Mounting structure of liquid storage container, atomizer and electronic atomization device

By designing a liquid storage container mounting structure suitable for electronic atomization devices, including a mounting base, sealing plug, and connecting bracket, the compatibility problem of liquid storage containers of different sizes was solved, resulting in cost reduction and improved installation adaptability.

CN223968655UActive Publication Date: 2026-03-06SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

The existing liquid storage container installation structure of electronic atomizing devices is not compatible with liquid storage containers of different sizes, resulting in increased production costs and higher consumer costs.

Method used

A liquid storage container installation structure was designed, including a mounting base, a sealing plug, and a connecting bracket. The sealing plug is interference-fitted with the nozzle of the liquid storage container through a sleeve, and the connecting bracket is threadedly connected to the nozzle through an internal thread. This structure can adapt to the installation requirements of liquid storage containers of different specifications, and the container length can be adjusted to accommodate different caps through a detachable cap.

Benefits of technology

It enables compatible installation of both general-purpose and customized liquid storage containers, reducing production and user costs, and improving installation adaptability and operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of electronic atomization equipment, and provides a mounting structure of a liquid storage container, the mounting structure comprises a mounting seat, a sealing plug and a connecting frame, the mounting seat is provided with a vertical pipe used for extending into a bottle neck of the liquid storage container; the sealing plug comprises a bottom cushion and a sleeve used for being connected to the vertical pipe in a sleeved mode, and the sleeve can stretch into a bottle mouth of the liquid storage container along with the vertical pipe and is used for being selectively in interference fit with the bottle mouth. The connecting frame comprises a surrounding frame, the connecting frame is arranged on the mounting base, the surrounding frame surrounds the stand pipe, and the extending end of the surrounding frame abuts against the bottom cushion of the sealing plug; the enclosure frame is provided with an internal thread, and the internal thread is used for being selectively matched with an external thread on a bottle neck in a threaded mode. The utility model further provides the atomizer adopting the mounting structure and an electronic atomization device with the atomizer. The liquid storage container mounting structure aims at solving the assembling problem that a liquid storage container mounting structure on an existing electronic atomization device cannot be compatible with liquid storage containers of different sizes.
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Description

Technical Field

[0001] This application belongs to the field of electronic atomization equipment technology, and particularly relates to an installation structure for a liquid storage container, an atomizer, and an electronic atomization device. Background Technology

[0002] To reduce customer costs and demonstrate their responsibility to protect the environment, e-cigarette companies have long offered refillable products. While products with replaceable reservoirs are now commonplace, the unique designs of each company result in varying reservoir sizes, often only compatible with their own products, making them incompatible. Furthermore, considering the diverse needs of customers, reservoir sizes often need to be customized, further complicating the achievement of universal reservoir compatibility. Utility Model Content

[0003] The purpose of this application is to provide an installation structure for a liquid storage container, an atomizer, and an electronic atomizing device to solve the problem that the installation structure for the liquid storage container on existing electronic atomizing devices cannot be compatible with the assembly of liquid storage containers of different sizes.

[0004] To achieve the above objectives, the technical solution adopted in this application is as follows:

[0005] In a first aspect, embodiments of this application provide an installation structure for a liquid storage container, the liquid storage container including a bottle body and a bottle nozzle, the bottle nozzle having external threads; the installation structure includes:

[0006] The mounting base is provided with a riser for extending into the nozzle of the liquid storage container;

[0007] A sealing plug includes a base gasket and a sleeve for fitting onto the riser, the sleeve being able to extend into the nozzle of the liquid storage container along with the riser and for selectively interfering with the nozzle;

[0008] A connecting bracket, including a surrounding frame, is disposed on the mounting base such that the surrounding frame surrounds the riser, and an extension end of the surrounding frame abuts against the bottom gasket of the sealing plug; the surrounding frame has an internal thread for selectively engaging with an external thread on the bottle mouth.

[0009] Therefore, depending on the nozzle diameter of different specifications of liquid storage containers, the nozzle and sleeve can be connected by direct interference fit, or the external thread on the nozzle can be connected to the internal thread of the connecting bracket by thread, thereby meeting the installation requirements of different specifications of liquid storage containers and improving the installation adaptability of liquid storage containers.

[0010] The structure of the sealing plug is improved by providing an outer convex ring on the outer periphery of the sleeve. The outer convex ring abuts against the inner wall of the bottle mouth of the liquid storage container to seal the gap between the outer periphery of the sleeve and the inner wall of the bottle mouth, thereby improving the sealing effect.

[0011] In one embodiment, the base pad has a stepped ring that abuts against the nozzle port of the liquid storage container to ensure a sealing effect.

