Atomization device

By incorporating locking and elastic components into the atomizing device, the problem of difficult battery cell disassembly is solved, enabling convenient disassembly and recycling of the battery cell and reducing resource waste.

CN223830379UActive Publication Date: 2026-01-27SHENZHEN FIRST UNION TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423320222.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The batteries in existing atomizing devices are difficult to disassemble and recycle, resulting in a waste of resources.

Method used

Design an atomizing device that, by incorporating locking and elastic components, allows the battery cell to slide off the outer casing after the e-liquid is consumed, enabling the battery cell to be disassembled and recycled.

Benefits of technology

It enables convenient disassembly and recycling of battery cells, reducing resource waste.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223830379U_ABST
    Figure CN223830379U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of atomization, and discloses an atomization device which comprises a shell, a machine core assembly and a locking assembly, the shell is provided with a containing space and a clamping hole, and the clamping hole communicates with the containing space; at least part of the machine core assembly is accommodated in the accommodating space, and the machine core assembly comprises a battery cell; the locking assembly comprises a locking piece and an elastic piece, the locking piece is arranged on the movement assembly in a sliding mode, the locking piece can slide between a first position and a second position relative to the movement assembly, when the locking piece is located at the first position, at least part of the locking piece is clamped in the clamping hole, and then the locking piece locks the shell and the movement assembly; and when the locking piece is located at the second position, the locking piece is separated from the clamping hole, so that at least part of the battery cell is separated from the accommodating space, and the elastic piece is used for keeping the locking piece at the first position. According to the embodiment of the invention, the battery cell can be conveniently recycled.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of atomization technology, and in particular to an atomization device. Background Technology

[0002] Atomizing devices heat e-liquid with a heating wire under electric drive to produce an aerosol for users to inhale. In related technologies, the battery in the atomizing device is usually fixed inside the atomizing device. When the e-liquid in the atomizing device is consumed, the entire atomizing device needs to be discarded, making it difficult to disassemble and recycle the battery in the atomizing device. Utility Model Content

[0003] The main technical problem addressed by the embodiments of this application is to provide an atomizing device that facilitates the disassembly and recycling of battery cells, thereby reducing resource waste.

[0004] To solve the above-mentioned technical problems, one technical solution adopted in this application embodiment is as follows: An atomizing device is provided, including a housing, a core assembly, and a locking assembly. The housing is provided with a receiving space and a locking hole, the locking hole communicating with the receiving space. At least a portion of the core assembly is received in the receiving space, and the core assembly includes a battery cell. The locking assembly includes a locking member, which is slidably disposed on the core assembly. The locking member can slide between a first position and a second position relative to the core assembly. When the locking member is in the first position, at least a portion of the locking member is engaged in the locking hole, thereby locking the housing and the core assembly. When the locking member is in the second position, the locking member separates from the locking hole, and the core assembly can move along the length direction of the housing under the action of an external force, thereby causing at least a portion of the battery cell to disengage from the receiving space. One end of an elastic member is connected to or abuts against the core assembly, and the other end is connected to or abuts against the locking member. The elastic member is used to hold the locking member in the first position.

[0005] In some embodiments, the housing has a first open end and a second open end disposed opposite to each other along its length direction. When the locking member is in the second position, the movement assembly can move relative to the housing along the length direction of the housing, thereby causing at least a portion of the battery cell to disengage from the receiving space from the first open end or the second open end.

[0006] In some embodiments, the atomizing device includes a mouthpiece disposed at a first open end for aerosol to escape from the atomizing device. The mouthpiece is fixedly connected to the core assembly. When the locking member is in a second position, the core assembly can move along the length direction of the housing under the action of an external force, thereby causing at least a portion of the battery cell to detach from the receiving space from the first open end.

[0007] In some embodiments, the movement assembly is provided with a sliding groove and a limiting protrusion. The sliding groove communicates with the card hole, and the limiting protrusion is provided on the side wall of the sliding groove. The locking member is provided with a locking platform, and the locking member is slidably disposed in the sliding groove. When the locking member is in the first position, the locking platform abuts against the end of the limiting protrusion away from the card hole.

[0008] In some embodiments, the locking member is provided with a protrusion, the elastic member is sleeved on the protrusion, one end of the elastic member abuts against the locking member, and the other end of the elastic member abuts against the bottom of the groove.

[0009] In some embodiments, the movement assembly is provided with a mounting portion, one end of which is disposed at the bottom of the slide groove, and the mounting portion is provided with a mounting groove, wherein at least a portion of the elastic element is received in the mounting groove.

