Electronic atomization device

By designing a separable atomizer module and battery cell module in the electronic atomization device, and forming a second positive electrode and a second negative electrode at the end of the battery cell module, the electrical connection method is simplified, the problem of difficulty for users to disassemble and assemble the battery cell is solved, and convenient battery cell repair and reuse are achieved.

CN223053893UActive Publication Date: 2025-07-04SMOORE INTERNATIONAL HOLDINGS LIMITED
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Patent Information

Application Number
CN202421687980.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-07-04
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

After the assembly of the existing electronic atomization device is completed, it is difficult for users to disassemble and reassemble the battery cell from the heating assembly without using supporting tools, resulting in difficulty in repairing and reusing the battery cell, and serious waste of resources.

Method used

An electronic atomization device is designed, in which the atomizer module and the battery cell module can be arranged separately, and the battery cell module is formed with a second positive electrode and a second negative electrode near one end of the atomizer module. The first positive electrode and the first negative electrode extend to one end of the atomizer module for electrical connection, simplifying the electrical connection method, so that the user can easily disassemble and assemble the battery cell module and the atomizer module.

Benefits of technology

It realizes convenient disassembly and assembles the battery cell module and the atomizer module, simplifies operation difficulty, improves disassembly and assemble efficiency, facilitates the maintenance and reuse of the battery cell, and reduces resource waste.

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Patent Text Reader

Abstract

The embodiment of the utility model provides an electronic atomization device which comprises an atomizer module and a battery cell module, the atomizer module comprises a heating assembly, and the heating assembly comprises a first positive electrode and a first negative electrode. The battery cell module comprises a first shell and a battery cell, the battery cell is located in the first shell, the atomizer module is separably arranged at one end of the battery cell module, and a second positive electrode and a second negative electrode are formed at the end, close to the atomizer module, of the battery cell module. And the second positive electrode and the second negative electrode are electrically connected with the battery cell respectively. The first positive electrode extends to one end, close to the battery cell module, of the atomizer module so as to be electrically connected with the second positive electrode, and the first negative electrode extends to one end, close to the battery cell module, of the atomizer module so as to be electrically connected with the second negative electrode. According to the electronic atomization device provided by the embodiment of the invention, the battery cell is convenient to detach.
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Description

Technical Field

[0001] This application relates to the technical field of atomization, and particularly to an electronic atomization device. Background Art

[0002] In the related art, an electronic atomization device has many components and a complex assembly process. Among them, after the electronic atomization device is assembled, the battery cell and the heating component need to be electrically connected to supply power to the heating component.

[0003] However, after the electronic atomization device in the related art is assembled, it is difficult for the user to detach and reassemble the battery cell from the heating component without using supporting tools, making it difficult to repair and reuse the battery cell, resulting in a waste of resources. Summary of the Utility Model

[0004] In view of this, the main purpose of the embodiments of this application is to provide an electronic atomization device that can facilitate the detachment of the battery cell.

[0005] To achieve the above object, the technical solution of the embodiments of this application is realized as follows:

[0006] The embodiments of this application provide an electronic atomization device, including:

[0007] An atomizer module, the atomizer module includes a heating component, and the heating component includes a first positive electrode and a first negative electrode;

[0008] A battery cell module, the battery cell module includes a first housing and a battery cell, the battery cell is located in the first housing, the atomizer module is detachably disposed at one end of the battery cell module, a second positive electrode and a second negative electrode are formed at one end of the battery cell module close to the atomizer module, and the second positive electrode and the second negative electrode are respectively electrically connected to the battery cell;

[0009] The first positive electrode extends to one end of the atomizer module close to the battery cell module to be electrically connected to the second positive electrode, and the first negative electrode extends to one end of the atomizer module close to the battery cell module to be electrically connected to the second negative electrode.

[0010] In one embodiment, the battery cell module includes a main board and a microphone, the main board and the microphone are both located in the first housing and are both electrically connected to the battery cell, at least part of the area of the first housing is conductive, the battery cell includes a battery cell positive electrode and a battery cell negative electrode, the main board includes a third positive electrode and a third negative electrode, the third positive electrode is electrically connected to the battery cell positive electrode, and the third negative electrode and the battery cell negative electrode are electrically connected through the first housing.

[0011] In one embodiment, the first shell includes a first sub-shell and a second sub-shell, the battery cell, the main board and the microphone are all located in the second sub-shell, the third negative electrode and the battery cell negative electrode are electrically connected to the second sub-shell respectively, one end of the second sub-shell close to the atomizer module is open to form a mounting port, the first sub-shell is connected to one end of the second sub-shell close to the atomizer module, and at least a partial area is located at the mounting port to form the second negative electrode.

[0012] In one embodiment, the microphone is arranged on the main board and is located on a side of the main board close to the atomizer module. The battery cell module further includes a microphone cover arranged on the microphone and electrically connected to the main board. The microphone cover is the second positive electrode.

[0013] In one embodiment, the atomizer module further includes a seat body arranged on a side of the heating component close to the battery cell module, the seat body includes an insulating seat and a conductive seat, the conductive seat cover is arranged on a side of the insulating seat close to the battery cell module, the first positive electrode passes through the insulating seat to be electrically connected to the second positive electrode, the first negative electrode passes through the insulating seat to be electrically connected to the conductive seat, and the conductive seat is electrically connected to the second negative electrode.

