Power supply assembly and aerosol generating device

By introducing the form switching functions of the telescopic mechanism and atomizer mount into the power supply components of the aerosol generation device, the problem of single gameplay and inconvenient portability of the existing device is solved, and rich gameplay experience and space savings are achieved.

CN120167694APending Publication Date: 2025-06-20SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Application Number
CN202510330029.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The existing aerosol generation device has a single gameplay, and carries multiple small objects to take up a lot of space, which makes it inconvenient to carry.

Method used

A power supply assembly is designed, including a housing, an atomizer mount and a telescopic mechanism. The atomizer mount extends at least partially outside the opening of the housing through the telescopic mechanism, thereby realizing the form switching of the aerosol generation device.

Benefits of technology

It enriches the gameplay of the aerosol generation device, allowing users to play by repeatedly switching states, reducing the number of small objects they carry and saving space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a power supply assembly and an aerosol generating device, and belongs to the field of aerosol generating devices. The power supply assembly comprises a shell, an atomizer mounting frame and a telescopic mechanism, the shell is provided with an opening, the telescopic mechanism is located in the shell, the atomizer mounting frame is connected with the telescopic mechanism, and the atomizer mounting frame is located in the shell and can at least partially extend out of the opening under the action of the telescopic mechanism. The atomizer mounting rack can at least partially extend out of the opening of the shell under the action of the telescopic mechanism, so that the aerosol generating device at least has two forms, and the positions of the atomizer are different in the two forms. The aerosol generating device can generate aerosol, and a user can play the aerosol generating device by repeatedly switching the state of the aerosol generating device, so that the playing method of the aerosol generating device is enriched, and the user can reduce the carrying quantity of small objects.
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Description

Technical Field

[0001] The present application relates to the field of aerosol generating devices, and in particular to a power supply component and an aerosol generating device. Background Art

[0002] Some small objects that are small and can be carried around and played with at any time are becoming more and more popular among people, such as aerosol generating devices, fidget spinners, etc. Although these small objects can be carried around, different small objects are usually played in a single way, and only one or two can be selectively carried. Carrying multiple small objects will take up a lot of space and cause inconvenience in carrying. Summary of the invention

[0003] The embodiment of the present application provides a power supply assembly and an aerosol generating device, which can enrich the playing methods of the aerosol generating device, help users reduce the number of small objects they carry, and save space. The technical solution is as follows:

[0004] In a first aspect, an embodiment of the present application provides a power supply assembly, which includes a shell, an atomizer mounting bracket and a telescopic mechanism, wherein the shell has an opening, the telescopic mechanism is located in the shell, the atomizer mounting bracket is connected to the telescopic mechanism, and the atomizer mounting bracket is located in the shell and can be at least partially extended out of the opening under the action of the telescopic mechanism.

[0005] In some examples, the telescopic mechanism includes a mounting seat, a push rod and a first elastic member, the mounting seat is located in the housing, the push rod is slidably connected to the mounting seat, one end of the push rod close to the opening is connected to the atomizer mounting bracket, and the first elastic member cooperates with the push rod to provide a force that causes the push rod to move relative to the mounting seat in a direction close to the opening.

[0006] In some examples, the atomizer mounting bracket has a first locking structure on a side opposite to the mounting seat;

[0007] The mounting seat has a second locking structure on one side close to the opening, and the second locking structure is used to cooperate with the first locking structure to lock the atomizer mounting bracket when the atomizer mounting bracket is accommodated in the shell.

[0008] In some examples, the first locking structure includes at least one first locking hole, and the second locking structure includes at least one first locking hook, the first locking hooks are arranged in a one-to-one correspondence with the first locking holes, and the first locking hooks extend in a direction close to the opening.

[0009] In some examples, the telescopic mechanism further includes a first unlocking member, the first unlocking member and the second locking structure are located on two adjacent sides of the mounting base, and the first unlocking member is movably connected to the mounting base and is configured to separate the first locking structure and the second locking structure under an external force.

[0010] In some examples, the power supply assembly further includes a first electrode, the first electrode is located on a side of the mounting base close to the opening and is connected to the mounting base.

[0011] In some examples, the housing has a third locking structure, and the third locking structure and the opening are located on two adjacent sides of the housing;

[0012] The atomizer mounting bracket has a fourth locking structure, and the fourth locking structure is configured to cooperate with the third locking structure to lock the atomizer mounting bracket when the atomizer mounting bracket is received in the housing.

[0013] In some examples, the atomizer mounting bracket includes a support frame, the support frame includes a connecting portion and a supporting portion, the connecting portion is connected to the telescopic mechanism, the supporting portion is located on a side of the connecting portion away from the telescopic mechanism, and the supporting portion is configured to connect an atomizer.

