Atomizer
The detachable housing design and connectors solve the problem of cumbersome maintenance of the atomizer body, enabling rapid repair and efficient assembly, thus improving user experience and safety.
Patent Information
- Application Number
- CN202520332985.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-27
AI Technical Summary
In existing atomizers, the repair and maintenance of the atomizer body located in the installation space is cumbersome and complicated.
The design features a detachable first and second shell, allowing for quick disassembly and assembly of the atomizer body via connectors. Combined with a limiting structure and connecting straps, this ensures the stability of the atomizer body and facilitates easy maintenance.
It simplifies the maintenance process, improves maintenance and assembly efficiency, enhances cleaning capabilities, and ensures safety and stability of the atomizer.
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Figure CN223943793U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of atomization equipment, and more particularly to an atomizer. BACKGROUND
[0002] The atomizer is a device that converts an aerosol substrate into an aerosol for a user to inhale by heating. In the related art, the atomizer includes an atomization body, a suction nozzle, and a shell. The atomization body has an atomization channel. The suction nozzle is arranged on the atomization body and communicates with the atomization channel. The shell has a mounting space. An installation opening that communicates with the mounting space is arranged on an end face of the shell. The atomization body is mounted into the mounting space through the installation opening. The suction nozzle extends to outside of the mounting space through the installation opening.
[0003] When the atomization body located in the mounting space fails, the suction nozzle needs to be removed first, and then the atomization body in the mounting space needs to be taken out for maintenance. The maintenance operation is complicated. CONTENT OF THE UTILITY MODEL
[0004] The purpose of the embodiment of the application is to provide an atomizer, which aims to solve the technical problem of complicated maintenance of the atomization body located in the mounting space in the related art.
[0005] To achieve the above purpose, according to one aspect of the application, an atomizer is provided, which includes: an atomization body, configured to convert an aerosol substrate into an aerosol; a shell, including a first shell and a second shell that are detachably connected, a surface of the first shell close to the second shell being a first surface, and a surface of the second shell close to the first shell being a second surface; the first surface is provided with a first mounting groove, and the second surface is provided with a second mounting groove, the first mounting groove and the second mounting groove being communicated and forming a mounting space, and the atomization body being arranged in the mounting space.
[0006] Optionally, the atomizer further includes a connecting piece arranged on the shell, configured to detachably connect the first shell and the second shell.
[0007] Optionally, the connecting piece is a connecting band, and the connecting band is connected to the first shell and the second shell by winding to detachably connect the first shell and the second shell.
[0008] Optionally, the connecting band has a first connecting section and a second connecting section that are detachably connected, and the connecting band is connected to and wound around the first shell and the second shell through the first connecting section and the second connecting section.
[0009] Optionally, an outer surface of the shell is provided with a mounting groove, and the connecting band is embedded into the mounting groove.
[0010] Optionally, one of the first surface and the second surface is provided with a limiting protrusion, and the other is provided with a limiting recess; when the first shell and the second shell are connected, the limiting protrusion is inserted into the limiting recess; when the first shell and the second shell are separated, the limiting protrusion is extracted out of the limiting recess.
[0011] Optionally, the limiting protrusion is matched with the limiting recess; and / or, the number of the limiting protrusions is multiple, and part of the limiting protrusions and the other part of the limiting protrusions are respectively located on opposite sides of the mounting space; the number of the limiting recesses is the same as the number of the limiting protrusions, and the multiple limiting protrusions are respectively and one-to-one matched with the multiple limiting recesses.
[0012] Optionally, the atomizer further comprises a suction nozzle, the suction nozzle is arranged on the atomizing body; the shell is provided with an outward extending opening in communication with the mounting space, the suction nozzle extends out of the mounting space through the outward extending opening, and the suction nozzle is used for plugging the outward extending opening; an inner wall of the outward extending opening is used for blocking the movement of the suction nozzle out of the mounting space; and / or, the first surface and the second surface are kept in close contact.
[0013] Optionally, the shell is a degradable structure.
[0014] Optionally, the shell is a softwood structure.
