Atomization device

By designing a detachable liquid storage device and atomization device connection structure in the atomization device, the problems of difficult replacement and odor contamination of the liquid storage device are solved, the effect of quick replacement and leakage prevention is achieved, and the user experience is improved.

CN223310653UActive Publication Date: 2025-09-09HG INNOVATION LTD
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Patent Information

Application Number
CN202422094203.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-09-09
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The liquid storage device of the existing atomization equipment is difficult to disassemble and replace after use, which increases the user's usage cost. In addition, the mixing of different atomization matrices easily produces cross-flavor problems, affecting the user experience.

Method used

An atomization device is designed in which a liquid storage device and an atomization device are detachably connected to the liquid storage tank through an atomization tank. A snap-on structure is used to achieve quick replacement, and a buffer part and a sealing component are used to prevent leakage and odor of the atomized matrix, thereby improving user experience.

Benefits of technology

The rapid replacement of the liquid storage device is achieved, the cross-flavoring of the atomized matrix is ​​avoided, the cost of use is reduced, and the user experience is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses atomization equipment which comprises a suction nozzle, a liquid storage device, an atomization device and an energy supply unit, the liquid storage device comprises a liquid storage bin, and the suction nozzle is installed at one end of the liquid storage bin; the atomization device comprises an atomization bin and a shell, an inner cavity of the shell is of a hollow structure with an opening, a partition plate is arranged in the middle of the inner cavity of the shell and divides the inner cavity of the shell into a first cavity and a second cavity, and the atomization bin is arranged in the first cavity; one end of the atomizing bin is provided with an opening, and the other end of the liquid storage bin is detachably mounted in the atomizing bin through the opening; the energy supply unit is installed in the second cavity. According to the atomization equipment, a user can select the liquid storage devices for storing different types of atomization matrixes according to needs, and the liquid storage bins and the atomization bins can be rapidly replaced in a detachable connection mode, so that replacement of the liquid storage devices is achieved, and the liquid storage devices containing the atomization matrixes with different shelf lives or different tastes can be replaced; and more choices are provided for the user.
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Description

Technical Field

[0001] The present application relates to the technical field of atomizers, and in particular to an atomizing device. Background Art

[0002] The atomization device is an electronic atomizer product that can heat and atomize the liquid atomization matrix to produce an aerosol.

[0003] The various components of the atomization equipment are usually connected in a fixed manner, which makes it difficult to disassemble and replace the liquid storage device for storing the atomization matrix after use. Users can only choose to discard it, thereby increasing the user's usage cost. Utility Model Content

[0004] The present application aims to provide an atomization device, in which the atomization device and the liquid storage device are detachably connected through the atomization tank and the liquid storage tank. Users can choose a liquid storage device storing different types of atomization matrices according to their needs to quickly replace the liquid storage device, avoiding the problem of cross-flavor caused by adding different atomization matrices into the same liquid storage device, thereby improving the user experience.

[0005] The present application provides an atomization device, comprising:

[0006] Suction nozzle;

[0007] The liquid storage device comprises a liquid storage tank, and the suction nozzle is installed at one end of the liquid storage tank;

[0008] An atomizing device includes an atomizing chamber and a housing. The inner cavity of the housing is a hollow structure with an opening. A partition plate is provided in the middle of the inner cavity of the housing, and the partition plate divides the inner cavity of the housing into a first chamber and a second chamber. The atomizing chamber is arranged inside the first chamber; one end of the atomizing chamber has an opening, and the other end of the liquid storage tank is detachably mounted in the atomizing chamber through the opening.

[0009] An energy supply unit is installed in the second chamber.

[0010] As a further solution of the atomization device provided in this application, the outer wall of the liquid storage tank is provided with a clamping portion, and the tank wall of the atomization tank is provided with a clamping position, and the liquid storage tank and the atomization tank are connected by clamping the clamping portion at the clamping position.

[0011] As a further solution of the atomization device provided in the present application, the suction nozzle is fixedly or detachably connected to one end of the liquid storage tank.