[0012] In one embodiment, the bottom pad is further provided with a ring of raised ribs corresponding to the end position of the frame of the connecting frame. The raised ribs abut against the end of the frame to form a sealing structure and prevent leakage.

[0013] In one embodiment, the bottom of the sealing plug has a through hole communicating with the sleeve. The through hole is a flared hole that gradually expands outward to serve as an installation guide, making it easier for the sleeve of the sealing plug to be fitted onto the riser of the mounting base, thereby improving assembly efficiency.

[0014] Secondly, this application provides an atomizer, including an atomizing component, a fixing body, a shell, a cover, and an installation structure for the liquid storage container. The fixing body is disposed within the shell and has a mounting base, an atomizing pipe, and a flow channel connecting the atomizing pipe and the mounting base. The atomizing component is disposed within the atomizing pipe and is used to heat the atomizing liquid and produce an aerosol. The liquid storage container is mounted on the mounting base, and the atomizing liquid in the liquid storage container reaches the atomizing component through the flow channel. One side of the shell has a recess for mounting the liquid storage container, and the recess has an opening that communicates with the mounting base. The liquid storage container is mounted in the recess, and the nozzle is inserted into the mounting base through the opening. The cover is detachably disposed on the recess, and the liquid storage container is contained within the coverage area of ​​the cover. Therefore, the length of the cover can be adjusted according to the length of the liquid storage container of different specifications, thereby meeting the installation requirements of liquid storage containers of different capacities and effectively improving the installation adaptability of the liquid storage container.

[0015] The connection structure between the mounting base and the connecting bracket is improved. The mounting base includes a surrounding wall disposed on the fixed body and surrounding the riser. An isolation cavity is formed between the surrounding wall and the riser, and both the sealing plug and the connecting bracket are installed within the isolation cavity. This allows the sealing plug and the connecting bracket to be detachably mounted on the mounting base. The dimensions of the sealing plug and the connecting bracket can be flexibly adjusted according to the nozzle diameter of different specifications of liquid storage containers, thereby meeting the installation requirements of different specifications of liquid storage containers and effectively improving the installation adaptability of liquid storage containers.

[0016] In one embodiment, the mounting base has snap-fit ​​holes on its surrounding wall, and the connecting frame has snap-fit ​​blocks on its outer perimeter. These snap-fit ​​blocks engage with the snap-fit ​​holes. This snap-fit ​​structure secures the connecting frame and the mounting base together, facilitating replacement of the connecting frame and improving installation efficiency.

[0017] In one embodiment, the outer periphery of the connecting frame is further provided with protruding positioning ribs, and the wall of the mounting base has positioning grooves into which the positioning ribs slide. Thus, during installation, by aligning the positioning ribs with the positioning grooves, the fasteners on the frame and the fastener holes on the mounting base can be automatically aligned simultaneously, effectively reducing installation difficulty and improving operational efficiency.

[0018] In one embodiment, the upper port of the connecting frame is further provided with an outwardly bent flange, which is used to fasten to the wall of the mounting base. This ensures that the connecting frame can be properly installed on the mounting base and also facilitates manual gripping of the connecting frame for installation, improving the stability of the installation operation.

[0019] In one embodiment, the outer casing is provided with a guide rail for mounting the cover, and the cover has a groove for mounting with the guide rail. Thus, by using a groove on the cover to mount with the guide rail on the outer casing, the cover can be easily mounted on the outer casing. This design is simple, easy to assemble and disassemble, and facilitates the replacement of the liquid storage container.

[0020] Thirdly, embodiments of this application also provide an electronic atomizing device, including a power supply component and the atomizer, both of which are housed within the housing; the power supply component includes a circuit board and a battery that provides power to the atomizer, and the atomizing component is electrically connected to the circuit board.

[0021] The beneficial effects of the liquid storage container mounting structure, atomizer, and electronic atomizing device provided in this application are as follows: Compared with the prior art, the liquid storage container mounting structure of this application includes a mounting base, a sealing plug, and a connecting frame. Both the sealing plug and the connecting frame are disposed on the mounting base. The sealing plug includes a base gasket and a sleeve. The sleeve is fitted onto the riser of the mounting base and can extend into the nozzle of the liquid storage container together with the riser. The sleeve can be used to make an interference fit with the nozzle of the liquid storage container to achieve the installation connection with the liquid storage container. The connecting frame includes a surrounding frame that surrounds the riser. The surrounding frame has internal threads, which can be used to achieve a threaded connection with the external threads of the nozzle of the liquid storage container. Therefore, depending on the nozzle diameter of different specifications of liquid storage containers, a direct interference fit between the nozzle and the sleeve can be used to achieve the connection, or a threaded connection can be achieved between the external threads of the nozzle and the internal threads of the connecting frame, thereby meeting the installation requirements of different specifications of liquid storage containers.

