Atomizer shell and atomization device

By designing an internal dust cover structure in the HNB atomizing device, and utilizing a toggle mechanism and magnetic locking, the problem of dust cover scratches was solved, improving the aesthetics and durability of the atomizer casing.

CN223667276UActive Publication Date: 2025-12-16SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Application Number
CN202422804621.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-12-16
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

The dust covers on existing HNB atomizing devices are prone to scratching the surface of the device, affecting its aesthetics and user experience.

Method used

Design a dust cover structure in which the cover body is set inside the housing assembly, and the toggle element passes through the opening and protrudes outside the housing to avoid the cover body from contacting the housing surface. Magnetic elements are used for locking to ensure that the cover body does not scratch the outer surface when opening or closing the socket.

Benefits of technology

Maintain the aesthetic appeal of the atomizer casing, enhance the user experience, and prevent wear and tear on the outer surface after prolonged use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aerosol atomization, and provides an atomizer shell and an atomization device.The atomizer shell and the atomization device are used for solving the technical problem that the surface of existing HNB atomization equipment is prone to being abraded by a dust cap, the atomizer shell comprises a shell assembly and the dust cap, the shell assembly is provided with an opening and an insertion opening, and the insertion opening is used for inserting an aerosol product; the dustproof cover comprises a cover body and a shifting piece which are connected with each other, the cover body is movably arranged in the shell assembly, and the shifting piece can drive the cover body to move when being shifted so as to open or close the socket; wherein the shifting piece penetrates through the opening and is exposed out of the shell assembly, and the part, exposed out of the shell assembly, of the shifting piece is separated from the outer surface of the shell assembly. According to the dustproof cover, the cover body is arranged in the shell assembly, and the part, exposed out of the shell assembly, of the shifting piece is separated from the outer surface of the shell assembly, so that the outer surface of the atomizer shell cannot be abraded in the process that the whole dustproof cover opens or closes the insertion opening, and the attractiveness of the atomizer shell can be kept.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of aerosol atomization, in particular to an atomizer shell and an atomization device. BACKGROUND

[0002] An aerosol product can be inserted into a heat-not-burning (HNB) atomization device for heating, so that the aerosol product can be heated below the ignition point and release aerosol. Generally, a dust cover that can open or close the insertion port is provided on the HNB atomization device to prevent dust from falling into the HNB atomization device from the insertion port when the aerosol product is not inserted into the HNB atomization device. At the same time, the dust cover can also prevent the user from being scalded by the heating components in the HNB atomization device. In the prior art, the dust cover is usually arranged on the surface of the HNB atomization device, and after long-term use, the dust cover is easy to scratch the surface of the HNB atomization device, thereby affecting the appearance of the product and the user experience. CONTENT OF THE UTILITY MODEL

[0003] The present application provides an atomizer shell and an atomization device, which aims to solve the technical problem that the surface of the existing HNB atomization device is easy to be scratched by the dust cover.

[0004] Some embodiments of the present application provide an atomizer shell, comprising:

[0005] a shell assembly provided with an opening and an insertion port, the insertion port being used for inserting an aerosol product; and

[0006] a dust cover comprising a cover body and a knob connected to each other, the cover body being movably arranged in the shell assembly, and the knob being capable of driving the cover body to move when the knob is actuated, so as to open or close the insertion port;

[0007] wherein the knob passes through the opening and is exposed outside the shell assembly, and the part of the knob exposed outside the shell assembly is separated from the outer surface of the shell assembly.

[0008] In some embodiments, the shell assembly comprises a top cover, a support and a shell body.

[0009] The shell body is connected to the top cover, the opening and the insertion port are arranged on the top cover, the support is arranged on the inner side of the top cover and connected to the top cover, and a containing cavity in communication with the opening is formed between the top cover and the support, the cover body is movably arranged in the containing cavity, and the cover body is exposed outside the top cover under the support of the support.

[0010] In some embodiments, the cover body comprises a first cover part and a second cover part connected to each other.

[0011] The toggle member is arranged between the first cover part and the second cover part. When the toggle member drives the first cover part to open the socket, the first cover part shields the opening. Alternatively, when the toggle member drives the first cover part to close the socket, the second cover part shields the opening.

[0012] In some embodiments, a recess is arranged on one side of the cover body facing the top cover.

[0013] When the cover body slides in the accommodating cavity, a projection of the opening on the cover body is located in a range where the recess is located.

