Electronic atomizer
Patent Information
- Application Number
- CN202521867427.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-08-29
AI Technical Summary
[0003]本申请的主要目的是提供一种电子雾化器,解决装饰板在外壳上连接效果不好的技术问题
[0022]在本申请电子雾化器中,通过装饰板同时连接外壳和吸嘴,能够优化受力,增强装饰板在外壳上的连接效果。外壳和吸嘴的双连接点分散了固定应力,单个连接部位所受的拉扯、挤压应力大幅降低,即便某一连接点存在微小间隙,另一连接点也能形成冗余固定,减少整体脱落风险。插接连接无需像卡扣那样预留卡扣臂形变空间或脱扣操作空间,插接的配合精度可通过插接柱与插接口的尺寸公差直接控制,更适配内腔狭小的场景。吸嘴作为电子雾化器的常规部件,本身需与外壳稳定连接,当装饰板与吸嘴插接时,相当于借助了吸嘴与外壳的既有固定关系,吸嘴自身的稳固性会同步约束装饰板的位移。
Smart Images

Figure CN224805904U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of atomization technology, and in particular to an electronic atomizer. Background Technology
[0002] Some e-cigarettes have decorative panels attached to their outer shells to enhance their appearance and increase their appeal to consumers. However, in some e-cigarettes with limited internal space, the shell must accommodate core components such as the battery and coil, leaving little space for the decorative panel's locking mechanism. In such cases, the design of the locking structure is severely limited. It's impossible to use a sufficient number of clips to distribute stress, nor is it possible to make the clips thick or long enough to ensure a strong engagement. Often, only miniaturized and simplified clip designs are used. These clips have a small contact area with the shell, resulting in insufficient gripping force. Even if they can temporarily secure the device initially, the engagement weakens over time, eventually causing the decorative panel to lift off the shell or even detach completely. Utility Model Content
[0003] The main objective of this application is to provide an electronic atomizer that solves the technical problem of poor adhesion of decorative panels to the outer casing.
[0004] To achieve the above objectives, this application proposes an electronic atomizer, the electronic atomizer comprising:
[0005] The outer shell has an opening on its top end face and a clearance opening on the peripheral side wall of the top end of the outer shell.
[0006] A suction nozzle, the bottom end of which is fitted into the top end of the outer shell, has an insertion interface on the peripheral side wall of the bottom end of the suction nozzle, the insertion interface being opposite to the clearance opening; and
[0007] A decorative panel is disposed on one side of the outer casing. The decorative panel includes an integrally formed panel body and a snap-fit component, which snaps into the outer casing.
[0008] The decorative panel also includes a plug-in post, which is integrally formed with the panel body. One end of the plug-in post is connected to the top of the panel body, and the other end of the plug-in post is inserted into the suction nozzle through the clearance opening and the insertion interface. The plug-in post is connected to the insertion interface.
[0009] Optionally, the plug post is interference-fitted with the plug interface, the shape of the plug interface is adapted to the shape of the plug post, the plug interface is racetrack-shaped or elliptical, and the length direction of the plug interface is parallel to the horizontal direction.
[0010] Optionally, the outer wall of the outer shell is recessed inward to form a connecting groove, the decorative panel is disposed in the connecting groove, the clearance opening is opened at the bottom of the connecting groove, and the snap-fit member snaps into the bottom of the connecting groove.
[0011] Optionally, the number of the plug-in post is one, and the plug-in post is located at the center of the plate body in the horizontal direction; the number of the snap-fit members is multiple, and the multiple snap-fit members are arranged vertically and symmetrically disposed on opposite sides of the plate body; the decorative panel also includes multiple connecting posts, and the multiple connecting posts are disposed in the middle and bottom of the plate body and integrally formed with the plate body, and the ends of the multiple connecting posts away from the plate body are respectively interference-fitted with the outer shell.
[0012] Optionally, the cross-section of the connecting post is cross-shaped, and the connecting post tapers away from the plate body.