[0014] In some examples, the atomizer mounting bracket includes a support frame and a connecting seat, the support frame includes a connecting portion and a supporting portion, the connecting portion is connected to the telescopic mechanism, the supporting portion is located on a side of the connecting portion away from the telescopic mechanism, the connecting seat is connected to the supporting portion, and the connecting seat is configured to connect an atomizer.

[0015] In some examples, the connecting seat is rotatably connected to the supporting portion.

[0016] In some examples, one side of the connecting seat has a slot, the slot is configured to receive an atomizer, and an outer side wall of the slot is connected to the supporting portion.

[0017] In some examples, the atomizer mounting bracket further includes a second electrode, the second electrode is located at the bottom of the slot, and the second electrode is configured to supply power to the atomizer when the atomizer mounting bracket is received in the housing.

[0018] In a second aspect, an aerosol generating device according to an embodiment of the present application is also provided. The aerosol generating device includes an atomizer and any one of the power supply assemblies as described in the first aspect, and the atomizer is connected to the atomizer mounting bracket.

[0019] The beneficial effects brought by the technical solutions provided by the embodiments of the present application at least include:

[0020] By providing a telescopic mechanism within the housing and connecting the atomizer mounting bracket using the telescopic mechanism, the atomizer mounting bracket is used to mount the atomizer. Under the action of the telescopic mechanism, the atomizer mounting bracket can at least partially extend outside the opening of the housing, enabling the aerosol generating device to have at least two forms, with the position of the atomizer being different in the two forms. In addition to being able to generate aerosol, the user can also play with the aerosol generating device by repeatedly switching its state, enriching the ways of using the aerosol generating device and allowing the user to reduce the amount of small items carried. Description of the Drawings

[0021] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following described drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0022] Figure 1 is a schematic structural diagram of an aerosol generating device provided by an embodiment of the present application;

[0023] Figure 2 is a schematic structural diagram of a power supply component provided by an embodiment of the present application;

[0024] Figure 3 is a schematic diagram of the state switching of a power supply component provided by an embodiment of the present application;

[0025] Figure 4 is a schematic structural diagram of a telescopic mechanism and an atomizer mounting bracket provided by an embodiment of the present application;

[0026] Figure 5 is a cross-sectional schematic diagram of a telescopic mechanism and an atomizer mounting bracket provided by an embodiment of the present application;

[0027] Figure 6 is a schematic structural diagram of a telescopic mechanism and an atomizer mounting bracket provided by an embodiment of the present application;

[0028] Figure 7 is a schematic structural diagram of a housing and an atomizer mounting bracket provided by an embodiment of the present application;

[0029] Figure 8 is a schematic structural diagram of a housing and an atomizer mounting bracket provided by an embodiment of the present application;

[0030] Figure 9 is a schematic structural diagram of an atomizer mounting bracket provided by an embodiment of the present application;

[0031] Figure 10It is a schematic structural diagram of an atomizer mounting bracket provided by an embodiment of the present application;

[0032] Figure 11 It is a schematic structural diagram of a connection seat provided by an embodiment of the present application;

[0033] Figure 12 It is a schematic structural diagram of an aerosol generating device provided by an embodiment of the present application.

[0034] Reference numerals:

[0035] 100 - power supply assembly; 10 - housing; 10a - opening; 10b - second locking hole; 10c - through hole; 101 - third locking structure; 20 - atomizer mounting bracket; 200 - atomizer; 21 - connecting portion; 210 - support frame; 21a - first locking hole; 21b - avoidance hole; 211 - first locking structure; 212 - fourth locking structure; 2121 - second locking hook; 2122 - hook groove; 22 - support portion; 220 - connection seat; 220a - slot; 30 - telescopic mechanism; 31 - mounting seat; 31a - guiding hole; 311 - second locking structure; 3111 - first locking hook; 31111 - protruding portion; 32 - push rod; 321 - outer flange; 33 - first elastic member; 34 - first unlocking member; 341 - pressing portion; 342 - pushing portion; 343 - second elastic member; 41 - first electrode; 42 - second electrode; 43 - battery. Detailed implementation manners

[0036] In the following description, specific details such as specific system structures and technologies are presented for the purpose of illustration rather than limitation, so as to thoroughly understand the embodiments of the present application. However, those skilled in the art should clearly understand that the present application can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present application.

[0037] It should also be understood that the term "and / or" as used in the specification and appended claims of the present application refers to any combination and all possible combinations of one or more of the associated listed items, and includes these combinations.

[0038] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0039] It should be understood that the orientation or positional relationship indicated by terms such as "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present application.