[0014] In one embodiment, the battery cell module includes a main board and a microphone, the main board and the microphone are both located in the first shell and are electrically connected to the battery cell, the battery cell module also includes a microphone cover disposed on the microphone and electrically connected to the main board, the microphone cover is the second positive electrode, a partial area of ​​the insulating seat close to the side of the battery cell module is recessed to form an installation cavity, the area of ​​the conductive seat located at the installation cavity is open to form a connecting port, the first positive electrode passes through the insulating seat to extend into the installation cavity, and the microphone cover is installed in the installation cavity through the connecting port to be electrically connected to the first positive electrode.

[0015] In one embodiment, the atomizer module further includes a spring disposed in the mounting cavity. When the microphone cover is installed in the mounting cavity, the spring is sleeved on the circumference of the microphone cover. The first positive electrode is located between the spring and the microphone cover. The first positive electrode is in contact with the outer surface of the microphone cover under the binding action of the spring.

[0016] In one embodiment, the first shell has an air inlet, the microphone cover has an air outlet communicated with the air inlet, the atomizer module includes an atomization chamber, the heating component is located in the atomization chamber, and the insulating seat includes a flow passage, one end of the flow passage is communicated with the atomization chamber, and the other end extends to a side of the installation chamber away from the heating component and is communicated with the installation chamber;

[0017] When the electronic atomization device works, an air flow circulation path is formed between the air inlet and the atomization chamber, which sequentially passes through the microphone, the air passing port, the installation chamber, the current passing channel and the heating component.

[0018] In one embodiment, the electronic atomization device includes a second housing, a mouthpiece and a bottom cover. The atomizer module and the battery cell module are arranged in the second housing. The mouthpiece and the bottom cover are respectively located at opposite ends of the second housing. One of the second housing and the bottom cover has a clamping groove, and the other has a clamping buckle. A partial area of the clamping groove is open to form a clamping opening, and the clamping buckle is slidably clamped in the clamping groove through the clamping opening.

[0019] In one embodiment, the microphone is a silicon microphone; and / or,

[0020] The battery cell module includes a charging interface located in the first housing. The charging interface is arranged on the main board and is electrically connected to the battery cell. The area of the first housing at the charging interface is open, so that the charging interface is exposed to the external view.

[0021] The embodiment of the present application provides an electronic atomization device, which includes an atomizer module and a battery cell module. The battery cell module includes a first housing and a battery cell. The battery cell is located in the first housing. The atomizer module is detachably arranged at one end of the battery cell module. The battery cell module forms a second positive electrode and a second negative electrode at one end close to the atomizer module. The second positive electrode and the second negative electrode are respectively electrically connected to the battery cell. The first positive electrode extends to one end of the atomizer module close to the battery cell module to be electrically connected to the second positive electrode, and the first negative electrode extends to one end of the atomizer module close to the battery cell module to be electrically connected to the second negative electrode. On the one hand, the battery cell module and the atomizer module are detachably arranged, so that the user can easily separate the battery cell module from the atomizer module, and thus can easily detach the battery cell from the atomizer module, which is convenient for the user to repair and reuse the battery cell. On the other hand, the second positive electrode and the second negative electrode are formed at the end of the battery cell module, and the first positive electrode and the first negative electrode extend to the end of the atomizer module. Therefore, during the assembly process of the battery cell module and the atomizer module, only the second positive electrode and the second negative electrode need to be respectively docked with the first positive electrode and the second positive electrode, and the electrical connection between the battery cell module and the atomizer module can be completed, which greatly simplifies the electrical connection method between the battery cell module and the atomizer module, simplifies the operation difficulty, and improves the disassembly and assembly efficiency. Description of the Drawings

[0022] Figure 1 is a schematic structural diagram of an electronic atomization device according to an embodiment of the present application;

[0023] Figure 2 isFigure 1 Partial enlarged view at A in the figure, where the bottom cover and the second housing are in a separated state;

[0024] Figure 3 is Figure 1 Cross-sectional view of the electronic atomization device in the figure;

[0025] Figure 4 is Figure 3 Partial enlarged view at B in the figure;

[0026] Figure 5 is Figure 3 Partial enlarged view at C in the figure;

[0027] Figure 6 is Figure 1 Exploded view of the electronic atomization device in the figure;

[0028] Figure 7 is Figure 6 Schematic structural diagram of the atomizer module in the figure;

[0029] Figure 8 is Figure 7 Schematic structural diagram of the atomizer module from another perspective in the figure, with the conductive base hidden;

[0030] Figure 9 is Figure 8 Cross-sectional view of the insulating base in the figure;

[0031] Figure 10 is Figure 6 Schematic structural diagram of the battery cell module in the figure;

[0032] Figure 11 is Figure 10 Schematic structural diagram of the battery cell module with the second sub-shell hidden;

[0033] Figure 12 is Figure 10 Exploded view of the battery cell module in the figure.

