Atomization host and atomization device

By designing a detachable battery module and control module structure, the problem of inconvenient battery module replacement and recycling in the atomizing host is solved, realizing convenient battery module replacement and recycling, and ensuring stable power supply to the control module and convenient replacement of e-liquid cartridges while reusing the battery module.

CN224291293UActive Publication Date: 2026-05-29HG INNOVATION LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HG INNOVATION LTD
Filing Date
2025-06-20
Publication Date
2026-05-29

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Abstract

The application discloses an atomization main machine and an atomization device, and belongs to the field of atomization equipment. The atomization main machine comprises a shell, the shell has a containing cavity, a first opening and a second opening which are communicated with the containing cavity; a control module is installed in the containing cavity, and a containing space is formed between the control module and the first opening, which is used for containing a cartridge; a battery module is detachably connected to the containing cavity, and the battery module is located on the side of the control module away from the containing space. The battery module is in abutment with the control module, and the battery module can be locked in the containing cavity through the second opening and can be taken out of the containing cavity. In the application, the battery module is convenient to replace or recycle.
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Description

Technical Field

[0001] This application belongs to the field of atomizing equipment, specifically relating to an atomizing host and atomizing device. Background Technology

[0002] With the development of technology, the use of atomizing devices has become increasingly widespread. Typically, an atomizing device contains a main unit, within which a cartridge can be installed. The cartridge and main unit are detachably connected for easy cartridge replacement. In related technologies, a battery module is fixed within the main unit, providing power to the atomizing device. However, this design makes it difficult to replace or recycle the battery module. Utility Model Content

[0003] The purpose of this application is to provide an atomizing host and atomizing device that at least solves the problem of the difficulty in replacing or recycling the battery module.

[0004] In a first aspect, embodiments of this application provide an atomizing host, the atomizing host comprising: a housing having a receiving cavity and a first opening and a second opening communicating with the receiving cavity; a control module installed in the receiving cavity, and having a receiving space between the control module and the first opening, the receiving space being used to receive a cartridge; and a battery module detachably connected to the receiving cavity, the battery module being located on the side of the control module opposite to the receiving space, the battery module abutting against the control module, the battery module being lockable in the receiving cavity through the second opening, and being removable from the receiving cavity.

[0005] In some embodiments, the battery module includes a battery bracket and battery cells; the battery cells are mounted on the battery bracket, the battery bracket is detachably connected to the receiving cavity, and the battery cells abut against the control module; the battery bracket has an end cap that closes the receiving space.

[0006] In some embodiments, the battery bracket includes a frame, a first bracket plate, and a second bracket plate; along the axial direction of the outer casing, the first bracket plate and the second bracket plate are respectively connected to opposite ends of the frame, the frame has an installation space, the battery cell is installed in the installation space, and a portion of the battery cell passes through the first bracket plate and abuts against the control module; the second bracket plate is connected to a snap-fit ​​member, which can snap into the cavity wall of the receiving cavity.

[0007] In some embodiments, the atomizing host further includes a movable component; the movable component is disposed on the side of the second frame plate facing the first frame plate, and the movable component is movable relative to the second frame plate in a first direction to allow the movable component to switch between a first position and a second position; the locking component is deformable relative to the second frame plate, and the movable component abuts against the locking component; when the movable component is in the first position, the locking component engages with the cavity wall of the receiving cavity; when the movable component is in the second position, the locking component separates from the cavity wall of the receiving cavity.

[0008] In some embodiments, along the first direction, the movable member includes a first portion and a second portion connected together, and along the direction of deformation of the snap-fit ​​member, the size of the first portion is smaller than the size of the second portion; when the movable member is in the first position, the second portion abuts against the snap-fit ​​member to engage the snap-fit ​​member with the cavity wall of the receiving cavity; when the movable member is in the second position, the first portion abuts against the snap-fit ​​member to separate the snap-fit ​​member from the cavity wall of the receiving cavity.

[0009] In some embodiments, the snap-fit ​​member is provided with a snap-fit ​​platform, and the cavity wall of the receiving cavity is provided with a snap-fit ​​groove; when the movable member is in the first position, the snap-fit ​​platform snaps into the snap-fit ​​groove so that the snap-fit ​​member snaps into the cavity wall of the receiving cavity.

[0010] In some embodiments, the surface of the movable member facing away from the second frame plate is provided with at least one groove.

[0011] In some embodiments, along the first direction, a plurality of limiting grooves are provided at intervals on the side wall of the movable member, and a limiting platform is provided on the frame, the limiting platform being embedded in one of the limiting grooves.