[0040] In addition, in the description of the specification and the appended claims of the present application, terms such as "first", "second", "third", etc. are only used for distinguishing descriptions and should not be construed as indicating or implying relative importance.

[0041] The reference to "one embodiment" or "some embodiments" etc. in the specification of the present application means that specific features, structures or characteristics described in connection with the embodiment are included in one or more embodiments of the present application. Thus, statements such as "in one embodiment", "in some embodiments", "in other some embodiments", "in still other embodiments" etc. that appear in different places in this specification do not necessarily refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized in other ways. Terms such as "comprising", "including", "having" and their variants all mean "including but not limited to", unless otherwise specifically emphasized in other ways. "Plurality" means two or more.

[0042] Figure 1 It is a schematic structural diagram of an aerosol generating device provided by an embodiment of the present application. As Figure 1 shown, the aerosol generating device includes a power supply assembly 100 and an atomizer 200. The power supply assembly 100 is used to supply power to the atomizer 200. The atomizer 200 is detachably connected to the power supply assembly 100.

[0043] Figure 2 It is a schematic structural diagram of a power supply assembly provided by an embodiment of the present application. As Figure 2 shown, the power supply assembly 100 includes a housing 10, an atomizer mounting bracket 20 and a telescopic mechanism 30. Among them, the housing 10 has an opening 10a, the telescopic mechanism 30 is located in the housing 10, and the atomizer mounting bracket 20 is connected to the telescopic mechanism 30.

[0044] Figure 3 It is a schematic diagram of the form switching of a power supply assembly provided by an embodiment of the present application, and two forms of the power supply assembly 100 are shown in the figure. As Figure 3 shown, the atomizer mounting bracket 20 is located in the housing 10 and can at least partially extend out of the opening 10a under the action of the telescopic mechanism 30.

[0045] By setting a telescopic mechanism 30 in the housing 10, the telescopic mechanism 30 is used to connect the atomizer mounting frame 20, and the atomizer mounting frame 20 is used to mount the atomizer 200. Under the action of the telescopic mechanism 30, the atomizer mounting frame 20 can at least partially extend out of the opening 10a of the housing 10, so that the aerosol generating device has at least two forms, and the positions of the atomizer 200 are different in the two forms. In addition to being able to generate aerosols, the aerosol generating device can also be played by repeatedly switching the state of the aerosol generating device, which enriches the playing methods of the aerosol generating device and allows users to reduce the amount of small objects they carry.

[0046] Figure 4 is a structural schematic diagram of a telescopic mechanism and an atomizer mounting frame provided in an embodiment of the present application, such as Figure 4 As shown, the telescopic mechanism 30 includes a mounting seat 31, a push rod 32 and a first elastic member 33. The mounting seat 31 is located in the housing 10, and the push rod 32 is slidably connected to the mounting seat 31. One end of the push rod 32 close to the opening 10a is connected to the atomizer mounting frame 20. The first elastic member 33 cooperates with the push rod 32 to provide a force that causes the push rod 32 to move relative to the mounting seat 31 in a direction close to the opening 10a.

[0047] The elastic force applied by the first elastic member 33 can make the telescopic mechanism 30 drive the atomizer mounting frame 20 to move quickly out of the opening 10a. When the atomizer mounting frame 20 or the atomizer mounted on the atomizer mounting frame 20 is pushed into the opening 10a by an external force, the atomizer mounting frame 20 can be returned to the housing 10. When playing with the aerosol generating device, the user can press the atomizer 200 into the opening 10a to move the atomizer 200 into the opening 10a, and then release the atomizer 200 to make the atomizer mounting frame 20 drive the atomizer 200 to pop out of the opening 10a, and repeat this process.

[0048] Figure 5 is a cross-sectional schematic diagram of a telescopic mechanism and an atomizer mounting frame provided in an embodiment of the present application, Figure 5 FIG. 2 shows two switching modes of the telescopic mechanism 30 of the power supply assembly 100. Figure 5 As shown, one end of the first elastic member 33 may abut against the mounting seat 31 , and the other end of the first elastic member 33 may abut against the push rod 32 , or against the atomizer mounting bracket 20 .

[0049] Exemplarily, the first elastic member 33 may be a spring, and the spring may be sleeved outside the push rod 32 to prevent the spring from lateral deformation.

[0050] As an example, the push rod 32 may have an outer flange 321 , and the first elastic member 33 may abut against the outer flange 321 .

[0051] Exemplarily, the mounting base 31 can be fixed in the housing 10.

