Shell structure and electronic atomization equipment

CN224219451UActive Publication Date: 2026-05-12SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN GEEKVAPE TECH CO LTD
Filing Date
2025-03-19
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Electronic atomizing devices equipped with displays tend to be large in size, making it difficult to achieve miniaturization.

Method used

A dark semi-transparent section is incorporated into the outer shell structure to block external light from entering and to guide the display light out. This is combined with a colored semi-transparent section to protect and enhance the aesthetics, without the need for an additional dark material layer.

Benefits of technology

It improves the aesthetics of electronic atomization devices and achieves smaller size by reducing wall thickness while maintaining the visibility of the display screen.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a shell structure and electronic atomization equipment, and belongs to the technical field of electronic atomization, the shell structure is used for containing an atomizer provided with a display screen, a second area and a first area corresponding to the display screen are defined on the side face of the shell structure, and the first area corresponds to the display screen. The shell structure comprises a dark-color semi-transparent part arranged in the first area, and the dark-color semi-transparent part is used for preventing external visible light rays from entering the display screen and used for emitting display light rays emitted by the display screen out of the shell structure. According to the electronic atomization equipment, the dark-color semi-transparent part is arranged on the shell structure to shield the display screen, a dark-color material layer does not need to be arranged, the wall thickness of the electronic atomization equipment can be reduced, the overall size of the electronic atomization equipment can be reduced, and the small size of the electronic atomization equipment can be achieved.
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Description

Technical Field

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

[0002] Electronic atomization devices utilize electrical energy converted into heat energy, which heats the aerosol-generating matrix to generate aerosols without combustion.

[0003] To enrich the user experience, related technologies propose incorporating displays into conventional e-cigarette devices to show various information, such as remaining battery power, remaining aerosol generation matrix, operating mode, and alarm status. E-cigarette devices with displays typically require a transparent outer shell, an inner shell housing the atomizing and power supply components, and a dark material layer sandwiched between the outer and inner shells. The display screen is then positioned between the outer shell and the dark material layer, making it difficult for users to spot when it is not illuminated, thus enhancing the aesthetics of e-cigarette devices with displays.

[0004] However, the addition of a display screen and a dark material layer between the inner and outer shells increases the wall thickness of the electronic atomizing device, making the overall size of the device larger and hindering the miniaturization of electronic atomizing devices. Utility Model Content

[0005] This application provides a housing structure and an electronic atomizing device, aiming to solve the technical problem that the overall size of electronic atomizing devices equipped with a display screen is too large in the related art.

[0006] In a first aspect, this application provides a housing structure for accommodating an atomizer with a display screen. The side of the housing structure defines a first region and a second region. The first region corresponds to the display screen. The housing structure includes a dark semi-transparent portion disposed in the first region. The dark semi-transparent portion is used to block external visible light from entering the display screen and to allow display light emitted by the display screen to exit outside the housing structure.

[0007] Furthermore, the outer shell structure also includes at least a colored semi-transparent portion disposed in the second region.

[0008] Furthermore, the colored semi-transparent portion is also disposed in the first region, and the colored semi-transparent portion disposed in the first region covers at least part of the dark semi-transparent portion, so that the dark semi-transparent portion is located inside the colored semi-transparent portion.

[0009] Furthermore, the dark semi-transparent portion and the colored semi-transparent portion are integrally formed.

[0010] Furthermore, the area of ​​the first region is greater than or equal to the area of ​​the second region.

[0011] Furthermore, the side surface includes a first side plane, a first side curved surface, a second side plane, and a second side curved surface connected in sequence. The first side plane is opposite to the second side plane, and the first side curved surface is opposite to the second side curved surface. The first region coincides with a portion of the first side plane, the first side curved surface, and a portion of the second side plane in sequence, and the second region coincides with a portion of the second side plane, the second side curved surface, and a portion of the first side plane in sequence.

[0012] Secondly, this application provides an electronic atomizing device, comprising:

[0013] Atomizer with display screen; and

[0014] As described in any of the aforementioned shell structures, the shell structure is fitted onto the atomizer.

[0015] Furthermore, the atomizer also includes:

[0016] An inner shell structure, wherein the display screen is disposed on the inner shell structure, the inner shell structure is configured to form an accommodating space, and the inner shell structure is connected to the outer shell structure;

[0017] An atomizing component is disposed in the accommodating space, and the atomizing component is used to generate an aerosol matrix based on electrical energy atomization of aerosol;

[0018] A power supply component is disposed in the accommodating space and is electrically connected to the atomizing component and the display screen, respectively. The power supply component is used to provide the electrical energy.