[0012] In some embodiments, the movable component is connected to a movable handle; the second frame plate is provided with a mounting hole, and the movable handle passes through the mounting hole.

[0013] In some embodiments, a first mark and a second mark are provided on the side of the second frame plate opposite to the first frame plate, the first mark and the second mark being located on opposite sides of the mounting hole in the first direction; the first mark is used to indicate that the snap-fit ​​is snapped into the cavity wall of the receiving cavity, and the second mark is used to indicate that the snap-fit ​​is separated from the cavity wall of the receiving cavity.

[0014] In some embodiments, the battery cell includes a body and a terminal connected to the body; the body is mounted on the battery bracket, the terminal passes through the battery bracket, and the terminal abuts against the control module.

[0015] In some embodiments, the control module is provided with a conductive hole, a conductive element is provided in the conductive hole, the pole is embedded in the conductive hole, and the pole abuts against the conductive element.

[0016] In some embodiments, a limiting stage is provided on the outer wall of the electrode post along the circumference of the electrode post, and the limiting stage is located outside the conductive hole.

[0017] Secondly, embodiments of this application provide an atomizing device, the atomizing device including a cartridge and an atomizing host as described in any one of the first aspects; the cartridge is detachably connected to the receiving cavity, and the cartridge is located on the side of the control module away from the battery module.

[0018] In this embodiment, since the control module is installed in the receiving cavity and there is a receiving space between the control module and the first opening, the tobacco cartridge can be accommodated in the receiving space, so that the tobacco cartridge will come into contact with the control module, allowing the control module to control or supply power to the tobacco cartridge. In addition, the battery module is detachably connected to the receiving cavity, and the battery module is located on the side of the control module away from the receiving space. The battery module abuts against the control module, so the battery module can supply power to the control module, enabling the control module to operate normally. The detachable connection of the battery module to the receiving cavity allows the battery module to be removed from the receiving cavity through the second opening, thereby facilitating the recycling and reuse of the battery module, or facilitating the replacement of the battery module. In addition, when it is not necessary to replace the battery module, the battery module can be locked in the receiving cavity to ensure that the battery module stably supplies power to the control module. In other words, in this embodiment of the application, by detachably connecting the battery module to the receiving cavity, the battery module is essentially locked in the receiving cavity when it is not necessary to replace or recycle it. When it is necessary to replace or recycle the battery module, it can be taken out of the receiving cavity through the second opening, thereby facilitating the replacement or recycling of the battery module. Attached Figure Description

[0019] Figure 1 This diagram illustrates an atomizing host provided in an embodiment of this application.

[0020] Figure 2 This is a schematic diagram illustrating one embodiment of a battery holder provided in this application;

[0021] Figure 3 This diagram illustrates a battery module provided in an embodiment of this application.

[0022] Figure 4 This is a bottom view of an atomizing host provided in an embodiment of this application;

[0023] Figure 5This is an isometric view of an atomizing host provided in an embodiment of this application;

[0024] Figure 6 This is a cross-sectional view of an atomizing host provided in an embodiment of this application;

[0025] Figure 7 express Figure 6 A magnified view of a section at point A in the middle;

[0026] Figure 8 This is a partial exploded view of an atomizing host provided in an embodiment of this application;

[0027] Figure 9 This is a second schematic diagram illustrating a battery holder provided in an embodiment of this application;

[0028] Figure 10 This is an exploded view of a casing and battery holder provided in an embodiment of this application;

[0029] Figure 11 This is a bottom view of a control module provided in an embodiment of this application;

[0030] Figure 12 This is a schematic diagram illustrating an active component provided in an embodiment of this application.

[0031] Figure label:

[0032] 10: Outer shell; 101: Receiving cavity; 102: Receiving space; 103: Slot; 20: Control module; 201: Conductive hole; 202: Conductive component; 30: Battery module; 31: Battery bracket; 32: Battery cell; 311: Frame; 312: First frame plate; 313: Second frame plate; 314: Snap-fit ​​component; 315: Snap-fit ​​platform; 321: Body; 322: Terminal post; 3110: Installation space; 3111: Limiting platform; 3131: Mounting hole; 3132: First mark; 3133: Second mark; 3221: Blocking boss; 40: Movable component; 41: First part; 42: Second part; 401: Groove; 402: Limiting groove; 50: Movable handle; X: First direction. Detailed Implementation

[0033] The terms "first" and "second" in the specification and claims of this application may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise stated, "multiple" means two or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0034] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, 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.