[0052] The mounting base 31 can have a guiding hole 31a, and the push rod 32 is located in the guiding hole 31a with a clearance fit with the guiding hole 31a. The inner wall of the guiding hole 31a can be a stepped surface, and the first elastic member 33 can abut against the stepped surface. For example Figure 5 As shown, the guiding hole 31a can have an inwardly protruding inner flange or a stop collar to stop one end of the first elastic member 33.

[0053] As Figure 4 shown, one side of the atomizer mounting bracket 20 opposite to the mounting base 31 has a first locking structure 211.

[0054] One side of the mounting base 31 close to the opening 10a has a second locking structure 311. The second locking structure 311 is used to cooperate with the first locking structure 211 to lock the atomizer mounting bracket 20 when the atomizer mounting bracket 20 is received in the housing 10.

[0055] When the user uses the aerosol generating device, the user can press the atomizer 200 into the opening 10a to make the first locking structure 211 and the second locking structure 311 contact each other, locking the atomizer mounting bracket 20, which is convenient for the user to suck. When playing with the aerosol generating device, the first locking structure 211 and the second locking structure 311 can be disengaged, so that the atomizer mounting bracket 20 pops out of the opening 10a under the action of the first elastic member 33.

[0056] By arranging the first locking structure 211 on the side of the atomizer mounting bracket 20 opposite to the mounting base 31 and arranging the second locking structure 311 on the side of the mounting base 31 close to the opening 10a, the stability of the atomizer mounting bracket 20 in the locked state can be improved, and it can be avoided that the force of the second locking structure 311 on the atomizer mounting bracket 20 is unbalanced with the force of the first elastic member 33 on the atomizer mounting bracket 20, resulting in the atomizer mounting bracket 20 being skewed and squeezed against the inner wall of one side of the housing 10, or even causing the atomizer mounting bracket 20 to get stuck and unable to move out of the opening 10a smoothly even after unlocking.

[0057] In some examples, the first locking structure 211 can include at least one of a first locking hole 21a and a first locking hook 3111; the second locking structure 311 can include at least one of a first locking hole 21a and a first locking hook 3111. One of the first locking structure 211 and the second locking structure 311 can at least include the first locking hole 21a, and the other of the first locking structure 211 and the second locking structure 311 can at least include the first locking hook 3111.

[0058] As an example, as Figure 4As shown, the first locking structure 211 includes a first locking hole 21a, the second locking structure 311 includes a first locking hook 3111, and the first locking hook 3111 extends in a direction close to the opening 10a.

[0059] In this example, the first locking structure 211 includes two first locking holes 21a, and the second locking structure 311 includes two first locking hooks 3111. The two first locking hooks 3111 are symmetrically arranged, which can make the force more balanced after the atomizer mounting seat 31 is locked. For example, the surface of the atomizer mounting frame 20 opposite to the mounting seat 31 can be an axisymmetric structure, and the two first locking hooks 3111 are symmetrically distributed about the axis of symmetry of this surface.

[0060] In other possible implementation manners, the first locking structure 211 may include two or more first locking holes 21a, and the second locking structure 311 may include two or more first locking hooks 3111.

[0061] The first locking hooks 3111 and the first locking holes 21a are arranged in one-to-one correspondence.

[0062] The cooperation between the first locking hooks 3111 and the first locking holes 21a is stable and the structure is simple. Taking the Figure 4 shown example as an example, when the atomizer mounting frame 20 is close to the mounting seat 31, by continuing to press the atomizer 200 into the opening 10a, the first locking hooks 3111 can pass through the first locking holes 21a. After releasing the atomizer 200, the first locking hooks 3111 hook the edges of the first locking holes 21a, locking the atomizer mounting seat 31. By separating the first locking hooks 3111 from the first locking holes 21a, the atomizer mounting seat 31 can be unlocked, and the atomizer mounting seat 31 moves outward from the opening 10a under the action of the first elastic member 33.

[0063] The first locking hook 3111 may include a protrusion 31111, and the protrusion 31111 is used to hook the edge of the first locking hole 21a.

[0064] As Figure 4 shown, the telescopic mechanism 30 may further include a first unlocking member 34. The first unlocking member 34 and the second locking structure 311 are located on two adjacent sides of the mounting seat 31, and the first unlocking member 34 is movably connected to the mounting seat 31. The first unlocking member 34 is used to separate the first locking structure 211 and the second locking structure 311 under the action of an external force.

[0065] By providing the first unlocking member 34, it is convenient to separate the first locking structure 211 from the second locking structure 311, unlocking the atomizer mounting bracket 20. The first unlocking member 34 and the second locking structure 311 are located on adjacent sides of the mounting base 31, which facilitates the first unlocking member 34 to push one of the first locking structure 211 and the second locking structure 311, separating the first locking structure 211 from the second locking structure 311.