[0012] As a further solution of the atomization device provided in the present application, the nozzle has a nozzle portion, a first extension portion and a second extension portion, the first extension portion extends from the circumferential side of the nozzle portion in a direction away from the nozzle portion, and the second extension portion extends from the circumferential side of the first extension portion in a direction toward the liquid storage tank, the first extension portion surrounds one end of the liquid storage tank, the second extension portion surrounds part of the circumferential side wall of the liquid storage tank, and the second extension portion is detachably connected to the outer wall of the shell located in the first chamber.

[0013] As a further solution of the atomization device provided in the present application, the atomization device further includes a bottom cover, which is detachably covered on an end of the housing facing away from the atomization bin to block the opening of the housing located in the second chamber.

[0014] As a further solution of the atomization device provided in the present application, an aerosol channel is provided in the liquid storage device, and the nozzle has a nozzle channel, which is communicated with the aerosol channel.

[0015] As a further solution of the atomization equipment provided in the present application, the atomization device also includes a cache component, which is arranged inside the atomization bin. An insertion port is provided at the end of the atomization bin facing away from the suction nozzle. The cache component is provided with an atomization channel. The insertion port, the atomization channel and the aerosol channel are connected in sequence.

[0016] As a further solution of the atomization device provided in the present application, the atomization device further includes an atomization core, the partition plate is provided with a mounting seat, the atomization core is fixed to the mounting seat, and the atomization core can be inserted into the atomization channel through the insertion port.

[0017] As a further solution of the atomization device provided in the present application, the atomization device also includes a sealing assembly, which includes a first seal and a second seal. The first seal is arranged at one end of the aerosol channel close to the atomization core, and the second seal is arranged at the insertion port. After the atomization core is inserted into the atomization channel through the insertion port, the first seal and the second seal are used to interference fit with both ends of the atomization core.

[0018] As a further solution of the atomization equipment provided in the present application, the liquid storage tank is provided with a liquid hole at one end close to the atomization tank, a sealing piece is provided at the liquid hole, and a pushing column is provided inside the atomization tank. When the liquid storage tank is installed into the atomization tank through the opening of the atomization tank, the pushing column can push the sealing piece out of the liquid hole.

[0019] According to the atomization device of the above embodiment, the user can assemble the liquid storage device and the atomization device for use, and can quickly replace the liquid storage device through the detachable connection between the liquid storage tank and the atomization tank to achieve the replacement of the liquid storage device. The liquid storage device containing atomization matrices with different shelf lives or different flavors can be replaced to provide users with more choices. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 A three-dimensional diagram of the atomization device provided for this application;

[0021] Figure 2 An exploded view of the atomization device provided for this application;

[0022] Figure 3 A cross-sectional view of the atomization device provided for this application;

[0023] Figure 4 This is an exploded view of the cross-section effect of the atomization equipment provided in this application.

[0024] Reference numerals:

[0025] Suction nozzle 10, suction nozzle portion 101, first extension portion 102, second extension portion 103, suction nozzle channel 11;

[0026] Liquid storage device 20, liquid storage tank 21, clamping portion 211, aerosol channel 212, liquid hole 213, blocking member 214, tank body 215, cover 216, buffer member 312, atomization channel 3120;

[0027] Atomizing device 30, atomizing chamber 31, engaging portion 311, buffer member 312, insertion port 313, atomizing channel 3120, atomizing core 32, atomizing tube 321, liquid guide member 322, heating member 323, liquid guide port 324, fixing member 325, housing 33, partition plate 330, first chamber 331, second chamber 332, mounting base 333, bottom cover 34;

[0028] Energy supply unit 40;

[0029] Sealing assembly 50 , first sealing member 51 , second sealing member 52 . DETAILED DESCRIPTION

[0030] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.

[0031] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various implementations, and the operational steps involved in each embodiment may be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a particular embodiment and do not imply a required composition and / or sequence.

[0032] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).

