Atomizer housing and atomizing device

CN224611972UActive 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]本申请提供一种雾化器壳体及雾化装置,旨在解决电子雾化设备的装饰板装配后容易产生段差的技术问题

Benefits of technology

[0020] According to the atomizer housing in the above embodiments, by setting surrounding walls around the plate and providing slots around the mounting frame, when the panel is installed on the mounting frame, the vertical surrounding walls of the plate can be inserted into the vertical slots of the mounting frame to position and fix the plate vertically, and the horizontal surrounding walls of the plate can be inserted into the horizontal slots of the mounting frame to position and fix the plate horizontally. This ensures that the plate can be positioned and connected to the mounting frame in all four directions, guaranteeing the accuracy of the panel assembly and preventing the panel from slipping relative to the main housing during assembly, which could cause a step difference between the panel and the main housing. Furthermore, since the surrounding walls are located around the plate and protrude from the surface of the plate, they also enhance the structural strength of the plate, preventing assembly step differences caused by deformation during assembly.

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Abstract

This application relates to the field of electronic atomization equipment technology, providing an atomizer housing and atomizing device to solve the problem of step differences easily generated after the assembly of decorative panels. The atomizer housing includes a main housing and a panel. The main housing includes a mounting frame with slots around its perimeter. The panel includes a plate and surrounding walls. The surrounding walls are located around the plate and protrude from its surface. The slots correspond to the positions of the surrounding walls, which are inserted into the slots to position and connect the panel to the main housing. This application ensures that when the panel is mounted on the mounting frame, the plate can be positioned and connected to the mounting frame in four directions (up, down, left, and right), thus guaranteeing the accuracy of panel assembly and avoiding step differences between the panel and the main housing caused by slippage relative to the main housing during assembly. Simultaneously, the surrounding walls around the plate also enhance its structural strength, preventing step differences caused by deformation during assembly.
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Description

Technical Field

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

[0002] Electronic atomizing devices heat an aerosol matrix to produce an aerosol for user consumption. To enhance the industrial design (ID) of electronic atomizing devices, decorative panels are often added to the device's casing to improve its aesthetics. However, in existing technologies, due to unreasonable structural design of the decorative panels, they cannot be properly positioned on the electronic atomizing device during assembly. This results in a significant gap between the assembled decorative panel and the device, greatly affecting the product's texture and reducing the user experience. Utility Model Content

[0003] This application provides an atomizer housing and an atomizing device, aiming to solve the technical problem that the decorative panel of an electronic atomizing device is prone to produce step differences after assembly.

[0004] Some embodiments of this application provide an atomizer housing, including:

[0005] The main housing includes a mounting frame, the mounting frame having slots around its perimeter; and,

[0006] The panel includes a panel body and a surrounding wall body. The surrounding wall body is disposed around the perimeter of the panel body and protrudes from the surface of the panel body. The slot corresponds to the position of the surrounding wall body, and the surrounding wall body is used to insert into the slot so that the panel body is positioned and connected to the main housing.

[0007] In some embodiments, the slots are arranged around the mounting frame, and the walls are arranged around the plate.

[0008] In some embodiments, the wall body has a preset depth for insertion into the slot, and the side of the wall body facing away from the plate body is spaced apart from the bottom of the slot.

[0009] In some embodiments, gaps are provided between the two side walls of the enclosure and the two side walls of the slot, and the width between the two side walls of the slot is less than the preset depth.

[0010] In some embodiments, the atomizer housing further includes an adhesive;

[0011] The adhesive is filled into the slot to bond the side of the wall away from the panel and the two side walls of the wall to the slot.

[0012] In some embodiments, the wall body and the panel body have a demolding angle, which is an obtuse angle.

[0013] In some embodiments, the main housing further includes a mounting surface;

[0014] The mounting surface has a first arc-shaped surface on its opposite sides, and the plate has a second arc-shaped surface on its opposite sides. When the panel is connected to the main housing, the second arc-shaped surface fits into the first arc-shaped surface.

[0015] In some embodiments, the wall is positioned at the edge of the panel.

[0016] In some embodiments, the panel is made of a transparent material.

[0017] Some embodiments of this application also provide an atomizing device, including:

[0018] The atomizer housing described in any of the above embodiments; and,

[0019] Atomizer, installed inside the atomizer housing.