[0066] Figure 6 FIG. [FIG. number] is a schematic structural diagram of a telescopic mechanism and an atomizer mounting bracket provided by an embodiment of the present application. As Figure 6 shown, in this example, the first unlocking member 34 includes a connected pressing portion 341 and a pushing portion 342. The pressing portion 341 can be exposed outside the housing 10. The pushing portion 342 is slidably connected to the mounting base 31. One end of the pushing portion 342 away from the pressing portion 341 faces one side of the first locking hook 3111. By pressing the pressing portion 341, the pushing portion 342 is caused to push the first locking hook 3111 to generate a lateral deformation, separating it from the first locking hole 21a.

[0067] The first unlocking members 34 can be arranged in one-to-one correspondence with the first locking hooks 3111, and each first unlocking member 34 is respectively used to push the corresponding first locking hook 3111 to deform.

[0068] The telescopic mechanism 30 may further include a second elastic member 343. The second elastic member 343 cooperates with the first unlocking member 34 to provide a force for separating the first unlocking member 34 from the first locking structure 211 or the second locking structure 311. After the user completes unlocking and releases the pressing portion 341, the first unlocking member 34 can move under the action of the second elastic member 343 and separate from the first locking hook 3111.

[0069] Exemplarily, the second elastic member 343 can be a spring. The spring can be sleeved outside the pushing portion 342. One end of the spring abuts against the mounting base 31, and the other end of the spring abuts against the pressing portion 341.

[0070] As Figure 4 shown, the power supply assembly may further include a first electrode 41. The first electrode 41 is located on the side of the mounting base 31 close to the opening 10a, and the first electrode 41 is connected to the mounting base 31.

[0071] The first electrode 41 is used to supply power to the atomizer 200. Arranging the first electrode 41 on the side of the mounting base 31 close to the opening 10a enables the first electrode 41 to be in direct or indirect contact with the side of the atomizer 200 close to the mounting base 31 when the atomizer mounting bracket 20 is locked, forming an electrical connection to supply power to the atomizer 200. After unlocking the atomizer mounting bracket 20, the first electrode 41 separates from the atomizer 200 and does not affect the movement of the atomizer mounting bracket 20.

[0072] The power supply assembly may further include a battery 43, which may be located in the housing 10 and electrically connected to the first electrode 41.

[0073] In some possible implementation manners, the atomizer mounting bracket 20 may also be locked by the cooperation of the housing 10 and the atomizer mounting bracket 20.

[0074] Figure 7 is a schematic structural diagram of a housing and an atomizer mounting bracket provided by an embodiment of the present application. As Figure 7 shown, the housing 10 has a third locking structure 101, and the third locking structure 101 and the opening 10a are located on two adjacent sides of the housing 10.

[0075] The atomizer mounting bracket 20 has a fourth locking structure 212, and the fourth locking structure 212 is used to cooperate with the third locking structure 101 to lock the atomizer mounting bracket 20 when the atomizer mounting bracket 20 is received in the housing 10.

[0076] By providing the third locking structure 101 on the housing 10, the atomizer mounting bracket 20 can also be locked when received inside the housing 10, so that there is no need to provide the second locking structure 311 on the mounting base 31, which can simplify the structure of the mounting base 31 and also save the space on the surface of the mounting base 31, facilitating the installation of other structures on the mounting base 31, such as the first electrode 41.

[0077] In some examples, the third locking structure 101 may include at least one of a second locking hook 2121 and a second locking hole 10b; the fourth locking structure 212 may include at least one of a second locking hole 10b and a second locking hook 2121. One of the third locking structure 101 and the fourth locking structure 212 may at least include a second locking hook 2121, and the other of the third locking structure 101 and the fourth locking structure 212 may at least include a second locking hole 10b.

[0078] As Figure 7 shown, in this example, the third locking structure 101 includes a second locking hole 10b, and the second locking hole 10b penetrates through the side wall of the housing 10. The fourth locking structure 212 includes a second locking hook 2121, and the second locking hook 2121 is located at the edge of the atomizer mounting bracket 20 close to the side wall of the housing 10, and the second locking hook 2121 extends in a direction away from the mounting base 31.

[0079] During the process of the user pressing the atomizer 200 into the opening 10a, when the second locking hook 2121 moves to be opposite to the second locking hole 10b, the second locking hook 2121 snaps into the second locking hole 10b, so that the atomizer mounting bracket 20 is locked. Exemplarily, the second locking hook 2121 can snap into the second locking hole 10b under its own elastic force.

