Atomizing device housing and atomizing device

CN224611973UActive Publication Date: 2026-08-11ZHUHAI QISI INTELLIGENT MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-08
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]为了解决现有技术中雾化设备的显示屏及附属结构装配操作不便、联接件占用空间导致显示屏的显示面积受限、显示屏偏置、影响使用体验的问题,本申请提供了一种雾化设备壳体和一种雾化设备

Benefits of technology

[0015]According to the technical solution in this application, by improving and optimizing the structure, not only can the screen housing assembly be used as part of the atomizing device housing, which is convenient for assembly and fixing, but also the space in the thickness direction can be fully utilized to optimize the layout of the display screen and its first connector, so that the first connector and the display screen are set on opposite sides, without occupying the space on the plane where the display screen is located. The display screen area can be further increased according to the needs of use, and the display screen can also be made more symmetrical, which is conducive to improving the user experience.

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Abstract

This application relates to the field of atomizing device technology, and provides an atomizing device housing and an atomizing device. The atomizing device housing includes: a main housing with a through-hole on one side in the thickness direction; a screen housing assembly, partially extending into the through-hole in the thickness direction and detachably connected to the main housing; the screen housing assembly includes a screen outer shell, a display screen, and a screen inner shell arranged sequentially in the thickness direction, the display screen having a first connecting member, at least a portion of which extends in the thickness direction between the outer side wall of the screen inner shell and the inner side wall of the main housing for electrical connection with a power supply component. In the technical solution of this application, the screen housing assembly, as part of the housing, facilitates assembly and fixation, optimizes the spatial layout, and allows the first connecting member and the display screen to be arranged on opposite sides, without occupying space on the plane where the display screen is located. This allows for further increases in the display screen area as needed, and also allows for a more symmetrical display screen layout, which is beneficial for improving the user experience.
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Description

Technical Field

[0001] This application relates to the field of atomizing equipment technology, specifically to an atomizing equipment housing and an atomizing equipment. Background Technology

[0002] Currently, in common atomizing devices with displays, different housings or covers are usually required on the inner and outer sides of the display. These structures need to be connected and fixed to the main housing separately during assembly, making the assembly process quite complex. Moreover, the connectors for the display are generally extended from the side edge of the display and are coplanar with the display (for example, on one side of the main housing in the thickness direction). Although this facilitates connection with the power supply components, the connectors occupy a certain amount of space, thereby reducing the installation space for the display. This makes it difficult to further increase the size of the display, limiting the display area. Furthermore, the display may be misaligned in appearance, which can easily affect the user experience. Utility Model Content

[0003] In order to solve the problems of inconvenient assembly and operation of the display screen and auxiliary structure of the atomizing device in the prior art, the space occupied by the connecting parts resulting in limited display area of ​​the display screen, the offset of the display screen, and the impact on the user experience, this application provides an atomizing device housing and an atomizing device.

[0004] An embodiment of the first aspect of the technical solution of this application provides a housing for an atomizing device, comprising: a main housing having a through mounting opening on one side in the thickness direction; a screen housing assembly having a portion of its structure extending into the mounting opening in the thickness direction and detachably connected to the main housing; the screen housing assembly including a screen outer shell, a display screen, and a screen inner shell arranged sequentially in the thickness direction, the display screen having a first connecting member, at least a portion of the first connecting member extending in the thickness direction between the outer side wall of the screen inner shell and the inner side wall of the main housing for electrical connection with a power supply component.

[0005] In a further embodiment of this application, the inner shell of the screen has a connecting groove on the side wall near the first connector in the width direction, and the first connector extends into the connecting groove in the thickness direction.

[0006] In a further embodiment of this application, the connecting groove extends through the thickness direction, and in the thickness direction, the end of the connecting groove away from the display screen is used for the second connector of the power supply component to pass through.

[0007] In a further embodiment of this application, the end of the connecting groove facing the display screen has a transition area, the transition area is a curved structure, and the portion of the first connecting member near the display screen is attached to the surface of the transition area; and / or, the first connecting member is a flexible connecting member.

[0008] In a further embodiment of this application, in the thickness direction, the inner shell of the screen has a screen mounting groove on the side facing the display screen, and the side of the inner shell of the screen away from the display screen is a through structure; the display screen is disposed in the screen mounting groove, and the border area of ​​the side of the display screen facing the outer shell of the screen abuts against the outer shell of the screen.