[0020] According to the atomizer housing in the above embodiments, by setting surrounding walls around the plate and providing slots around the mounting frame, when the panel is installed on the mounting frame, the vertical surrounding walls of the plate can be inserted into the vertical slots of the mounting frame to position and fix the plate vertically, and the horizontal surrounding walls of the plate can be inserted into the horizontal slots of the mounting frame to position and fix the plate horizontally. This ensures that the plate can be positioned and connected to the mounting frame in all four directions, guaranteeing the accuracy of the panel assembly and preventing the panel from slipping relative to the main housing during assembly, which could cause a step difference between the panel and the main housing. Furthermore, since the surrounding walls are located around the plate and protrude from the surface of the plate, they also enhance the structural strength of the plate, preventing assembly step differences caused by deformation during assembly. Attached Figure Description

[0021] Figure 1 This is a three-dimensional structural diagram of the atomizing device of this application;

[0022] Figure 2 for Figure 1 A schematic cross-sectional view of the AA section of the atomizing device;

[0023] Figure 3 for Figure 1 A schematic diagram showing the exploded structure of the atomizer housing in an atomizing device;

[0024] Figure 4 for Figure 3A three-dimensional structural diagram of the panel inside the atomizer housing;

[0025] Figure 5 for Figure 1 A schematic cross-sectional view of the BB section of the atomizing device;

[0026] Figure 6 for Figure 1 A schematic cross-sectional view of the CC section of the atomizing device;

[0027] Figure 7 for Figure 6 Enlarged structural diagram of point D on the atomizer housing.

[0028] in:

[0029] 1-Atomizer housing; 11-Main housing; 110-Slot; 111-Mounting frame; 112-Mounting surface; 113-First arc-shaped surface; 12-Panel; 121-Plate body; 122-Wall body; 123-Second arc-shaped surface; 2-Atomizer; 21-Liquid storage assembly; 22-Atomizer core assembly; 23-Power supply assembly. Detailed Implementation

[0030] The present application will be further described in detail below with reference to specific embodiments and accompanying drawings. Similar elements in different embodiments are referred to by associated 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] In existing technologies, decorative panels are mostly installed on electronic atomizing devices via adhesive bonding. During assembly, because there are no positioning points between the decorative panel and the electronic atomizing device, the panel is prone to slippage relative to the device, causing a misalignment between the actual installation position of the decorative panel and its designed position on the device. When the slipped decorative panel is then reattached to the electronic atomizing device, a significant difference in height can occur at the joint, affecting the product's texture and the user experience.

[0034] This application provides an atomizing device, such as... Figure 1 and Figure 2 As shown, the atomizing device may include an atomizer housing 1 and an atomizer 2, with the atomizer 2 installed inside the atomizer housing 1. In some embodiments, the atomizer 2 may include a liquid storage assembly 21, an atomizing core assembly 22, and a power supply assembly 23. The liquid storage assembly 21 may include a liquid storage chamber and a liquid storage element, with the liquid storage element installed inside the liquid storage chamber to store a liquid aerosol matrix. For example, the liquid storage element may be made of liquid storage cotton. The atomizing core assembly 22 may include a heating element and a liquid guiding element. The liquid guiding element is in contact with the liquid storage element to adsorb the aerosol matrix within the liquid storage element. The heating element is disposed within the liquid guiding element to heat and atomize the aerosol matrix adsorbed by the liquid guiding element to generate aerosol. For example, the liquid guiding element may be made of liquid guiding cotton, and the heating element may be made of materials such as heating wire or heating mesh. The power supply assembly 23 may include a circuit board and a battery cell. The heating element in the atomizing core assembly 22 is electrically connected to the circuit board, and the circuit board is electrically connected to the battery cell, thereby allowing the battery cell to supply power to the heating element through the circuit board. In addition, the power supply assembly 23 may also include electronic components such as a controller, a charging interface, and an airflow sensor, all of which are electrically connected to the circuit board. For example, the controller can be used to control the heating power of the heating element, the charging interface can be used to connect an external power source to charge the battery, and the airflow sensor can be used to sense changes in airflow when the user uses the atomizer 2. This application does not impose any special restrictions on the specific structure of the liquid storage assembly 21, the atomizer core assembly 22, and the power supply assembly 23.