[0015] The atomizer provided by the application has the beneficial effects that when the atomizing body fails, the first shell and the second shell are directly separated, so that the atomizing body located in the mounting space is directly exposed, and the maintenance personnel can quickly locate the fault point and perform maintenance; the structure design that the first shell and the second shell are detachably connected not only saves the maintenance time, improves the maintenance efficiency, but also reduces the maintenance difficulty. Meanwhile, in the production and assembly process, the first shell and the second shell can be processed respectively and then assembled, so that the assembly efficiency of the atomizer is effectively improved. In addition, the detachable first shell and the second shell enable the user to more thoroughly clean each corner inside the mounting space according to the use demand, avoid the influence of the residual aerosol substrate and aerosol condensate on the atomization effect and the sanitary condition due to long-term use, and effectively guarantee the safety of use. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only some embodiments of the application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0017] Figure 1 The structure diagram of the atomizer provided by the embodiments of the application is shown in the figure;
[0018] Figure 2An explosion schematic diagram of the atomizer provided for the embodiment of the present application;
[0019] Figure 3 A structural schematic diagram of the first shell provided for the embodiment of the present application;
[0020] Figure 4 A structural schematic diagram of the atomization body, the suction nozzle and the second shell provided for the embodiment of the present application after being assembled;
[0021] Figure 5 A structural schematic diagram of the connecting piece provided for the embodiment of the present application with the first connecting segment and the second connecting segment;
[0022] Figure 6 A structural schematic diagram of the atomizer provided for the embodiment of the present application after hiding the connecting piece;
[0023] Figure 7 A structural schematic diagram of the atomizer provided for the embodiment of the present application after hiding the suction nozzle;
[0024] Figure 8 A Figure 4 An enlarged schematic diagram of A in the above figure;
[0025] The label details involved in the above figures are as follows:
[0026] 100, atomization body;
[0027] 200, shell; 210, first shell; 211, first surface; 212, first mounting groove; 213, limiting protrusion; 220, second shell; 221, second surface; 222, second mounting groove; 223, limiting groove; 230, mounting space; 240, mounting groove; 250, outward extending port;
[0028] 300, connecting piece; 310, connecting body; 320, first connecting segment; 330, second connecting segment;
[0029] 400, suction nozzle; 410, limiting portion. DETAILED DESCRIPTION
[0030] In order to make the technical problems, technical solutions and beneficial effects of the present application more clearly understood, the present application will be further described in detail below in combination with the figures and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.
[0031] It should be noted that when an element is referred to as being "fixed" or "set" on another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or indirectly connected to the other element. The embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0032] It should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0033] In addition, the terms "first", "second", are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.
[0034] As described in the background, the atomizer is a device that converts an aerosol substrate into an aerosol for a user to inhale by heating. In the related art, the atomizer includes an atomizing body, a suction nozzle, and a housing, wherein the atomizing body has an atomizing channel, the suction nozzle is provided on the atomizing body and communicates with the atomizing channel; the housing has a mounting space, and an end face of the housing is provided with a mounting opening communicating with the mounting space, the atomizing body is mounted into the mounting space through the mounting opening, and the suction nozzle extends out of the mounting space through the mounting opening. When the atomizing body located in the mounting space fails, the suction nozzle needs to be removed first, and then the atomizing body in the mounting space is taken out for maintenance, and the maintenance operation is complicated.
[0035] Reference Figures 1 to 4In order to solve the above problems, according to one aspect of the present application, the embodiment of the present application provides an atomizer, which comprises an atomizing body 100 and a shell 200, wherein the atomizing body 100 is used for converting an aerosol substrate into an aerosol; the shell 200 comprises a first shell 210 and a second shell 220 which are detachably connected, a surface of the first shell 210 close to the second shell 220 is a first surface 211, and a surface of the second shell 220 close to the first shell 210 is a second surface 221; the first surface 211 is provided with a first mounting groove 212, the second surface 221 is provided with a second mounting groove 222, the first mounting groove 212 and the second mounting groove 222 are communicated and form a mounting space 230, and the atomizing body 100 is arranged in the mounting space 230.
[0036] In the embodiment of the present application, the atomizer is a disposable atomizer or a reusable atomizer; the atomizing body 100 comprises an atomizing core. The first shell 210 and the second shell 220 can be detachably connected in a connection mode such as buckle connection, threaded connection, magnetic attraction connection, bolt connection or snap connection. In addition, in order to ensure the stability of the atomizing body 100 in the mounting space 230, the atomizing body 100 is kept in close contact with the inner wall surface of the mounting space 230.