[0035] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0036] like Figures 1 to 12 As shown, the atomizing device includes: a housing 10, the housing 10 having a receiving cavity 101 and a first opening and a second opening communicating with the receiving cavity 101; a control module 20, the control module 20 being installed in the receiving cavity 101, and a receiving space 102 being provided between the control module 20 and the first opening, the receiving space 102 being used to receive the e-cigarette cartridge; and a battery module 30, the battery module being detachably connected to the receiving cavity 101, and the battery module 30 being located on the side of the control module 20 away from the receiving space 102, the battery module 30 abutting against the control module 20, the battery module 30 being able to be locked in the receiving cavity 101 through the second opening, and being able to be removed from the receiving cavity 101.

[0037] In this embodiment, since the control module 20 is installed in the receiving cavity 101 and there is a receiving space 102 between the control module 20 and the first opening, the tobacco cartridge can be accommodated in the receiving space 102, so that the tobacco cartridge will come into contact with the control module 20, allowing the control module 20 to control or supply power to the tobacco cartridge. In addition, the battery module is detachably connected to the receiving cavity 101, and the battery module 30 is located on the side of the control module 20 away from the receiving space 102. The battery module 30 abuts against the control module 20, so the battery module 30 can supply power to the control module 20, enabling the control module 20 to operate normally. The battery module 30 is detachably connected to the receiving cavity 101, so that the battery module 30 can be removed from the receiving cavity 101 through the second opening, thereby facilitating the recycling and reuse of the battery module 30, or facilitating the replacement of the battery module 30. In addition, when it is not necessary to replace the battery module 30, the battery module 30 can be locked in the receiving cavity 101 to ensure that the battery module 30 stably supplies power to the control module 20. That is, in this embodiment of the application, by detachably connecting the battery module 30 to the receiving cavity 101, the battery module 30 is essentially locked in the receiving cavity 101 when it is not necessary to replace or recycle the battery module 30. When it is necessary to replace or recycle the battery module 30, the battery module 30 can be taken out from the receiving cavity 101 through the second opening, thereby facilitating the replacement or recycling of the battery module 30.

[0038] It should be noted that, in this embodiment, the receiving space 102 between the control module 20 and the first opening can accommodate the tobacco cartridge. After the tobacco cartridge is installed in the receiving space 102, the tobacco cartridge and the control module 20 can be connected, thereby enabling the control module 20 to control the tobacco cartridge and cause it to generate an aerosol. Furthermore, the detachable connection of the tobacco cartridge within the receiving space 102 facilitates cartridge replacement.

[0039] Furthermore, in this embodiment, the control module 20 may have different control functions. For example, a display screen is provided on the housing 10, and the control module 20 is electrically connected to the display screen, so that the control module 20 can respond to the operation on the display screen and realize the control corresponding to the operation on the display screen. As another example, a vibration structure is installed in the housing 10, and the control module 20 is electrically connected to the vibration structure, so that the control module 20 can control the vibration structure to vibrate.

[0040] In addition, in this embodiment, the control module 20 can be a circuit board with control functions; of course, the control module 20 can also be a chip with control functions. The specific type of the control module 20 is not limited in this embodiment.

[0041] Additionally, in some embodiments, such as Figure 2 , Figure 3 and Figure 8 As shown, the battery module 30 may include a battery bracket 31 and a battery cell 32; the battery cell 32 is mounted on the battery bracket 31, the battery bracket 31 is detachably connected to the receiving cavity 101, and the battery cell 32 abuts against the control module 20; the battery bracket 31 has an end cap (not shown in the figure) that closes the receiving space 102.

[0042] Since the battery cell 32 is mounted on the battery bracket 31, and the battery bracket 31 is detachably connected to the receiving cavity 101, the presence of the battery bracket 31 provides a mounting position for the battery cell 32. When it is necessary to remove the battery cell 32 from the receiving cavity 101, the battery bracket 31 can be removed from the receiving cavity 101, thus allowing the battery cell 32 to be removed along with it. Furthermore, the presence of the battery bracket 31 facilitates operation by providing a comfortable grip, making it easy for the operator to remove the battery bracket 31 from the receiving cavity 101, thereby facilitating the removal of the battery cell 32. Additionally, the battery cell 32 abuts against the control module 20, allowing the battery cell 32 to supply power to the control module 20 and ensure its normal operation. In addition, the battery holder 31 has an end cap that encloses the receiving space 102. The battery module 30 and the control module 20 can be modularized through the battery holder 31, which facilitates the assembly of the atomizing host. The presence of the end cap can also protect the receiving space 102 when the e-liquid cartridge is not inserted into the receiving space 102, preventing impurities from entering the receiving space 102.