[0035] In other embodiments, the atomizer 2 can also be configured as a heat-not-burning (HNB) atomizer. For example, the atomizer 2 may include a heating chamber and a heating element, with the heating element disposed within the heating chamber and electrically connected to the power supply component 23. A solid aerosol product can be inserted into the heating chamber and heated and atomized by the heating element. Alternatively, the atomizing core component 22 within the atomizer 2 can also be configured as an ultrasonic atomizing plate, allowing the liquid aerosol matrix to be atomized into aerosol under the high-frequency vibration of the ultrasonic atomizing plate. This application does not impose any special limitations on the specific atomization method of the atomizer 2.

[0036] It is understood that the atomizing device can be configured as a disposable product, meaning that the liquid reservoir component 21, the atomizing coil component 22, and the power supply component 23 in the atomizer 2 are fixedly connected and cannot be disassembled. Alternatively, the atomizing device can also be configured as a replaceable product, meaning that the liquid reservoir component 21 and the atomizing coil component 22 in the atomizer 2 are detachably connected, and / or the atomizing coil component 22 in the atomizer 2 is detachably connected to the power supply component 23, thereby allowing the liquid reservoir component 21 and / or the atomizing coil component 22 to be replaced according to the user's needs. This application does not impose any special restrictions on the specific structural form of the atomizing device.

[0037] To address the technical problem of a step difference easily occurring between the decorative panel and the electronic atomizing device after assembly, this application also provides an atomizer housing 1, such as... Figure 3 and Figure 4 As shown, the atomizer housing 1 may include a main housing 11 and a panel 12. The main housing 11 may include a mounting frame 111, and the mounting frame 111 is provided with slots 110 around its perimeter. The panel 12 may include a plate 121 and a surrounding wall 122. The surrounding wall 122 is disposed around the plate 121 and protrudes from the surface of the plate 121. The slots 110 and the surrounding wall 122 are positioned corresponding to each other. The surrounding wall 122 is used to insert into the slots 110 so that the panel 12 is positioned and connected to the main housing 11.

[0038] Among them, such as Figures 1 to 4 As shown, the atomizer housing 1 can be configured as a cuboid structure with length, width, and height directions, and the atomizer housing 1 has six directions: front, back, left, right, up, and down. For ease of description, the following embodiment will use the side of the main housing 11 with the panel 12 as the front as an example. However, the atomizer housing 1 of this application is not limited to a cuboid structure. Depending on the different ID designs of the atomizing device, the atomizer housing 1 can also be configured as a cylinder, a strip, or a box shape, etc. This application does not impose any special limitations on the specific structure of the atomizer housing 1.

[0039] During assembly, such as Figure 5 and Figure 6As shown, panel 12 is assembled in front of mounting frame 111. Since wall panels 122 are provided around panel 121 and slots 110 are provided around mounting frame 111, when panel 12 is installed on mounting frame 111, by inserting the wall panels 122 in the vertical direction of panel 121 into the slots 110 in the vertical direction of mounting frame 111, panel 121 can be positioned and fixed in the vertical direction. By inserting the wall panels 122 in the horizontal direction of panel 121 into the slots 110 in the horizontal direction of mounting frame 111, panel 121 can be positioned and fixed in the horizontal direction. This ensures that panel 121 can be positioned and connected to mounting frame 111 in all four directions, guaranteeing the accuracy of panel 12 assembly and preventing the panel 12 from slipping relative to the main housing 11 during assembly, which could cause a step difference between panel 12 and main housing 11. Meanwhile, since the wall 122 is set around the plate 121 and protrudes from the surface of the plate 121, the wall 122 can also enhance the structural strength of the plate 121 to prevent assembly gaps caused by deformation of the plate 121 during assembly.

[0040] It is understood that panel 12 can be a decorative panel that complements the main housing 11 in terms of color, shape, or pattern, or it can be a decorative panel that provides specific functions such as protection, dustproofing, or waterproofing for the main housing 11. This application does not impose any special restrictions on the specific shape and use of panel 12.

[0041] In some embodiments, such as Figure 3 and Figure 4 As shown, the slot 110 can be arranged around the mounting frame 111, and the enclosure wall 122 can be arranged around the plate 121. By arranging the enclosure wall 122 around the plate 121, the enclosure wall 122 can form a ring beam structure surrounding the plate 121, thereby improving the overall structural strength of the plate 121 in the plane and preventing assembly stage difference problems caused by local deformation of the plate 121 during assembly.