[0034] Explanation of reference numerals

[0035] 10. Atomizer module; 10a. Atomization chamber; 11. Heating component; 111. First positive electrode; 112. First negative electrode; 12. Base body; 121. Insulating base; 121a. Installation cavity; 121b. Overcurrent channel; 122. Conductive base; 122a. Communication port; 13. Spring; 14. Oil storage cotton; 15. Upper silica gel; 20. Battery cell module; 21. First housing; 212. First sub-housing; 213. Second sub-housing; 213a. Installation port; 22. Battery cell; 221. Battery cell positive electrode; 222. Battery cell negative electrode; 23. Main board; 231. Third positive electrode; 232. Third negative electrode; 24. Microphone; 25. Second positive electrode; 26. Second negative electrode; 27. Microphone cover; 27a. Air passage port; 28. Charging interface; 29. Insulating partition; 30. Second housing; 30a. Clamping groove; 30b. Bayonet; 40. Mouthpiece; 50. Bottom cover; 51. Buckle. Detailed implementation manners

[0036] In the description of the embodiments of the present application, technical terms such as "first", "second", "third", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity, specific order or primary-secondary relationship of the indicated technical features.

[0037] An embodiment of the present application provides an electronic atomization device. Please refer to Figure 3 and Figure 6 , the electronic atomization device includes an atomizer module 10 and a battery cell module 20.

[0038] Please refer to Figure 3 and Figure 8 , the atomizer module 10 includes a heating component 11, and the heating component 11 includes a first positive electrode 111 and a first negative electrode 112.

[0039] Please refer to Figure 4 , Figure 10 , Figure 11 and Figure 12 , the battery cell module 20 includes a first housing 21 and a battery cell 22. The battery cell 22 is located inside the first housing 21. The atomizer module 10 is detachably disposed at one end of the battery cell module 20. A second positive electrode 25 and a second negative electrode 26 are formed at one end of the battery cell module 20 close to the atomizer module 10. The second positive electrode 25 and the second negative electrode 26 are respectively electrically connected to the battery cell 22.

[0040] The first positive electrode 111 extends to one end of the atomizer module 10 close to the battery cell module 20 to be electrically connected to the second positive electrode 25, and the first negative electrode 112 extends to one end of the atomizer module 10 close to the battery cell module 20 to be electrically connected to the second negative electrode 26.

[0041] Specifically, the atomizer module 10 can atomize the atomization liquid to form an aerosol.

[0042] The first positive electrode 111 of the heating component 11 is electrically connected to the second positive electrode 25 of the battery cell module 20, and the first negative electrode 112 and the second negative electrode 26 of the battery cell module 20 are electrically connected. Thus, the battery cell 22 can supply power to the heating component 11 to make the heating component 11 generate heat, thereby atomizing the atomization liquid.

[0043] The atomizer module 10 is separable from the battery cell module 20. The specific connection method between the two can be set according to the actual situation, but a connection method that facilitates the separation of the atomizer module 10 and the battery cell module 20 needs to be adopted.

[0044] For example, the end portions of the atomizer module 10 and the battery cell module 20 that are close to each other are attached, that is, only contact is formed by attachment between the end portions of the two that are close to each other, so that the first positive electrode 111 and the second positive electrode 25, and the first negative electrode 112 and the second negative electrode 26 are electrically connected respectively. Thus, it is convenient to disassemble and assemble the two, and at the same time, it will not affect the normal operation of the electronic atomization device.

[0045] The second positive electrode 25 and the second negative electrode 26 are located at the end of the battery cell module 20 close to the atomizer module 10. At the same time, the first positive electrode 111 and the first negative electrode 112 extend to the end of the atomizer module 10 close to the battery cell module 20. Thus, it is convenient for the second positive electrode 25 and the second negative electrode 26 to be electrically connected to the first positive electrode 111 and the first negative electrode 112 respectively. Therefore, there is no need to adopt a complex wiring method, and it is convenient to disassemble and assemble the atomizer module 10 and the battery cell module 20.

[0046] By arranging the battery cell 22 in the first housing 21 and forming the second positive electrode 25 and the second negative electrode 26 at the end of the battery cell module 20, it is convenient to disassemble and assemble the battery cell module 20 and the atomizer module 10. The specific structure of the battery cell module 20 can be set according to the actual situation.

[0047] For example, the battery cell module 20 further includes a main board 23 and a microphone 24. Both the main board 23 and the microphone 24 are located in the first housing 21 and are electrically connected to the battery cell 22.

[0048] Thus, by arranging the main board 23, the microphone 24 and the battery cell 22 in the first housing 21, the above-mentioned components can be integrated into the battery cell module 20, so that the battery cell 22 can be separated from the atomizer module 10 by disassembling the battery cell module 20 as a whole from the atomizer module 10.

[0049] Among them, the battery cell 22 is electrically connected to the main board 23, so as to be able to supply power to the main board 23 to make the main board 23 work normally.

[0050] The battery cell 22 is electrically connected to the microphone 24, so as to be able to supply power to the main board 23 to make the microphone 24 work normally.

[0051] The main board 23 and the microphone 24 can also be electrically connected to enable the transmission of electrical signals between the main board 23 and the microphone 24.