[0033] Atomizers typically consist of a nozzle, a liquid storage device, an atomizer, and a power supply unit. However, these components are typically connected in a fixed manner, resulting in the atomizer matrix being discarded after use, increasing user costs. Some atomizer devices also have a liquid inlet or hole in the liquid storage device to allow for the addition of atomizer matrix. However, after adding other atomizer matrix, residual atomizer matrix mixes with the newly added atomizer matrix, creating a poor user experience.

[0034] In response to the above problems, the present application provides an atomization device that can avoid odor contamination by quickly replacing the liquid storage device to improve the user experience.

[0035] See also Figure 1 and Figure 2As shown, the atomization device provided in the present application includes: a nozzle 10, a liquid storage device 20, an atomization device 30 and an energy supply unit 40. The liquid storage device 20 can provide the atomization device 30 with an atomization matrix in liquid form that can be heated and atomized to produce an aerosol. The atomization device 30 can heat and atomize the atomization matrix to produce an aerosol. The energy supply unit 40 provides the atomization device 30 with the energy required for heating. The user can inhale through the nozzle 10, so that external air enters the interior of the atomization device 30, and the generated aerosol is output from the nozzle 10 along with the flow of air.

[0036] The liquid storage device 20 includes a liquid storage tank 21 , which is used to store the atomized matrix. The suction nozzle 10 is installed at one end of the liquid storage tank 21 .

[0037] In one embodiment, the nozzle 10 and one end of the liquid storage tank 21 can be fixedly connected or detachably connected. In a fixed connection, when the user replaces the liquid storage device 20, they must also replace the nozzle 10. In a detachable connection, when the user replaces the liquid storage device 20, they must remove the nozzle 10 and install it on one end of the liquid storage tank 21 after replacing the new liquid storage device 20.

[0038] The atomizing device 30 includes an atomizing chamber 31 and a housing 33 ( Figure 2 In order to show the internal structure of the shell 33, the shell 33 is shown in a cross-sectional form. The inner cavity of the shell 33 is a hollow structure with an opening. A partition plate 330 is provided in the middle of the inner cavity of the shell 33. The partition plate 330 divides the inner cavity of the shell 33 into a first chamber 331 and a second chamber 332. The atomization bin 31 is arranged inside the first chamber 331. One end of the atomization bin 31 has an opening 310 and the other end is closed. The other end of the liquid storage bin 21 can be detachably installed in the atomization bin 31 through the opening 310, so that the liquid storage bin 21 is installed inside the atomization bin 31. The energy supply unit 40 is installed inside the second chamber 332.

[0039] In the present application, after the user has used up the atomized matrix stored in the liquid storage tank 21, the atomization tank 31 and the liquid storage tank 21 are detachably connected, so the user can quickly remove the liquid storage device 20 and replace it with a new one. This allows the user to replace the liquid storage device 20 with a liquid storage device containing atomized matrix with a different shelf life or a different flavor, thereby providing the user with more choices. At the same time, it can also avoid the problem of cross-flavor caused by the difference between the atomized matrix added later and the residual atomized matrix, further improving the user experience.

[0040] In one embodiment of the present application, both ends of the hollow structure of the inner cavity of the shell 33 have openings to facilitate the installation of the energy supply unit 40. In order to fix the energy supply unit 40 in the second chamber 332, see Figure 2-Figure 4As shown, the atomization device provided in the present application also includes a bottom cover 34, which is detachably covered on the end of the shell 33 facing away from the atomization bin 31, that is, the bottom cover 34 is covered at the opening of the second chamber 332. The bottom cover 34 and the opening of the second chamber 332 can be quickly connected, for example, by snapping, screws, etc., to seal the opening of the shell 33 in the second chamber 332, which can facilitate the disassembly and assembly of the energy supply unit 40.

[0041] Continue to see Figure 2-Figure 4 As shown, the outer wall of the liquid storage bin 21 is provided with a clamping portion 211 , and the bin wall of the atomization bin 31 is provided with a clamping position 311 . The liquid storage bin 21 and the atomization bin 31 are quickly connected by clamping the clamping portion 211 in the clamping position 311 .