[0022] In addition, the atomizer has a cap for covering and protecting the liquid storage container, which is detachably mounted on the outer shell. This allows the length of the cap to be adjusted according to the length of different sized liquid storage containers, thereby meeting the installation requirements of liquid storage containers of different capacities and effectively improving the installation adaptability to different sized liquid storage containers. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this application, 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 these drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of the structure of a general liquid storage container;

[0025] Figure 2 A structural diagram of a customized liquid storage container;

[0026] Figure 3 An exploded structural diagram of each component of the liquid storage container mounting structure provided in the embodiments of this application;

[0027] Figure 4 A schematic diagram of the installation structure of a general liquid storage container provided in an embodiment of this application;

[0028] Figure 5 A schematic diagram of the installation structure of the customized liquid storage container provided in the embodiments of this application;

[0029] Figure 6 A three-dimensional structural diagram of the sealing plug provided in the embodiments of this application. Figure 1 ;

[0030] Figure 7 A three-dimensional structural diagram of the sealing plug provided in the embodiments of this application. Figure 2 ;

[0031] Figure 8 Exploded view of the atomizer provided in the embodiments of this application Figure 1 ;

[0032] Figure 9 This is a schematic diagram of the internal structure of the atomizer provided in the embodiments of this application;

[0033] Figure 10 Schematic diagram of the assembly structure of the fixing body, sealing plug and connecting frame provided in the embodiments of this application Figure 1 ;

[0034] Figure 11 Exploded view of the atomizer provided in the embodiments of this application Figure 2 ;

[0035] Figure 12 Schematic diagram of the assembly structure of the fixing body, sealing plug and connecting frame provided in the embodiments of this application Figure 2 ;

[0036] Figure 13 This is a three-dimensional structural diagram of the atomizer provided in the embodiments of this application;

[0037] Figure 14 This is a three-dimensional structural diagram of the cover provided in an embodiment of this application;

[0038] Figure 15 This is a schematic diagram of the internal structure of the electronic atomizing device provided in the embodiments of this application.

[0039] The following are the labeling elements in the figure:

[0040] 100 - Liquid storage container; 100a - General purpose liquid storage container; 100b - Customized liquid storage container; 101 - Bottle body; 102 - Bottle nozzle; 103 - External thread;

[0041] 1-Mounting base; 11-Riser; 12-Enclosure; 13-Isolation cavity; 14-Snap hole; 15-Positioning groove;

[0042] 2-Sealing plug; 21-Bottom pad; 211-Step; 212-Rib; 213-Through hole; 22-Sleeve; 221-Outer convex ring; 222-Chamfer;

[0043] 3-Connecting frame; 31-Frame; 32-Internal thread; 33-Snap block; 331-Inclined surface; 34-Positioning rib; 35-Flanged edge;

[0044] 4-Atomizing component; 41-Heating element;

[0045] 5-Fixed main body; 51-Atomizing pipe; 52-Flow guide channel;

[0046] 6-Outer shell; 61-Recess; 611-Opening; 62-Guide rail; 621-Slot;

[0047] 7-Cover body; 71-Slide groove; 72-Slot rail; 721-Protrusion;

[0048] 8-Power supply components; 81-Circuit board; 82-Battery. Detailed Implementation

[0049] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.

[0050] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0051] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0052] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0053] In the market, there are two main types of liquid storage containers used in electronic atomizing devices with replaceable liquid containers. These two types of containers differ in their nozzle diameter, specifically falling into two categories: common universal containers and custom-made containers tailored to individual customers. Custom-made containers differ from universal containers in both nozzle diameter and liquid capacity. However, current mounting structures on electronic atomizing devices are only compatible with universal containers and are not suitable for custom-made containers. Therefore, installing custom-made containers requires manufacturing separate electronic atomizing devices specifically designed for them. This necessitates building a separate production line for these custom-sized electronic atomizing devices, increasing overall production costs and raising the cost for consumers.

[0054] Therefore, this application provides a novel installation structure for a liquid storage container, an atomizer, and an electronic atomizing device, which can be compatible with the installation requirements of both general-purpose and customized liquid storage containers, effectively reducing modification costs and solving the problem that the traditional liquid storage container installation structure on electronic atomizing devices cannot be compatible with the assembly of liquid storage containers of different sizes. It will now be described in detail.