[0052] The specific type of the microphone 24 can be set according to the actual situation. For example, the microphone 24 is a silicon microphone 24.

[0053] It should be noted that the battery cell module 20 can only integrate the first housing 21, the battery cell 22, the main board 23 and the microphone 24. Of course, according to the actual situation, other components can also be integrated.

[0054] For example, please refer to Figure 4 、 Figure 10 、 Figure 11 and Figure 12 , the battery cell module 20 includes a charging interface 28 located inside the first housing 21. The charging interface 28 is provided on the main board 23 and is electrically connected to the battery cell 22. The area of the first housing 21 at the charging interface 28 is open to expose the charging interface 28 to the external view. Thus, the charging interface 28 can also be integrated in the battery cell module 20 and on the main board 23, so that during the process of disassembling the battery cell module 20 and the atomizer module 10, the charging interface 28 can be removed together with the battery cell 22, and thus the disassembly between the battery cell module 20 and the atomizer module 10 will not be affected by the electrical connection between the charging interface 28 and the battery cell 22.

[0055] Specifically, at the opening of the charging interface 28, the first housing 21 forms an insertion port for an external device to pass through, facilitating the docking of the external device with the charging interface 28 to supply power to the electronic atomization device.

[0056] In the electronic atomization device according to the embodiment of the present application, the battery cell module 20 includes a first housing 21 and a battery cell 22. The battery cell 22 is located inside the first housing 21. The atomizer module 10 is detachably disposed at one end of the battery cell module 20. A second positive electrode 25 and a second negative electrode 26 are formed at one end of the battery cell module 20 close to the atomizer module 10. The second positive electrode 25 and the second negative electrode 26 are respectively electrically connected to the battery cell 22. The first positive electrode 111 extends to one end of the atomizer module 10 close to the battery cell module 20 to be electrically connected to the second positive electrode 25, and the first negative electrode 112 extends to one end of the atomizer module 10 close to the battery cell module 20 to be electrically connected to the second negative electrode 26. On the one hand, the battery cell module 20 and the atomizer module 10 are detachably disposed, so that the user can easily separate the battery cell module 20 from the atomizer module 10, and thus the user can easily detach the battery cell 22 from the atomizer module 10, which is convenient for repairing and reusing the battery cell 22. On the other hand, the second positive electrode 25 and the second negative electrode 26 are formed at the end of the battery cell module 20, and the first positive electrode 111 and the first negative electrode 112 extend to the end of the atomizer module 10. Thus, during the assembly process of the battery cell module 20 and the atomizer module 10, only the second positive electrode 25 and the second negative electrode 26 need to be respectively docked with the first positive electrode 111 and the second positive electrode 25, and the electrical connection between the battery cell module 20 and the atomizer module 10 can be completed. This greatly simplifies the electrical connection method between the battery cell module 20 and the atomizer module 10, simplifies the operation difficulty, and improves the disassembly and assembly efficiency.

[0057] In one embodiment, please refer to Figure 5 、 Figure 11 and Figure 12 , the battery cell module 20 includes a main board 23 and a microphone 24. The main board 23 and the microphone 24 are both located inside the first housing 21 and are both electrically connected to the battery cell 22. At least part of the area of the first housing 21 is electrically conductive. The battery cell 22 includes a battery cell positive electrode 221 and a battery cell negative electrode 222. The main board 23 includes a third positive electrode 231 and a third negative electrode 232. The third positive electrode 231 is electrically connected to the battery cell positive electrode 221, and the third negative electrode 232 and the battery cell negative electrode 222 are electrically connected through the first housing 21.

[0058] Specifically, only part of the area of the first housing 21 can be electrically conductive, or all the housing areas can be electrically conductive. Thus, through the at least part of the area of the first housing 21 being electrically conductive, the third negative electrode 232 of the main board 23 and the battery cell negative electrode 222 can be electrically connected, which can simplify the internal wiring of the battery cell module 20, and thus can optimize the electrical connection method between the main board 23 and the battery cell 22.

[0059] Among them, the specific material type of the first housing 21 can be set according to the actual situation.

[0060] For example, the first housing 21 is made of SPCC material (generally cold-rolled carbon steel sheets and strips).

[0061] In one embodiment, please refer to Figure 11 and Figure 12 , one end of the battery cell 22 close to the main board 23 is the positive electrode 221 of the battery cell, and the end of the battery cell 22 away from the main board 23 is the negative electrode 222 of the battery cell. Thus, since the distance between the positive electrode 221 of the battery cell and the third positive electrode 231 of the main board 23 is short, they can be electrically connected through leads. And since the distance between the negative electrode 222 of the battery cell and the third negative electrode 232 of the main board 23 is long, electrical connection is made through the first housing 21, which can simplify the wiring between the two, and at the same time facilitate the integration of the battery cell 22 and the main board 23 together.