[0009] In a further embodiment of this application, the side of the screen housing facing the display screen has a through structure, the screen housing covers the inner screen housing and the outer side of the display screen, and is detachably connected to the inner screen housing; wherein, the screen housing has a display area corresponding to the display screen, and the display area allows light emitted by the display screen in the display state to pass through.

[0010] In a further embodiment of this application, the screen housing has a first opening on the sidewall in the width direction that corresponds to the first connector, and the first connector is exposed through the first opening.

[0011] In a further embodiment of this application, in the width direction, the outer side wall of the screen housing has a first snap-fit ​​structure, and the inner side wall of the screen housing has a second snap-fit ​​structure; the inner side wall of the main housing in the width direction has a third snap-fit ​​structure, which snaps into the first snap-fit ​​structure; the outer side wall of the inner screen housing in the width direction has a fourth snap-fit ​​structure, which snaps into the second snap-fit ​​structure.

[0012] An embodiment of the second aspect of this application also provides an atomizing device, comprising: an atomizing device housing as described in any embodiment of the first aspect; a liquid storage tank assembly disposed within the atomizing device housing, and the liquid storage tank assembly having a suction nozzle at its top in the height direction, the suction nozzle extending from the top of the atomizing device housing; an atomizing core assembly disposed within the liquid storage tank assembly, the atomizing core assembly being used to heat the aerosol matrix to generate an aerosol; and a power supply assembly disposed within the atomizing device housing, the power supply assembly being electrically connected to the atomizing core assembly and a first connector of the display screen.

[0013] In a further embodiment of this application, the power supply component includes a battery and an electronic control board that are electrically connected to each other; the electronic control board has a second connector that extends along the thickness direction of the main housing to a position corresponding to the first connector and is electrically connected to the first connector.

[0014] The beneficial effects of the above-mentioned technical solution of this application are as follows:

[0015] According to the technical solution in this application, by improving and optimizing the structure, not only can the screen housing assembly be used as part of the atomizing device housing, which is convenient for assembly and fixing, but also the space in the thickness direction can be fully utilized to optimize the layout of the display screen and its first connector, so that the first connector and the display screen are set on opposite sides, without occupying the space on the plane where the display screen is located. The display screen area can be further increased according to the needs of use, and the display screen can also be made more symmetrical, which is conducive to improving the user experience. Attached Figure Description

[0016] Figure 1 This is a three-dimensional schematic diagram of the housing of an atomizing device in one embodiment of this application;

[0017] Figure 2 This is a partially exploded view of the housing of an atomizing device in one embodiment of this application;

[0018] Figure 3 This is an exploded view of the housing of the atomizing device in one embodiment of this application from another perspective.

[0019] Figure 4 This is a partially exploded schematic diagram of the housing of the atomizing device in another embodiment of this application;

[0020] Figure 5 This is a partially exploded view of the housing of the atomizing device in another embodiment of this application from another perspective.

[0021] Figure 6 This is a perspective view of the inner shell of the screen in one embodiment of this application;

[0022] Figure 7 This is a perspective view of an atomizing device in one embodiment of this application;

[0023] Figure 8 This is a front view of an atomizing device in one embodiment of this application;

[0024] Figure 9 for Figure 7 A cross-sectional view of the atomizing device in the middle (A-axis direction);

[0025] Figure 10 for Figure 8 A BB-direction cross-sectional view of the atomizing device in the image.

[0026] In the above figures, arrow F1 indicates the thickness direction, arrow F2 indicates the width direction, and arrow F3 indicates the height direction.

[0027] Explanation of reference numerals in the attached figures:

[0028] 100 Atomizing device housing, 1 main housing, 11 assembly port, 12 third snap-fit ​​structure, 13 main housing frame, 131 top opening, 14 side housing, 2 screen housing assembly, 21 screen outer shell, 211 display area, 212 first snap-fit ​​structure, 213 second snap-fit ​​structure, 214 first opening, 22 display screen, 221 first connector, 23 screen inner shell, 231 connecting groove, 2311 transition area, 232 screen mounting groove, 233 fourth snap-fit ​​structure;

[0029] 400 Atomizing device, 410 Liquid storage tank assembly, 411 Nozzle, 412 Sealing plug, 420 Atomizing core assembly, 430 Power supply assembly, 431 Battery, 432 Electronic control board, 4321 Second connector. Detailed Implementation

[0030] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.