[0010] In some embodiments, a first guide slope is provided at the end of the limiting protrusion facing the card hole, the first guide slope being used to guide the card stage to be inserted into the side of the limiting protrusion away from the card hole; and / or

[0011] A second guide slope is provided at the end of the card holder away from the card hole. The second guide slope is used to guide the card holder to be inserted into the side of the limiting protrusion away from the card hole.

[0012] In some embodiments, the movement assembly further includes a bracket, which and the housing together enclose a battery compartment, in which the battery cells are housed.

[0013] In some embodiments, the support is provided with a side guard, at least a portion of which is housed in the battery compartment, and the side guard surrounds at least a portion of the battery cell circumferentially.

[0014] In some embodiments, the mechanism assembly includes a bracket, a battery cell mounted on the bracket, a main board and an atomizer mounted on the bracket, the atomizer being used to atomize a liquid matrix to generate an aerosol, and both the battery cell and the atomizer being electrically connected to the main board.

[0015] The beneficial effects of this application embodiment are as follows: Unlike the prior art, in this application embodiment, by sliding the locking member onto the core assembly, when the locking member is in the first position, the locking member locks the core assembly and the outer shell; when the e-liquid in the atomizing device is consumed, the locking member can be slid to the second position to release the lock between the core assembly and the outer shell. At this time, the core assembly can be pushed out of the receiving space along the length direction of the outer shell, thereby allowing the battery cell in the core assembly to gradually detach from the receiving space, so as to recycle and reuse the battery cell, which helps to reduce the waste of resources. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the specific embodiments of this application or the prior art, the accompanying drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0017] Figure 1 This is a schematic diagram of the atomizing device provided in the embodiments of this application;

[0018] Figure 2 This is an exploded structural diagram of the atomizing device provided in the embodiments of this application;

[0019] Figure 3 yes Figure 2 An enlarged view of the area shown in section A;

[0020] Figure 4 This is a cross-sectional structural diagram of the atomizing device provided in the embodiments of this application when the locking member is in the first position;

[0021] Figure 5 yes Figure 4 An enlarged view of the area shown in section B;

[0022] Figure 6 This is a schematic cross-sectional view of the atomizing device provided in the embodiments of this application when the locking member is in the second position;

[0023] Figure 7 yes Figure 6 An enlarged view of the area shown in section C;

[0024] Figure 8 This is a schematic diagram of the atomizing device provided in this application embodiment after the core assembly has been moved a certain distance along the length of the outer shell;

[0025] Figure 9 This is a schematic diagram of the atomizing device provided in this application embodiment after the core assembly has been disassembled along the length of the outer shell.

[0026] Label Explanation

[0027] 100. Atomizing device;

[0028] 1. Outer shell; 11. Receiving space; 12. Clip hole; 13. First opening end; 14. Second opening end;

[0029] 2. Mechanism assembly; 21. Battery cell; 22. Bracket; 221. First bracket; 222. Second bracket; 223. Receiving groove; 224. Limiting protrusion; 2241. First guide slope; 225. Mounting part; 2251. Mounting groove; 226. Side protection part; 227. Slide groove;

[0030] 3. Locking assembly; 31. Locking element; 311. Locking platform; 3111. Second guide wire inclined surface; 312. Protruding post; 32. Elastic element;

[0031] 4. Suction nozzle;

[0032] 5. Motherboard;

[0033] 6. Atomizer;

[0034] 7. Battery compartment. Detailed Implementation

[0035] To facilitate understanding of this application, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element, or one or more intermediate elements may exist between them. When an element is described as "connected" to another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them. The terms "upper," "lower," "inner," "outer," "vertical," "horizontal," etc., used in this specification indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0036] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the application. The term "and / or" as used in this specification includes any and all combinations of one or more of the associated listed items.

[0037] Furthermore, the technical features involved in the different embodiments of this application described below can be combined with each other as long as they do not conflict with each other.

[0038] Atomizing devices typically include a housing, a battery, a bracket, and an atomizer. The battery is fixed to the bracket, which is located inside the housing. The atomizer is mounted on the bracket and heats the e-liquid through a heating element to generate an aerosol for the user to inhale. The battery is electrically connected to the atomizer to supply power. In related technologies, the battery is fixed to the bracket, which is also fixed inside the housing. The bracket is difficult to disassemble. When the e-liquid in the atomizer is used up, the entire atomizing device must be discarded, making it difficult to disassemble and recycle the battery, thus leading to resource waste.