[0014] In some embodiments, two bosses are arranged on one side of the cover body facing the top cover, and the recess is formed between the two bosses.

[0015] Projections of the two bosses on the cover body are located outside a projection range of the opening on the cover body, and the bosses are used to contact the inner side wall of the top cover.

[0016] In some embodiments, the shell assembly further comprises a guide limiting member.

[0017] The guide limiting member is arranged between the top cover and the support member, and the cover body is limited to move in the guide limiting member to a position where the socket is opened or closed.

[0018] In some embodiments, the opening is linearly shaped.

[0019] The toggle member moves linearly along the opening to drive the cover body to move linearly and open or close the socket.

[0020] In some embodiments, the atomizer shell further comprises a first connecting member and a second connecting member which are detachably connected.

[0021] The first connecting member is arranged on the cover body, and the second connecting member is arranged on the shell assembly. The cover body is locked at a position where the socket is opened or closed through detachable connection of the first connecting member and the second connecting member.

[0022] In some embodiments, the first connecting member and the second connecting member are both magnetic elements.

[0023] The shell assembly is provided with two second connecting members, and the cover body is locked on the shell assembly through magnetic attraction between the first connecting member and the two second connecting members, respectively.

[0024] Some embodiments of the present application further provide an atomization device, comprising:

[0025] The atomizer housing in any of the above embodiments;

[0026] The atomizer housing in any of the above embodiments;

[0027] The atomizer housing in any of the above embodiments;

[0028] According to the atomizer housing in the above embodiments, since the cover body of the dustproof cover is arranged inside the shell assembly, the cover body does not contact the outer surface of the shell assembly during movement to open or close the socket. At the same time, since the part of the knob exposed outside the shell assembly is separated from the outer surface of the shell assembly, the knob does not contact the outer surface of the shell assembly during being knobbed and moved. Thus, the entire dustproof cover does not scratch the outer surface of the atomizer housing during opening or closing the socket, which is beneficial to maintaining the appearance of the atomizer housing and improving the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 is a sectional structure schematic view of an atomization device in an embodiment of the present application;

[0030] Figure 2 is a sectional structure schematic view of an atomization device in an embodiment of the present application; Figure 1 is a sectional structure schematic view of an atomization device in an embodiment of the present application;

[0031] Figure 3 is a sectional structure schematic view of an atomization device in an embodiment of the present application; Figure 2 is a sectional structure schematic view of an atomization device in an embodiment of the present application;

[0032] Figure 4 is a sectional structure schematic view of an atomization device in an embodiment of the present application; Figure 3 is a sectional structure schematic view of an atomization device in an embodiment of the present application;

[0033] Figure 5 is a sectional structure schematic view of an atomization device in an embodiment of the present application; Figure 4 is a sectional structure schematic view of an atomization device in an embodiment of the present application;

[0034] Wherein:

[0035] 1-atomizer housing; 11-shell assembly; 110-containing cavity; 111-opening; 112-socket; 113-top cover; 114-support; 115-shell body; 116-guiding limiting piece; 12-dustproof cover; 121-cover body; 1211-first covering part; 1212-second covering part; 122-knob; 123-convex; 124-recess; 131-first connecting piece; 132-second connecting piece; 2-atomization core assembly; 3-power supply assembly; 4-aerosol product. DETAILED DESCRIPTION

[0036] The application will be further described below in details with specific embodiments and with reference to the drawings. In different embodiments, similar elements are denoted by similar reference numerals. In the following embodiments, many details are described in order to provide a better understanding of the application. However, it is easy for those skilled in the art to recognize that some features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the application are not shown or described in the specification, in order to avoid the core part of the application being overwhelmed by too much description, and it is not necessary for those skilled in the art to understand the related operations in detail according to the description in the specification and the general technical knowledge in the art.

[0037] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various embodiments, and the operation steps involved in each embodiment can also be sequentially adjusted or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing one embodiment, and do not mean that the composition and / or order is necessary.

[0038] The serial numbers of the components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any order or technical meaning. The "connection" and "coupling" in this application include direct and indirect connections (couplings) unless otherwise specified.