[0055] It should be noted that, as Figure 1 and Figure 2As shown, both the general-purpose liquid storage container 100a and the customized liquid storage container 100b include at least a bottle body 101 and a nozzle 102. The bottle body 101 is used to store atomizing liquid. The nozzle 102 is integrally connected to the bottle body 101 and extends outward from the bottle body 101 to interlock with the mounting structure on the atomizer, thereby connecting the nozzle 102 with the liquid guiding channel on the atomizer to replenish the atomizing components on the atomizer with atomizing liquid. The outer circumference of the nozzle 102 has an external thread 103, which can be used to achieve a threaded connection with the mounting structure on the atomizer. The main difference between the nozzle 102 of the general-purpose liquid storage container 100a and the nozzle 102 of the customized liquid storage container 100b is that the diameter D2 of the nozzle 102 of the customized liquid storage container 100b is smaller than the diameter D1 of the nozzle 102 of the general-purpose liquid storage container 100a, which makes traditional electronic atomizing devices incompatible with the installation requirements of the customized liquid storage container 100.

[0056] Please refer to the following: Figure 3 , Figure 4 and Figure 5 An electronic atomizing device has an atomizer provided in the embodiments of this application. The atomizer adopts a liquid storage container mounting structure provided in the embodiments of this application. The liquid storage container mounting structure includes at least a mounting base 1, a sealing plug 2 and a connecting bracket 3 disposed on the mounting base 1.

[0057] The mounting base 1 is provided with a vertically arranged riser 11, which is used to extend into the nozzle 102 of the liquid storage container 100 and communicate with the interior of the liquid storage container 100 when the liquid storage container 100 is installed on the mounting base 1. The other end of the riser 11 is used to communicate with the flow guide channel in the atomizer.

[0058] The sealing plug 2 is preferably made of silicone material, which gives it a sealing effect and allows for an interference fit. The sealing plug 2 includes an integrally connected base 21 and a sleeve 22, with the sleeve 22 preferably standing upright at the center of the base 21. The sleeve 22 is used to fit onto the riser 11, allowing the sleeve 22 to extend into the nozzle 102 of the liquid storage container 100 along with the riser 11, and to allow for an interference fit with the nozzle 102 of the liquid storage container 100.

[0059] The connecting frame 3 includes at least a surrounding frame 31, which is mounted on the mounting base 1, such that the surrounding frame 31 surrounds the riser 11. In this embodiment, the sealing plug 2 is sleeved onto the riser 11 via a sleeve 22, with the bottom gasket 21 of the sealing plug 2 located inside the surrounding frame 31. The extended end of the surrounding frame 31 abuts against the bottom gasket 21 to achieve a sealing effect. The inner wall of the surrounding frame 31 has an internal thread 32, which can be used to thread-mate with the external thread 103 on the nozzle 102 of the liquid storage container 100.

[0060] Therefore, as an example, the assembly of the general-purpose liquid storage container 100, such as... Figure 4 As shown, the external thread 103 of the nozzle 102 and the internal thread 32 of the connecting bracket 3 can be used to achieve threaded connection and fixation. When connected in place, the port of the nozzle 102 abuts against the bottom pad 21 of the sealing plug 2, thereby playing a sealing role. The atomized liquid in the liquid storage container 100 can be output to the atomizer from the riser tube 11 extending into the nozzle 102.

[0061] For the assembly of the custom liquid storage container 100, such as Figure 5 As shown, the sleeve 22 fitted onto the riser 11 is press-fitted with the nozzle 102 of the liquid storage container 100, so that the sleeve 22 not only serves as a connection but also as a seal, so that the atomized liquid in the liquid storage container 100 can be output from the riser 11 extending into the nozzle 102 to the atomizer.

[0062] Compared with the prior art, the liquid storage container installation structure provided in this application includes a mounting base 1, a sealing plug 2, and a connecting frame 3. Both the sealing plug 2 and the connecting frame 3 are mounted on the mounting base 1. The sealing plug 2 includes a base pad 21 and a sleeve 22. The sleeve 22 is fitted onto the riser 11 of the mounting base 1 and can extend into the nozzle 102 of the liquid storage container 100 together with the riser 11. The sleeve 22 can be used to make an interference fit with the nozzle 102 of the liquid storage container 100 to achieve an installation connection with the liquid storage container 100. The connecting frame 3 includes a surrounding frame 31 that surrounds the riser 11. The surrounding frame 31 has an internal thread 32, which can be used to achieve a threaded connection with the external thread 103 of the nozzle 102 of the liquid storage container 100. Therefore, depending on the diameter of the nozzle 102 of the liquid storage container 100 of different specifications, the nozzle 102 and the sleeve 22 can be directly connected by interference fit, or the external thread 103 on the nozzle 102 can be connected by the internal thread 32 of the connecting bracket 3 to achieve threaded connection, thereby meeting the installation requirements of liquid storage containers 100 of different specifications and effectively improving the installation adaptability of liquid storage containers 100.