[0031] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments, and the operational steps involved in each embodiment can also be rearranged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for clearly describing a particular embodiment and do not imply that they represent the necessary components and / or order.

[0032] The serial numbers assigned to components in this document, such as "first" and "second," are used only to distinguish the described objects and have no sequential or technical meaning. The terms "connection" and "linkage" used in this application, unless otherwise specified, include both direct and indirect connections (linkages).

[0033] The atomizing device housing provided in this application can serve as the outer shell of the atomizing device. It has a detachable screen housing assembly on one side in the thickness direction, and a display screen is disposed within the screen housing assembly for displaying relevant images of the atomizing device. A first connecting member extending along the thickness direction is provided on the side edge of the display screen for electrical connection with the power supply component of the atomizing device. This fully utilizes three-dimensional space and optimizes the spatial layout of the first connecting member and the display screen.

[0034] The following describes some embodiments of the atomizing device housing and atomizing device provided in this application, with reference to the accompanying drawings.

[0035] For ease of description, the structure of the atomizing device housing is described in the following embodiments with reference to the thickness, width, and height directions of the atomizing device.

[0036] An embodiment of the first aspect of this application provides an atomizing device housing 100, such as... Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the atomizing device housing 100 includes a main housing 1 and a screen housing assembly 2. In the thickness direction, a through-hole assembly opening 11 is provided on one side of the main housing 1. The screen housing assembly 2 is integrally disposed at the assembly opening 11 of the main housing 1, and a portion of the structure of the screen housing assembly 2 is inserted into the assembly opening 11 to form a detachable connection with the main housing 1 for easy assembly. The screen housing assembly 2 includes a screen outer shell 21, a display screen 22, and a screen inner shell 23 arranged sequentially along the thickness direction. The screen outer shell 21 and the screen inner shell 23 clamp and fix the display screen 22 from both sides. The screen inner shell 23 is located on the inner side and can be enclosed with the main housing 1 to form a receiving space for installing components such as the liquid storage tank assembly 410, the atomizing core assembly 420, and the power supply assembly. The display screen 22 is provided with a first connecting member 221, which is located between the outer wall of the screen inner shell 23 and the inner wall of the main housing 1, and extends along the thickness direction. When the housing 100 of the atomizing device is equipped with a power supply component, the display screen 22 can be electrically connected to the power supply component through the first connector 221 to supply power to the display screen 22.

[0037] It's understandable that in common atomizing devices with displays, the display is usually placed on one side of the device in the thickness direction to increase the screen area. However, the connectors on the display used for electrical connection with the power supply components typically extend from the edge of the display and are flush with the display plane. This connection method causes the connectors to occupy the space occupied by the display, resulting in an asymmetrical display layout and making it difficult to further increase the screen size.

[0038] In this embodiment, the housing 100 of the atomizing device, when applied to the atomizing device, not only utilizes the screen housing assembly 2 as part of the housing, facilitating assembly and fixation, but also makes full use of the space in the thickness direction to optimize the layout of the display screen 22 and its first connector 221, so that the first connector 221 and the display screen 22 are set on opposite sides, without occupying the space on the plane where the display screen 22 is located. The area of ​​the display screen 22 can be further increased according to the needs of use, and the display screen 22 can also be set symmetrically, which is beneficial to improving the user experience.

[0039] It should be noted that the specific location of the first connecting member 221 is not limited to the position shown in the figure, for example, it is not limited to... Figure 2 The display screen 22 can be located on the left side, or it can be located on the right side or at the bottom as needed, as long as it can be arranged along the thickness direction. In addition, the number of first connecting members 221 can be one or more, which can be set according to actual usage needs.

[0040] In further embodiments of this application, such as Figures 2 to 5 As shown, in the screen housing assembly 2, the inner screen housing 23 is provided with a connecting groove 231 that is adapted to the first connecting member 221. The first connecting groove 231 is located on the side wall of the inner screen housing 23 in the width direction near the first connecting member 221. The first connecting member 221 extends in the thickness direction and enters the connecting groove 231. The connecting groove 231 provides installation space for the first connecting member 221 and also limits its movement. In practical applications, adhesive can be applied to the connecting groove 231 to bond and fix the first connecting member 221, ensuring its stability and preventing it from shaking.