[0062] In one embodiment, please refer to Figure 10 , the first housing 21 includes a first sub-housing 212 and a second sub-housing 213. The battery cell 22, the main board 23 and the microphone 24 are all located inside the second sub-housing 213. The third negative electrode 232 and the negative electrode 222 of the battery cell are respectively electrically connected to the second sub-housing 213. One end of the second sub-housing 213 close to the atomizer module 10 is open to form an installation opening 213a. The first sub-housing 212 is connected to one end of the second sub-housing 213 close to the atomizer module 10, and at least part of the area is located at the installation opening 213a to form a second negative electrode 26. Thus, by providing the first sub-housing 212 and the second sub-housing 213, while simplifying the internal wiring of the battery cell module 20, it is convenient to form a second negative electrode 26 at the end of the battery cell module 20 that is electrically connected to the first negative electrode 112 of the heating component 11, thereby facilitating the electrical connection between the battery cell module 20 and the atomizer module 10.

[0063] Specifically, both the first sub-housing 212 and the second sub-housing 213 are housings with electrical conductivity. Among them, on the one hand, the second sub-housing 213 can accommodate the battery cell 22, the main board 23 and the microphone 24, and on the other hand, it can play a role in electrically connecting the battery cell 22 and the main board 23.

[0064] The first sub-housing 212 can be partially located at the installation opening 213a or entirely located at the installation opening 213a, thereby forming the second negative electrode 26 of the battery cell module 20 for electrically connecting to the first negative electrode 112 of the heating component 11.

[0065] It should be noted that since the first sub-housing 212 is connected to the second sub-housing 213, it can also be electrically connected to the battery cell 22, thereby realizing the electrical connection between the negative electrode 222 of the battery cell and the first negative electrode 112, so as to facilitate the power supply from the battery cell 22 to the heating component 11.

[0066] In one embodiment, please refer to Figure 4 and Figure 10, the microphone 24 is disposed on the main board 23 and is located on one side of the main board 23 close to the atomizer module 10. The battery cell module 20 further includes a microphone cover 27 covering the microphone 24 and electrically connected to the main board 23. The microphone cover 27 serves as the second positive electrode 25.

[0067] Specifically, the microphone 24 is integrated on the main board 23. On the one hand, it can improve the installation stability of the microphone 24. On the other hand, it is beneficial to simplify the internal wiring of the battery cell module 20.

[0068] It should be noted that the specific connection method between the microphone 24 and the main board 23 can be set according to the actual situation.

[0069] For example, the microphone 24 is soldered on the main board 23.

[0070] The microphone cover 27 is a cover body covering the microphone 24 and is located on one side of the main board 23 close to the atomizer module 10. In fact, the microphone cover 27 is also located at one end of the battery cell module 20 close to the atomizer module 10. By forming the microphone cover 27, on the one hand, it can play a role in protecting the microphone 24. On the other hand, the microphone cover 27 serves as the second positive electrode 25 and has conductivity, which is convenient for contacting the first positive electrode 111 of the atomizer module 10 to realize the electrical connection between the battery cell module 20 and the heating component 11.

[0071] An electrical connection can be formed between the microphone cover 27 and the main board 23 through contact. It should be noted that the specific connection method between the two can be set according to the actual situation.

[0072] For example, one end of the microphone cover 27 close to the main board 23 forms a plurality of buckles 51 arranged at intervals in the circumferential direction. The main board 23 has a plurality of card slots corresponding to the buckles 51, and the buckles 51 are respectively snapped into the card slots to make the microphone cover 27 and the main board 23 snap-connected.

[0073] The specific material of the microphone cover 27 can be set according to the actual situation.

[0074] For example, the microphone cover 27 is made of metal.

[0075] In one embodiment, please refer to Figure 3 、 Figure 4 、 Figure 7 and Figure 8, the atomizer module 10 further includes a seat body 12 disposed on the side of the heating component 11 close to the battery cell module 20. The seat body 12 includes an insulating seat 121 and a conductive seat 122. The conductive seat 122 covers the side of the insulating seat 121 close to the battery cell module 20. The first positive electrode 111 passes through the insulating seat 121 to be electrically connected to the second positive electrode 25, and the first negative electrode 112 passes through the insulating seat 121 to be electrically connected to the conductive seat 122. The conductive seat 122 is electrically connected to the second negative electrode 26. Thus, the electrical connection between the atomizer module 10 and the battery cell module 20 can be made more convenient.

[0076] Specifically, the seat body 12 is located between the heating component 11 and the battery cell module 20. The insulating seat 121 is a mounting seat with an insulating effect. The conductive seat 122 is a mounting seat with a conductive effect.

[0077] It should be noted that the specific material of the conductive seat 122 is not limited.

[0078] For example, the conductive seat 122 is made of SPCC material.

[0079] Both the first positive electrode 111 and the first negative electrode 112 extend toward the side close to the battery cell module 20 and thus pass through the insulating seat 121 respectively. Among them, the first positive electrode 111 is directly electrically connected to the second positive electrode 25 after passing through the insulating seat 121. While the first negative electrode 112 is electrically connected to the second negative electrode 26 through being electrically connected to the conductive seat 122 after passing through the insulating seat 121.