[0063] For the structure of the sealing plug 2, please refer to one embodiment of this application. Figure 5 and Figure 6 The sleeve 22 has an outer protruding ring 221 on its outer periphery. The outer protruding ring 221 abuts against the inner wall of the bottle mouth 102 of the liquid storage container 100, thereby sealing the gap between the outer periphery of the sleeve 22 and the inner wall of the bottle mouth 102 and improving the sealing effect.

[0064] In this embodiment, as Figure 6 and Figure 7As shown, the sleeve 22 of the sealing plug 2 has multiple protruding rings 221 on its outer periphery. These protruding rings 221 are arranged adjacent to each other and in an orderly manner on the outer periphery of the sleeve 22, thereby forming a multi-layer sealing structure and effectively improving the sealing effect.

[0065] In one embodiment of this application, please refer to the following: Figure 4 , Figure 5 and Figure 6 The bottom pad 21 has a ring of steps 211, which are used to abut against the nozzle 102 port of the liquid storage container 100 to achieve a sealed connection and ensure a sealing effect.

[0066] In this embodiment, the step 211 is raised on the base pad 21 and arranged in a ring on the upper surface of the base pad 21. Preferably, the step 211 is integrally connected with the sleeve 22. On the one hand, this helps to improve the connection strength and overall integrity. On the other hand, it increases the coverage area of ​​the step 211 on the base pad 21, which is beneficial for adapting to bottle nozzles 102 of different diameters, allowing the ends of bottle nozzles 102 of different diameters to abut against the step 211 to form a sealed connection.

[0067] In one embodiment of this application, please refer to the following: Figure 4 , Figure 5 and Figure 6 The bottom pad 21 is also provided with a ring of raised ribs 212, which corresponds to the end position of the frame 31 of the connecting frame 3, so as to abut against the end of the frame 31 of the connecting frame 3 to form a sealing structure and prevent leakage.

[0068] In this embodiment, a ring of raised ribs 212 on the base pad 21 is disposed near the outer edge of the base pad 21 and surrounds the aforementioned step 211. During installation, the sealing plug 2 can be placed inside the mounting base 1 first, so that the sleeve 22 of the sealing plug 2 is fitted onto the riser 11 of the mounting base 1, and the base pad 21 of the sealing plug 2 is tightly attached to the inner bottom wall of the mounting base 1; then, the connecting frame 3 is installed inside the mounting base 1, so that the lower end of the frame 31 abuts against the raised ribs 212 on the base pad 21, thereby forming a sealing structure to prevent leakage.

[0069] Preferably, please refer to Figure 7 The bottom of the bottom pad 21 of the sealing plug 2 has a through hole 213 that communicates with the sleeve 22. The through hole 213 is preferably a flared hole that gradually expands outward to serve as a guide for installation, so that the sleeve 22 of the sealing plug 2 can be easily fitted onto the riser 11 of the mounting base 1, thereby improving assembly efficiency.

[0070] In this embodiment, the through hole 213 of the bottom pad 21 gradually expands outward to form a flared opening, so that the riser 11 can easily enter the inside of the sleeve 22 through the through hole 213 to complete the sleeve operation smoothly, effectively reducing the installation difficulty and improving the operation efficiency.

[0071] Preferably, please refer to Figure 6 The upper outer periphery of the sleeve 22 of the sealing plug 2 also has a chamfer 222 to serve as an installation guide. During the installation of the liquid storage container 100, the sleeve 22 is easily inserted into the bottle mouth 102 of the liquid storage container 100, thereby improving installation efficiency.

[0072] In this embodiment, the chamfer 222 on the outer periphery of the upper end of the sleeve 22 forms an inclined surface. The inclined surface formed by the chamfer 222 can preferably be connected to the outermost convex ring 221 on the outer periphery of the sleeve 22. This is beneficial to increase the overall guiding structure, further reduce the assembly difficulty of the bottle mouth 102 of the liquid storage container 100 and the sleeve 22, and improve the assembly efficiency.

[0073] As can be seen, since the connecting frame 3 and sealing plug 2 on the above-mentioned liquid storage container installation structure are both detachable and replaceable components, the size can be flexibly adjusted according to the bottle mouth 102 of different specifications of liquid storage containers 100. For example, by slightly modifying or replacing the connecting frame 3 or sealing plug 2 of different sizes, the installation requirements of the bottle mouth 102 of different specifications of liquid storage containers 100 can be met, effectively improving the installation adaptability of the liquid storage container 100.

[0074] Please refer to the following: Figure 8 , Figure 9 and Figure 10 This application also provides an atomizer, including an atomizing component 4, a fixing body 5, a shell 6, a cover 7, and the liquid storage container mounting structure provided in this application embodiment. The fixing body 5 is disposed inside the shell 6, and the fixing body 5 is provided with the aforementioned mounting base 1, atomizing pipe 51, and flow guiding channel 52. The flow guiding channel 52 connects the atomizing pipe 51 and the mounting base 1.