[0041] It should be noted that the shape and size of the connecting groove 231 can be set according to the first connecting member 221. Preferably, for example... Figure 4 In the example, when the first connector 221 can adopt a similar rectangular sheet structure, the connecting groove 231 can adopt a rectangular groove that is adapted to it.

[0042] Furthermore, in a specific implementation, such as Figure 4 and Figure 5 In the example shown, the connecting groove 231 extends through the thickness direction of the atomizing device housing 100, meaning that neither end of the connecting groove 231 has sidewalls in the thickness direction. The first connecting member 221 can be inserted into the connecting groove 231 from the end facing the display screen 22, while the end of the connecting groove 231 away from the display screen 22 can be used for the second connecting member 5321 of the power supply component to enter, so that the second connecting member 5321 can be connected to the first connecting member 221 in the connecting groove 231, thereby realizing the electrical connection between the display screen 22 and the power supply component.

[0043] Furthermore, in one embodiment, such as Figures 4 to 6 In the example shown, in the thickness direction of the atomizing device housing 100, a transition region 2311 is formed at the end of the connecting groove 231 facing the display screen 22. The transition region 2311 has a curved structure, such as an arc or a slope. Correspondingly, the portion of the first connector 221 near the display screen 22 is correspondingly disposed with the transition region 2311 and is attached to the surface of the transition region 2311 to form a contact fit. By setting the transition region 2311 with a curved structure, the connection between the first connector 221 and the display screen 22 forms a curved bending state, which can reduce the bending angle and play a certain transition role, preventing the first connector 221 from being damaged due to excessive bending angle. At the same time, it can also make the first connector 221 fit tightly in the connecting groove 231, avoiding local protrusion and occupying extra space, resulting in a more optimized spatial layout.

[0044] In one embodiment, such as Figures 3 to 5 As shown, the first connector 221 is a flexible connector, such as a flexible circuit board, so as to be arranged according to the shape of the connecting groove 231, so that the first connector 221 can be attached to the surface of the connecting groove 231. For example, when the connecting groove 231 has a curved transition area 2311 at the end facing the display screen 22, the flexible first connector 221 can adapt to the shape of the transition area 2311 and remain in close contact with the connecting groove 231.

[0045] In one embodiment of this application, such as Figures 5 to 6 As shown, the inner screen housing 23 has a screen mounting groove 232 on the side facing the display screen 22. The screen mounting groove 232 is recessed inward along the thickness direction, and its shape is adapted to the shape of the display screen 22 to reserve installation space for the display screen 22. The display screen 22 is disposed in the screen mounting groove 232, and the edge of the display screen 22 facing the screen outer shell 21 abuts against the screen outer shell 21, so that the screen outer shell 21 and the inner screen housing 23 clamp the display screen 22 in the thickness direction; at the same time, the screen mounting groove 232 can limit the display screen 22 in the width and height directions, so that the display screen 22 remains stable. Among them, the screen outer shell 21 only abuts against the edge of the display screen 22 to avoid direct contact with or obstruction of the main area of ​​the display screen 22 and thus affecting the image display. The side of the inner screen housing 23 away from the display screen 22 in the thickness direction is a through structure, so that after being mated and connected with the main shell 1, the volume of the formed accommodating space can be maximized to meet the assembly requirements of the internal components.

[0046] It should be noted that in practical applications, adhesive can be applied to the screen mounting slot 232 to bond and fix the display screen 22, thereby making the connection of the display screen 22 more secure.

[0047] In addition, in some embodiments, depending on the specific shape of the screen housing assembly 2, the display screen 22 may also be a flexible screen as needed, and after being installed in the screen mounting groove 232, it will have a certain curvature.

[0048] In further embodiments of this application, such as Figures 3 to 5 In the example shown, the side of the screen housing 21 facing the display screen 22 has a through structure. After assembly, the screen housing 21 can cover the outside of the display screen 22 and the inner screen housing 23, forming a sandwich-like structure. This reduces the overall thickness of the screen housing assembly 2, decreases space occupation, and facilitates assembly and connection with the main housing 1. It can be understood that when the screen housing 21 covers the outside of the display screen 22 and the inner screen housing 23, the sidewall of the screen housing 21 can overlap with the sidewall of the inner screen housing 23 in the width direction. The sidewall of the screen housing 21 can be connected and fixed to the sidewalls of the main housing 1 and the inner screen housing 23 respectively. During assembly, the screen housing assembly 2 can be assembled first, and then the entire assembly can be inserted into the main housing 1 and connected and fixed to the main housing 1. There is no need to connect and fix the display screen 22 and the inner screen housing 23 to the main housing 1 sequentially, nor is it necessary to install other fasteners inside the main housing 1, making the assembly operation simpler and more convenient.