[0039] To address the aforementioned issues, this application provides an atomizer that allows for easy disassembly of the atomizer after the e-liquid in the atomizer is consumed, facilitating the recycling of the battery cells.

[0040] The specific structure and function of this application will be described in detail below.

[0041] Please see Figure 1 and Figure 2The atomizing device 100 includes a housing 1, a core assembly 2, and a locking assembly 3. The core assembly 2 is disposed inside the housing 1, and the locking assembly 3 is installed in the core assembly 2. The locking assembly 3 is used to removably fix the core assembly 2 in the housing 1. The core assembly 2 includes a battery cell 21.

[0042] For the aforementioned casing 1, please refer to Figure 1 and Figure 2 The outer casing 1 is provided with a receiving space 11, a latching hole 12, a first opening end 13, and a second opening end 14. At least a portion of the movement assembly 2 is received in the receiving space 11. The latching hole 12 communicates with the receiving space 11 and is also open to the outside. The first opening end 13 and the second opening end 14 are both connected to the receiving space 11. Along the length of the outer casing 1, the first opening end 13 and the second opening end 14 are located at opposite ends of the outer casing 1.

[0043] For the locking component 3 mentioned above, please refer to... Figure 2 and Figure 3 The locking assembly 3 includes a locking member 31, which is slidably disposed on the movement assembly 2 and is slidable relative to the movement assembly 2 between a first position and a second position. (See also...) Figure 4 and Figure 5 When the locking member 31 is in the first position, at least a portion of the locking member 31 is engaged in the locking hole 12. At this time, the locking member 31 locks the movement assembly 2 and the outer casing 1, preventing the movement assembly 2 from disengaging from the receiving space 11 along the length direction of the outer casing 1 from the first opening end 13 or the second opening end 14. Please refer to [link to relevant documentation]. Figure 6 and Figure 7 When the locking member 31 is in the second position, the locking member 31 is separated from the locking hole 12. At this time, please combine... Figure 8 and Figure 9 The mechanism assembly 2 can move relative to the outer shell 1 along the length direction of the outer shell 1 under the action of external force. Applying a force along the length direction of the outer shell 1 to the mechanism assembly 2 can cause it to move along the length direction of the outer shell 1, thereby allowing at least a portion of the battery cell 21 to detach from the receiving space 11 from the first opening end 13 or the second opening end 14, thus allowing the battery cell 21 to be removed and recycled. In this embodiment, by sliding the locking member 31 on the mechanism assembly 2, when the locking member 31 is in the first position, the locking member 31 locks the mechanism assembly 2 and the outer shell 1; when the e-liquid in the atomizing device 100 is consumed, the locking member 31 can be slid to the second position to release the lock between the mechanism assembly 2 and the outer shell 1. At this time, the mechanism assembly 2 can be pushed away from the receiving space 11 along the length direction of the outer shell 1, thereby causing the battery cell 21 in the mechanism assembly 2 to gradually detach from the receiving space 11, thus allowing the battery cell 21 to be recycled and reused, which helps to reduce resource waste.

[0044] In some embodiments, please refer to Figure 2 The mechanism assembly 2 also includes a main board 5 and an atomizer 6. The main board 5 is electrically connected to the atomizer 6 and has a control circuit (not shown) for controlling the operation of the atomizer 6. The main board 5 is also electrically connected to the battery 21. The atomizer 6 is used to store e-liquid and can atomize the e-liquid into an aerosol for the user to inhale under electric drive. The atomizer 6 is electrically connected to the battery 21 so that the battery 21 can provide power to the atomizer 6.

[0045] It is worth noting that the battery cell 21 can be directly connected to the atomizer 6, thereby directly supplying power to the atomizer 6; the battery cell 21 can also be connected to the atomizer 6 through the motherboard 5, thereby supplying power to the atomizer 6 through the motherboard 5.