[0037] When the atomizing body 100 fails, the first shell 210 and the second shell 220 are directly separated, so that the atomizing body 100 located in the mounting space 230 is directly exposed, and a maintenance worker can quickly locate the fault point and perform maintenance; the detachable connection of the first shell 210 and the second shell 220 not only saves maintenance time, improves maintenance efficiency, but also reduces maintenance difficulty. At the same time, during the production and assembly process, the first shell 210 and the second shell 220 can be processed respectively, and then assembled, which effectively improves the assembly efficiency of the atomizer. In addition, the detachable connection of the first shell 210 and the second shell 220 enables the user to more thoroughly clean each corner inside the mounting space 230 according to the use requirement, avoids the influence of residual aerosol substrate and aerosol condensate on the atomization effect and sanitary condition due to long-term use, and effectively guarantees the safety of use.
[0038] With reference to Figures 1 to 4 In one embodiment, the atomizer further comprises a connecting piece 300, which is arranged on the shell 200 and used for detachably connecting the first shell 210 and the second shell 220.
[0039] In the embodiment, the connecting member 300 can include a magnetic piece and a magnet, the magnetic piece is installed on the first surface 211, the magnet is installed on the second surface 221, and the first shell 210 and the second shell 220 are detachably connected by the magnetic attraction of the magnetic piece and the magnet. The connecting member 300 can also be a buckle, the buckle is arranged on the first surface 211, and a card slot for inserting or extracting the buckle is arranged on the second surface 221, and the first shell 210 and the second shell 220 are detachably connected by the buckles and the card slots. The connecting member 300 can also be a screw, and the first shell 210 and the second shell 220 are provided with threaded holes, and the first shell 210 and the second shell 220 are detachably connected by screwing the screw into or out of the two threaded holes.
[0040] The connecting member 300 is arranged to not only enable the first shell 210 and the second shell 220 to be detachably connected, but also to help enhance the connection strength of the first shell 210 and the second shell 220, thereby improving the reliability of the overall structure of the atomizer.
[0041] Reference Figures 1 to 4 In an embodiment, the connecting member 300 is a connecting band, and the connecting band enables the first shell 210 and the second shell 220 to be detachably connected by being wound around the first shell 210 and the second shell 220.
[0042] In the embodiment, the connecting band is a paper bag, a silica gel band, a bandage, or other types of connecting bands, which are not limited herein. The connecting band is wound in a ring shape to enable the first shell 210 and the second shell 220 to be detachably connected; specifically, the connecting band is wound in a ring shape around the first shell 210 and the second shell 220, and is tightly stacked in a circle by circle manner. To ensure reliable connection of the first shell 210 and the second shell 220, when the connecting band is wound to a suitable number of turns, the remaining part of the connecting band can be inserted into the wound connecting band for fixation, or the remaining part of the connecting band can be fixed to the wound connecting band by knotting, or the remaining part of the connecting band can be fixed to the wound connecting band by adhesive tape. In other embodiments, the connecting band can also be wound in a spiral shape or an eight-shaped manner to enable the first shell 210 and the second shell 220 to be detachably connected.
[0043] In one aspect, the connection by winding is relatively simple and direct, without the need for additional tools or complex operation procedures, and the first shell 210 and the second shell 220 can be connected together; when disassembly is needed, the first shell 210 and the second shell 220 can be easily separated by unwinding the connection band, which helps to improve the installation and disassembly efficiency. On the other hand, during the connection of the first shell 210 and the second shell 220, the winding position and the number of winding of the connection band can be adjusted at any time according to actual needs to adapt to different installation requirements and the shape of the shell 200, facilitating flexible adjustment. In another aspect, during the winding of the connection band, a buffer layer is formed between the first shell 210 and the second shell 220, and when the atomizer is impacted or vibrated by external force, the connection band can absorb and disperse part of the energy, reducing the impact on the atomizing body 100 in the installation space 230, and protecting the atomizing body 100.
[0044] Referring to Figures 1 to 5 In one embodiment, the connection band has a detachable first connection section 320 and a second connection section 330, and the connection band is connected and wound to fix the first shell 210 and the second shell 220 through the first connection section 320 and the second connection section 330.
[0045] In this embodiment, the connection band further includes a connection body 310, and the first connection section 320 and the second connection section 330 are respectively fixedly connected at opposite ends of the connection body 310; the first connection section 320 and the second connection section 330 can be respectively a hook surface and a loop surface in a magic tape, or the first connection section 320 and the second connection section 330 can be respectively two magnetic strips that are magnetically attracted to each other, or the first connection section 320 and the second connection section 330 can be respectively provided with a male buckle and a female buckle.