[0049] Furthermore, such as Figure 2 and Figure 5 The screen housing 21 has a display area 211, which corresponds to the display screen 22. When the display screen 22 is in display mode, the light emitted by the display screen 22 can pass through the display area 211 for the user to view. The display area 211 can be made of a transparent or semi-transparent material. Preferably, the display area 211 can be made of a black semi-transparent material. The image on the display screen 22 can only be observed from the outside through the display area 211 when the display screen 22 is lit. When the display screen 22 is in a screen-off state, the internal structure of the screen housing 21 and the display screen 22 are both blocked by the display area 211, making it difficult to observe the internal situation of the screen housing 21 from the outside.

[0050] In further embodiments of this application, such as Figures 3 to 5As shown, the screen housing 21 has a first opening 214 on its side wall corresponding to the first connector 221 in the width direction. The shape and size of the first opening 214 are adapted to the first connector 221, allowing the first connector 221 to be exposed through the first opening 214. When the screen housing assembly 2 is assembled into the main housing 1, the first opening 214 of the screen housing 21 can avoid obstructing the first connector 221 and reserve a certain space on the outside of the first connector 221 in the width direction, so that the second connector 5321 of the power supply component can extend into the outside of the first connector 221 and thus form an electrical connection with the first connector 221. It can be understood that the first connector 221, as the electrical connection structure of the display screen 22, usually needs to be equipped with corresponding electrical components and circuits, and requires a certain space when forming an electrical connection with the power supply component. If the outside of the first connector 221 is obstructed, it is easy to interfere with the second connector 5321 electrically connected to the first connector 221. Therefore, by setting the first opening 214, the above-mentioned interference can be effectively avoided.

[0051] In further embodiments of this application, such as Figures 2 to 5 In the example shown, the screen housing 21 has a first snap-fit ​​structure 212 on its outer side wall in the width direction, and a second snap-fit ​​structure 213 on its inner side wall in the thickness direction. Correspondingly, the main housing 1 has a third snap-fit ​​structure 12 on its inner side in the width direction, and the screen inner housing 23 has a fourth snap-fit ​​structure 233 on its outer side wall in the width direction. The first snap-fit ​​structure 212 and the third snap-fit ​​structure 12 are correspondingly arranged, and the second snap-fit ​​structure 213 and the fourth snap-fit ​​structure 233 are correspondingly arranged. During assembly, the second snap-fit ​​structure 213 of the screen housing 21 is snapped and fixed to the fourth snap-fit ​​structure 233 of the screen inner housing 23. When the screen housing assembly 2 is fully installed into the main housing 1, it is snapped and fixed to the main housing 1 by the first snap-fit ​​structure 212 of the screen housing 21 and the third snap-fit ​​structure 12 of the main housing 1. Among them, the first snap-fit ​​structure 212, the second snap-fit ​​structure 213, the third snap-fit ​​structure 12 and the fourth snap-fit ​​structure 233 can all be arranged in multiples along the circumferential direction to increase the connection strength and make the force more uniform.

[0052] Preferably, in a set of interlocking structures, one is a snap-fit ​​structure and the other is a slot structure. The snap-fit ​​structure snaps into the corresponding slot structure to form a snap-fit ​​fixation. For example, the first snap-fit ​​structure 212 is a snap-fit ​​structure, and the third snap-fit ​​structure 12 is a slot structure; the second snap-fit ​​structure 213 is a slot structure, and the fourth snap-fit ​​structure 233 is a snap-fit ​​structure. It should be noted that the slot structure can be a through-type structure, such as the fourth snap-fit ​​structure 233. Of course, the slot structure can also be a one-end closed structure, such as the third snap-fit ​​structure 12. The specific configuration can be determined according to actual usage requirements.