[0043] Additionally, in some embodiments, such as Figure 2 As shown, the battery bracket 31 may include a frame 311, a first bracket plate 312, and a second bracket plate 313. Along the axial direction of the outer casing 10, the first bracket plate 312 and the second bracket plate 313 are respectively connected to opposite ends of the frame 311. The frame 311 has an installation space 3110, in which the battery cell 32 is installed, and some of the battery cell 32 passes through the first bracket plate 312 and abuts against the control module 20. The second bracket plate 313 is connected to a snap-fit ​​member 314, which can snap-fit ​​with the cavity wall of the receiving cavity 101.

[0044] Since the first frame plate 312 and the second frame plate 313 are respectively connected to opposite ends of the frame 311 along the axial direction of the outer casing 10, the installation space 3110 is located between the first frame plate 312 and the second frame plate 313. Therefore, when the battery cell 32 is installed in the installation space 3110, part of the battery cell 32 can pass through the first frame plate 312 and abut against the control module 20, ensuring that the battery cell 32 can provide power to the control module 20. In addition, the second frame plate 313 is connected to a snap-fit ​​member 314. Therefore, the battery bracket 31 can be detachably connected to the receiving cavity 101 by snapping the snap-fit ​​member 314 with the cavity wall of the receiving cavity 101. When it is necessary to remove the battery bracket 31 from the receiving cavity 101, the snap-fit ​​member 314 can be separated from the cavity wall of the receiving cavity 101, and the battery bracket 31 can be directly removed from the receiving cavity 101.

[0045] It should be noted that the frame 311, the first frame plate 312, and the second frame plate 313 can be an integral structure. This results in higher strength for the battery bracket 31 and facilitates its manufacturing. Alternatively, the first frame plate 312 and the second frame plate 313 can be connected to the frame 311 by welding, riveting, or other methods. The specific method by which the first frame plate 312 and the second frame plate 313 are connected to the frame 311 is not limited in this embodiment.

[0046] In addition, a support platform can be provided in the accommodating space 102 of the frame 311, and the battery cell 32 can contact the support platform to facilitate the installation of the battery cell 32 in the accommodating space 102.

[0047] Additionally, in some embodiments, such as Figure 4 , Figure 7 and Figure 8 As shown, the atomizing host may also include a movable member 40; the movable member 40 is disposed on the side of the second frame plate 313 facing the first frame plate 312, and the movable member 40 is movable relative to the second frame plate 313 along the first direction X, so that the movable member 40 can switch between a first position and a second position, and the locking member 314 is deformable relative to the second frame plate 313, and the movable member 40 abuts against the locking member 314; when the movable member 40 is in the first position, the locking member 314 is engaged with the cavity wall of the receiving cavity 101; when the movable member 40 is in the second position, the locking member 314 is separated from the cavity wall of the receiving cavity 101.

[0048] Since the movable member 40 is located on the side of the second frame plate 313 facing the first frame plate 312, and the movable member 40 is movable relative to the second frame plate 313 along the first direction X, once the movable member 40 is subjected to force, it can move along the first direction X, causing the position of the movable member 40 to change, thus allowing the movable member 40 to switch between a first position and a second position. Furthermore, the locking member 314 is deformable relative to the second frame plate 313, and the movable member 40 abuts against the locking member 314. Therefore, when the movable member 40 moves along the first direction X, different parts of the movable member 40 contact the locking member 314, causing the locking member 314 to deform under force, or to return to its original shape. Specifically, once the movable member 40 is moved to the first position under force, the locking member 314 will deform under force, causing it to engage with the cavity wall of the receiving cavity 101, ensuring that the battery bracket 31 is fixed in the receiving cavity 101 and preventing the battery bracket 31 from easily falling out of the receiving cavity 101. Once the movable member 40 is moved to the second position under force, the locking member 314 can return to its original shape, causing it to separate from the cavity wall of the receiving cavity 101, thereby allowing the battery body 321 to be removed from the receiving cavity 101. That is, by setting the movable member 40, force can be applied to the movable member 40 to make it move along the first direction X. During the movement of the movable member 40, the battery bracket 31 can engage with the cavity wall of the receiving cavity 101, or the battery bracket 31 can separate from the cavity wall of the receiving cavity 101, thereby facilitating the fixing of the battery bracket 31 in the receiving cavity 101 and facilitating the removal of the battery bracket 31 from the receiving cavity 101.