[0042] In other embodiments, the wall 122 can also be segmented around the perimeter of the panel 121. For example, four independent wall segments 122 can be provided around the perimeter of the panel 121. The slots 110 can be arranged enclosingly around the perimeter of the mounting frame 111, or they can be segmented around the perimeter of the mounting frame 111 corresponding to the wall 122. When the wall 122 is inserted into the slot 110, the panel 121 is respectively limited and installed in the slot 110 by the wall 122 on the upper, lower, left, and right sides, which can also prevent the panel 12 from slipping during the assembly process. This application does not impose any special restrictions on the specific manner in which the wall 122 is provided on the panel 121 and the slots 110 are provided on the mounting frame 111.

[0043] In some embodiments, such as Figure 7 As shown, the wall body 122 has a preset insertion depth L into the slot 110, and the side of the wall body 122 facing away from the panel 121 is spaced apart from the bottom of the slot 110. For example, the preset insertion depth L of the wall body 122 into the slot 110 can be set to be greater than 1 mm, and the distance d between the side of the wall body 122 facing away from the panel 121 and the bottom of the slot 110 can be set to be greater than 0.15 mm. In this way, when the wall body 122 is inserted into the slot 110, it can ensure the fixed length of the wall body 122 in the slot 110, and will not be damaged due to hard contact between the wall body 122 and the bottom of the slot 110, thus effectively protecting the assembly of the panel 12.

[0044] In other embodiments, the preset depth L of the wall 122 inserted into the slot 110 and the distance d between the side of the wall 122 away from the plate 121 and the bottom of the slot 110 can be adaptively adjusted according to the area of ​​the plate 121. For example, the larger the area of ​​the plate 121, the preset depth L of the wall 122 inserted into the slot 110 can be greater than 2 mm, and the distance d between the side of the wall 122 away from the plate 121 and the bottom of the slot 110 can be greater than 0.2 mm. This application does not impose any special limitations on the specific values ​​of the preset depth L of the wall 122 inserted into the slot 110 and the distance d between the side of the wall 122 away from the plate 121 and the bottom of the slot 110.

[0045] In some embodiments, such as Figure 7 As shown, gaps s are provided between the two side walls of the wall 122 and the two side walls of the slot 110, and the width between the two side walls of the slot 110 is less than the preset depth s. By providing gaps s between the two side walls of the wall 122 and the two side walls of the slot 110, it is easier to align the wall 122 with the slot 110 when inserting it, thus avoiding the problem that the wall 122 cannot be inserted or is damaged during insertion due to the slot 110 being too narrow. For example, the thickness t of the wall 122 can be set to 0.25mm, the gap s between one side wall of the wall 122 and one side wall of the slot 110 can be greater than 0.25mm, and the gaps s between the two side walls of the wall 122 and the two side walls of the slot 110 can be greater than 0.5mm, that is, the overall width of the slot 110 can be greater than 0.75mm. Meanwhile, by setting the width between the two side walls of the slot 110 to be less than the preset depth s, the slot 110 can be made into a deep groove structure, making it difficult for the assembled wall 122 to be pulled out of the slot 110 after it is inserted into the slot 110, thereby ensuring the stability of the connection between the wall 122 and the slot 110.

[0046] Depending on factors such as the area and material of the plate 121, the thickness t of the wall 122 can be set to be greater than 0.25 mm, and the gap s between one side wall of the wall 122 and one side wall of the slot 110 can be set to be greater than 0.4 mm. This application does not impose any special restrictions on the specific values ​​of the thickness t of the wall 122 and the gap s between one side wall of the wall 122 and one side wall of the slot 110.

[0047] In other embodiments, the slot 110 can also be configured as a single-sided sidewall structure. For example, the slot 110 can be configured as a semi-groove structure with a left sidewall, or the slot 110 can be configured as a semi-groove structure with a right sidewall. When the panel 12 is connected to the main housing 11, the walls 122 on the left and right sides of the panel 121 can also be inserted into the slot 110 to achieve the function of positioning and connecting the panel 12 to the main housing 11. This application does not impose any special restrictions on the specific structure of the slot 110.