[0053] By setting up a snap-fit ​​structure, the assembly process can be quickly completed by snap-fit ​​fixing, and it can be disassembled as needed. Moreover, the screen housing 21 can be snap-fitted and fixed with the display screen 22 and the inner screen housing 23 to form an integrated screen housing assembly 2, which is then installed into the main housing 1 and snap-fitted and fixed with the main housing 1, which can effectively improve assembly efficiency.

[0054] An embodiment of the second aspect of this application provides an atomizing device 400, such as... Figure 7 , Figure 8 , Figure 9 and Figure 10 As shown, the atomizing device 400 includes the atomizing device housing 100, liquid storage chamber assembly 410, atomizing core assembly 420, and power supply assembly 430 as described in any of the embodiments of the first aspect. The atomizing device housing 100 assembly serves as the outer shell of the atomizing device, and the liquid storage chamber assembly 410, atomizing core assembly 420, and power supply assembly 430 are all disposed in the accommodating space inside the atomizing device housing 100 assembly. The liquid storage chamber assembly 410 is used to store the aerosol matrix, and in the height direction, the top of the liquid storage chamber assembly 410 is provided with a suction nozzle 411, which extends out from the top opening 131 opened on the top of the atomizing device housing 100; the atomizing core assembly 420 is disposed in the liquid storage chamber assembly 410, and the power supply assembly 430 is located outside the liquid storage chamber assembly 410 and is electrically connected to the atomizing core assembly 420 so as to supply power to the atomizing core assembly 420 through the power supply assembly 430, so as to heat the atomizing core assembly 420, thereby heating the aerosol matrix and causing the aerosol matrix to atomize and generate aerosol.

[0055] Among them, such as Figures 1 to 5 As shown, the atomizing device housing 100 includes a detachably connected main housing 1 and a screen housing assembly 2. The display screen 22 in the screen housing assembly 2 is electrically connected to the power supply assembly 430 via a first connector 221, enabling the display screen 22 to display relevant screen information of the atomizing device 400. The first connector 221 is located at one end of the display screen 22 in the width direction and extends along the thickness direction, forming an off-plane arrangement with the display screen 22, and is electrically connected to the power supply assembly 430 on the side of the screen housing assembly 2.

[0056] Furthermore, such as Figure 9 As shown, the power supply assembly 430 includes a battery 431 and an electronic control board 432. The battery 431 is used to provide electrical energy, and the electronic control board 432 has a control circuit and is electrically connected to the battery 431. The electrical perforation plate is provided with a second connector 5321, which is correspondingly provided with a first connector 221 of the display screen 22 and extends along the thickness direction of the main housing 1 to form an electrical connection with the first connector 221.

[0057] Preferably, the second connector 5321 and the first connector 221 can be fixed by plugging in, which facilitates the assembly operation. Specifically, after the position of the second connector 5321 is fixed, during the process of inserting the screen housing assembly 2 into the assembly port 11 of the main housing 1, the first connector 221 and the second connector 5321 are aligned and plugged in with each other.

[0058] The following describes a specific example of the atomizing device housing 100 and the atomizing device 400 of this application, with reference to the accompanying drawings.

[0059] like Figures 7 to 10 As shown, the liquid storage chamber assembly 410 is located in the upper part of the main housing 1, and the power supply assembly 430 is located in the lower part of the main housing 1. The atomizing core assembly 420 is arranged in the liquid storage chamber assembly 410 along the height direction, and in the width direction, the atomizing core assembly 420 is located in the middle of the liquid storage chamber. The top of the atomizing core assembly 420 is sealed to the mouthpiece 411 through a corresponding pipe structure. A removable sealing plug 412 is provided at the port of the mouthpiece 411. A corresponding cover plate is also provided between the top of the liquid storage chamber assembly 410 and the mouthpiece 411. The bottom of the atomizing core assembly 420 passes through the bottom wall of the liquid storage chamber assembly 410 and communicates with the outside, so that outside air can enter the atomizing core assembly 420 to mix with the aerosol generated by atomization to form an aerosol mixture gas, which then flows to the mouthpiece 411. A corresponding sealing structure can be provided at the bottom of the liquid storage chamber assembly 410 to seal the bottom connection of the atomizing core assembly 420. The atomizing core assembly 420 is electrically connected to the battery 431 of the power supply assembly 430 through a corresponding electrical connection structure. The electronic control board 432 of the power supply assembly 430 is used to control the power supply state of the battery 431 to the atomizing core assembly 420.

