, equivalents or alternative solutions within the scope of these claims.

Claims

1. An atomizer, characterized in that, the atomizer includes a liquid storage component and an atomization component, and the liquid storage component includes: a liquid cup, the liquid cup forms a liquid storage space, the liquid cup includes a top and a bottom arranged oppositely, and a mist outlet is formed at the top; a ventilation pipe, one end of the ventilation pipe is connected to the top of the liquid cup and communicates with the mist outlet; the other end is located in the liquid storage space; a connecting pipe, the connecting pipe is located in the liquid storage space, one end of the connecting pipe communicates with the ventilation pipe; a liquid cup seal is provided between the other end and the bottom of the liquid cup; wherein, the connecting pipe and the ventilation pipe are sleeved and connected, a connecting pipe seal is provided between the connecting pipe and the ventilation pipe, and the connecting pipe can slide relative to the ventilation pipe from the bottom to the top under the action of an external force; the atomization component includes: a base, the base is provided with an electrode, an atomization pipe, one end of the atomization pipe is arranged on the base, the other end forms a mist discharge port, and a liquid inlet is formed on the atomization pipe; a heating element, the heating element is arranged in the atomization pipe and blocks the liquid inlet; the heating element is electrically connected to the electrode; the atomization component is inserted into the liquid storage component from the bottom of the liquid cup, the atomization pipe communicates with the connecting pipe, and the base is connected to the bottom of the liquid cup; both the connecting pipe and the bottom of the liquid cup extend out of the liquid cup seal; a liquid injection hole is provided on the liquid cup seal, the liquid injection hole communicates with the liquid storage space, and a liquid injection plug is provided in the liquid injection hole.

2. The atomizer according to claim 1, characterized in that, a mist outlet plug is provided at the top of the liquid cup and is placed in the mist outlet; a bottom plug is provided at the bottom of the liquid cup and covers the connecting pipe and the liquid cup seal.

3. The atomizer according to claim 1, characterized in that, a plugging groove is formed on one side surface of the base, the atomization pipe is plugged into the plugging groove; the electrode is provided on the other side surface of the base, and the heating element passes through the base and is connected to the electrode.

4. The atomizer according to claim 3, characterized in that, an atomization seal is further provided at one end of the atomization pipe plugged into the plugging groove, and at least part of the atomization seal is filled in the atomization pipe; the heating element passes through the atomization seal and the base to be connected to the electrode.

5. The atomizer according to claim 4, characterized in that, an air inlet is further formed on the atomization pipe, located between the liquid inlet and the atomization seal; the heating element is located between the mist discharge port and the air inlet.

6. The atomizer according to claim 1, characterized in that, the part of the connecting pipe extending out of the liquid cup seal forms a connecting portion, a first sealing ring is provided on the connecting portion, and a butting surface is formed between the connecting portion and other parts; the atomization pipe is sleeved on the connecting portion, sealed by the first sealing ring, and abuts against the butting surface.

7. The atomizer according to claim 1, characterized in that, One side of the base where the atomizing tube is disposed forms an installation portion, and a second sealing ring is disposed on the installation portion; the installation portion is inserted into the bottom of the liquid cup and sealed by the second sealing ring.

8. An assembling method of an atomizer, characterized in that the atomizer is the atomizer according to any one of claims 1-7, and the method includes: docking the atomization assembly with the liquid storage assembly so that the atomizing tube is inserted into the connecting tube; pushing the atomization assembly, the atomizing tube acting on the connecting tube so that the connecting tube slides from the bottom to the top relative to the ventilation tube until the base is connected to the bottom of the liquid cup.

Citation Information

Patent Citations

  • Atomizer and liquid storage assembly thereof

    CN217937258U