[0046] In some embodiments, please refer to Figure 1 and Figure 2 The atomizing device 100 includes a mouthpiece 4, one end of which is located at a first open end 13, and the other end of which extends away from a second open end 14. The mouthpiece 4 is fixedly connected to the core assembly 2. The mouthpiece 4 allows the aerosol generated by the atomizer 6 to escape from the atomizing device 100, thus facilitating inhalation by the user. (Please refer to...) Figure 6 and Figure 7 When the locking member 31 is in the second position, the core assembly 2 can move along the length direction of the outer shell 1 under the action of an external force. That is, when a force is applied to the core assembly 2 along the length direction of the outer shell 1, the core assembly 2 can be pushed to move. Therefore, when it is necessary to disassemble the battery cell 21 of the atomizing device 100, the locking member 31 can be moved to the second position first, such as... Figure 6 and Figure 7 As shown; then push the movement assembly 2 along the length of the outer casing 1 a certain distance from the second opening end 14. At this time, the locking member 31 cannot be engaged in the locking hole 12, as shown. Figure 8 As shown; then, the movement assembly 2 can be pulled out of the receiving space 11 by grasping the suction nozzle 4, as shown. Figure 9 As shown; after at least a portion of the battery cell 21 is pulled out from the first opening end 13, the battery cell 21 is removed; finally, the wires connecting the battery cell 21 to the main board 5 and the battery cell 21 to the atomizer 6 are cut, thus disassembling the battery cell 21 and recycling it, which is convenient. In this embodiment, by setting the mouthpiece 4 at the first opening end 13, when disassembling the battery cell 21, the mechanism assembly 2 is moved by pushing it from the second opening end 14. During the process of pulling the mechanism assembly 2 out from the first opening end 13, the mouthpiece 4 can provide the user with a gripping space, thereby making it convenient for the user to pull the mechanism assembly 2 out from the receiving space 11, which is convenient for the user to operate.

[0047] Understandably, when it is necessary to disassemble the battery cell 21, the mechanism assembly 2 can also be removed from the receiving space 11 from the second opening end 14. The operation process is as follows: first, move the locking member 31 to the second position; then push the mouthpiece 4 along the length direction of the outer shell 1, thereby pushing the mechanism assembly 2 to move a distance along the length direction of the outer shell 1. At this time, the locking member 31 cannot be locked into the locking hole 12, and at least part of the mechanism assembly 2 protrudes from the second opening end 14; then, the part of the mechanism assembly 2 protruding from the second opening end 14 can be grasped and the mechanism assembly 2 can be pulled out from the receiving space 11; after at least part of the battery cell 21 is pulled out from the second opening end 14, the battery cell 21 can be taken out; finally, cut the wires used to connect the battery cell 21 to the main board 5 and the battery cell 21 to the atomizer 6, so as to disassemble the battery cell 21 and thus recover the battery cell 21.

[0048] In some embodiments, please refer to Figure 2 , Figure 3 and Figure 4 The mechanism assembly 2 also includes a bracket 22, which is housed within the receiving space 11. The bracket 22 and the outer shell 1 together enclose a battery compartment 7, in which the battery cell 21 is housed. The battery compartment 7 is a closed space; therefore, when the battery cell 21 is housed in the battery compartment 7, it will not detach from the battery compartment 7, eliminating the need to use fasteners or adhesive to fix the battery cell 21 to the bracket 22. Furthermore, the boundary of the battery compartment 7 is formed by the bracket 22 and the outer shell 1. During the disassembly of the battery cell 21, after the mechanism assembly 2 is pulled out a certain distance from the first opening end 13 or the second opening end 14, the battery cell 21 can be exposed to the outside, allowing it to be removed without removing fasteners or adhesive, making the disassembly process simple and convenient.

[0049] In some embodiments, the motherboard 5 and the atomizer 6 described above are both mounted on the bracket 22.

[0050] In some embodiments, the bracket 22 includes a first bracket 221 and a second bracket 222, which are snapped together. The first bracket 221 is closer to the first opening end 13 than the second bracket 222. Both the first bracket 221 and the second bracket 222 are housed in the receiving space 11. The atomizer 6 is mounted on the first bracket 221, the mouthpiece 4 is fixed to the end of the first bracket 221 opposite to the second bracket 222, the main board 5 is disposed on the second bracket 222, the locking member 31 is slidably disposed on the second bracket 222, and the boundary of the battery compartment 7 is formed by the outer shell 1, the first bracket 221, and the second bracket 222.

[0051] Furthermore, the first bracket 221 and the second bracket 222 together form a receiving groove 223, which is used to receive the battery cell 21. When the first bracket 221 and the second bracket 222 are installed in the receiving space 11, the outer shell 1 closes the receiving groove 223 to form the battery compartment 7 described above. The assembly process of the atomizing device 100 is as follows: first, the first bracket 221, the second bracket 222, the locking component 3, the mouthpiece 4, the main board 5, and the atomizer 6 are assembled together; then, the battery cell 21 is placed in the receiving groove 223 and the wire is connected to the battery cell 21; then, the mechanism component 2, the main board 5, and the atomizer 6 are inserted into the receiving space 11 along the length direction of the outer shell 1, so that the locking member 31 of the locking component 3 is engaged with the locking hole 12, thus completing the assembly of the atomizing device 100.