[0075] In this embodiment, as Figure 9 and Figure 10 As shown, the atomizing pipe 51 and the mounting base 1 are arranged adjacent to each other on the fixed body 5. The flow guiding channel 52 inside the fixed body 5 is located at the bottom of the atomizing pipe 51 and the mounting base 1. One end of the flow guiding channel 52 is connected to the riser 11 of the mounting base 1, and the other end is connected to the atomizing pipe 51. This helps to improve the compactness between the various components of the atomizer and reduce the overall size of the atomizer.

[0076] The atomizing component 4 is disposed inside the atomizing pipe 51. The atomizing component 4 is used to heat the atomizing liquid and produce aerosol. The liquid storage container 100 is mounted on the mounting base 1, so that the nozzle 102 of the liquid storage container 100 is inserted into the riser 11 on the mounting base 1.

[0077] Thus, the atomizing liquid in the storage container 100 enters the guide channel 52 of the fixed body 5 from the riser 11, and reaches the atomizing component 4 of the atomizing pipe 51 through the guide channel 52, replenishing the atomizing component 4 with atomizing liquid.

[0078] For the structure of the outer casing 6, please refer to the embodiments of this application. Figure 8 and Figure 11 The outer casing 6 has a recess 61 on one side for mounting the liquid storage container 100. The recess 61 has an opening 611 that communicates with the mounting base 1 located inside the outer casing 6. The liquid storage container 100 can be mounted in the recess 61, and the nozzle 102 of the liquid storage container 100 can be inserted into the mounting base 1 through the opening 611 on the outer casing 6, so that the liquid storage container 100 communicates with the atomizer and replenishes the liquid to the atomizer.

[0079] The cover 7 is detachably mounted on the recess 61 of the outer shell 6, so that the liquid storage container 100 is contained within the coverage area of ​​the cover 7, allowing the cover 7 to block foreign objects or external forces and improve the protection effect of the liquid storage container 100.

[0080] In practical applications, the capacity of liquid storage containers 100 of different specifications is mainly adjusted by changing the volume of the bottle body 101, which is generally done by changing the length of the bottle body 101. In the electronic atomizing device provided in this application embodiment, since the cover 7 is detachably mounted on the outer shell 6, it can be adjusted according to the length of the bottle body 101 of different specifications of liquid storage containers 100, thereby meeting the installation requirements of liquid storage containers 100 of different capacities and effectively improving the installation adaptability of the liquid storage containers 100.

[0081] Regarding the connection structure between the mounting base 1 and the connecting bracket 3, please refer to one embodiment of this application. Figure 10 , Figure 11 and Figure 12 The mounting base 1 also includes a surrounding wall 12 disposed on the fixed body 5, which surrounds the riser 11. An isolation cavity 13 is formed between the surrounding wall 12 and the riser 11 at intervals, and the sealing plug 2 and the connecting bracket 3 are both installed in the isolation cavity 13.

[0082] This allows the sealing plug 2 and the connecting bracket 3 to be detachably mounted on the mounting base 1. In practical applications, the dimensions of the sealing plug 2 and the connecting bracket 3 can be flexibly adjusted according to the diameter of the nozzle 102 of different specifications of the liquid storage container 100. Specifically, this can be achieved by fine-tuning the internal thread 32 of the connecting bracket 3 or the diameter of the sleeve 22, thereby meeting the installation requirements of the nozzle 102 of different specifications of the liquid storage container 100 and effectively improving the installation adaptability of the liquid storage container 100.

[0083] In one embodiment of this application, please refer to the following: Figure 10 , Figure 11 and Figure 12 The mounting base 1 has a buckle hole 14 on its surrounding wall 12, and the connecting frame 3 has a buckle block 33 on its outer periphery. The buckle block 33 is used to engage with the buckle hole 14 on the mounting base 1, so that the connecting frame 3 can be fixed inside the mounting base 1.

[0084] In this embodiment, as Figure 10 and Figure 12 As shown, a plurality of rectangular buckle holes 14 are evenly provided on the wall 12 of the mounting base 1; correspondingly, buckle blocks 33 with the same number and shape as the buckle holes 14 are provided on the outer periphery of the frame 31 of the connecting frame 3. These buckle blocks 33 correspond one-to-one with the buckle holes 14, which helps to improve the fixing strength of the connecting frame 3 on the mounting base 1.