[0042] Specifically, when the other end of the liquid storage tank 21 is installed into the interior of the atomizing tank 31 through the opening 310, the snap-fit ​​portion 211 can be snapped into the snap-fit ​​position 311, so that the liquid storage tank 21 can be quickly assembled with the atomizing tank 31. In this way, when replacing the liquid storage tank 21, quick disassembly can be achieved, which is convenient for the user.

[0043] Of course, in other embodiments, the liquid storage tank 21 and the atomization tank 31 may also be connected using other quick-release methods.

[0044] See also Figure 2-Figure 4 As shown, the suction nozzle 10 has a suction nozzle portion 101, a first extension portion 102 and a second extension portion 103. The first extension portion 102 extends from the circumferential side of the suction nozzle portion 101 in a direction away from the suction nozzle portion 101, and the second extension portion 103 extends from the circumferential side of the first extension portion 102 in a direction toward the liquid storage tank 21. The first extension portion 102 surrounds one end of the liquid storage tank 21, and the second extension portion 103 surrounds part of the circumferential side wall of the liquid storage tank 21. In addition, the second extension portion 103 is detachably connected to the outer wall of the shell 33 located in the first chamber 331, so that the second extension portion 103 and the shell 33 form a structure that surrounds the liquid storage device 20 and the atomization device 30, so as to protect the liquid storage device 20 and the atomization device 30, and at the same time can improve the aesthetics of the outer surface of the atomization equipment product.

[0045] When the user needs to replace the liquid storage device 30 , the user should first remove the connection between the second extension portion 103 and the outer wall of the housing 33 located in the first chamber 331 .

[0046] The liquid storage device 20 is provided with an aerosol passage 212, and the nozzle 10 has a nozzle passage 11, which is connected to the aerosol passage 212. The aerosol passage 212 is formed by the inner cavity of a tubular structure located within the liquid storage tank 21. The tubular structure can be integrated with the interior of the liquid storage tank 21 or can be a separate structure, depending on actual needs.

[0047] The aerosol passage 212 penetrates the liquid storage tank 21 , and allows the aerosol generated by the atomization device 30 to be output through the aerosol passage 212 and the mouthpiece passage 11 for use by the user.

[0048] The atomization device 30 also includes a cache component 312, which is arranged inside the atomization bin 31. An insertion port 313 is provided at the end of the atomization bin 31 facing away from the nozzle 10. The cache component 312 is provided with an atomization channel 3120. After the liquid storage bin 21 is installed inside the atomization bin 31, the insertion port 313, the atomization channel 3120 and the aerosol channel 212 are connected in sequence.

[0049] In this embodiment, the atomization device 30 further includes an atomization core 32 . A mounting seat 333 is provided on the partition plate 330 , and the atomization core 32 is fixed on the mounting seat 333 . After the atomization bin 31 is installed in the first chamber 331 of the housing 33 , the atomization core 32 can be inserted into the atomization channel 3120 through the insertion port 313 .

[0050] In one embodiment of the present application, the liquid storage device 20 and the atomization device 30 adopt a split structure. On the one hand, it can prevent the atomization matrix from leaking in the assembled state, and at the same time, it can also avoid the atomization core 32 from being immersed in the atomization matrix for a long time and becoming ineffective.

[0051] During the installation of the liquid storage tank 21 into the atomization tank 31, in order to allow the atomized matrix to flow into the atomization tank 31 and be stored by the buffer element 312, in this embodiment, a liquid hole 213 is provided at the other end of the liquid storage tank 21, and a blocking member 214 is provided at the liquid hole 213. A push pin 314 is also provided inside the atomization tank 31. During the installation of the other end of the liquid storage tank 21 into the atomization tank 31 through the opening 310, the push pin 314 can push the blocking member 214 away from the liquid hole 213, so that the liquid storage tank 21 and the atomization tank 31 are connected through the liquid hole 213. The atomized matrix stored in the liquid storage tank 21 then flows into the atomization tank 31 through the liquid hole 213 and is buffered by the buffer element 312.