[0060] like Figures 1 to 6 As shown, the main housing 1 is a semi-shell structure with an assembly opening 11 on one side in the thickness direction, and the main housing 1 is composed of a detachably connected main housing frame 13 and a side housing 14, with the side housing 14 located on the other side opposite to the assembly opening 11; the screen housing assembly 2 includes a screen outer shell 21, a display screen 22 and a screen inner shell 23 arranged sequentially in the thickness direction. The screen outer shell 21 and the screen inner shell 23 are both semi-shell structures that penetrate the inner side (towards the inside of the main housing 1), and the top and bottom of the screen outer shell 21 and the top and bottom of the screen inner shell 23 have opening structures that are adapted to the top opening 131 of the main housing 1.

[0061] The screen housing 21 has multiple first snap-fit ​​structures 212 on its outer sidewall in the width direction and multiple second snap-fit ​​structures 213 on its inner sidewall in the thickness direction. The main housing 1 has multiple third snap-fit ​​structures 12 on its inner side in the width direction, and the screen inner housing 23 has multiple fourth snap-fit ​​structures 233 on its outer sidewall in the width direction. The first snap-fit ​​structures 212 and third snap-fit ​​structures 12 are arranged in a one-to-one correspondence, and the second snap-fit ​​structures 213 and fourth snap-fit ​​structures 233 are arranged in a one-to-one correspondence. The second snap-fit ​​structures 213 of the screen housing 21 are snapped and fixed to the fourth snap-fit ​​structures 233 of the screen inner housing 23, and together with the display screen 22, they form an integrated screen housing assembly 2. The screen housing assembly 2 is installed into the main housing 1 and is fixed by the first snap-fit ​​structures 212 of the screen housing 21 and the third snap-fit ​​structures 12 of the main housing 1.

[0062] A first connector 221 extends from one end of the display screen 22 near the bottom in the width direction. A connecting groove 231 is provided on the outer wall of the inner screen housing 23 at a position corresponding to the first connector 221. The connecting groove 231 extends through both ends in the thickness direction, and the first connector 221 extends into the connecting groove 231 along the thickness direction and is fixed in the connecting groove 231 with adhesive. The portion of the connecting groove 231 near the display screen 22 forms a transition area 2311 composed of an arc surface and a bevel. The first connector 221 is a flexible printed circuit (FPC) and is attached to the connecting groove 231, forming a partially inclined and arc-shaped bend in the transition area 2311. Correspondingly, a first opening 214 is provided on the side wall of the outer screen housing 21 at a position corresponding to the first connector 221, allowing the first connector 221 to protrude from the first opening 214 in the width direction. After being installed in the main housing 1, the first connector 221 directly corresponds to the inner side wall of the main housing 1. The inner casing 23 of the screen has a screen mounting groove 232 on the side facing the display screen 22. The display screen 22 is entirely set in the screen mounting groove 232 and fixed in the screen mounting groove 232 with adhesive. The area on the outer casing 21 corresponding to the display screen 22 is the display area 211. The display area 211 is made of black semi-transparent material. Only when the display screen 22 is lit can the light emitted by the display area 211 pass through the display area 211 to propagate outward. When the display screen 22 is in the off state, the internal structure of the outer casing 21 cannot be observed from the outside.

[0063] like Figure 9 and Figure 10As shown, the power supply assembly 430's control board 432 extends a second connector 5321 from a position near the first connector 221 in the width direction. The second connector 5321 extends into the connector groove 231 in the thickness direction and is plugged into and fixed with the first connector 221, so that the power supply assembly 430 and the display screen 22 are electrically connected. The control board 432 can control the display screen 22's display image.

[0064] During assembly, the suction nozzle 411, the cover plate liquid storage tank assembly 410 and the power supply assembly 430 can be assembled first and then installed into the main housing 1. Then, the screen housing assembly 2, the screen outer shell 21, the display screen 22 and the screen inner shell 23 are assembled and fixed to form an integrated screen housing assembly 2. The screen housing assembly 2 is then installed into the assembly port 11 of the main housing 1 and detachably connected to the main housing 1. At the same time, the display screen 22 is located on one side of the main housing 1 in the thickness direction to facilitate the display of images to the outside.