[0085] Because the connecting bracket 3 is inserted into the mounting base 1 using a top-to-bottom plug-in method, it can directly snap into the mounting base 1. However, in actual operation, the fastener 33 on the outer perimeter of the frame 31 tends to get stuck on the wall 12 of the mounting base 1, making it difficult to snap into the fastener hole 14 of the wall 12. Therefore, in one embodiment of this application, it is preferable to provide an inclined surface 331 at the bottom of the fastener 33. The inclined surface 331 allows the fastener 33 to slide easily into the wall 12 of the mounting base 1 and smoothly snap into the corresponding fastener hole 14, thus completing the installation operation.

[0086] Therefore, the connecting frame 3 and the mounting base 1 are fixedly connected by a snap-fit ​​structure. The structure is simple, which facilitates the replacement of the connecting frame 3 and improves the installation efficiency.

[0087] Furthermore, since the connecting frame 3 and the mounting base 1 are connected by the aforementioned fastening block 33 and fastening hole 14, there is a situation where the fastening block 33 and fastening hole 14 are difficult to align during operation, affecting assembly efficiency. Therefore, in one embodiment of this application, please refer to... Figure 10 and Figure 12 The frame 31 of the connecting bracket 3 is also provided with a raised positioning rib 34 on its outer periphery, and the wall 12 of the mounting base 1 has a positioning groove 15 for the positioning rib 34 to slide into.

[0088] In this embodiment, the outer periphery of the frame 31 has at least two symmetrically arranged positioning ribs 34. These two positioning ribs 34 are arranged along the height direction of the frame 31 on the outer periphery of the frame 31, and the lower end of each positioning rib 34 extends to the lower end of the frame 31. Correspondingly, the wall 12 of the mounting base 1 is provided with positioning grooves 15 in the same number as the positioning ribs 34. The depth of the positioning grooves 15 is similar to the length of the positioning ribs 34, and the opening of the positioning grooves 15 is opened on the upper end surface of the wall 12 of the mounting base 1, so that the positioning ribs 34 can slide into the positioning grooves 15 from the opening of the positioning grooves 15 and be installed in place.

[0089] In this way, during the installation process, the positioning ribs 34 on the outer periphery of the frame 31 are aligned with the positioning grooves 15 on the mounting base 1, so that the positioning ribs 34 are embedded in the positioning grooves 15 and installed in place along the positioning grooves 15; during this process, the fasteners 33 on the frame 31 are automatically aligned with the fastener holes 14 on the wall 12 of the mounting base 1 and are successfully fastened, thereby assisting the fasteners 33 and fastener holes 14 to be accurately aligned, effectively reducing the installation difficulty and improving the operation efficiency.

[0090] For the structure on the connecting frame 3, please refer to one embodiment of this application. Figure 11 and Figure 12 The upper port of the frame 31 of the connecting bracket 3 is also provided with an outwardly bent flange 35, which is used to fasten to the wall 12 of the mounting base 1.

[0091] In this way, on the one hand, the flange 35 on the frame 31 can be fastened to the wall 12 of the mounting base 1, which helps to close the gap at the upper end between the frame 31 and the wall 12 of the mounting base 1, ensuring that the connecting frame 3 is installed in place on the mounting base 1. On the other hand, the flange 35 on the frame 31 makes it easier for a person to grasp the connecting frame 3 for installation, improving the stability of the installation operation.

[0092] Regarding the mounting structure of the cover 7 on the outer shell 6, please refer to one embodiment of this application. Figure 13 and Figure 14 The outer shell 6 is provided with a guide rail 62 for mounting the cover 7, and the cover 7 is provided with a sliding groove 71 that cooperates with the guide rail 62 for mounting.

[0093] In this embodiment, a pair of parallel guide rails 62 are provided on the recess 61 of the outer casing 6; correspondingly, a pair of grooves 72 are provided on the cover 7 to match the shape of the guide rails 62, and the grooves 72 are provided with the aforementioned sliding grooves 71. During installation, the cover 7 can be installed smoothly on the outer casing 6 by engaging with the guide rails 62 through the sliding grooves 71 on the grooves 72.

[0094] Therefore, the cover 7 is mounted on the guide rail 62 on the outer shell 6 using a sliding groove 71, which allows the cover 7 to be easily mounted on the outer shell 6. The structure is simple, easy to disassemble and assemble, and convenient for replacing the liquid storage container 100.

[0095] Preferably, such as Figure 13 and Figure 14As shown, the guide rail 62 of the outer casing 6 also has a slot 621; correspondingly, the groove 72 of the cover 7 is also provided with a protrusion 721 corresponding to the position of the slot 621. In this way, when the cover 7 is installed in place on the outer casing 6, the protrusion 721 and the slot 621 can engage with each other, which can not only improve the connection strength between the cover 7 and the outer casing 6, but also serve as a reminder that the cover is installed in place.