[0019] Furthermore, the inner shell structure includes:

[0020] A hollow main body, on which the display screen is mounted;

[0021] A suction nozzle is disposed at the first end of the main body portion;

[0022] A sealing seat is disposed at the second end of the main body, and the sealing seat, the main body, and the suction nozzle together form the accommodating space; wherein...

[0023] At least one of the main body, the nozzle, and the sealing seat is detachably connected to the outer shell structure.

[0024] Furthermore, the top of the outer shell structure is located near the first end, and the top is provided with a first through hole and a second through hole; wherein,

[0025] The suction nozzle is located on the top side away from the main body. The suction nozzle is provided with a first buckle. The suction nozzle is connected to the main body through the first through hole. The first buckle is detachably connected to the top through the second through hole.

[0026] In the housing structure and electronic atomizing device provided in this application, the side of the housing structure defines a second region and a first region corresponding to the display screen. The housing structure includes a dark semi-transparent portion disposed in the first region. The dark semi-transparent portion is used to block external visible light from entering the display screen and to allow the display light emitted by the display screen to exit outside the housing structure. Thus, when the display screen does not emit display light, it is difficult for the user to observe the display screen located inside the housing structure. When the display screen emits display light, the user can observe the display content of the display screen. In this way, compared with electronic atomizing devices with display screens in related technologies, this application improves the aesthetics of electronic atomizing devices with display screens by providing a dark semi-transparent portion on the housing structure to block the display screen. At the same time, it eliminates the need for a dark material layer, reduces the wall thickness of the electronic atomizing device, and reduces the overall size of the electronic atomizing device, which is conducive to achieving miniaturization of the electronic atomizing device. Attached Figure Description

[0027] Figure 1 A three-dimensional structural schematic diagram of an electronic atomizing device provided in an embodiment of this application;

[0028] Figure 2 for Figure 1 A three-dimensional structural diagram of the outer shell structure;

[0029] Figure 3 for Figure 2 The diagram shows a longitudinal section of the outer shell structure;

[0030] Figure 4 for Figure 1 The diagram shows a longitudinal cross-section of the electronic atomizing device;

[0031] Figure 5 for Figure 1 An exploded view of an electronic atomizing device is shown.

[0032] Figure label:

[0033] Electronic atomizing device 300, atomizer 200, display screen 210, inner shell structure 240, accommodating space 2401, main body 241, second buckle 2411, first end 2412, second end 2414, second slot 2416, first opening 2418, mouthpiece 242, suction channel 2421, first buckle 2422, sealing seat 243, third buckle 2431, outer shell structure 100, side 101, top surface 102, bottom surface 103, dark semi-transparent part 11, colored semi-transparent part 12, top 13, third slot 104, first through hole 105, second through hole 106, first side plane 1011, first side curved surface 1012, second side plane 1013, second side curved surface 1014. Detailed Implementation

[0034] The technical solutions of the embodiments of this application will be described below with reference to the accompanying drawings. The described embodiments are only used to explain the ideas of the present invention and should not be regarded as limiting the scope of protection of this application.

[0035] It should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore should not be construed as limiting the scope of protection of this application.

[0036] This application provides an electronic atomizing device, such as... Figures 1 to 4 As shown, the electronic atomizing device 300 includes an atomizer 200 with a display screen 210 and a housing structure 100 as described in any of the following embodiments, the housing structure 100 being fitted onto the atomizer 200.

[0037] Among them, such as Figure 2 as well as Figure 3 As shown, the side 101 of the outer casing structure 100 defines a first region S1 and a second region S2, with the first region S1 corresponding to the display screen 210.

[0038] In this embodiment, the outer shell structure 100 has a top surface 102 and a bottom surface 103, and the side surface 101 is connected to the top surface 102 and the bottom surface 103.

[0039] The housing structure 100 includes a dark semi-transparent portion 11, which is disposed in the first region S1. The dark semi-transparent portion 11 is used to block external visible light from entering the display screen 210 and to allow the display light emitted by the display screen 210 to exit outside the housing structure 100.

[0040] The dark semi-transparent portion 11 is made of a dark semi-transparent material. Dark semi-transparent material refers to a material that presents a dark appearance while maintaining a certain degree of light transmittance. For example, in this embodiment, the dark semi-transparent material can be one or more of the following: dark semi-transparent polycarbonate material, dark semi-transparent acrylic material, dark semi-transparent polyethylene terephthalate material, and dark semi-transparent thermoplastic polyurethane material.