[0039] The application provides an atomization device, as shown in the figure, which can include an atomizer housing 1, an atomizer core assembly 2 and a power supply assembly 3, the atomizer core assembly 2 and the power supply assembly 3 can be installed in the atomizer housing 1, the power supply assembly 3 can be electrically connected with the atomizer core assembly 2 to supply power to the atomizer core assembly 2, and the atomizer core assembly 2 can be used to atomize an aerosol product 4 to generate an aerosol. Figure 1 Among them, the atomizer core assembly 2 can include an atomizing container and a heating body, the atomizing container is connected in the atomizer housing 1, and the heating body is arranged in the atomizing container. When the aerosol product 4 is inserted into the atomizer housing 1, the aerosol product 4 can be accommodated in the atomizing container, and the heating body can extend into the aerosol product 4 to heat the aerosol product 4. The power supply assembly 3 can include an electrically connected battery and a circuit board, and the heating body can be electrically connected with the circuit board, so that the power supply assembly 2 can provide power for the heating body. The specific structure of the atomizer core assembly 2 and the power supply assembly 3 is not specially limited in the application.

[0040]

[0041] ​Furthermore, depending on the different structures, shapes, and arrangements of the atomizer core assembly 2 and the power supply assembly 3 within the atomizer housing 1, the atomizer housing 1 can be configured as a box-shaped, strip-shaped, or column-shaped object. This application does not impose any special restrictions on the specific shape of the atomizer housing 1.

[0042] To prevent the atomizer housing 1 from being scratched, this application also provides an atomizer housing 1, such as... Figures 2 to 4 As shown, the atomizer housing 1 may include a housing assembly 11 and a dust cover 12. The housing assembly 11 is provided with an opening 111 and a socket 112. The socket 112 can be used to insert an aerosol product 4. The dust cover 12 may include a cover body 121 and a toggle member 122 connected to each other. The cover body 121 is movably disposed inside the housing assembly 11. When the toggle member 122 is toggled, it can drive the cover body 121 to move to open or close the socket 112. The toggle member 122 passes through the opening 111 and protrudes outside the housing assembly 11, and the part of the toggle member 122 protruding outside the housing assembly 11 is detached from the outer surface of the housing assembly 11.

[0043] In this way, since the cover 121 of the dust cover 12 is located inside the housing assembly 11, the cover 121 will not come into contact with the outer surface of the housing assembly 11 when it moves to open or close the socket 112. At the same time, since the portion of the actuating member 122 protruding from the housing assembly 11 is detached from the outer surface of the housing assembly 11, the actuating member 122 will not come into contact with the outer surface of the housing assembly 11 when it is actuated and moved. Therefore, the entire dust cover 12 will not scratch the outer surface of the atomizer housing 1 during the opening or closing of the socket 112, which helps maintain the aesthetics of the atomizer housing 1 and improves the user experience.

[0044] Depending on the shape of the actuating member 122, the portion of the actuating member 122 protruding from the housing assembly 11 may exhibit different disengagement patterns from the outer surface of the housing assembly 11. For example, Figure 2 The actuating element 122 shown can be configured as a cylindrical shape protruding from the opening 111, meaning the size of the actuating element 122 protruding from the housing assembly 11 is smaller than the size of the opening 111. In this case, the actuating element 122 and the outer surface of the housing assembly 11 are independent of each other, which can prevent the actuating element 122 from scratching the outer surface of the housing assembly 11. Alternatively, to avoid a sharp feeling when the user operates the actuating element, a cap (not shown in the figure) can be provided at the top of the actuating element 122, meaning the size of the actuating element 122 protruding from the housing assembly 11 is larger than the size of the opening 111. In this case, the cap can be spaced apart from the outer surface of the housing assembly 11, thereby preventing the cap from scratching the outer surface of the housing assembly 11. This application does not impose any special restrictions on the specific shape of the actuating element 122.

[0045] In addition, the toggle member 122 can be detachably connected with the cover 121 by screwing or clamping, so that the cover 121 can be first installed into the shell assembly 11, and then the toggle member 122 is installed on the cover 121. Of course, the toggle member 122 can also be integrally formed with the cover 121, and the application does not specially limit the connection mode between the toggle member 122 and the cover 121.

[0046] In some embodiments, as shown in Figures 2 to 4 The shell assembly 11 can include a top cover 113, a support 114 and a shell body 115. The shell body 115 is connected with the top cover 113, the opening 111 and the socket 112 are arranged on the top cover 113, the support 114 is arranged on the inner side of the top cover 113 and connected with the top cover 113, and the top cover 113 and the support 114 form a containing cavity 110 which communicates with the opening 111. The cover 121 is movably arranged in the containing cavity 110, and the cover 121 is supported by the support 114 so that the toggle member 122 is exposed outside the top cover 113.