[0096] Please see Figure 15 This application also provides an electronic atomizing device, including a power supply component 8 and the atomizer provided in the above-described embodiment. The power supply component 8 is assembled at the bottom of the atomizer and includes a circuit board 81 and a battery 82 that provides power to the atomizer. The battery 82 and the atomizing component 4 are electrically connected to the circuit board 81. Specifically, the atomizing component 4 includes at least a heating element 41 with electrodes, and the electrodes on the heating element 41 are electrically connected to the circuit board 81.

[0097] As can be seen, the component layout of the entire electronic atomizing device is such that the mounting base 1 and the atomizing component 4 are arranged adjacent to each other, and the circuit board 81 and the battery 82 are arranged horizontally below the mounting base 1 and the atomizing component 4, so that the counterweight is located at the bottom of the whole device, which effectively improves the overall balance and the compactness between the various components, saves space, and reduces the overall size.

[0098] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A mounting structure of a liquid storage container including a bottle body and a bottle mouth having an external thread on the bottle mouth; characterized in that, The mounting structure comprises: a mounting seat provided with a riser pipe for extending into the bottle mouth of the liquid storage container; a sealing plug comprising a bottom pad and a sleeve for sleeving on the riser pipe, the sleeve being capable of extending into the bottle mouth of the liquid storage container with the riser pipe and being used for selectively making interference fit with the bottle mouth; a connecting frame comprising a surrounding frame, the connecting frame being arranged on the mounting seat so that the surrounding frame surrounds the riser pipe, the extending end of the surrounding frame abutting against the bottom pad of the sealing plug, and the surrounding frame being provided with internal threads for selectively making thread fit with the external threads on the bottle mouth.

2. The mounting structure for the liquid storage container according to claim 1, wherein: The outer periphery of the sleeve is provided with an outward protruding ring, which abuts against the inner wall of the bottle mouth of the liquid storage container.

3. The mounting structure for the liquid storage container according to claim 1, wherein: The bottom pad is provided with a step, which abuts against the bottle mouth port of the liquid storage container.

4. The mounting structure for the liquid storage container according to claim 1, wherein: The bottom pad is further provided with a protruding rib corresponding to the position of the end of the surrounding frame of the connecting frame, which abuts against the end of the surrounding frame.

5. The mounting structure for the liquid storage container according to any one of claims 1 to 4, characterized in that: The bottom of the bottom pad of the sealing plug is provided with a through hole in communication with the sleeve, which is a gradually expanding trumpet hole.

6. An atomiser characterised in that, The mounting structure comprises an atomization assembly, a fixing body, a shell, a cover body and a liquid storage container as claimed in any one of claims 1 to 5, the fixing body being arranged in the shell, the fixing body being provided with the mounting seat, an atomization pipeline and a flow guide channel in communication with the atomization pipeline and the mounting seat, the atomization assembly being arranged in the atomization pipeline, the atomization assembly being used for heating and atomizing liquid and generating aerosol, the liquid storage container being mounted on the mounting seat, the atomized liquid in the liquid storage container reaching the atomization assembly through the flow guide channel. One side of the shell is provided with a recess for arranging the liquid storage container, the recess being provided with an opening in communication with the mounting seat, the liquid storage container being arranged in the recess, the bottle mouth being inserted into the mounting seat from the opening, the cover body being detachably arranged on the recess, the liquid storage container being contained in the covering range of the cover body.

7. The atomizer of claim 6, wherein: The mounting seat comprises a surrounding wall arranged on the fixing body and surrounding the riser pipe, the surrounding wall and the riser pipe being arranged with a spacing to form an isolation cavity, the sealing plug and the connecting frame being arranged in the isolation cavity.

8. The atomizer of claim 7, wherein: The surrounding wall of the mounting seat is provided with a buckle hole, the surrounding frame of the connecting frame being provided with a buckle block on the outer periphery, the buckle block being used for buckling with the buckle hole.

9. The atomizer of claim 7, wherein: The outer periphery of the surrounding frame of the connecting frame is further provided with a protruding positioning rib, the surrounding wall of the mounting seat being provided with a positioning groove for sliding the positioning rib.

10. The atomizer of claim 7, wherein: The surrounding frame of the connecting frame is further provided with an outwardly bent flange on the port, the flange being used for buckling on the surrounding wall of the mounting seat.

11. The atomizer of claim 6, wherein: The shell is provided with a guide rail for mounting the cover body, the cover body being provided with a sliding groove for mounting fit with the guide rail.

12. An electronic atomizing device, characterized by: The atomizer comprises a power supply assembly and an atomizer as claimed in any one of claims 6 to 11, the power supply assembly comprising a circuit board and a battery for providing power to the atomizer, the atomization assembly being electrically connected with the circuit board.