[0049] It should be noted that the snap-fit ​​314 can be made of a deformable material, for example, the snap-fit ​​314 can be made of soft plastic.

[0050] Additionally, in some embodiments, such as Figure 12 As shown, along the first direction X, the movable member 40 may include a first part 41 and a second part 42 connected together. Along the direction of deformation of the snap-fit ​​member 314, the size of the first part 41 is smaller than the size of the second part 42. When the movable member 40 is in the first position, the second part 42 abuts against the snap-fit ​​member 314 so that the snap-fit ​​member 314 snaps against the cavity wall of the receiving cavity 101. When the movable member 40 is in the second position, the first part 41 abuts against the snap-fit ​​member 314 so that the snap-fit ​​member 314 separates from the cavity wall of the receiving cavity 101.

[0051] Since the size of the first part 41 is smaller than the size of the second part 42 along the direction of deformation of the latching member 314, during the movement of the movable member 40 along the first direction X, the first part 41 of the movable member 40 can contact the latching member 314, or the second part 42 of the movable member 40 can contact the latching member 314, so that the latching member 314 recovers its deformation or the latching member 314 is deformed by force. Specifically, when the movable part 40 moves to the first position, the second part 42 abuts against the latching part 314. Since the size of the second part 42 is larger than the size of the first part 41, the second part 42 will squeeze the latching part 314, causing the latching part 314 to deform under force. Thus, the latching part 314 will engage with the cavity wall of the receiving cavity 101, ensuring that the battery bracket 31 is fixed in the receiving cavity 101. When the movable part 40 moves to the first position, the first part 41 abuts against the latching part 314. Since the size of the first part 41 is smaller than the size of the second part 42, the first part 41 will release the pressure on the latching part 314. The latching part 314 can then recover its deformation, thus separating the latching part 314 from the cavity wall of the receiving cavity 101, ensuring that the battery bracket 31 can be removed from the receiving cavity 101. That is, by setting the first part 41 and the second part 42, during the movement of the movable part 40, it is convenient for the snap-fit ​​part 314 to deform under force and abut against the receiving cavity 101, or for the snap-fit ​​part 314 to separate from the cavity wall of the receiving cavity 101.

[0052] It should be noted that the transition between the first part 41 and the second part 42 can be smooth, or the first part 41 and the second part 42 can be wedge-shaped. This embodiment of the application does not limit the specifics of this.

[0053] Furthermore, in this embodiment, the number of latching members 314 can be set according to actual needs. For example, if there are two latching members 314, they are located on opposite sides of the second frame plate 313, with some movable parts 40 positioned between them. This allows the two latching members 314 to simultaneously deform and abut against the cavity wall of the receiving cavity 101, or to simultaneously separate from the cavity wall of the receiving cavity 101, during the movement of the movable parts 40. Alternatively, if there are four latching members 314, two are located on one side of the second frame plate 313, and the other two are located on the other side. The specific number of latching members 314 is not limited in this embodiment.

[0054] Additionally, in some embodiments, such as Figure 9 and Figure 10As shown, the snap-fit ​​member 314 is provided with a snap-fit ​​platform 315, and the cavity wall of the receiving cavity 101 is provided with a snap-fit ​​groove 103; when the movable member 40 is in the first position, the snap-fit ​​platform 315 snaps into the snap-fit ​​groove 103 so that the snap-fit ​​member 314 snaps into the cavity wall of the receiving cavity 101.

[0055] Because the snap-fit ​​member 314 is provided with a snap-fit ​​platform 315 and the cavity wall of the receiving cavity 101 is provided with a snap-fit ​​groove 103, during the movement of the movable member 40, the movable member 40 applies force to the snap-fit ​​member 314, causing the snap-fit ​​member 314 to deform. This causes the snap-fit ​​platform 315 on the snap-fit ​​member 314 to engage with the snap-fit ​​groove 103 on the cavity wall of the receiving cavity 101, thus engaging the snap-fit ​​member 314 with the cavity wall of the receiving cavity 101. Specifically, when the movable member 40 moves to the first position, the snap-fit ​​platform 315 engages with the snap-fit ​​groove 103, facilitating the engagement of the snap-fit ​​member 314 with the cavity wall of the receiving cavity 101.

[0056] It should be noted that the shape of the card slot 315 can be set according to actual needs. For example, the shape of the card slot 315 can be prism-shaped, or it can be cuboid-shaped. The specific shape of the card slot 315 is not limited in this embodiment. Furthermore, the shape of the card slot 103 matches the shape of the card slot 315, ensuring that the card slot 315 can be embedded in the card slot 103.