[0041] In this embodiment, dark color refers to a color with high saturation and low brightness, specifically including black, dark gray, dark brown, etc.

[0042] When the display screen 210 is not emitting display light, the dark semi-transparent portion 11 is provided in the first area S1 corresponding to the display screen 210, thus blocking external visible light and making it difficult for the user to observe the display screen 210 located inside the housing structure 100 with the naked eye. When the display screen 210 emits display light, the dark semi-transparent portion 11 allows the display light to escape from the inside of the housing structure 100 to the outside of the housing structure 100, so that the user can observe the display content of the display screen 210 with the naked eye.

[0043] Compared to the electronic atomizing device 300 equipped with a display screen 210 in related technologies, this application improves the aesthetics of the electronic atomizing device 300 equipped with a display screen 210 by providing a dark semi-transparent portion 11 corresponding to the display screen 210 on the outer shell structure 100 to cover the display screen 210. At the same time, there is no need to provide a dark material layer between the outer shell structure 100 and the atomizer 200, thereby reducing the wall thickness of the electronic atomizing device 300 and the overall size of the electronic atomizing device 300, which is conducive to realizing the miniaturization of the electronic atomizing device 300.

[0044] It is worth mentioning that in the outer shell structure 100, the areas other than the first region S1 can be made of transparent material, semi-transparent material, or non-transparent material.

[0045] It is worth mentioning that decorative stickers can be pasted on the area corresponding to the second area S2S2 in the atomizer 200 to enhance the aesthetics of the atomizer 200.

[0046] Furthermore, such as Figure 2 as well as Figure 3 As shown, in one embodiment, the housing structure 100 further includes at least a colored semi-transparent portion 12 disposed in the second region S2. The colored semi-transparent portion 12 is used to allow external visible light within a preset wavelength range to enter the interior of the housing structure 100.

[0047] In this embodiment, the colored semi-transparent portion 12 is made of a colored semi-transparent material. A colored semi-transparent material is a material with semi-transparent properties and a specific color. The colored semi-transparent material allows some light to pass through but scatters the transmitted light in different directions, making the portion of the atomizer 200 that passes through the colored semi-transparent portion 12 appear blurry or hazy. This effectively blurs the visual appearance of the components of the atomizer 200 other than the display screen 210, preventing the user from directly observing the wiring between the various components on the atomizer 200.

[0048] For example, colored semi-transparent materials can be specifically obtained by adding pigments or changing the surface texture of semi-transparent polycarbonate materials, semi-transparent acrylic materials, semi-transparent polyethylene materials, or semi-transparent polyethylene terephthalate.

[0049] For further information, please refer to [link / reference]. Figure 2 as well as Figure 3 The colored semi-transparent portion 12 is also provided in the first region S1. The colored semi-transparent portion 12 provided in the first region S1 covers at least part of the dark semi-transparent portion 11, so that the dark semi-transparent portion 11 is located inside the colored semi-transparent portion 12.

[0050] In this embodiment, since the dark semi-transparent portion 11 is located inside the colored semi-transparent portion 12, the colored semi-transparent portion 12 located in the first region S1 can protect the covered dark semi-transparent portion 11, reduce wear on the dark semi-transparent portion 11 during transportation or long-term use, and improve the effective durability of the outer shell structure 100.

[0051] Preferably, please continue reading. Figure 2 as well as Figure 3 The colored semi-transparent portion 12 located in the first region S1 completely covers the dark semi-transparent portion 11 to protect the dark semi-transparent portion 11 as a whole, avoid wear and tear on the dark semi-transparent portion 11 during transportation or long-term use, and further improve the effective durability of the outer shell structure 100.

[0052] Furthermore, in one embodiment, the dark semi-transparent portion 11 and the colored semi-transparent portion 12 are detachably connected. For example, one of the dark semi-transparent portion 11 and the colored semi-transparent portion 12 is provided with a limiting groove, and the other of the dark semi-transparent portion 11 and the colored semi-transparent portion 12 is provided with a limiting buckle, which engages with the limiting groove to achieve the detachable connection between the two.

[0053] In another embodiment, the dark semi-transparent portion 11 and the colored semi-transparent portion 12 are integrally formed. For example, the side 101 of the outer shell structure 100 can be formed using a two-shot injection molding process, by using dark semi-transparent material and colored semi-transparent material in the same mold in sequence, so that the dark semi-transparent layer and the colored semi-transparent layer are formed in one step.