[0080] When it is necessary to unlock the atomizer mounting bracket 20, the second lock hook 2121 can be disengaged from the second lock hole 10b. For example, the part of the second lock hook 2121 located in the second lock hole 10b can be pushed to disengage the second lock hook 2121 from the second lock hole 10b.

[0081] In some examples, a second unlocking member may be disposed outside the housing 10, and the second unlocking member is located at the second lock hole 10b. The second unlocking member is used to at least partially extend into the second lock hole 10b under the action of an external force to push the second lock hook 2121 to disengage the second lock hook 2121 from the second lock hole 10b.

[0082] Exemplarily, the second unlocking member may be a button.

[0083] The second locking hook 2121 shown in the figure is only an example. In other examples, the second locking hook 2121 may also extend in a direction away from the opening 10a.

[0084] Figure 8 is a schematic diagram of the structure of a housing and an atomizer mounting frame provided in an embodiment of the present application, such as Figure 8 As shown, in this example, the third locking structure 101 includes a second locking hook 2121. The side wall of the housing 10 may have a through hole 10c, and the second locking hook 2121 is located in the through hole 10c and extends in a direction close to the opening 10a. The middle portion of the second locking hook 2121 may be connected to the hole wall of the through hole 10c, so that by pressing the end of the second locking hook 2121 away from the opening 10a, the end of the second locking hook 2121 close to the opening 10a can be tilted out of the housing 10.

[0085] The fourth locking structure 212 may include a hook groove 2122 , and the hook groove 2122 is located at an edge of the atomizer mounting bracket 20 close to the inner wall of the housing 10 .

[0086] When the user presses the atomizer 200 into the opening 10a, when the hook groove 2122 moves to face the second locking hook 2121, the second locking hook 2121 is located in the hook groove 2122 and hooks the edge of the hook groove 2122, so that the atomizer mounting bracket 20 is locked.

[0087] When the atomizer mounting bracket 20 needs to be unlocked, the second lock hook 2121 can be separated from the edge of the hook groove 2122. For example, the end of the second lock hook 2121 away from the opening 10a is pressed to make the end of the second lock hook 2121 close to the opening 10a tilt outward of the housing 10, and the second lock hook 2121 is separated from the edge of the hook groove 2122.

[0088] The hook groove 2122 can play the role of avoiding the second locking hook 2121 , so that the second locking hook 2121 passes through the hook groove 2122 and hooks the edge of the hook groove 2122 during the process of locking the atomizer mounting bracket 20 .

[0089] In other examples, the fourth locking structure 212 may also include an edge of the atomizer mounting bracket 20 . When the atomizer mounting bracket 20 is locked, the second locking hook 2121 hooks the edge of the atomizer mounting bracket 20 without providing a hook groove 2122 on the atomizer mounting bracket 20 .

[0090] Figure 9 is a structural schematic diagram of an atomizer mounting bracket provided in an embodiment of the present application, such as Figure 9 As shown, the atomizer mounting bracket 20 may include a supporting bracket 210 , which includes a connecting portion 21 and a supporting portion 22 , wherein the connecting portion 21 is connected to the telescopic mechanism 30 , and the supporting portion 22 is located on a side of the connecting portion 21 away from the telescopic mechanism 30 , and the supporting portion 22 is used to connect the atomizer 200 .

[0091] The support part 22 may include two rods arranged at intervals, one end of the rod is connected to the connecting part 21, and the other end of the rod is used to connect to the atomizer 200. The connecting part 21 and the support part 22 form a U-shaped structure, which has a simple structure and can be connected to the atomizer 200 more stably.

[0092] The first locking structure 211 or the fourth locking structure 212 may be located on the connecting portion 21 .

[0093] The connecting portion 21 may further have an avoidance hole 21 b for avoiding the first electrode 41 , so that when the support frame 210 is locked, at least part of the first electrode 41 can pass through the avoidance hole 21 b and contact the atomizer 200 .

[0094] In some examples, the support portion 22 can be used to be rotatably connected to the atomizer 200. For example, the support portion 22 can have a connecting shaft, which can be used to be inserted into a hole on the surface of the atomizer 200, or the support portion 22 can have a connecting hole, which is used to be sleeved outside the shaft on the surface of the atomizer 200.

[0095] By rotatably connecting the atomizer 200 and the support frame 210, when the support frame 210 at least partially extends to the opening 10a and the atomizer 200 is outside the housing 10, for example, the user can continuously rotate the atomizer 200 by turning the atomizer 200 with a finger, so that the aerosol generating device has a function similar to a fidget spinner, further enriching the gameplay of the aerosol generating device and improving playability.