[0046] When the connection band is wound to fix the first shell 210 and the second shell 220, the connection band is first wound around the first shell 210 and the second shell 220; when the connection band is wound to a suitable number of turns, the first connection section 320 and the second connection section 330 are connected, and at this time the connection band is stably wound to fix the first shell 210 and the second shell 220. The first connection section 320 and the second connection section 330 used in cooperation help to enhance the connection strength of the first shell 210 and the second shell 220, thereby improving the reliability of the overall structure of the atomizer.
[0047] Referring to Figures 1 to 6 In one embodiment, the outer surface of the shell 200 is provided with a mounting groove 240, and the connection band is embedded into the mounting groove 240.
[0048] In the embodiment, the mounting groove 240 is arranged on the first shell 210 and the second shell 220, and the connecting band is in close contact with the groove bottom of the mounting groove 240. On the one hand, the mounting groove 240 provides a mounting position for the connecting band, ensures that the connecting band does not shake and move randomly during winding, and can accurately connect the first shell 210 and the second shell 220 according to the design requirements, thereby improving the convenience and accuracy of assembly. On the other hand, the connecting band is embedded in the mounting groove 240, which is more closely and stably contacted with the shell 200, and compared with being directly wound on the surface of the shell 200, the possibility of sliding or displacement of the connecting band during use is reduced, thereby making the connection of the first shell 210 and the second shell 220 more stable and helping to improve the stability of the entire atomizer. On the other hand, the mounting groove 240 can also play a certain protective role for the connecting band, avoiding direct contact with external objects during daily use and causing wear and tear, thereby prolonging the service life of the connecting band; at the same time, it also prevents the connecting band from causing friction damage to the surface of the shell 200. In addition, the mounting groove 240 can also hide the connecting band, reducing the conspicuousness of the shell 200.
[0049] With reference to Figures 1 to 4 In an embodiment, one of the first surface 211 and the second surface 221 is provided with a limiting protrusion 213, and the other is provided with a limiting groove 223; when the first shell 210 and the second shell 220 are connected, the limiting protrusion 213 is inserted into the limiting groove 223; when the first shell 210 and the second shell 220 are separated, the limiting protrusion 213 is extracted out of the limiting groove 223.
[0050] In the embodiment, the limiting protrusion 213 is fixedly installed on the first surface 211 and is an integral molded part with the first shell 210, and the limiting groove 223 is arranged on the second surface 221; in other embodiments, the limiting groove 223 can also be arranged on the first surface 211, and the limiting protrusion 213 is fixedly installed on the second surface 221.
[0051] The limiting protrusion 213 and the limiting groove 223 used in cooperation not only can provide accurate positioning for the connection of the first shell 210 and the second shell 220, but also can ensure that the first shell 210 and the second shell 220 can be accurately docked when connected; at the same time, the limiting protrusion 213 and the limiting groove 223 can also play a guiding role during the connection of the first shell 210 and the second shell 220, guiding the first shell 210 and the second shell 220 to smoothly complete the connection, thereby reducing the assembly difficulty and improving the assembly efficiency. In addition, after the limiting protrusion 213 is inserted into the limiting groove 223, the relative movement of the first shell 210 and the second shell 220 can be limited, so that the connection of the first shell 210 and the second shell 220 is more stable, which helps to improve the structural stability of the atomizer.
[0052] With referenceFigures 1 to 4 In an embodiment, the first surface 211 and the second surface 221 are kept in abutment. The abutted first surface 211 and the second surface 221 can effectively isolate the installation space 230 from the external environment, which is not only conducive to enhancing the sealing performance of the installation space 230 and reducing the influence of external factors on the atomization body 100, such as preventing impurities such as dust and water vapor from entering the installation space 230, but also conducive to maintaining the internal environment of the installation space 230 stable during the atomization process, ensuring that the aerosol substrate can be converted into an aerosol under relatively stable conditions, thereby improving the atomization efficiency and atomization quality, and making the generated aerosol more uniform and delicate.
[0053] With reference to Figures 1 to 4 In an embodiment, the limiting protrusions 213 are adapted to the limiting grooves 223. In this embodiment, when the first shell 210 and the second shell 220 are connected, the limiting protrusions 213 are in abutment with the groove walls of the limiting grooves 223.