[0013] Optionally, among the plurality of connecting posts, at least two of the connecting posts are located in the middle of the plate body and arranged in the vertical direction, and at least two of the connecting posts are located at the bottom of the plate body and arranged in the horizontal direction.
[0014] Optionally, the mouthpiece includes an integrally formed inner cylinder and an outer cylinder, the outer cylinder being sleeved outside the inner cylinder, the top end of the outer cylinder extending toward the inner cylinder and sealingly connecting to the top end of the inner cylinder, the insertion port being opened in the outer cylinder, and the electronic atomizer including:
[0015] A sealing cylinder seat is provided inside the outer shell and located below the suction nozzle. The top end of the sealing cylinder seat is sealed to the bottom end of the inner cylinder and the bottom end of the outer cylinder. The sealing cylinder seat is spaced apart from the end of the insertion post that extends into the outer cylinder.
[0016] Optionally, the electronic atomizer includes:
[0017] An atomizing housing is disposed inside the outer shell and located below the sealing cylinder seat. The top end of the atomizing housing is sealed and sleeved with the bottom end of the sealing cylinder seat. A connecting ring protrusion extends outward from the middle of the sealing cylinder seat. The connecting ring protrusion is located below the insertion post and connects the atomizing housing and the outer cylinder.
[0018] Optionally, the inner wall of the sealing cylinder is provided with a mounting annular protrusion extending towards the center, and the electronic atomizer includes:
[0019] An oil separator is disposed inside the sealing cylinder seat, with its bottom surface connected to the top surface of the sealing cylinder seat. The oil separator has a first vent port corresponding to the inner cylinder.
[0020] A liquid-absorbing medium is disposed inside the sealing cylinder seat and above the oil separator. The liquid-absorbing medium has a second air outlet corresponding to the inner cylinder. The bottom surface of the liquid-absorbing medium is connected to the top surface of the oil separator, and the top surface of the liquid-absorbing medium abuts against the bottom end of the inner cylinder.
[0021] Optionally, the bottom end of the sealing cylinder seat is provided with an air-proof notch that connects to its inner cavity, and the oil separator and the liquid absorption medium are installed in the sealing cylinder seat through the bottom end of the sealing cylinder seat.
[0022] In this electronic atomizer, the decorative plate simultaneously connects the outer shell and the mouthpiece, optimizing stress distribution and enhancing the connection effect of the decorative plate to the outer shell. The dual connection points of the outer shell and mouthpiece disperse the fixing stress, significantly reducing the tensile and compressive stress on individual connection points. Even if a small gap exists at one connection point, the other connection point provides redundant fixation, reducing the risk of overall detachment. The plug-in connection eliminates the need for pre-reserved space for buckle arm deformation or disengagement operation, unlike snap-fit connections. The fitting accuracy of the plug-in connection can be directly controlled by the dimensional tolerances of the plug post and the plug interface, making it more suitable for scenarios with confined internal spaces. As a standard component of electronic atomizers, the mouthpiece itself needs a stable connection to the outer shell. When the decorative plate is plugged into the mouthpiece, it utilizes the existing fixed relationship between the mouthpiece and the outer shell; the mouthpiece's own stability simultaneously constrains the displacement of the decorative plate. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0024] Figure 1 This is a perspective view of an embodiment of the electronic atomizer of this application;
[0025] Figure 2 for Figure 1 Exploded view of some structures in the illustrated embodiment;
[0026] Figure 3 for Figure 1 Exploded view of the embodiment shown;
[0027] Figure 4 for Figure 1 A cross-sectional view of the embodiment shown;
[0028] Figure 5 for Figure 1 Detailed view of the nozzle in the embodiment shown;
[0029] Figure 6 for Figure 1 A detailed view of the sealing cylinder seat in the illustrated embodiment.