[0057] Of course, a slot 103 can be provided on the snap-fit ​​member 314, and a snap-fit ​​platform 315 can be provided on the cavity wall of the receiving cavity 101. The snap-fit ​​platform 315 is deformable, so that when the movable member 40 moves to the first position, the snap-fit ​​platform 315 can be embedded in the slot 103 on the snap-fit ​​member 314, ensuring that the snap-fit ​​member 314 is snapped into the cavity wall of the receiving cavity 101.

[0058] Additionally, in some embodiments, such as Figure 12 As shown, the movable part 40 has at least one groove 401 on the surface facing away from the second frame plate 313. This design not only reduces the weight of the movable part 40, thus reducing the weight of the atomizing host and making it easier for the user to use the atomizing host, but also gives the movable part 40 a certain degree of shrinkage resistance.

[0059] It should be noted that the number of grooves 401 can be set according to actual needs. For example, the number of grooves 401 can be 4, or the number of grooves 401 can be 6. The specific number of grooves 401 is not limited in this embodiment.

[0060] Additionally, in some embodiments, such as Figure 2 and Figure 12 As shown, along the first direction X, multiple limiting grooves 402 are spaced apart on the side wall of the movable member 40, and a limiting platform 3111 is provided on the frame 311, with the limiting platform 3111 embedded in one of the limiting grooves 402. With this arrangement, when the movable member 40 is not under force, the limiting platform 3111 effectively limits the movable member 40, preventing potential positional changes that could affect the engagement between the battery bracket 31 and the cavity wall of the receiving cavity 101. In other words, by providing the limiting grooves 402 and the limiting platform 3111, it can be ensured that the movable member 40 is limited by the limiting platform 3111 when not under force, ensuring a relatively fixed position for the movable member 40, thereby ensuring a more stable engagement between the battery body 321 and the cavity wall of the receiving cavity 101.

[0061] It should be noted that the limiting platform 3111 has a certain elasticity, so when the movable part 40 is subjected to force along the first direction X, the limiting platform 3111 can deform, thereby moving the limiting platform 3111 from one limiting groove 402 to another limiting groove 402 to limit the movable part 40.

[0062] Furthermore, the number of limiting grooves 402 can be set according to actual needs. For example, the number of limiting grooves 402 can be 4, or for another example, the number of limiting grooves 402 can be 6. The specific number of limiting grooves 402 is not limited in this embodiment.

[0063] In addition, when limit platforms 3111 are provided on both sides of the frame 311, multiple limit grooves 402 are provided on the side walls of both sides of the movable part 40.

[0064] Additionally, in some embodiments, such as Figure 8 , Figure 9 and Figure 10 As shown, the movable component 40 is connected to a movable handle 50; the second frame plate 313 is provided with a mounting hole 3131, through which the movable handle 50 passes. With this arrangement, when force needs to be applied to the movable component 40, the user can directly grasp the movable handle 50, which moves the movable component 40, causing the battery bracket 31 to engage with or separate from the cavity wall of the receiving cavity 101. In other words, by providing the movable handle 50, the user can easily move the movable component 40 to remove the battery module 30 from the receiving cavity 101, or to install the battery module 30 into the receiving cavity 101.

[0065] It should be noted that the shape of the movable handle 50 can be set according to actual needs. For example, the movable handle 50 can be cylindrical, or it can be triangular. The specific shape of the movable handle 50 is not limited in this embodiment.

[0066] Additionally, in some embodiments, such as Figure 4 As shown, the second mounting plate 313 has a first mark 3132 and a second mark 3133 on the side opposite to the first mounting plate 312. The first mark 3132 and the second mark 3133 are respectively located on opposite sides of the mounting hole 3131 in the first direction X. The first mark 3132 is used to indicate that the snap-fit ​​member 314 is snapped into the cavity wall of the receiving cavity 101, and the second mark 3133 is used to indicate that the snap-fit ​​member 314 is separated from the cavity wall of the receiving cavity 101.