[0065] The atomizing device 400 in this embodiment has a screen display function. The screen housing assembly 2 can be assembled and fixed as a whole, without the need to connect each component of the screen housing assembly 2 individually, nor is it necessary to set up a special fixing structure in the main housing 1. The assembly operation is relatively simple and convenient. Moreover, the first connecting piece 221 of the display screen 22 is located on the side of the screen housing assembly 2 and extends along the thickness direction, so as not to occupy the installation space of the display screen 22. This can further increase the area of ​​the display screen, and the display screen can be centered without being offset due to avoidance. The appearance layout is relatively symmetrical, which is conducive to improving the user experience.

[0066] Furthermore, the atomizing device 400 in this embodiment also has all the beneficial effects of the atomizing device housing 100 in any of the above embodiments, which will not be repeated here.

[0067] The above examples illustrate this application only to aid understanding and are not intended to limit its scope. Those skilled in the art to which this application pertains can make various simple deductions, modifications, or substitutions based on the ideas presented.

Claims

1. A housing for an atomizing device, characterized in that, include: The main housing has a through-hole on one side in the thickness direction; A screen housing assembly, wherein a portion of the structure of the screen housing assembly extends into the mounting port along the thickness direction and is detachably connected to the main housing; the screen housing assembly includes a screen outer shell, a display screen, and a screen inner shell arranged sequentially in the thickness direction, the display screen having a first connecting member, at least a portion of the first connecting member extending along the thickness direction between the outer sidewall of the screen inner shell and the inner sidewall of the main housing for electrical connection with a power supply component.

2. The atomizing device housing according to claim 1, characterized in that, The inner shell of the screen has a connecting groove on the side wall near the first connector in the width direction, and the first connector extends into the connecting groove along the thickness direction.

3. The atomizing device housing according to claim 2, characterized in that, The connecting groove extends along the thickness direction, and in the thickness direction, the end of the connecting groove away from the display screen is used for the second connector of the power supply component to pass through.

4. The atomizing device housing according to claim 2, characterized in that, The end of the connecting groove facing the display screen has a transition area, which is a curved surface. The portion of the first connecting member closest to the display screen is attached to the surface of the transition area; and / or... The first connecting member is a flexible connecting member.

5. The atomizing device housing according to claim 1, characterized in that, In the thickness direction, the inner shell of the screen has a screen mounting groove on the side facing the display screen, and the side of the inner shell of the screen away from the display screen is a through structure; The display screen is disposed in the screen mounting slot, and the border area of ​​the display screen facing the screen housing abuts against the screen housing.

6. The atomizing device housing according to claim 1, characterized in that, The side of the screen housing facing the display screen has a through structure. The screen housing covers the inner screen housing and the outside of the display screen, and is detachably connected to the inner screen housing. The screen housing has a display area corresponding to the display screen, and the display area allows light emitted by the display screen in the display state to pass through.

7. The atomizing device housing according to claim 1, characterized in that, The screen housing has a first opening on its sidewall in the width direction that corresponds to the first connector, and the first connector is exposed through the first opening.

8. The housing of the atomizing device according to claim 1, characterized in that, In the width direction, the outer side wall of the screen housing has a first snap-fit ​​structure, and the inner side wall of the screen housing has a second snap-fit ​​structure; The main housing has a third snap-fit ​​structure on its inner sidewall in the width direction, and the third snap-fit ​​structure engages with the first snap-fit ​​structure. The inner shell of the screen has a fourth snap-fit ​​structure on its outer side wall in the width direction, and the fourth snap-fit ​​structure is snap-fitted into place with the second snap-fit ​​structure.

9. An atomizing device, characterized in that, include: The atomizing device housing as described in any one of claims 1 to 8; A liquid storage tank assembly is disposed within the housing of the atomizing device, and the liquid storage tank assembly has a suction nozzle at its top in the height direction, the suction nozzle extending from the top of the housing of the atomizing device; An atomizing core assembly is disposed in the liquid storage chamber assembly, and the atomizing core assembly is used to heat the aerosol matrix to generate an aerosol; The device also includes a power supply component, which is located inside the housing of the atomizing device and is electrically connected to the atomizing core assembly and the first connector of the display screen.

10. The atomizing device according to claim 9, characterized in that, The power supply components include batteries and an electronic control board that are electrically connected to each other; The electronic control board has a second connecting member, which extends along the thickness direction of the main housing to a position corresponding to the first connecting member and is electrically connected to the first connecting member.