[0054] Furthermore, in one embodiment, the area of ​​the first region S1 is greater than or equal to the area of ​​the second region S2.

[0055] When the area of ​​the first region S1 is equal to or greater than the area of ​​the second region S2, the first region S1 occupies more than half of the area of ​​the side 101 of the outer shell structure 100, thus the dark semi-transparent layer can occupy more than half of the area of ​​the side 101 of the outer shell structure 100. Since the display screen 210 corresponds to the first region S1, the larger the area of ​​the dark semi-transparent layer occupying the side 101 of the outer shell structure 100, the larger the display area of ​​the display screen 210 will be, thus realizing a large-screen display of the electronic atomizing device 300, and realizing the simultaneous display of the remaining battery power of the atomizer 200, the remaining aerosol generation matrix information, the working mode information, the alarm status information, etc. on the display screen 210.

[0056] Furthermore, in one embodiment, as Figure 2 as well as Figure 3 As shown, the side surface 101 includes a first side plane 1011, a first side curved surface 1012, a second side plane 1013, and a second side curved surface 1014 connected in sequence. The first side plane 1011 is opposite to the second side plane 1013, and the first side curved surface 1012 is opposite to the second side curved surface 1014.

[0057] In this embodiment, the first side surface 1012 is connected between the first side plane 1011 and the second side plane 1013, the second side plane 1013 is connected between the first side surface 1012 and the second side surface 1014, and the second side surface 1014 is connected between the second side plane 1013 and the first side plane 1011.

[0058] The first region S1 coincides sequentially with a portion of the first side plane 1011, the first side curved surface 1012, and a portion of the second side plane 1013. The second region S2 coincides sequentially with a portion of the second side plane 1013, the second side curved surface 1014, and a portion of the first side plane 1011.

[0059] It is worth mentioning that when the first region S1 coincides with a portion of the first side plane 1011, the first side curved surface 1012, and a portion of the second side plane 1013 in sequence, the display screen 210 of the atomizer 200 is specifically a flexible display screen 210. Based on its flexible characteristics, the flexible display screen 210 can be configured to correspond to the first side curved surface 1012, so that the display area of ​​the flexible display screen 210 is distributed on the first side plane 1011, the first side curved surface 1012, and the second side plane 1013. As a result, while the display area increases, the area occupied by the black semi-transparent part on the side 101 of the outer shell structure 100 also increases, ensuring that the black semi-transparent part can completely cover the flexible display screen 210.

[0060] Specifically, please refer to Figure 4The atomizer 200 also includes an inner shell structure 240 and an atomizing component ( Figure 4 (not shown in the image) and power supply components ( Figure 4 (Not shown in the image).

[0061] The display screen 210 is disposed on the inner shell structure 240, that is, the display screen 210 is disposed on the outer side wall of the inner shell structure 240, and the display screen 210 is disposed in the first area S1 of the outer shell structure 100.

[0062] The inner shell structure 240 is connected to the outer shell structure 100 to keep the outer shell structure 100 and the atomizer 200 relatively stationary, thereby keeping the outer shell structure 100 and the display screen 210 on the atomizer 200 relatively stationary, and further keeping the display screen 210 and the dark semi-transparent part 11 of the outer shell structure 100 relatively stationary.

[0063] The inner shell structure 240 is configured to form an accommodating space 2401, which is used to accommodate the atomizing component, the power supply component, and the aerosol generation matrix.

[0064] The atomizing component is located in the accommodating space 2401. The atomizing component is used to generate an aerosol matrix based on the atomization of electrical energy.

[0065] This application does not limit the specific structure of the atomizing component. The atomizing component typically includes a heating element and conductive pins that are in ohmic contact with the heating element. The conductive pins are in ohmic contact with the power supply component to transfer the electrical energy output by the power supply component to the heating element. The heating element converts the electrical energy into heat energy to bake the aerosol generation matrix.

[0066] The power supply component is located in the accommodating space 2401 and is electrically connected to both the atomizing component and the display screen 210. The power supply component provides electrical energy. Specifically, it provides electrical energy to the display screen 210 so that the display screen 210 emits display light. It also provides electrical energy to the atomizing component, enabling the atomizing component to convert electrical energy into heat energy to heat the aerosol generation matrix to obtain the aerosol.