[0054] On the one hand, the adaptation of the limiting protrusions 213 to the limiting grooves 223 means that the sizes, shapes, and other aspects of the two are precisely matched; when the first shell 210 and the second shell 220 are connected, the limiting protrusions 213 can be tightly inserted into the limiting grooves 223 without leaving too much gap, thereby effectively limiting the relative movement of the first shell 210 and the second shell 220 in various directions, making the connection of the first shell 210 and the second shell 220 more stable and reliable. On the other hand, the adapted limiting protrusions 213 and limiting grooves 223 can better cover and protect each other when connected, thereby reducing the possibility of external dust, debris, moisture, and the like entering the interior of the installation space 230, and playing a certain protective role for the atomization body in the installation space 230, which helps to prolong the service life of the atomizer. In addition, the surfaces of the limiting protrusions 213 close to the limiting grooves 223 are rounded.
[0055] With reference to Figures 1 to 4 In an embodiment, the number of limiting protrusions 213 is multiple, and part of the limiting protrusions 213 and another part of the limiting protrusions 213 are respectively located on opposite sides of the installation space 230; the number of limiting grooves 223 is the same as the number of limiting protrusions 213, and the multiple limiting protrusions 213 are respectively and one-to-one corresponding to the multiple limiting grooves 223.
[0056] In this embodiment, the number of limiting protrusions 213 is three, of which two limiting protrusions 213 are located on one side of the installation space 230, and the other limiting protrusion 213 is located on the other side of the installation space 230; in other embodiments, the number of limiting protrusions 213 can also be two, four or more.
[0057] The plurality of limiting protrusions 213 are used in cooperation with the corresponding limiting grooves 223, which not only forms a plurality of connection points between the first shell 210 and the second shell 220, provides more extensive support and fixation, but also more effectively limits the relative displacement of the first shell 210 and the second shell 220 in various directions compared with a single limiting protrusion 213, so that the connection of the first shell 210 and the second shell 220 is more stable, and the risk of separation or loosening of the first shell 210 and the second shell 220 due to external force is reduced. At the same time, a more compact sealing structure can be formed between the first shell 210 and the second shell 220, so as to better fill the gap between the first shell 210 and the second shell 220, reduce the possibility of external dust, moisture, impurities, etc. entering the installation space 230, improve the sealing and protection performance of the atomizer, and protect the atomizing body from the influence of the external environment.
[0058] With reference to Figures 1 to 8 In an embodiment, the atomizer further comprises a suction nozzle 400, which is arranged on the atomizing body 100; the shell 200 is provided with an outward extending opening 250 which communicates with the installation space 230, and the suction nozzle 400 extends to the outside of the installation space 230 through the outward extending opening 250, and is used to block the outward extending opening 250; the inner wall of the outward extending opening 250 is used to block the movement of the suction nozzle 400 towards the outside of the installation space 230.
[0059] In the embodiment, the atomizing body 100 has an atomizing channel, and the suction nozzle 400 is arranged on the atomizing body 100 and communicates with the atomizing channel; at the same time, the suction nozzle 400 can be made of plastic, cork, silica gel or other materials. Part of the structure of the outward extending opening 250 is arranged on the first shell 210, and the other part of the structure is arranged on the second shell 220; the peripheral surface of the suction nozzle 400 is in close contact with the inner wall surface of the outward extending opening 250 to block the outward extending opening 250. The suction nozzle 400 has a limiting portion 410, which is located in the installation space 230, and the outer diameter of the limiting portion 410 is greater than the caliber of the outward extending opening 250, and the surface of the limiting portion 410 away from the atomizing body 100 is in close contact with the inner wall surface of the installation space 230 through which the outward extending opening 250 penetrates.
[0060] When assembling the atomizer, first, the suction nozzle 400 is mounted to the atomizing body 100, then the assembled suction nozzle 400 and atomizing body 100 are mounted into the first mounting groove 212 or the second mounting groove 222, then the limiting protrusion 213 is aligned with the limiting groove 223, and the first shell 210 and the second shell 220 are pushed towards each other until the limiting protrusion 213 is inserted into the limiting groove 223, at which time the first shell 210 and the second shell 220 are preliminarily connected; finally, the first shell 210 and the second shell 220 are connected by winding the connecting band, so that the first shell 210 and the second shell 220 are stably connected.
[0061] The suction nozzle 400 extends out of the mounting space 230 and is effectively limited by the outward extension opening 250, which helps the suction nozzle 400 to better contact and adapt to the user's oral cavity, facilitating the user to inhale the aerosol. At the same time, the suction nozzle 400 blocks the outward extension opening 250, which can prevent the aerosol after atomization from leaking out of the gap between the outward extension opening 250 and the suction nozzle 400, ensuring that the user can fully inhale the aerosol generated by atomization, and improving the inhalation effect and experience.