[0080] Exemplarily, the area of the first sub-shell 212 at the installation opening 213a forms the second negative electrode 26. Thus, during the assembly process of the atomizer module 10 and the battery cell module 20, by making the first sub-shell 212 contact the conductive seat 122, the electrical connection between the first negative electrode 112 and the second negative electrode 26 can be completed. There is no need to perform the wiring operation between the first negative electrode 112 and the second negative electrode 26 during the assembly process, so that the disassembly and assembly operations are simplified, and the disassembly and assembly efficiency is greatly improved. At the same time, the atomizer module 10 and the battery cell module 20 do not need to be provided with spring pins for electrical connection, which can reduce materials and save costs.

[0081] Of course, it can be understood that other electrical connection methods can also be adopted between the first negative electrode 112 and the second negative electrode 26. And the electrical connection method between the first positive electrode 111 and the second positive electrode 25 can also be set according to the actual situation.

[0082] Exemplarily, please refer to Figure 7 、 Figure 8 and Figure 10The cell module 20 includes a main board 23 and a microphone 24. Both the main board 23 and the microphone 24 are located in the first shell 21 and are electrically connected to the cell 22. The cell module 20 also includes a microphone cover 27 that is covered on the microphone 24 and electrically connected to the main board 23. The microphone cover 27 is the second positive electrode 25. A part of the insulating seat 121 on one side close to the cell module 20 is recessed to form a mounting cavity 121a. The conductive seat 122 is open in the mounting cavity 121a to form a connecting port 122a. The first positive electrode 111 passes through the insulating seat 121 to extend into the mounting cavity 121a. The microphone cover 27 is installed in the mounting cavity 121a through the connecting port 122a to be electrically connected to the first positive electrode 111. Thus, by forming the installation cavity 121a, it is only necessary to fit the battery cell module 20 and the atomizer module 10 together so that the microphone cover 27 is installed in the installation cavity 121a, and electrical connection with the first positive electrode 111 can be achieved, which can improve the convenience of electrical connection between the two.

[0083] Specifically, the microphone cover 27 is electrically connected to the main board 23 on one hand, and on the other hand, extends into the installation cavity 121a to cooperate with the first positive electrode 111, thereby realizing electrical connection between the battery cell 22, the main board 23 and the heating component 11.

[0084] The mounting cavity 121a is formed by the recess of the insulating seat 121. The conductive seat 122 has a communication port 122a at a position corresponding to the mounting cavity 121a. The microphone cover 27 can pass through the communication port 122a to extend into the mounting cavity 121a, thereby achieving electrical connection with the first positive electrode 111.

[0085] In a specific embodiment, a mounting groove is formed on one side of the insulating seat 121 close to the conductive seat 122, and the first negative electrode 112 passes through the insulating seat 121 and extends into the mounting groove. The area of ​​the first negative electrode 112 located in the mounting groove contacts the conductive seat 122, thereby achieving electrical connection between the two. Thus, the installation stability of the first negative electrode 112 can be improved.

[0086] In one embodiment, please refer to Figure 3 , Figure 9 and Figure 10 The first shell 21 has an air inlet, the microphone cover 27 has an air port 27a connected to the air inlet, the atomizer module 10 includes an atomization chamber 10a, the heating component 11 is located in the atomization chamber 10a, and the insulating seat 121 includes a flow channel 121b, one end of the flow channel 121b is connected to the atomization chamber 10a, and the other end extends to a side of the installation chamber 121a away from the heating component 11, and is connected to the installation chamber 121a.

[0087] When the electronic atomization device is working, an air flow path is formed between the air inlet and the atomization chamber 10a, which passes through the microphone 24, the air port 27a, the installation chamber 121a, the flow channel 121b and the heating component 11 in sequence. In this way, the risk of leakage or condensation in the atomization chamber 10a entering the battery module 20 through the installation chamber 121a can be reduced, and the leakage or condensation can be prevented from damaging the microphone 24 or causing the microphone 24 to start abnormally.

[0088] Specifically, the air inlet of the first shell 21 is an air flow inlet through which air flows into the interior of the first shell 21 .

[0089] The air port 27 a is a flow port for the airflow from the air inlet to flow out of the first housing 21 and flow into the installation cavity 121 a.

[0090] The atomizing chamber 10a is a space where the heating component 11 heats the atomizing liquid to form an aerosol.

[0091] One end of the flow channel 121b is connected to the atomizing chamber 10a, and the other end is connected to the side of the installation chamber 121a away from the heating component 11. At the same time, the installation chamber 121a is formed by a depression of a partial area on the side of the insulating seat 121 close to the battery module 20. It can be seen that, in fact, the installation chamber 121a is a blind hole rather than a through hole. The flow channel 121b is not connected to the side of the installation chamber 121a close to the heating component 11, so when there is leakage or condensation in the atomizing chamber 10a, it can greatly increase the difficulty of the leakage or condensation passing through the flow channel 121b directly into the installation chamber 121a, thereby reducing the risk of damage to the microphone 24 due to contact with the leakage or condensation.