[0067] This application does not limit the specific structure of the power supply component. The power supply component typically includes a battery and a control circuit board that is in ohmic contact with the battery. The battery stores electrical energy, and the control circuit board controls the display content of the display screen 210 and the atomizing component to operate with preset parameters.

[0068] Specifically, in one embodiment, please refer to Figure 4 as well as Figure 5 The inner shell structure 240 includes a hollow main body 241, a suction nozzle 242, and a sealing seat 243.

[0069] The display screen 210 is disposed on the main body 241, and the first end 2412 and the second end 2414 of the main body 241 are opposite ends of the main body 241.

[0070] The suction nozzle 242 is located at the first end 2412 of the main body 241.

[0071] The nozzle component 242 is configured to form a suction channel 2421. The main body 241 has a first opening 2418 at its first end 2412, and the first opening 2418 is connected to the hollow structure of the main body 241. The suction channel 2421 is connected to the hollow structure of the main body 241 through the first opening 2418.

[0072] The sealing seat 243 is located at the second end 2414 of the main body 241, and the sealing seat 243, the main body 241 and the suction nozzle 242 together form the accommodating space 2401.

[0073] The sealing seat 243 is detachably connected to the main body 241 so that the sealing seat 243 covers the second end 2414 of the main body 241. Thus, the sealing seat 243 remains connected to the main body 241 under the influence of gravity of the atomizing component, power supply component, main body 241, and nozzle component 242, ensuring that the sealing seat 243 will not easily fall off the main body 241 and affect the connection stability between the components in the accommodating space 2401.

[0074] There are various ways to achieve the detachable connection between the sealing seat 243 and the main body 241, including but not limited to snap-fit ​​connection, pin connection and magnetic connection.

[0075] For example, such as Figure 5 As shown, the sealing seat 243 is provided with a third buckle 2431, and the main body 241 is provided with a third slot 104 in the area corresponding to the third buckle 2431. Figures 3 to 5 (Not shown in the image), the third buckle 2431 is provided in the third slot 104 to realize the detachable connection between the main body 241 and the sealing seat 243.

[0076] The sealing seat 243 and the main body 241 are designed to be detachably connected. During the production and assembly process of the atomizer 200, the atomizing component, the power supply component and the sealing seat 243 can be assembled first, and then the main body 241 can be fitted onto the sealing seat 243.

[0077] At least one of the main body 241, the nozzle 242, and the sealing seat 243 is detachably connected to the outer shell structure 100.

[0078] The outer shell structure 100 is designed to be detachably connected to at least one of the main body 241, the nozzle 242, and the sealing seat 243. During the production and assembly of the electronic atomizing device 300, the display screen 210 can be placed on the main body 241 first, and then the outer shell structure 100 can be fitted onto the inner shell structure 240. This ensures that the display screen 210 is sandwiched between the outer shell structure 100 and the inner shell structure 240, and that the relative positional relationship between the display screen 210 and the dark semi-transparent portion 11 remains stable.

[0079] Furthermore, such as Figures 3 to 5 As shown, the main body 241 is also provided with a third buckle 2431, and the outer shell structure 100 is provided with a third slot 104 in the area corresponding to the third buckle 2431. The third buckle 2431 is provided in the third slot 104 to realize the detachable connection between the sealing seat 243 and the outer shell structure 100.

[0080] Furthermore, such as Figures 2 to 5 As shown, in one embodiment, the top 13 of the outer casing is close to the first end 2412 of the main body 241, and the top 13 is provided with a first through hole 105 and a second through hole 106.

[0081] The nozzle 242 is located on the side of the top 13 away from the main body 241. The nozzle 242 is provided with a first buckle 2422. The nozzle 242 is connected to the main body 241 through a first through hole 105. The first buckle 2422 is detachably connected to the top 13 through a second through hole 106.

[0082] In this embodiment, by placing the nozzle 242 on the side of the top 13 away from the main body 241, it is easier for the staff to observe the alignment between the nozzle 242 and the main body 241, so that the assembled atomizing component, power supply component, sealing seat 243, main body 241 and outer shell structure 100 can be assembled with the nozzle 242, thereby improving the overall assembly efficiency of the electronic atomizing device 300.

[0083] The suction channel 2421 of the nozzle 242 is connected to the first opening 2418 of the main body 241 through the first through hole 105, so that the aerosol obtained by the atomizing component atomizing aerosol to generate a matrix enters the suction channel 2421, so that the user can obtain aerosol through the nozzle 242.