[0030] Explanation of icon numbers:
[0031] 100 Electronic atomizer 110 shell 111 Open 112 Avoidance 113 Card interface 114 Socket 115 Connecting slot 120 Decorative panels 121 Board body 122 Card connector 123 Plug-in 124 Connecting column 130 Suction nozzle 131 outer cylinder 132 Plug 133 Inner cylinder 134 gap 140 Sealing cylinder seat 141 Connecting ring protrusion 142 Mounting ring protrusion 143 gap 150 Atomizing shell 160 Oil separator 161 First air vent 170 Liquid absorption medium 171 Second air vent
[0032] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0033] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0034] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0035] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0036] This application discloses an electronic atomizer, which includes a shell, a mouthpiece, and a decorative plate. The top end face of the shell has an opening, and the peripheral sidewall of the top end of the shell has a clearance opening. The bottom end of the mouthpiece is fitted into the top end of the shell, and the peripheral sidewall of the bottom end of the mouthpiece has an insertion interface, which is opposite to the clearance opening. The decorative plate is disposed on one side of the shell and includes an integrally formed plate body and a snap-fit component, which snaps into the shell. The decorative plate also includes a plug-in post, which is integrally formed with the plate body. One end of the plug-in post is connected to the top end of the plate body, and the other end of the plug-in post is inserted into the mouthpiece through the clearance opening and the insertion interface. The plug-in post is connected to the insertion interface.
[0037] In this electronic atomizer, the decorative plate simultaneously connects the outer shell and the mouthpiece, optimizing stress distribution and enhancing the connection effect of the decorative plate to the outer shell. The dual connection points of the outer shell and mouthpiece disperse the fixing stress, significantly reducing the tensile and compressive stress on individual connection points. Even if a small gap exists at one connection point, the other connection point provides redundant fixation, reducing the risk of overall detachment. The plug-in connection eliminates the need for pre-reserved space for buckle arm deformation or disengagement operation, unlike snap-fit connections. The fitting accuracy of the plug-in connection can be directly controlled by the dimensional tolerances of the plug post and the plug interface, making it more suitable for scenarios with confined internal spaces. As a standard component of electronic atomizers, the mouthpiece itself needs a stable connection to the outer shell. When the decorative plate is plugged into the mouthpiece, it utilizes the existing fixed relationship between the mouthpiece and the outer shell; the mouthpiece's own stability simultaneously constrains the displacement of the decorative plate.
[0038] Please see Figures 1 to 6 The following will mainly describe the specific structure of the electronic atomizer 100.
[0039] The electronic atomizer 100 of this application includes a housing 110, with an opening 111 on the top end face of the housing 110 and a clearance opening 112 on the peripheral sidewall of the top end of the housing 110. The housing 110 is used to accommodate the atomizing body of the electronic atomizer 100.
[0040] The electronic atomizer 100 of this application includes a mouthpiece 130, the bottom end of which is fitted inside the top end of a housing 110. An insertion interface 132 is provided on the peripheral wall of the bottom end of the mouthpiece 130, opposite to a clearance opening 112. The mouthpiece 130 includes an integrally formed inner cylinder 133 and an outer cylinder 131. The outer cylinder 131 is fitted outside the inner cylinder 133, and its top end extends toward and seals the top end of the inner cylinder 133. The insertion interface 132 is located on the outer cylinder 131. The inner cylinder 133 communicates with the atomizing body, and the atomized mist generated by the atomizing body flows out through the top end of the inner cylinder 133.
[0041] The electronic atomizer 100 of this application includes a decorative panel 120. The decorative panel 120 is disposed on one side of the outer shell 110, and includes an integrally formed panel body 121 and a snap-fit member 122, which snaps into the outer shell 110. The outer wall of the outer shell 110 is recessed inward to form a connecting groove 115, and the decorative panel 120 is disposed in the connecting groove 115. The snap-fit member 122 snaps into the bottom of the connecting groove 115. The shape of the connecting groove 115 is adapted to the shape of the decorative panel 120. The snap-fit member 122 can be a snap-fit protrusion, and the outer shell 110 has multiple snap-fit interfaces 113 corresponding to the multiple snap-fit members 122 for snap-fitting. There are multiple snap-fit members 122, which are arranged vertically and symmetrically disposed on opposite sides of the panel body 121. The symmetrically arranged snap-fit pieces 122 on both sides can form a mirror force structure, and the load can be synchronously transferred to the docking parts through the snap-fit pieces 122 on both sides, avoiding eccentric bending moment caused by unilateral force; the vertical distribution of multiple snap-fit pieces 122 combined with the symmetrical arrangement on both sides can form a multi-point limiting constraint structure.