[0047] Therefore, the support 114 can support the cover 121, so that the toggle member 122 on the cover 121 can be exposed outside the top cover 113. When the top of the toggle member 122 is provided with a post cap with a size larger than that of the opening 111, the cover 121 can be supported on the support 114, so that the post cap is arranged in a spaced manner with the outer surface of the top cover 113, thereby avoiding the post cap from scratching the outer surface of the top cover 113. The support 114 can be in the form of a support plate, a support bracket or a support groove, and the top cover 113 can be detachably connected with the support 114 by screwing, clamping or inserting, so that the cover 121 can be first installed into the shell assembly 11, and then connected with the toggle member 122. Of course, the support 114 and the top cover 113 can also be integrally formed. The application does not specially limit the connection mode between the support 114 and the top cover 113.

[0048] In other embodiments, the shell assembly 11 can also include a top cover 113 and an elastic member. For example, the elastic member can be a spring, which can be connected with the top cover 113, so that the cover 121 is tightly pressed on the inner side of the top cover 113 by the elastic part of the spring, and the part of the toggle member 122 exposed from the top cover 113 is separated from the outer surface of the top cover 113, which can also avoid the toggle member 122 from scratching the outer surface of the top cover 113. The application does not specially limit the specific structure of the shell assembly 11.

[0049] In addition, the top cover 113 and the shell body 115 can be detachably connected by clamping, inserting or screwing, so as to facilitate the installation of the atomization core assembly 2 and the power supply assembly 3 into the atomizer shell 1. Of course, the shell body 115 can also include an upper shell and a lower shell, and the upper shell and the lower shell are detachably connected, so that the atomization core assembly 2 and the power supply assembly 3 can be installed into the atomizer shell 1. At this time, the top cover 113 can also be integrally formed on the top of the shell body 115. The specific structure of the shell body 115 and the connection mode between the top cover 113 and the shell body 115 are not specially limited in the present application.

[0050] In some embodiments, as shown in Figure 3 The cover body 121 can include a first cover portion 1211 and a second cover portion 1212 connected together, and the push element 122 is arranged between the first cover portion 1211 and the second cover portion 1212. When the first cover portion 1211 is opened by the push element 122, the first cover portion 1211 covers the opening 111. Alternatively, when the first cover portion 1211 is closed by the push element 122, the second cover portion 1212 covers the opening 111.

[0051] Since the push element 122 is arranged between the first cover portion 1211 and the second cover portion 1212, both sides of the push element 122 have the cover body 121. Therefore, when the first cover portion 1211 is opened, the first cover portion 1211 can be used to cover the opening 111. When the first cover portion 1211 is closed, the second cover portion 1212 can be used to cover the opening 111. In this way, by arranging the first cover portion 1211 and the second cover portion 1212 on the cover body 121, the cover body 121 can always keep the opening 111 covered by the cover body 121 during the opening and closing of the port 112, so that dust and other impurities can be prevented from falling into the atomizer shell 1 from the opening 111, thereby ensuring the cleanliness of the inside of the atomization device.

[0052] In some embodiments, as shown in Figure 4 The side of the cover body 121 facing the top cover 113 can be provided with a recess 124, and when the cover body 121 slides in the accommodating cavity 110, the projection of the opening 111 on the cover body 121 is located in the range of the recess 124.

[0053] Since the cover 121 is supported on the inner side of the top cover 113 by the support 114, the side of the cover 121 facing the top cover 113 is prone to being abraded after long-term use. The present application sets a recess 124 on the side of the cover 121 facing the top cover 113, so that the recess 124 does not contact the inner side wall of the top cover 113, thereby avoiding the side of the cover 121 facing the top cover 113 from being abraded. At the same time, the projection of the opening 111 on the cover 121 is located in the range of the recess 124, so that when a user observes the cover 121 from the outside of the top cover 113, the part of the cover 121 presented is always the recess 124. Therefore, after long-term use, neither the outer surface of the atomizer shell 1 nor the surface of the dust cover 12 on the side facing the top cover 113 has the problem of being abraded. That is, the surface part visible to the user of the atomization device is not abraded, thereby improving the aesthetics and durability of the atomizer shell 1.