[0048] In some embodiments, such as Figure 7 As shown, the atomizer housing 1 may also include an adhesive (not shown in the figure); the adhesive is filled in the slot 110 for bonding the side of the enclosure 122 away from the plate 121 and the two side walls of the enclosure 122 to the slot 110.

[0049] Since there are gaps between the side of the wall 122 facing away from the panel 121 and both sides of the wall 122 and the slot 110, when the slot 110 is filled with adhesive, the side of the wall 122 facing away from the panel 121 and both sides of the wall 122 can be bonded to the slot 110, thus firmly connecting the panel 12 to the main housing 11. In actual assembly, adhesive can be pre-filled into the slot 110, and then the wall 122 can be inserted into the slot 110, thus bonding the side of the wall 122 facing away from the panel 121 and both sides of the wall 122 to the slot 110. Alternatively, adhesive can be pre-applied to the outer surface of the wall 122, and then the wall 122 can be inserted into the slot 110, similarly bonding the side of the wall 122 facing away from the panel 121 and both sides of the wall 122 to the slot 110. The adhesive can be made of materials such as acrylic glue, latex, or PVC glue. This application does not impose any special restrictions on the specific material of the adhesive.

[0050] Furthermore, if the slot 110 is configured with a single-sided sidewall structure, adhesive can be pre-filled into the wall and bottom of the slot 110 with the single-sided sidewall, or adhesive can be applied to the outer surface of the wall 122. When the wall 122 is inserted into the slot 110, the wall 122 can be firmly bonded to the slot 110.

[0051] In some embodiments, such as Figure 4 As shown, the wall 122 can be disposed at the edge of the panel 121. By placing the wall 122 at the edge of the panel 121, the edge of the panel 121 can be processed into the wall 122 using a PC film high-pressure molding process, thus forming an integral structure between the panel 121 and the wall 122, thereby improving the structural strength of the panel 12. Simultaneously, by placing the wall 122 at the edge of the panel 121, during panel 12 assembly, it is possible to observe from the edge of the panel 121 whether the wall 122 has been inserted into the slot 110, thereby improving the efficiency of panel 12 assembly.

[0052] In other embodiments, the wall 122 can also be prefabricated and then connected to the plate 121 by means of post-fabrication or hot pressing. In this case, it is no longer required that the wall 122 be located at the edge of the plate 121. This application does not impose any special restrictions on the formation method of the wall 122 on the plate 121 or the specific location of the wall 122 on the plate 121.

[0053] In some embodiments, such as Figure 7 As shown, there is a demolding angle α between the wall body 122 and the panel 121, and the demolding angle α is an obtuse angle. The demolding angle α is the angle between the plane containing the wall body 122 and the plane containing the panel 121. For example, the demolding angle α can be set to be greater than 91°. When the demolding angle α is greater than 91°, the panel 12 can easily detach from the mold in the PC film high-pressure molding process, thus avoiding the formation of a claw-like structure by the wall bodies 122 on both sides of the panel 121 due to the acute angle α, which would make it difficult for the panel 12 to detach from the mold in the PC film high-pressure molding process. Furthermore, when the demolding angle α is an obtuse angle, the contact area between the wall body 122 and the adhesive in the slot 110 can be increased, thereby increasing the adhesive force of the adhesive on the wall body 122 and improving the connection strength between the panel 12 and the main housing 11. In other embodiments, the demolding angle α between the wall body 122 and the plate body 121 can also be set to greater than 95°. This application does not impose any special restrictions on the specific angle of the demolding angle α.

[0054] In some embodiments, such as Figure 3 As shown, the main housing 11 may also include a mounting surface 112; a first arc-shaped surface 113 may be provided on the opposite sides of the mounting surface 112, and a second arc-shaped surface 123 may be provided on the opposite sides of the plate 121. When the panel 12 is connected to the main housing 11, the second arc-shaped surface 123 is in contact with the first arc-shaped surface 113.

[0055] When the panel 12 is assembled with the main housing 11, since the mounting surface 112 has a first arc-shaped surface 113 on its opposite sides and the plate 121 has a second arc-shaped surface 123 on its opposite sides, the panel 12 can first fit with the first arc-shaped surface 113 on the mounting surface 112 through the second arc-shaped surface 123 on the plate 121, so that the panel 12 is initially positioned on the main housing 11. Then, the surrounding wall 122 of the plate 121 is inserted into the slots 110 around the mounting frame 111, so that the panel 12 can be quickly and accurately assembled on the main housing 11, thereby improving the assembly efficiency of the atomizer housing 1.