[0042] The decorative panel 120 also includes a plug post 123, which is integrally formed with the panel body 121. One end of the plug post 123 is connected to the top of the panel body 121, and the other end of the plug post 123 is inserted into the nozzle 130 through the clearance opening 112 and the insertion interface 132. The plug post 123 is connected to the insertion interface 132.
[0043] The decorative plate 120 connects both the outer shell 110 and the mouthpiece 130, optimizing stress distribution and enhancing the connection effect of the decorative plate 120 on the outer shell 110. The dual connection points of the outer shell 110 and the mouthpiece 130 disperse the fixing stress, significantly reducing the tensile and compressive stress on individual connection points. Even if a small gap exists at one connection point, the other connection point provides redundant fixation, reducing the risk of overall detachment. Unlike snap-fit connections, plug-in connections do not require pre-reserved space for snap-fit arm deformation or disengagement. The fitting precision of the plug-in connection can be directly controlled by the dimensional tolerances of the plug-in post 123 and the plug interface 132, making it more suitable for scenarios with narrow internal cavities. As a standard component of the electronic atomizer 100, the mouthpiece 130 itself needs a stable connection to the outer shell 110. When the decorative plate 120 is plugged into the mouthpiece 130, it utilizes the existing fixing relationship between the mouthpiece 130 and the outer shell 110, and the stability of the mouthpiece 130 simultaneously constrains the displacement of the decorative plate 120.
[0044] In some embodiments, the plug-in post 123 is interference-fitted with the plug-in interface 132. The shape of the plug-in interface 132 matches the shape of the plug-in post 123. The plug-in interface 132 is racetrack-shaped or elliptical, and its length direction is parallel to the horizontal direction. Thus, the shape of the plug-in interface 132 is well-suited to the shape of the bottom end of the suction nozzle 130. A clearance opening 112 is formed at the bottom of the connecting groove 115. There is only one plug-in post 123, which can be located at the center of the plate body 121 in the horizontal direction. The central position allows the plug-in post 123 to achieve uniform force distribution under symmetrical loads (such as axial tension and compression), avoiding local stress concentration caused by eccentricity.
[0045] The decorative panel 120 also includes multiple connecting posts 124, which are located at the middle and bottom of the panel body 121 and are integrally formed with the panel body 121. The outer shell 110 has corresponding sleeve interfaces 114 for each of the multiple connecting posts 124, which are fitted together. The ends of the multiple connecting posts 124 away from the panel body 121 are respectively press-fitted into the sleeve interfaces 114 of the outer shell 110. The cross-section of the connecting post 124 is cross-shaped, thus the connecting post 124 has a certain deformation space, and the press-fit connection with the sleeve interface 114 can be tighter. The connecting post 124 tapers away from the panel body 121, thus facilitating the insertion of the connecting post 124 into the sleeve interface 114. The multiple connecting posts 124 can further enhance the connection effect between the decorative panel 120 and the outer shell 110, and the multiple connecting posts 124 do not need to reserve space for buckle arm deformation or buckle operation like a snap fastener, making them suitable for scenarios with narrow internal cavities.