[0052] In some embodiments, please refer to Figure 3 and Figure 9 The first bracket 221 is provided with a side guard 226, at least a portion of which is housed in the battery compartment 7. The side guard 226 surrounds at least a portion of the battery cell 21 in the circumferential direction. With this arrangement, during the process of inserting the mechanism assembly 2, the main board 5, the battery cell 21 and the atomizer 6 into the housing space 11, the side guard 226 can prevent the battery cell 21 from leaving the housing slot 223, reducing the assembly difficulty of the atomizing device 100.

[0053] In some embodiments, please refer to Figure 2 and Figure 3 The locking assembly 3 also includes an elastic member 32. One end of the elastic member 32 is connected to or abuts against the core assembly 2, and the other end is connected to or abuts against the locking member 31. The elastic member 32 is used to hold the locking member 31 in a first position, thereby locking the core assembly 2 to the outer shell 1 and reducing the risk of the core assembly 2 dislodging from the housing space 11 when the atomizing device 100 needs to be used. By providing the elastic member 32, when it is necessary to remove the battery cell 21, the locking member 31 can be pressed to the second position by pressing the part of the locking member 31 exposed in the locking hole 12, which is simple and convenient to operate.

[0054] In some embodiments, please refer to Figure 3 and Figure 5 The first bracket 221 is provided with a sliding groove 227 and a limiting protrusion 224. The sliding groove 227 communicates with the locking hole 12, and the limiting protrusion 224 is provided on the side wall of the sliding groove 227. The locking member 31 is provided with a locking platform 311, and at least part of the locking member 31 is slidably disposed in the sliding groove 227. When the locking member 31 is in the first position, the locking platform 311 abuts against the end of the limiting protrusion 224 away from the locking hole 12, thereby avoiding the risk of the locking member 31 disengaging from the sliding groove 227 under the action of the elastic member 32, thereby improving the stability of the connection between the movement assembly 2 and the outer shell 1.

[0055] In some embodiments, the elastic member 32 is a compression spring, and the locking member 31 is provided with a protrusion 312, with at least a portion of the elastic member 32 sleeved on the protrusion 312. One end of the elastic member 32 abuts against the locking member 31, and the other end abuts against the bottom of the groove 227, so that the elastic member 32 can apply a force to the locking member 31, which keeps the locking member 31 in a first position. In this embodiment, by providing the protrusion 312 and sleeved on it, the risk of displacement of the elastic member 32 can be reduced, which helps to improve the stability of the connection between the elastic member 32 and the locking member 31, thereby improving the stability of the connection between the movement assembly 2 and the outer casing 1.

[0056] In some embodiments, the first bracket 221 is provided with a mounting portion 225, one end of which is disposed at the bottom of the slide groove 227, and the other end of which is provided with a mounting groove 2251, wherein at least a portion of the elastic member 32 is received in the mounting groove 2251. In this embodiment, by receiving at least a portion of the elastic member 32 in the mounting groove 2251, the risk of displacement of the elastic member 32 can be reduced, thereby improving the stability of the connection between the elastic member 32 and the locking member 31, and further improving the stability of the connection between the movement assembly 2 and the outer casing 1.

[0057] It is worth noting that the elastic element 32 can be a compression spring, or it can be elastic silicone, rubber, etc. As long as the elastic element 32 can keep the locking element 31 in the first position, and when the locking element 31 is pressed, the elastic element 32 can undergo elastic deformation, thereby allowing the locking element 31 to move to the second position.

[0058] In some embodiments, please refer to Figure 5 and Figure 7 The end of the limiting protrusion 224 facing the card hole 12 is provided with a first guide slope 2241. The first guide slope 2241 is used to guide the card platform 311 to be inserted into the side of the limiting protrusion 224 away from the card hole 12, so as to facilitate the installation of the locking member 31 into the slide groove 227.

[0059] In some embodiments, a second guide slope 3111 is provided at one end of the card table 311 away from the card hole 12. The second guide slope 3111 is used to guide the card table 311 to be inserted into the side of the limiting protrusion 224 away from the card hole 12, thereby reducing the difficulty of installing the locking member 31 into the slide groove 227.