[0067] Since the second mounting plate 313 has a first mark 3132 and a second mark 3133 on the side opposite to the first mounting plate 312, and the first mark 3132 and the second mark 3133 are respectively located on opposite sides of the mounting hole 3131 in the first direction X, it is equivalent to having the first mark 3132 and the second mark 3133 respectively on opposite sides of the mounting hole 3131 in the direction of movement of the movable member 40. This allows the first mark 3132 to indicate that the snap-fit ​​member 314 snaps into the cavity wall of the receiving cavity 101, and the second mark 313... 3. The locking element 314 is separated from the cavity wall of the receiving cavity 101. Therefore, when the user moves the movable element 40, once the movable element 40 moves to the vicinity of the first indicator 3132, the user will know that the locking element 314 has engaged with the cavity wall of the receiving cavity 101, and the battery bracket 31 is fixed in the receiving cavity 101. Once the movable element 40 moves to the vicinity of the second indicator 3133, the user will know that the locking element 314 has separated from the cavity wall of the receiving cavity 101, and the user can then remove the battery module 30 from the receiving cavity 101. In other words, by setting the first indicator 3132 and the second indicator 3133, it is easy for the user to know whether the battery module 30 can be removed from the receiving cavity 101, and also easy for the user to know whether the battery module 30 is fixed in the receiving cavity 101.

[0068] It should be noted that the first identifier 3132 and the second identifier 3133 can be text identifiers, for example, the first identifier 3132 can be an "OFF" identifier and the second identifier 3133 can be an "ON" identifier; of course, the first identifier 3132 and the second identifier 3133 can also be graphic identifiers. The specific types of the first identifier 3132 and the second identifier 3133 are not limited in this embodiment of the application.

[0069] Additionally, in some embodiments, such as Figure 3As shown, the battery cell 32 may include a body 321 and a terminal post 322 connected to the body 321. The body 321 is mounted on the battery bracket 31, and the terminal post 322 passes through the battery bracket 31 and abuts against the control module 20. With this configuration, once the battery cell 32 is mounted on the battery bracket 31, the terminal post 322 can pass through the battery bracket 31 and abut against the control module 20. Thus, the electrical energy in the body 321 of the battery cell 32 can be transferred to the control module 20 through the terminal post 322, thereby powering the control module 20. Furthermore, the terminal post 322 is small in size, and when it is necessary for the terminal post 322 to pass through the battery bracket 31, only a small through hole needs to be made on the battery bracket 31 to allow the terminal post 322 to pass through, thus having little impact on the strength of the battery bracket 31.

[0070] It should be noted that when the battery bracket 31 includes a frame 311, a first bracket plate 312, and a second bracket plate 313, the body 321 of the battery cell 32 is installed in the frame 311, and the terminal post 322 passes through the first bracket plate 312. The first bracket plate 312 has a through hole so that the terminal post 322 passes through the through hole and abuts against the control module 20.

[0071] In addition, there are two terminals 322, one is a positive terminal and the other is a negative terminal. Both the positive terminal and the negative terminal are connected to the control module 20 through the battery bracket 31.

[0072] Additionally, in some embodiments, such as Figure 11 As shown, the control module 20 is provided with a conductive hole 201, a conductive element 202 is provided in the conductive hole 201, and a pole post 322 is embedded in the conductive hole 201, and the pole post 322 abuts against the conductive element 202.

[0073] Since the control module 20 is provided with a conductive hole 201 and a conductive element 202 is provided in the conductive hole 201, once the battery module 30 is installed in the receiving cavity 101 of the housing 10, the terminal 322 of the battery cell 32 of the battery module 30 can be embedded in the conductive hole 201, and the terminal 322 abuts against the conductive element 202. This can effectively ensure that the terminal 322 of the battery cell 32 is in close contact with the conductive element 202, thereby effectively ensuring that the battery cell 32 supplies power to the control module 20 and ensuring that the control module 20 operates effectively.

[0074] It should be noted that when there are two terminals 322, there are also two conductive holes 201, meaning the positive terminal is embedded in one conductive hole 201 and the negative terminal is embedded in the other conductive hole 201. Furthermore, the conductive element 202 can be a wire, or it can be a conductive sheet. The specific type of the conductive element 202 is not limited in this embodiment.

[0075] Additionally, in some embodiments, such as Figure 3 As shown, a blocking protrusion 3221 is provided on the outer wall of the terminal 322 along the circumference of the terminal 322, and the blocking protrusion 3221 is located outside the conductive hole 201. With this arrangement, when the terminal 322 is embedded in the conductive hole 201 of the control module 20, the blocking protrusion 3221 can effectively limit the terminal 322, and when the battery module 30 is installed, it can effectively ensure that the battery module 30 is installed in the appropriate position. That is, when installing the battery module 30, once the terminal 322 is embedded in the conductive hole 201, after the blocking protrusion 3221 contacts the control module 20, it indicates that the battery module 30 has been installed in the appropriate position, thus facilitating the installation of the battery module 30.

[0076] This application provides an atomizing device, which includes a cartridge and an atomizing host as described in any of the above embodiments; the cartridge is detachably connected to the receiving cavity, and the cartridge is located on the side of the control module away from the battery module.