[0056] In other embodiments, the main housing 11 may not require a mounting surface 112; that is, the area enclosed by the mounting frame 111 is a hollow area, and the panel 12 can be directly inserted into the slot 110 of the mounting frame 111 via the surrounding wall 122. In this case, the side of the mounting frame 111 with the slot 110 can be set as an arc-shaped frame, and the curvature of the arc-shaped frame can be adapted to the curvature of the second arc-shaped surface 123. In this way, when the panel 12 is assembled with the main housing 11, the panel 12 can first be attached to the arc-shaped frame 111 via the second arc-shaped surface 123 on the plate 121, thereby initially positioning the panel 12 on the main housing 11. Then, the surrounding wall 122 around the plate 121 is inserted into the slot 110 around the mounting frame 111, which also allows the panel 12 to be quickly and accurately assembled onto the main housing 11.

[0057] In some embodiments, the panel 12 can be made of a transparent material. For example, the main housing 11 can have a mounting surface 112, which can be a display screen. When the panel 12 is made of a transparent material, the user can observe information such as battery level, temperature, or heating power displayed on the screen through the transparent panel 12. Alternatively, the main housing 11 may not have a mounting surface 112, i.e., the area enclosed by the mounting frame 111 is a hollow area. When the panel 12 is made of a transparent material, the user can observe information such as the remaining amount or cleanliness of the aerosol matrix in the liquid storage component 21 inside the main housing 11 through the transparent panel 12. Of course, in other embodiments, the panel 12 can also be made of a non-transparent material. For example, when the aerosol matrix inside the liquid storage component 21 needs to avoid strong light exposure, or when the atomizer housing 1 has specific protective requirements such as waterproofing and dustproofing. Depending on the different ID designs of the atomizer housing 1, the panel 12 can be made of a transparent or non-transparent material, and this application does not impose any special restrictions on the specific material of the panel 12.

[0058] The above-described specific examples are for illustrative purposes only and are not intended to limit the scope of this invention. Those skilled in the art to which this invention pertains can make various simple deductions, modifications, or substitutions based on the concept of this invention.

Claims

1. An atomizer housing, characterized in that, include: The main housing includes a mounting frame, the mounting frame having slots around its perimeter; and, The panel includes a panel body and a surrounding wall body. The surrounding wall body is disposed around the perimeter of the panel body and protrudes from the surface of the panel body. The slot corresponds to the position of the surrounding wall body, and the surrounding wall body is used to insert into the slot so that the panel body is positioned and connected to the main housing.

2. The atomizer housing as described in claim 1, characterized in that, The slots are arranged around the mounting frame, and the walls are arranged around the panel.

3. The atomizer housing as described in claim 2, characterized in that, The wall body has a preset depth for inserting into the slot, and the side of the wall body away from the plate body is spaced apart from the bottom of the slot.

4. The atomizer housing as described in claim 3, characterized in that, There are gaps between the two side walls of the enclosure and the two side walls of the slot, and the width between the two side walls of the slot is less than the preset depth.

5. The atomizer housing as described in claim 4, characterized in that, The atomizer housing also includes an adhesive; The adhesive is filled into the slot to bond the side of the wall away from the panel and the two side walls of the wall to the slot.

6. The atomizer housing as described in claim 2, characterized in that, The wall body and the panel body have a demolding angle, which is an obtuse angle.

7. The atomizer housing according to any one of claims 1 to 6, characterized in that, The main housing also includes a mounting surface; The mounting surface has a first arc-shaped surface on its opposite sides, and the plate has a second arc-shaped surface on its opposite sides. When the panel is connected to the main housing, the second arc-shaped surface fits into the first arc-shaped surface.

8. The atomizer housing according to any one of claims 1 to 6, characterized in that, The wall is located at the edge of the panel.

9. The atomizer housing according to any one of claims 1 to 6, characterized in that, The panel is made of a transparent material.

10. An atomizing device, characterized in that, include: Atomizer housing as described in any one of claims 1 to 9; as well as, Atomizer, installed inside the atomizer housing.