[0052] The atomized substrate cached in the cache element 312 can slowly release the atomized substrate to the atomizer core 32 to avoid the problem that the atomized substrate cannot be fully heated by the atomizer core 32 due to excessive amount of the atomized substrate.

[0053] In this embodiment, two engaging positions 311 can be provided on the wall of the atomizing bin 31. When the other end of the liquid storage bin 21 is installed into the atomizing bin 31 through the opening 310, when the push pin 314 does not contact the blocking member 214, the first engaging position 311 is engaged with the engaging portion 211 on the liquid storage bin 21, so that the push pin 314 can be kept in this position to prevent the atomizing core 32 from being immersed in the atomizing matrix for a long time, and thus the atomizing device can be kept in the shipping state to achieve oil-core separation. When the user needs to use the atomizing device, the atomizing bin 31 is moved so that the push pin 314 can push the blocking member 214 out of the liquid hole 213, thereby connecting the liquid storage bin 21 and the atomizing bin 31 through the liquid hole 213, and the atomizing matrix flows into the atomizing bin 31 through the liquid hole 213.

[0054] The buffer element 312 provided in the atomization bin 31 can be made of materials such as cotton and fiber. The atomized matrix flowing into the atomization bin 21 through the liquid hole 213 is adsorbed and stored by the buffer element 312. The atomization channel 3120 in the buffer element 312 is connected to the aerosol channel 212 and the insertion port 313. After the liquid storage device 20 and the atomization device 30 are assembled, the atomization core 32 in the atomization device 30 can be inserted into the atomization channel 3120 through the insertion port 313. The buffer element 312 can then transfer the stored atomized matrix to the atomization core 32, so that the atomized matrix is ​​atomized by heating through the atomization core 32 to generate an aerosol, and the aerosol is output to the outside of the liquid storage bin 21 through the aerosol channel 113.

[0055] The setting of the liquid hole 213 allows the atomized matrix stored in the liquid storage tank 21 to flow slowly into the liquid storage tank 21, and the setting of the buffer element 312 allows the atomized matrix to be slowly transferred to the atomizing core 32, thereby preventing a large amount of atomized matrix from being transferred to the atomizing core 32 and failing to be fully heated and atomized.

[0056] After the liquid storage device 20 and the atomizing device 30 are assembled, the atomizing core 32 in the atomizing device 30 is installed in the atomizing channel 3120 through the insertion port 313. The buffer element 312 can transmit the atomizing matrix to the atomizing core 32. The atomizing core 32 can heat the atomizing matrix to generate aerosol by heating. The generated aerosol is output through the aerosol channel 212 and the nozzle channel 11.

[0057] The atomizing matrix is ​​usually in liquid form and is formed by volatile compounds that can be heated to produce an aerosol. Materials with a flavoring function can also be added or mixed to enrich the smell of the aerosol produced. By using atomizing matrices formed by different volatile compounds or the same volatile compound and materials with different flavoring functions, a liquid storage device 20 with different types of atomizing matrices can be produced. In the atomizing device provided by the present application, the user can choose a liquid storage device 20 that stores different types of atomizing matrices according to needs, and assemble the liquid storage device 20 with the atomizing device 30 for use. The liquid storage device 20 can be quickly replaced, thereby avoiding the problem of cross-flavoring caused by adding different atomizing matrices to the same liquid storage device, thereby improving the user experience.

[0058] In the liquid storage device 20, since the atomization channel 3120 of the buffer component 312 is exposed to the air, there is a problem of leakage of the atomization matrix. Therefore, when not in use, the two ends of the atomization channel 3120 can be blocked by a sealing structure to block one end of the aerosol channel 212 toward the atomization channel 3120 and the insertion port 313, thereby avoiding leakage of the atomization matrix.