[0046] Of the multiple connecting posts 124, at least two connecting posts 124 are located in the middle of the plate body 121 and arranged vertically, and at least two connecting posts 124 are located at the bottom of the plate body 121 and arranged horizontally. The vertically arranged connecting posts 124 in the middle mainly bear the vertical force, and the load is directly transferred through the rigid constraint in the vertical direction. The horizontally arranged connecting posts 124 at the bottom are specifically designed to resist the horizontal shear force. The spatial distribution of the vertical and horizontal connecting posts 124 forms a cross-shaped constraint system, which significantly improves the torsional stiffness of the plate body 121. This application, through the cooperation of the plug-in posts 123, multiple snap-fit parts 122, and multiple connecting posts 124, can form a tight connection with the shell 110 even when the design space is limited.
[0047] The electronic atomizer 100 of this application includes a sealing cylinder seat 140, which is sealed inside the outer casing 110 and located below the mouthpiece 130. The top end of the sealing cylinder seat 140 is sealed to the bottom end of the inner cylinder 133 and the bottom end of the outer cylinder 131. The sealing cylinder seat 140 is spaced apart from the end of the insertion post 123 that extends into the outer cylinder 131. The bottom end of the inner cylinder 133 has a plurality of notches 134 arranged circumferentially thereon. The bottom end of the inner cylinder 133 is inserted into the top end of the sealing cylinder seat 140. The notches 134 facilitate the assembly and tight connection of the inner cylinder 133 and the sealing cylinder seat 140.
[0048] The inner wall of the sealing cylinder 140 extends to form a mounting annular protrusion 142. The electronic atomizer 100 includes an oil-separating plate 160, which is disposed within the sealing cylinder 140 and whose bottom surface connects to the top surface of the mounting annular protrusion 142. The oil-separating plate 160 has a first air passage 161 corresponding to the inner cylinder 133. The oil-separating plate 160 prevents condensate generated during atomization from flowing to the mouthpiece 130. The electronic atomizer 100 includes a liquid-absorbing medium 170, which is disposed within the sealing cylinder 140 and above the oil-separating plate 160. The liquid-absorbing medium 170 has a second air passage 171 corresponding to the inner cylinder 133. The bottom surface of the liquid-absorbing medium 170 connects to the top surface of the oil-separating plate 160, and the top surface of the liquid-absorbing medium 170 abuts against the bottom end of the inner cylinder 133. The liquid-absorbing medium 170 can absorb condensate generated during atomization. By installing the annular protrusion 142, the oil separator 160, and the liquid absorption medium 170, the stability of the connection between the suction nozzle 130 and the sealing cylinder seat 140 can be enhanced. The bottom end of the sealing cylinder seat 140 has a clearance notch 143 that connects to its inner cavity. The oil separator 160 and the liquid absorption medium 170 are installed inside the sealing cylinder seat 140 via the bottom end of the sealing cylinder seat 140, thereby facilitating the installation of the oil separator 160 and the liquid absorption medium 170.
[0049] The electronic atomizer 100 includes an atomizing housing 150, which is located inside the outer casing 110 and below the sealing cylinder seat 140. The top end of the atomizing housing 150 is sealed to the bottom end of the sealing cylinder seat 140. A connecting ring protrusion 141 extends outward from the middle of the sealing cylinder seat 140. The connecting ring protrusion 141 is located below the insertion post 123 and connects the atomizing housing 150 and the outer cylinder 131. By connecting the atomizing housing 150 and the outer cylinder 131 simultaneously through the connecting ring protrusion 141, the stability of the mouthpiece 130 connection can be further enhanced.
[0050] The assembly process of the electronic atomizer 100 is as follows: insert the bottom end of the mouthpiece 130 into the top end of the outer shell 110, connect the decorative plate 120 and the outer shell 110, and insert the plug post 123 of the decorative plate 120 into the plug interface 132 of the mouthpiece 130 through the clearance opening 112 of the outer shell 110.
[0051] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the inventive concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.