[0096] Figure 10 is a structural schematic diagram of an atomizer mounting bracket provided in an embodiment of the present application, such as Figure 10As shown, in this example, the atomizer mounting frame 20 includes a support frame 210 and a connecting seat 220. The support frame 210 includes a connecting portion 21 and a supporting portion 22, the connecting portion 21 is connected to the telescopic mechanism 30, and the supporting portion 22 is located on a side of the connecting portion 21 away from the telescopic mechanism 30. The connecting seat 220 is connected to the supporting portion 22, and the connecting seat 220 is used to connect the atomizer 200.

[0097] Figure 10 The structure of the support frame 210 can be Figure 9 The structure of the support frame 210 shown is the same. Figure 10 The atomizer mounting bracket 20 shown is compared to Figure 9 The atomizer mounting frame 20 shown is additionally provided with a connecting seat 220. By providing the connecting seat 220 to connect the atomizer 200, the atomizer 200 can be easily replaced.

[0098] The power supply assembly 100 may include a plurality of connection seats 220, each of which may be connected to the support frame 210. Each connection seat 220 may be used to connect a different atomizer 200, so that the power supply assembly 100 may be adapted to different atomizers 200 by replacing the connection seat 220. Exemplarily, different atomizers 200 may have different structures.

[0099] like Figure 10 As shown, the connection seat 220 can be rotatably connected to the support portion 22 .

[0100] Exemplarily, the connection seat 220 can be connected to the support portion 22 through a shaft hole, so that the connection seat 220 can rotate relative to the support portion 22.

[0101] When the atomizer 200 is connected to the connecting seat 220, and the connecting seat 220 and the atomizer 200 are outside the housing 10, for example, the user can continuously rotate the atomizer 200 by turning the finger, so that the aerosol generating device has a function similar to a fidget spinner, further enriching the gameplay of the aerosol generating device and improving playability.

[0102] As an example, Figure 10 As shown, one side of the connecting seat 220 has a slot 220 a, the slot 220 a is used to accommodate the atomizer 200, and the outer side wall of the slot 220 a is connected to the supporting portion 22.

[0103] By providing a slot 220a in the connection base 220 to accommodate the atomizer 200, the atomizer 200 can be stably connected to the connection base 220. The atomizer 200 is connected using the slot 220a, which also facilitates the replacement of the atomizer 200.

[0104] In some examples, the connection base 220 may have a magnetic structure therein to adsorb the atomizer 200 , thereby further improving the stability of the connection between the atomizer 200 and the connection base 220 .

[0105] Figure 11 is a schematic diagram of the structure of a connection socket provided in an embodiment of the present application, such as Figure 11 As shown, the atomizer mounting bracket 20 may further include a second electrode 42, which is located at the bottom of the slot 220a of the connecting base 220. The second electrode 42 is used to supply power to the atomizer 200 when the atomizer mounting bracket 20 is received in the housing 10.

[0106] The end of the atomizer 200 usually has an electrode. By arranging the second electrode 42 at the bottom of the slot 220a, after the atomizer 200 is plugged into the slot 220a, the second electrode 42 can contact the electrode at the end of the atomizer 200 to supply power to the atomizer 200.

[0107] The second electrode 42 may penetrate the bottom of the slot 220a and be exposed on the outer surface of the connection seat 220. When the atomizer mounting bracket 20 is locked, the portion of the second electrode 42 exposed on the connection seat 220 may contact the first electrode 41.

[0108] Figure 12 is a schematic structural diagram of an aerosol generating device provided in an embodiment of the present application, Figure 12 The two forms of the aerosol generating device that can be switched between each other are shown in FIG. Figure 12 As shown, the aerosol generating device may include a nebulizer 200 and a Figures 2 to 11 Any of the power supply components 100 shown. The atomizer 200 is connected to the atomizer mounting bracket 20 of the power supply component 100.

[0109] By connecting the atomizer 200 to the atomizer mounting frame 20, the atomizer mounting frame 20 can at least partially extend out of the opening 10a of the housing 10 under the action of the telescopic mechanism 30, so that the aerosol generating device has at least two forms, and the position of the atomizer 200 is different in the two forms. In addition to being able to generate aerosol, the aerosol generating device can also be played by repeatedly switching the state of the aerosol generating device, which enriches the playing methods of the aerosol generating device and allows users to reduce the amount of small objects they carry.

[0110] In some examples, the atomizer 200 is rotatably connected to the atomizer mounting bracket 20, or the atomizer mounting bracket 20 includes a support bracket 210 and a connecting seat 220, so that when the atomizer 200 is outside the housing 10, for example, the user can also continuously rotate the atomizer 200 by finger movement to further improve playability.