[0059] In this embodiment, the aerosol channel 212 is connected to the atomizing channel 3120, and there is a certain assembly gap between the two. Moreover, after the liquid storage device 20 and the atomizing device 30 are assembled, the mounting seat 333 is located at the insertion port 313 and also has an assembly gap. In order to prevent the atomized matrix from leaking from the above gap, Figure 3 and Figure 4 As shown, the atomization device in this embodiment further includes a sealing assembly 50, which includes a first sealing member 51 and a second sealing member 52. The first sealing member 51 is arranged at one end of the aerosol channel 3120 close to the atomization core 32, and the second sealing member 52 is arranged at the insertion port 313. After the atomization core 32 is inserted into the atomization channel 3120 through the insertion port 313, the first sealing member 51 and the second sealing member 52 are used to interference fit with both ends of the atomization core 32, so as to cooperate with the first sealing member 51 and the second sealing member 52 to seal both ends of the atomization channel 3120 to prevent leakage of the atomized matrix.

[0060] In one embodiment of the present application, after the atomizer core 32 is installed in the insertion port 313 and installed in the atomizer channel 3120, part of the atomizer core 32 is located in the aerosol channel 212, and the first sealing member 51 is set at one end of the aerosol channel 212 close to the atomizer channel 3120, and the second sealing member 52 is set at the insertion port 313. The first sealing member 51 can seal the gap between the atomizer core 32 and the aerosol channel 212, and the second sealing member 52 can seal the gap between the clamping position 311 and the insertion port 313.

[0061] Of course, when not in use, a blocking structure having a shape similar to that of the atomizer core 32 can be inserted into the atomization channel 3120 from the insertion port 313, and part of the blocking structure can be displaced so that the aerosol channel 212 is close to one end of the atomization channel 3120. The blocking structure cooperates with the first sealing member 51 and the second sealing member 52 to block the end of the aerosol channel 212 close to the atomization channel 3120 and the insertion port 313, thereby achieving the effect of sealing the atomization channel 3120.

[0062] like Figure 4 As shown, the atomization core 32 includes an atomization tube 321, a liquid guide member 322 and a heating member 323, wherein the liquid guide member 322 and the heating member 323 are both arranged inside the atomization tube 321, and the heating member 323 is a mesh heating wire structure, and the heating member 323 is wrapped by the liquid guide member 322. A liquid guide port 324 is also provided on the atomization tube 321, and the atomization tube 321 is installed in the cache member 312 of the partition plate 330. After the atomization core 32 is installed in the atomization channel 3120 through the insertion port 313, the liquid guide member 322 can contact the cache member 312 through the liquid guide port 324, so that the atomization matrix can be transferred from the cache member 312 to the liquid guide member 322, and the atomization matrix can be heated and atomized by the heating member 323 to generate an aerosol. At the same time, the mounting seat 333 cooperates with the second sealing member 52 located at the insertion port 313 , and a portion of the atomizing tube 321 extends to one end of the aerosol channel 212 close to the atomizing channel 3120 and cooperates with the first sealing member 51 .

[0063] The liquid guiding member 322 can also be made of materials such as cotton and fiber. After the atomizing tube 321 is installed in the atomizing channel 3120 through the insertion port 313, the liquid guiding member 322 can be brought into contact with the buffer member 312 through the liquid guiding port 324. The atomized matrix stored in the buffer member 312 is then transferred to the liquid guiding member 322, and the heating member 323 can then atomize the atomized matrix transferred to the liquid guiding member 322 by heating to generate an aerosol.

[0064] In one embodiment of the present application, a fixing member 325 is further provided inside the engaging position 311 , and the electrode electrically connecting the heating member 323 and the energy supply unit 40 passes through the fixing member 325 and is positioned by the fixing member 325 .

[0065] In this embodiment, the atomizing bin 31 has an opening 310 at one end thereof, so that the atomizing bin 31 has a side wall. After the atomizing bin 31 is connected to the liquid storage bin 21, the liquid storage bin 21 can be placed inside the atomizing bin 31. On the one hand, the atomizing bin 31 can form a protective structure for the liquid storage bin 21, and on the other hand, it can also form an exterior structure of the atomizing device. During installation, the liquid storage device 20 needs to be installed from above the atomizing bin 31, that is, from the opening 310 of the atomizing bin 31, and the atomizing core 32 is installed into the atomizing channel 3120 through the insertion port 313. The atomized matrix is ​​not easily leaked to the outer surface of the product, and the overall structure is simple and easy to assemble.