[0092] In fact, during use, the atomizing chamber 10a is located on the top side of the mounting chamber 121a and the flow channel 121b, the top of the flow channel 121b is connected to the atomizing chamber 10a, and the bottom extends to the bottom side of the mounting chamber 121a, and then communicates with the mounting chamber 121a. Since the microphone cover 27 extends into the mounting chamber 121a, the air port 27a is actually located on the top side of the connection between the flow channel 121b and the atomizing chamber 10a. As a result, the air flow channel from the air port 27a, the mounting chamber 121a, the flow channel 121b to the atomizing chamber 10a can be bent, thereby greatly increasing the difficulty of leakage or condensate flowing along the air flow channel to the microphone 24, thereby reducing the risk of damage to the microphone 24.

[0093] In one embodiment, please refer to Figure 4 , Figure 7 and Figure 8, the atomizer module 10 further includes a spring 13 disposed in the installation cavity 121a. When the microphone cover 27 is installed in the installation cavity 121a, the spring 13 is sleeved on the peripheral side of the microphone cover 27, and the first positive electrode 111 is located between the spring 13 and the microphone cover 27. The first positive electrode 111 is attached to the outer surface of the microphone cover 27 under the binding action of the spring 13. Thus, the stability of the electrical connection between the first positive electrode 111 and the microphone cover 27 can be improved.

[0094] Specifically, the cross-sectional dimension of the spring 13 is larger than the cross-sectional dimension of the microphone cover 27, so that the spring 13 can be easily sleeved on the outer peripheral side of the microphone cover 27.

[0095] After the first positive electrode 111 passes through the insulating seat 121 and enters the installation cavity 121a, it extends between the spring 13 and the microphone cover 27. The spring 13 binds the first positive electrode 111 and the microphone cover 27 together. Thus, the stability of the electrical connection between the first positive electrode 111 and the microphone cover 27 can be improved.

[0096] It should be noted that when the airflow of the electronic atomization device flows through the installation cavity 121a to the atomization cavity 10a, due to the presence of the spring 13, an airflow gap can be ensured between the microphone cover 27 and the inner side wall of the installation cavity 121a, which can prevent the microphone cover 27 from directly contacting the inner side wall of the installation cavity 121a, and can reduce the risk of the microphone cover 27 blocking the connection between the flow channel 121b and the installation cavity 121a. Therefore, the airflow effect can be ensured.

[0097] In one embodiment, please refer to Figure 1 、 Figure 2 and Figure 6 , the electronic atomization device includes a second housing 30, a mouthpiece 40 and a bottom cover 50. The atomizer module 10 and the battery module 20 are disposed in the second housing 30. The mouthpiece 40 and the bottom cover 50 are respectively located at opposite ends of the second housing 30. One of the second housing 30 and the bottom cover 50 has a clamping groove 30a, and the other has a buckle 51. A part of the clamping groove 30a is open to form a bayonet 30b, and the buckle 51 is slidably clamped in the clamping groove 30a through the bayonet 30b.

[0098] Specifically, the second housing 30 is used to accommodate the atomizer module 10 and the battery module 20. The mouthpiece 40 is used for the user to inhale the aerosol, and the bottom cover 50 is located at one end of the second housing 30 away from the mouthpiece 40.

[0099] The bottom cover 50 and the second housing 30 are detachably connected by the buckle 51 and the clamping groove, so that the atomizer module 10 and the battery module 20 can be easily installed in the second housing 30.

[0100] According to the actual situation, it can be that the bottom cover 50 has a buckle 51 and the second housing 30 has a clamping groove 30a. Or it can be that the bottom cover 50 has a clamping groove 30a and the second housing 30 has a buckle 51.

[0101] The buckle 51 can enter the clamping groove 30a through the bayonet 30b of the clamping groove 30a, and the buckle 51 can slide relatively in the clamping groove 30a. On the one hand, by being clamped in the clamping groove 30a, the detachable connection between the bottom cover 50 and the second housing 30 can be realized. On the other hand, after the buckle 51 enters the clamping groove 30a through the bayonet 30b and rotates, it can also slide a certain distance, thereby reducing the risk of the buckle 51 disengaging from the bayonet 30b due to accidental movement, and further improving the connection stability between the bottom cover 50 and the second housing 30.

[0102] The specific setting position of the bayonet 30b of the clamping groove 30a is not limited. For example, the bayonet 30b is located at the top of the clamping groove 30a. Or, the bayonet 30b is located at the side end of the clamping groove 30a.

[0103] In a specific embodiment, please refer to Figure 3 , the atomizer module 10 further includes an oil storage cotton 14, an oil storage pipe and an atomization core assembly. The oil storage cotton 14 is located in the oil storage pipe for storing atomized liquid. The oil storage cotton 14 has an atomization cavity 10a, one end of the atomization cavity 10a communicates with the suction nozzle 40, and the other end communicates with the flow channel 121b. The atomization core assembly is located in the atomization cavity 10a, and the heating assembly 11 includes a heating mesh provided on the atomization core assembly.

[0104] The positive pin of the heating mesh is the first positive electrode 111, and the negative pin is the first negative electrode 112.

[0105] In a specific embodiment, please refer to Figure 3 , the atomizer module 10 further includes an upper silica gel 15. The upper silica gel 15 is located at one end of the oil storage pipe away from the battery cell module 20.

[0106] In a specific embodiment, please refer to Figure 12 , the battery cell module 20 further includes an insulating partition 29 provided between the main board 23 and the first sub-shell 212.