[0111] The above-described embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should all be included in the protection scope of the present application.

Claims

1. A power supply component, characterized in that: The invention comprises a housing (10), an atomizer mounting frame (20) and a telescopic mechanism (30), wherein the housing (10) has an opening (10a), the telescopic mechanism (30) is located in the housing (10), the atomizer mounting frame (20) is connected to the telescopic mechanism (30), and the atomizer mounting frame (20) is located in the housing (10) and can be at least partially extended out of the opening (10a) under the action of the telescopic mechanism (30).

2. The power supply assembly according to claim 1, characterized in that: The telescopic mechanism (30) comprises a mounting seat (31), a push rod (32) and a first elastic member (33); the mounting seat (31) is located in the housing (10); the push rod (32) is slidably connected to the mounting seat (31); one end of the push rod (32) close to the opening (10a) is connected to the atomizer mounting frame (20); the first elastic member (33) cooperates with the push rod (32) to provide a force that causes the push rod (32) to move relative to the mounting seat (31) in a direction close to the opening (10a).

3. The power supply assembly according to claim 2, characterized in that: The atomizer mounting frame (20) has a first locking structure (211) on one side opposite to the mounting seat (31); The mounting seat (31) has a second locking structure (311) on one side close to the opening (10a), and the second locking structure (311) is used to cooperate with the first locking structure (211) to lock the atomizer mounting frame (20) when the atomizer mounting frame (20) is accommodated in the housing (10).

4. The power supply assembly according to claim 3, characterized in that: The first locking structure (211) includes at least one first locking hole (21a), and the second locking structure (311) includes at least one first locking hook (3111), the first locking hook (3111) is arranged in a one-to-one correspondence with the first locking hole (21a), and the first locking hook (3111) extends in a direction close to the opening (10a).

5. The power supply assembly according to claim 3, characterized in that: The telescopic mechanism (30) further comprises a first unlocking member (34), wherein the first unlocking member (34) and the second locking structure (311) are located on two adjacent sides of the mounting seat (31), and the first unlocking member (34) is movably connected to the mounting seat (31) for separating the first locking structure (211) and the second locking structure (311) under the action of an external force.

6. The power supply assembly according to any one of claims 2 to 5, characterized in that: It also comprises a first electrode (41), wherein the first electrode (41) is located on a side of the mounting seat (31) close to the opening (10a) and is connected to the mounting seat (31).

7. The power supply assembly according to claim 1 or 2, characterized in that: The housing (10) has a third locking structure (101), and the third locking structure (101) and the opening (10a) are located on two adjacent sides of the housing (10); The atomizer mounting frame (20) has a fourth locking structure (212), and the fourth locking structure (212) is used to cooperate with the third locking structure (101) to lock the atomizer mounting frame (20) when the atomizer mounting frame (20) is accommodated in the housing (10).

8. The power supply assembly according to any one of claims 1 to 5, characterized in that: The atomizer mounting frame (20) comprises a support frame (210), wherein the support frame (210) comprises a connecting portion (21) and a supporting portion (22), wherein the connecting portion (21) is connected to the telescopic mechanism (30), and the supporting portion (22) is located on a side of the connecting portion (21) away from the telescopic mechanism (30), and the supporting portion (22) is used for connecting the atomizer (200).

9. The power supply assembly according to any one of claims 1 to 5, characterized in that: The atomizer mounting frame (20) comprises a supporting frame (210) and a connecting seat (220); the supporting frame (210) comprises a connecting portion (21) and a supporting portion (22); the connecting portion (21) is connected to the telescopic mechanism (30); the supporting portion (22) is located on a side of the connecting portion (21) away from the telescopic mechanism (30); the connecting seat (220) is connected to the supporting portion (22); and the connecting seat (220) is used to connect the atomizer (200).

10. The power supply assembly according to claim 9, characterized in that: The connecting seat (220) is rotatably connected to the supporting portion (22).

11. The power supply assembly according to claim 9, characterized in that: One side of the connection seat (220) is provided with a slot (220a), the slot (220a) being used to accommodate the atomizer (200), and the outer side wall of the slot (220a) is connected to the support portion (22).

12. The power supply assembly according to claim 11, characterized in that: The atomizer mounting frame (20) further comprises a second electrode (42), wherein the second electrode (42) is located at the bottom of the slot (220a), and the second electrode (42) is used to supply power to the atomizer (200) when the atomizer mounting frame (20) is accommodated in the housing (10).

13. An aerosol generating device, characterized in that: It comprises an atomizer (200) and a power supply assembly (100) according to any one of claims 1 to 12, wherein the atomizer (200) is connected to the atomizer mounting frame (20).