[0084] Based on the assembly between the first buckle 2422 and the second through hole 106, a stable connection is achieved between the mouthpiece 242 and the outer shell structure 100, thereby achieving a stable connection between the outer shell structure 100 and the atomizer 200.

[0085] It should be noted that the aerosol mentioned in this application refers to a dispersion of solid or liquid particles in a gas. The term "aerosol" as used herein can generally refer to a substance that has been vaporized, atomized, sprayed, or jetted, or otherwise transformed from a solid or liquid form into an inhalable form containing suspended solid or liquid drug particles.

[0086] As used herein, the aerosol-generating matrix is ​​also referred to as the atomizing matrix. The term "aerosol-generating matrix" means any suitable compound or mixture of compounds that facilitates the formation of aerosols (e.g., stable aerosols that are substantially resistant to thermal degradation at the system's operating temperature) during use. Suitable aerosol forming agents are well known in the art and include, but are not limited to: polyols, such as triethylene glycol, 1,3-butanediol, and glycerol; esters of polyols, such as mono-, di-, or triacetic acid esters of glycerol; and aliphatic esters of mono-, di-, or polycarboxylic acids, such as dimethyl dodecanoate and dimethyl tetradecanoate.

[0087] Of course, this application may have other various embodiments. Without departing from the spirit and essential points of this application, those skilled in the art can make various corresponding changes and modifications based on this application, but these corresponding changes and modifications should all fall within the protection scope of the appended claims.

Claims

1. A housing structure for accommodating an atomizer equipped with a display screen, characterized in that, The outer casing structure has a first region and a second region defined on its side. The first region corresponds to the display screen. The outer casing structure includes a dark semi-transparent portion disposed in the first region. The dark semi-transparent portion is used to block external visible light from entering the display screen and to allow the display light emitted by the display screen to exit outside the outer casing structure.

2. The outer shell structure according to claim 1, characterized in that, The outer shell structure also includes at least a colored semi-transparent portion disposed in the second region.

3. The outer shell structure according to claim 2, characterized in that, The colored semi-transparent portion is also disposed in the first region, and the colored semi-transparent portion disposed in the first region covers at least part of the dark semi-transparent portion, so that the dark semi-transparent portion is located inside the colored semi-transparent portion.

4. The outer shell structure according to claim 2 or 3, characterized in that, The dark semi-transparent portion and the colored semi-transparent portion are integrally formed.

5. The outer shell structure according to claim 2 or 3, characterized in that, The area of ​​the first region is greater than or equal to the area of ​​the second region.

6. The outer shell structure according to claim 2 or 3, characterized in that, The side surface includes a first side plane, a first side curved surface, a second side plane, and a second side curved surface that are connected in sequence. The first side plane is opposite to the second side plane, and the first side curved surface is opposite to the second side curved surface. The first region coincides with a portion of the first side plane, the first side curved surface, and a portion of the second side plane in sequence. The second region coincides with a portion of the second side plane, the second side curved surface, and a portion of the first side plane in sequence.

7. An electronic atomizing device, characterized in that, The electronic atomization device includes: Atomizer with display screen; and The housing structure as described in any one of claims 1 to 6, wherein the housing structure is fitted onto the atomizer.

8. The electronic atomizing device according to claim 7, characterized in that, The atomizer also includes: An inner shell structure, wherein the display screen is disposed on the inner shell structure, the inner shell structure is configured to form an accommodating space, and the inner shell structure is connected to the outer shell structure; An atomizing component is disposed in the accommodating space, and the atomizing component is used to generate an aerosol matrix based on electrical energy atomization of aerosol; A power supply component is disposed in the accommodating space and is electrically connected to the atomizing component and the display screen, respectively. The power supply component is used to provide the electrical energy.

9. The electronic atomizing device according to claim 8, characterized in that, The inner shell structure includes: A hollow main body, on which the display screen is mounted; A suction nozzle is disposed at the first end of the main body portion; A sealing seat is disposed at the second end of the main body, and the sealing seat, the main body, and the suction nozzle together form the accommodating space; wherein... At least one of the main body, the nozzle, and the sealing seat is detachably connected to the outer shell structure.

10. The electronic atomizing device according to claim 9, characterized in that, The top of the outer shell structure is near the first end, and the top has a first through hole and a second through hole; wherein... The suction nozzle is located on the top side away from the main body. The suction nozzle is provided with a first buckle. The suction nozzle is connected to the main body through the first through hole. The first buckle is detachably connected to the top through the second through hole.