Claims
1. An electronic atomizer, characterized in that, The electronic atomizer includes: The outer shell has an opening on its top end face and a clearance opening on the peripheral side wall of the top end of the outer shell. A suction nozzle, the bottom end of which is fitted into the top end of the outer shell, has an insertion interface on the peripheral side wall of the bottom end of the suction nozzle, the insertion interface being opposite to the clearance opening; and A decorative panel is disposed on one side of the outer casing. The decorative panel includes an integrally formed panel body and a snap-fit component, which snaps into the outer casing. The decorative panel also includes a plug-in post, which is integrally formed with the panel body. One end of the plug-in post is connected to the top of the panel body, and the other end of the plug-in post is inserted into the suction nozzle through the clearance opening and the insertion interface. The plug-in post is connected to the insertion interface.
2. The electronic atomizer according to claim 1, characterized in that, The plug post is interference-fitted with the plug interface. The shape of the plug interface is adapted to the shape of the plug post. The plug interface is racetrack-shaped or elliptical, and the length direction of the plug interface is parallel to the horizontal direction.
3. The electronic atomizer according to claim 1, characterized in that, The outer wall of the outer shell is recessed inward to form a connecting groove, the decorative panel is disposed in the connecting groove, the clearance opening is opened at the bottom of the connecting groove, and the snap-fit component snaps into the bottom of the connecting groove.
4. The electronic atomizer according to claim 1, characterized in that, The number of the plug-in post is one, and the plug-in post is located at the center of the plate body in the horizontal direction; the number of the snap-fit parts is multiple, and the multiple snap-fit parts are arranged vertically and symmetrically arranged on opposite sides of the plate body; the decorative plate also includes multiple connecting posts, and the multiple connecting posts are located in the middle and bottom of the plate body and are integrally formed with the plate body, and the ends of the multiple connecting posts away from the plate body are respectively interference-fitted with the outer shell.
5. The electronic atomizer according to claim 4, characterized in that, The connecting post has a cross-shaped cross section, and the connecting post tapers away from the plate body.
6. The electronic atomizer according to claim 4, characterized in that, Of the plurality of connecting posts, at least two of the connecting posts are located in the middle of the plate body and arranged in the vertical direction, and at least two of the connecting posts are located at the bottom of the plate body and arranged in the horizontal direction.
7. The electronic atomizer according to any one of claims 1 to 6, characterized in that, The mouthpiece includes an integrally formed inner cylinder and an outer cylinder. The outer cylinder is sleeved outside the inner cylinder, and the top end of the outer cylinder extends toward the inner cylinder and seals against the top end of the inner cylinder. The insertion port is located on the outer cylinder. The electronic atomizer includes: A sealing cylinder seat is provided inside the outer shell and located below the suction nozzle. The top end of the sealing cylinder seat is sealed to the bottom end of the inner cylinder and the bottom end of the outer cylinder. The sealing cylinder seat is spaced apart from the end of the insertion post that extends into the outer cylinder.
8. The electronic atomizer according to claim 7, characterized in that, The electronic atomizer includes: An atomizing housing is disposed inside the outer shell and located below the sealing cylinder seat. The top end of the atomizing housing is sealed and sleeved with the bottom end of the sealing cylinder seat. A connecting ring protrusion extends outward from the middle of the sealing cylinder seat. The connecting ring protrusion is located below the insertion post and connects the atomizing housing and the outer cylinder.
9. The electronic atomizer according to claim 8, characterized in that, The inner wall of the sealing cylinder extends to form a mounting ring protrusion, and the electronic atomizer includes: An oil separator is disposed within the sealing cylinder seat, with its bottom surface connected to the top surface of the mounting annular protrusion. The oil separator has a first vent port corresponding to the inner cylinder. A liquid-absorbing medium is disposed inside the sealing cylinder seat and above the oil separator. The liquid-absorbing medium has a second air outlet corresponding to the inner cylinder. The bottom surface of the liquid-absorbing medium is connected to the top surface of the oil separator, and the top surface of the liquid-absorbing medium abuts against the bottom end of the inner cylinder.
10. The electronic atomizer according to claim 9, characterized in that, The bottom end of the sealing cylinder seat has an air-proof notch that connects to its inner cavity, and the oil separator and the liquid absorption medium are installed inside the sealing cylinder seat through the bottom end of the sealing cylinder seat.