[0054] In some embodiments, as shown in Figure 4 the side of the cover 121 facing the top cover 113 can be provided with two bosses 123, and the recess 124 is formed between the two bosses 123; the projection of the two bosses 123 on the cover 121 is located outside the projection range of the opening 111 on the cover 121, and the boss 123 is used to contact the inner side wall of the top cover 113.

[0055] By providing two bosses 123 on the cover 121, the surface of the cover 121 between the two bosses 123 can be recessed. Since the projection of the two bosses 123 on the cover 121 is located outside the projection range of the opening 111 on the cover 121, when the cover 121 contacts the inner side wall of the top cover 113, the contact part is always located outside the opening 111 of the top cover 113, so that the wear between the boss 123 and the inner side wall of the top cover 113 cannot be seen by the user, thereby avoiding the problem of abrasion in the visible range of the atomizer shell 1.

[0056] In other embodiments, the boss 123 on the cover 121 can also be provided in a ball structure, so that the friction between the cover 121 and the inner side wall of the top cover 113 is rolling friction, thereby reducing the friction resistance between the cover 121 and the inner side wall of the top cover 113. The present application does not specially limit the specific structure of the recess 124 formed on the cover 121.

[0057] In some embodiments, as shown in Figure 5 the shell assembly 11 can further include a guide limiting piece 116; the guide limiting piece 116 is arranged between the top cover 113 and the support 114, and the cover 121 is limited to move to the position of opening or closing the socket 112 in the guide limiting piece 116.

[0058] For example, the guide limiting member 116 can be arranged on the inner side wall of the top cover 113, and the guide limiting member 116 can be in the shape of a waist-shaped protrusion arranged around the opening 111 and the spout 112, so that the cover body 121 can be limited to slide in the waist-shaped protrusion to the position of opening or closing the spout 112. Of course, the guide limiting member 116 can also be arranged on the support member 114, and the guide limiting member 116 can also be in the shape of a rectangle. The present application does not specially limit the specific position and specific shape of the guide limiting member 116.

[0059] In other embodiments, the opening 111 can also be used as the guide limiting member 116 of the dustproof cover 12. For example, the opening 111 can be arranged in the shape of a long strip, so that the actuator 122 can be oriented to move in the long strip-shaped opening 111. At the same time, the two ends of the opening 111 can be used as the limiting part of the actuator 122, when the actuator 122 moves to one end of the opening 111, the cover body 121 can open the spout 112; when the actuator 122 moves to the other end of the opening 111, the cover body 121 can close the spout 112.

[0060] In some embodiments, as shown in Figures 2 to 4 , the shape of the opening 111 can be arranged in a straight line; the actuator 122 moves in a straight line along the opening 111 to drive the cover body 121 to move in a straight line and open or close the spout 112.

[0061] Therefore, the straight-line-shaped opening 111 can make the actuator 122 move in a straight line to drive the cover body 121 to open or close the spout 112. At this time, the user can pull the actuator 122 in a straight line, which is more labor-saving. In other embodiments, the shape of the opening 111 can also be arranged in an arc shape, so that the actuator 122 moves along the arc to drive the cover body 121 to move along the arc or rotate to open or close the spout 112. The present application does not specially limit the specific shape of the opening 111.

[0062] In some embodiments, as shown in Figure 3 and Figure 4 , the atomizer shell 1 can also include a first connecting member 131 and a second connecting member 132 which are detachably connected; the first connecting member 131 is arranged on the cover body 121, and the second connecting member 132 is arranged on the shell assembly 11, and the cover body 121 is locked in the position of opening or closing the spout 112 through the detachable connection of the first connecting member 131 and the second connecting member 132.

[0063] In this way, the cover 121 can be locked in the position of opening or closing the socket 112 to avoid the problem that the cover 121 is loose and causes the socket 112 to be not tightly closed. Or, after the cover 121 opens the socket 112, the cover 121 is stuck with the aerosol product 4 due to looseness, causing the aerosol product 4 to be not easily pulled out. Wherein, the first connecting piece 131 can be provided as a plug, and the second connecting piece 132 can be provided as a socket. When the plug is inserted into the socket, the cover 121 can be locked on the shell assembly 11. The specific structure of the first connecting piece 131 and the second connecting piece 132 is not specially limited in the application.

[0064] In some embodiments, the first connecting piece 131 and the second connecting piece 132 are both magnetic elements; the shell assembly 11 is provided with two second connecting pieces 132, and the cover 121 is locked on the shell assembly 11 by the magnetic attraction force between the first connecting piece 131 and the two second connecting pieces 132.