[0060] In some embodiments, please refer to Figure 2 and Figure 4The mechanism assembly 2 includes a bracket 22 and a battery cell 21. The battery cell 21 is mounted on the bracket 22. The bracket 22 also has a main board 5 and an atomizer 6. The atomizer 6 is used to atomize the liquid matrix to form an aerosol. Both the battery cell 21 and the atomizer 6 are electrically connected to the main board 5. The main board 5 is used to control the operation of the atomizer 6. The battery cell 21 can supply power to the atomizer 6 through the main board 5.

[0061] In this embodiment, by sliding the locking member 31 onto the core assembly 2, when the locking member 31 is in the first position, the locking member 31 locks the core assembly 2 and the outer shell 1. When the e-liquid in the atomizing device 100 is consumed, the locking member 31 can be slid to the second position to release the lock between the core assembly 2 and the outer shell 1. At this time, the core assembly 2 can be pushed out of the receiving space 11 along the length direction of the outer shell 1, thereby allowing the battery cell 21 in the core assembly 2 to gradually detach from the receiving space 11, so that the battery cell 21 can be recycled and reused, which helps to reduce the waste of resources.

[0062] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. An atomizing device, characterized in that, include: The outer casing is provided with a receiving space and a locking hole, wherein the locking hole is connected to the receiving space; A movement assembly, at least partially housed in the housing space, the movement assembly including a battery cell; A locking assembly includes a locking member and an elastic member. The locking member is slidably disposed on the movement assembly. The locking member is slidable relative to the movement assembly between a first position and a second position. When the locking member is in the first position, at least a portion of the locking member is engaged with the locking hole, thereby locking the outer casing and the movement assembly. When the locking member is in the second position, the locking member is separated from the card hole, and the movement assembly can move relative to the outer casing under the action of external force, thereby causing at least a portion of the battery cell to be disengaged from the receiving space. One end of the elastic member is connected to or abuts against the movement assembly, and the other end is connected to or abuts against the locking member. The elastic member is used to hold the locking member in the first position.

2. The atomizing device according to claim 1, characterized in that, The housing has a first opening end and a second opening end disposed opposite to each other along its length direction. When the locking member is in the second position, the movement assembly can move relative to the housing along the length direction of the housing, thereby causing at least a portion of the battery cell to disengage from the receiving space from the first opening end or the second opening end.

3. The atomizing device according to claim 2, characterized in that, The atomizing device includes a mouthpiece disposed at the first opening end for aerosol to escape from the atomizing device. The mouthpiece is fixedly connected to the core assembly. When the locking member is in the second position, the core assembly can move along the length direction of the outer shell under the action of external force, thereby causing at least a portion of the battery cell to detach from the receiving space from the first opening end.

4. The atomizing device according to claim 1, characterized in that, The movement assembly is provided with a sliding groove and a limiting protrusion. The sliding groove communicates with the card hole, and the limiting protrusion is provided on the side wall of the sliding groove. The locking member is provided with a locking platform, and the locking member is slidably disposed in the sliding groove. When the locking member is in the first position, the locking platform abuts against the end of the limiting protrusion that is away from the locking hole.

5. The atomizing device according to claim 4, characterized in that, The locking member is provided with a protruding post, and the elastic member is sleeved on the protruding post. One end of the elastic member abuts against the locking member, and the other end of the elastic member abuts against the bottom of the groove.

6. The atomizing device according to claim 4, characterized in that, The movement assembly is provided with a mounting part, one end of which is disposed at the bottom of the slide groove. The mounting part is provided with a mounting groove, and at least a portion of the elastic element is received in the mounting groove.

7. The atomizing device according to claim 4, characterized in that, The end of the limiting protrusion facing the card hole is provided with a first guide slope, which is used to guide the card holder to be inserted into the side of the limiting protrusion opposite to the card hole; and / or The card holder is provided with a second guide slope at the end opposite to the card hole. The second guide slope is used to guide the card holder to be inserted into the side of the limiting protrusion opposite to the card hole.

8. The atomizing device according to claim 1, characterized in that, The movement assembly also includes a bracket, which and the outer casing together form a battery compartment, in which the battery cell is housed.

9. The atomizing device according to claim 8, characterized in that, The bracket is provided with a protective side portion, at least a portion of which is housed in the battery compartment, and the protective side portion surrounds at least a portion of the battery cell circumferentially.

10. The atomizing device according to claim 1, characterized in that, The mechanism assembly includes a bracket, the battery cell is mounted on the bracket, and a motherboard and an atomizer are also mounted on the bracket. The atomizer is used to atomize a liquid matrix to generate an aerosol, and both the battery cell and the atomizer are electrically connected to the motherboard.