[0107] In the description of the present application, the descriptions with reference to terms such as "in one embodiment", "in some embodiments", "in a specific embodiment", or "exemplary", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In the present application, the schematic expressions of the above terms are not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art can combine the different embodiments or examples described in the present application and the features of different embodiments or examples.

[0108] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application may have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application are included in the protection scope of the present application.

Claims

1. An electronic atomization device, characterized in that, Comprising: An atomizer module, the atomizer module includes a heating component, and the heating component includes a first positive electrode and a first negative electrode; A battery cell module, the battery cell module includes a first housing and a battery cell, the battery cell is located within the first housing, the atomizer module is detachably disposed at one end of the battery cell module, a second positive electrode and a second negative electrode are formed at one end of the battery cell module close to the atomizer module, and the second positive electrode and the second negative electrode are respectively electrically connected to the battery cell; The first positive electrode extends to one end of the atomizer module close to the battery cell module to be electrically connected to the second positive electrode, and the first negative electrode extends to one end of the atomizer module close to the battery cell module to be electrically connected to the second negative electrode.

2. The electronic atomization device according to claim 1, wherein, The battery cell module includes a main board and a microphone, both the main board and the microphone are located within the first housing and are both electrically connected to the battery cell, at least a partial area of the first housing is electrically conductive, the battery cell includes a battery cell positive electrode and a battery cell negative electrode, the main board includes a third positive electrode and a third negative electrode, the third positive electrode is electrically connected to the battery cell positive electrode, and the third negative electrode and the battery cell negative electrode are electrically connected through the first housing.

3. The electronic atomization device according to claim 2, characterized in that, The first housing includes a first sub-housing and a second sub-housing, the battery cell, the main board and the microphone are all located within the second sub-housing, the third negative electrode and the battery cell negative electrode are respectively electrically connected to the second sub-housing, one end of the second sub-housing close to the atomizer module is open to form an installation opening, the first sub-housing is connected to one end of the second sub-housing close to the atomizer module, and at least a partial area is located at the installation opening to form the second negative electrode.

4. The electronic atomization device according to claim 2 or 3, characterized in that, The microphone is disposed on the main board and is located on a side of the main board close to the atomizer module, the battery cell module further includes a microphone cover covering the microphone and electrically connected to the main board, and the microphone cover is the second positive electrode.

5. The electronic atomization device according to claim 1, characterized in that, The atomizer module further includes a base body disposed on a side of the heating component close to the battery cell module, the base body includes an insulating base and a conductive base, the conductive base covers a side of the insulating base close to the battery cell module, the first positive electrode passes through the insulating base to be electrically connected to the second positive electrode, the first negative electrode passes through the insulating base to be electrically connected to the conductive base, and the conductive base is electrically connected to the second negative electrode.

6. The electronic atomization device according to claim 5, characterized in that, The battery cell module includes a main board and a microphone, both the main board and the microphone are located within the first housing and are both electrically connected to the battery cell, the battery cell module further includes a microphone cover covering the microphone and electrically connected to the main board, the microphone cover is the second positive electrode, a partial area on a side of the insulating base close to the battery cell module is recessed to form an installation cavity, an area of the conductive base located at the installation cavity is open to form a communication port, the first positive electrode passes through the insulating base to extend into the installation cavity, and the microphone cover is installed into the installation cavity through the communication port to be electrically connected to the first positive electrode.

7. The electronic atomization device according to claim 6, wherein, The atomizer module further includes a spring disposed in the installation cavity. When the microphone cover is installed in the installation cavity, the spring is sleeved on the periphery of the microphone cover, the first positive electrode is located between the spring and the microphone cover, and the first positive electrode is attached to the outer surface of the microphone cover under the binding action of the spring.

8. The electronic atomization device according to claim 6, wherein The first housing has an air inlet, the microphone cover has an air passage port communicating with the air inlet, the atomizer module includes an atomization chamber, the heating component is located in the atomization chamber, the insulating base includes an overcurrent channel, one end of the overcurrent channel communicates with the atomization chamber, and the other end extends to the side of the installation cavity away from the heating component and communicates with the installation cavity; When the electronic atomization device works, an air flow circulation path is formed between the air inlet and the atomization chamber, which sequentially passes through the microphone, the air passage port, the installation cavity, the overcurrent channel and the heating component.

9. The electronic atomization device according to any one of claims 1-3, characterized in that, The electronic atomization device includes a second housing, a mouthpiece and a bottom cover. The atomizer module and the battery module are arranged in the second housing. The mouthpiece and the bottom cover are respectively located at opposite ends of the second housing. One of the second housing and the bottom cover has a clamping groove, and the other has a buckle. Part of the clamping groove is open to form a bayonet, and the buckle is slidably clamped in the clamping groove through the bayonet.

10. The electronic atomization device according to claim 2 or 3, characterized in that, The microphone is a silicon microphone; and / or The battery module includes a charging interface located in the first housing. The charging interface is arranged on the main board and is electrically connected to the battery. The area of the first housing at the charging interface is open so that the charging interface is exposed to the external view.