[0065] Wherein, the two second connecting pieces 132 can be spaced apart on the support 114. When the first connecting piece 131 is attracted to one of the second connecting pieces 132, the cover 121 can be locked in the position of opening the socket 112. When the first connecting piece 131 is attracted to the other second connecting piece 132, the cover 121 can be locked in the position of closing the socket 112. In other embodiments, the two second connecting pieces 132 can also be spaced apart on the top cover 113, so that the cover 121 can be attracted and locked on the top cover 113. The specific position of the second connecting piece 132 is not specially limited in the application.

[0066] The first connecting piece 131 and the second connecting piece 132 adopt the structure of magnetic elements, which not only can lock the moving position of the dustproof cover 12, but also under the attraction of the magnetic elements, when the first connecting piece 131 moves close to the second connecting piece 132, the first connecting piece 131 can quickly move to the position of being attracted to the second connecting piece 132, so that the knob 122 has a jumping feeling, to improve the user's experience.

[0067] The above application of specific examples to the utility model is described, which is only used to help understand the utility model, and does not limit the utility model. For those skilled in the art to which the utility model belongs, according to the idea of the utility model, a number of simple deductions, deformations or substitutions can be made.

Claims

1. An atomizer housing characterized by, The aerosolizer shell comprises: a shell assembly provided with an opening and a socket for inserting an aerosol product; and a dust cover comprising a cover body and a knob connected to each other, the cover body is movably arranged in the shell assembly, and the knob can drive the cover body to move when the knob is actuated to open or close the socket; wherein the knob passes through the opening and is exposed outside the shell assembly, and the part of the knob exposed outside the shell assembly is separated from the outer surface of the shell assembly.

2. The atomizer housing of claim 1, wherein, The shell assembly comprises a top cover, a support and a shell body; the shell body is connected to the top cover, the opening and the socket are arranged on the top cover, the support is arranged on the inner side of the top cover and connected to the top cover, and the top cover and the support form a receiving cavity in communication with the opening, the cover body is movably arranged in the receiving cavity, and the cover body is exposed outside the top cover under the support of the support.

3. The atomizer housing of claim 2, wherein, The cover body comprises a first cover part and a second cover part connected to each other; the knob is arranged between the first cover part and the second cover part, when the knob drives the first cover part to open the socket, the first cover part shields the opening; or when the knob drives the first cover part to close the socket, the second cover part shields the opening.

4. The atomizer housing of claim 2, wherein, The side of the cover body facing the top cover is provided with a recess; when the cover body slides in the receiving cavity, the projection of the opening on the cover body is located in the range of the recess.

5. The atomizer housing of claim 4, wherein, The side of the cover body facing the top cover is provided with two bosses, and the recess is formed between the two bosses; the projections of the two bosses on the cover body are located outside the projection range of the opening on the cover body, and the bosses are used to contact the inner side wall of the top cover.

6. The atomizer housing of claim 2, wherein, The shell assembly further comprises a guide limiting piece; the guide limiting piece is arranged between the top cover and the support, and the cover body is limited to move in the guide limiting piece to the position of opening or closing the socket.

7. The atomizer housing of claim 1, wherein, The shape of the opening is linear; the knob moves linearly along the opening to drive the cover body to move in a linear direction and open or close the socket.

8. The atomizer housing of any of claims 1-7, wherein, The aerosolizer shell further comprises a first connecting piece and a second connecting piece connected detachably; the first connecting piece is arranged on the cover body, the second connecting piece is arranged on the shell assembly, and the cover body is locked at the position of opening or closing the socket through the detachable connection of the first connecting piece and the second connecting piece.

9. The atomizer housing of claim 8, wherein, The first connecting piece and the second connecting piece are both magnetic elements; the shell assembly is provided with two second connecting pieces, and the cover body is locked on the shell assembly through the magnetic attraction force between the first connecting piece and the two second connecting pieces respectively.

10. An atomising device characterised in that, The aerosolizer shell comprises: any one of claims 1 to 9; an atomizer core assembly installed in the aerosolizer shell, the atomizer core assembly is used for atomizing an aerosol product; and A power supply assembly is installed in the atomizer housing, and the power supply assembly is electrically connected with the atomization core assembly to supply power to the atomization core assembly.