[0077] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0078] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.

Claims

1. An atomizing device, characterized in that, The atomizing host includes: A housing having a receiving cavity and a first opening and a second opening communicating with the receiving cavity; A control module is installed in the receiving cavity, and there is a receiving space between the control module and the first opening, the receiving space being used to receive the e-cigarette cartridge; The battery module is detachably connected to the receiving cavity, and the battery module is located on the side of the control module away from the receiving space. The battery module abuts against the control module. The battery module can be locked in the receiving cavity through the second opening and can be removed from the receiving cavity.

2. The atomizing host according to claim 1, characterized in that, The battery module includes a battery bracket and battery cells; The battery cell is mounted on the battery bracket, the battery bracket is detachably connected to the receiving cavity, and the battery cell abuts against the control module; The battery holder has an end cap that closes the receiving space.

3. The atomizing host according to claim 2, characterized in that, The battery bracket includes a frame, a first shelf, and a second shelf; Along the axial direction of the outer casing, the first frame plate and the second frame plate are respectively connected to opposite ends of the frame body. The frame body has an installation space, the battery cell is installed in the installation space, and part of the battery cell passes through the first frame plate and abuts against the control module. The second frame plate is connected to a snap-fit ​​component, which can snap into the cavity wall of the receiving cavity.

4. The atomizing host according to claim 3, characterized in that, The atomizing unit also includes movable parts; The movable component is disposed on the side of the second frame plate facing the first frame plate, and the movable component is movable relative to the second frame plate in a first direction so that the movable component can switch between a first position and a second position. The snap-fit ​​component is deformable relative to the second frame plate, and the movable component abuts against the snap-fit ​​component. When the movable part is in the first position, the snap-fit ​​element engages with the cavity wall of the receiving cavity; when the movable part is in the second position, the snap-fit ​​element disengages from the cavity wall of the receiving cavity.

5. The atomizing host according to claim 4, characterized in that, Along the first direction, the movable part includes a first part and a second part connected together, and along the direction of deformation of the snap-fit ​​member, the size of the first part is smaller than the size of the second part; When the movable part is in the first position, the second part abuts against the snap-fit ​​member to engage the snap-fit ​​member with the cavity wall of the receiving cavity; when the movable part is in the second position, the first part abuts against the snap-fit ​​member to separate the snap-fit ​​member from the cavity wall of the receiving cavity.

6. The atomizing host according to claim 4, characterized in that, The snap-fit ​​component is provided with a snap-fit ​​platform, and the cavity wall of the receiving cavity is provided with a snap-fit ​​groove; When the movable part is in the first position, the locking platform engages with the locking slot so that the locking part engages with the cavity wall of the receiving cavity.

7. The atomizing host according to claim 4, characterized in that, The movable component has at least one groove on the surface opposite to the second frame plate.

8. The atomizing host according to claim 4, characterized in that, Along the first direction, a plurality of limiting grooves are provided at intervals on the side wall of the movable component, and a limiting platform is provided on the frame, the limiting platform being embedded in one of the limiting grooves.

9. The atomizing host according to claim 4, characterized in that, The movable component is connected to a movable handle; the second frame plate is provided with a mounting hole, and the movable handle passes through the mounting hole.

10. The atomizing host according to claim 9, characterized in that, The second shelf plate has a first mark and a second mark on the side opposite to the first shelf plate, and the first mark and the second mark are respectively located on opposite sides of the mounting hole in the first direction; The first identifier is used to indicate that the snap-fit ​​component is snapped into the cavity wall of the receiving cavity, and the second identifier is used to indicate that the snap-fit ​​component is separated from the cavity wall of the receiving cavity.

11. The atomizing host according to claim 2, characterized in that, The battery cell includes a body and terminals connected to the body; The main body is mounted on the battery bracket, the terminal post passes through the battery bracket, and the terminal post abuts against the control module.

12. The atomizing host according to claim 11, characterized in that, The control module is provided with a conductive hole, and a conductive element is provided in the conductive hole. The electrode is embedded in the conductive hole and abuts against the conductive element.

13. The atomizing host according to claim 12, characterized in that, A blocking protrusion is provided on the outer wall of the electrode post along the circumference of the electrode post, and the blocking protrusion is located outside the conductive hole.

14. An atomizing device, characterized in that, The atomizing device includes a cigarette cartridge and an atomizing host as described in any one of claims 1-13; The cartridge is detachably connected to the receiving cavity, and the cartridge is located on the side of the control module opposite to the battery module.