[0062] Referring to Figures 1 to 8 In an embodiment, the shell 200 is a degradable structure. In this embodiment, the shell 200 is made of a material that can be degraded, such as polyhexanedioic acid, polybutylene terephthalate, polybutylene succinate, polypropylene carbonate, or wood material. The shell 200 is a degradable structure, which can take advantage of its degradable properties to reduce garbage accumulation, reduce environmental pollution, and promote carbon recycling.
[0063] Referring to Figures 1 to 8 In an embodiment, the shell 200 is a softwood structure. In this embodiment, the shell 200 is made of softwood material. The above structure design not only takes advantage of the degradable properties of softwood to make the shell 200 fully degradable, but also takes advantage of the characteristics of softwood that is easy to be manufactured into a shape, thereby reducing the manufacturing and assembly difficulty, and manufacturing various shapes of the shell 200 to meet the different needs of users. In addition, the above structure design can also improve the touch feeling of the user and improve the user's comfort.
[0064] In summary, the atomizer provided by the embodiment has at least the following beneficial technical effects: when the atomization body 100 fails, the first shell 210 and the second shell 220 are directly separated, the atomization body 100 located in the mounting space 230 is directly exposed, and the maintenance personnel can quickly locate the fault point and perform maintenance; the detachable connection of the first shell 210 and the second shell 220 not only saves maintenance time and improves maintenance efficiency, but also reduces maintenance difficulty. At the same time, during the production and assembly process, the first shell 210 and the second shell 220 can be processed respectively and then assembled, which effectively improves the assembly efficiency of the atomizer. In addition, the detachable connection of the first shell 210 and the second shell 220 enables the user to more thoroughly clean each corner inside the mounting space 230 according to the use requirements, avoids the influence of residual aerosol substrate and aerosol condensate on the atomization effect and sanitary condition due to long-term use, and effectively ensures the safety of use.
[0065] The above is only a preferred embodiment of the present application, and is not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An atomizer characterized by, The atomizer comprises: an atomization body for converting an aerosol substrate into an aerosol; a housing comprising a first shell and a second shell detachably connected, a first surface of the first shell being proximate to a surface of the second shell, a second surface of the second shell being proximate to a surface of the first shell; the first surface is provided with a first mounting groove, the second surface is provided with a second mounting groove, the first mounting groove and the second mounting groove are in communication and form a mounting space, and the atomization body is arranged in the mounting space.
2. The atomizer of claim 1, wherein, The atomizer further comprises a connecting member arranged on the housing for detachably connecting the first shell and the second shell.
3. The atomizer of claim 2, wherein, The connecting member is a connecting band, and the first shell and the second shell are detachably connected by winding the connecting band around the first shell and the second shell.
4. The atomizer of claim 3, wherein, The connecting band has a first connecting section and a second connecting section detachably connected, and the first shell and the second shell are fixed by winding the connecting band around the first connecting section and the second connecting section.
5. The atomizer of claim 3, wherein, An outer surface of the housing is provided with a mounting groove, and the connecting band is embedded into the mounting groove.
6. The atomizer of claim 1, wherein, One of the first surface and the second surface is provided with a limiting protrusion, and the other is provided with a limiting groove; When the first shell and the second shell are connected, the limiting protrusion is inserted into the limiting groove; when the first shell and the second shell are separated, the limiting protrusion is extracted out of the limiting groove.
7. The atomizer of claim 6, wherein, The limiting protrusion is matched with the limiting groove; and / or, The number of the limiting protrusions is multiple, and part of the limiting protrusions and another part of the limiting protrusions are respectively located on opposite sides of the mounting space; the number of the limiting grooves is the same as the number of the limiting protrusions, and multiple limiting protrusions are respectively arranged one-to-one corresponding to multiple limiting grooves.
8. The atomizer of claim 1, wherein, The atomizer further comprises a mouthpiece arranged on the atomization body; the housing is provided with an outer extension opening in communication with the mounting space, the mouthpiece extends out of the mounting space through the outer extension opening, and the outer extension opening is used for blocking the outer extension opening; an inner wall of the outer extension opening is used for blocking the movement of the mouthpiece towards the outside of the mounting space; and / or, The first surface and the second surface remain adhered.
9. The atomizer of any of claims 1-8, wherein, The housing is a degradable structure.
10. The atomizer of claim 9, wherein, The housing is a softwood structure.