[0066] In actual application, the user draws air through the nozzle 10, and external air can enter the atomization channel 3120, causing the heating element 323 to heat the atomized matrix and generate an aerosol which is then output along with the air flow through the aerosol channel 212 and the nozzle channel 11 for use by the user.

[0067] See also Figure 4 As shown, in one embodiment of the present application, the liquid storage tank 21 includes a tank body 215 and a cover body 216. The inner cavity of the tank body 215 is a hollow structure with one end closed. The cover body 216 is detachably closed at the opening at the other end of the tank body 215. The suction nozzle 10 is connected to the cover body 216 of the tank body 215. Such an arrangement can facilitate the addition of atomized matrix into the tank body 215 during the product manufacturing stage.

[0068] In actual application, the cover 216 can be considered as the top side of the bin body 215, and the suction nozzle 10 is connected to the cover 216 on the top side of the bin body 215. This connection method makes the suction nozzle 10 and the liquid storage bin 21 form a split structure.

[0069] In a specific embodiment, the suction nozzle 10 and the storage body 215 can be connected by a quick-release method such as a buckle, so as to facilitate the rapid replacement of the liquid storage device 20.

[0070] In the present application, the energy supply unit 40 is electrically connected to the heating element 323 in the atomizer core 32 to provide electrical energy to the heating element 323. The energy supply unit 40 is preferably a rechargeable lithium battery. The energy supply unit 41 can make the atomizer device portable and extend the service life of the atomizer device.

[0071] The atomizing device provided in the present application is further provided with an air inlet hole on the atomizing device 30, which is connected to the atomizing tube 321. During use, the user inhales through the nozzle 10, so that external air enters the atomizing tube 321 through the air inlet hole. The heating element 323 heats the atomizing matrix to generate an aerosol, which is output through the aerosol channel 212 and the nozzle channel 11 along with the airflow formed by the external air in the atomizing tube 321 for use by the user.

[0072] In summary, the atomization device provided by the present application allows users to choose to store different types of liquids according to their needs and can be quickly replaced through the detachable connection between the liquid storage tank and the atomization tank to achieve replacement of the liquid storage device. The liquid storage device containing atomization matrices with different shelf lives or different flavors can be replaced to provide users with more choices.

[0073] The above examples are used to illustrate the present invention, which are only used to help understand the present invention and are not intended to limit the present invention. Those skilled in the art of the present invention can make some simple deductions, modifications or substitutions based on the concept of the present invention.

Claims

1. An atomizing device, characterized in that: include: Suction nozzle; The liquid storage device comprises a liquid storage tank, and the suction nozzle is installed at one end of the liquid storage tank; An atomizing device includes an atomizing chamber and a housing. The inner cavity of the housing is a hollow structure with an opening. A partition plate is provided in the middle of the inner cavity of the housing, and the partition plate divides the inner cavity of the housing into a first chamber and a second chamber. The atomizing chamber is arranged inside the first chamber; one end of the atomizing chamber has an opening, and the other end of the liquid storage tank is detachably mounted in the atomizing chamber through the opening. An energy supply unit is installed in the second chamber.

2. The atomizing device according to claim 1, characterized in that The outer wall of the liquid storage bin is provided with a clamping portion, the bin wall of the atomization bin is provided with a clamping position, and the liquid storage bin and the atomization bin are connected by clamping the clamping portion at the clamping position.

3. The atomizing device according to claim 1, characterized in that The suction nozzle is fixedly or detachably connected to one end of the liquid storage bin.

4. The atomizing device according to claim 1, characterized in that The suction nozzle has a suction nozzle portion, a first extension portion and a second extension portion, the first extension portion extends from the circumferential side of the suction nozzle portion in a direction away from the suction nozzle portion, and the second extension portion extends from the circumferential side of the first extension portion in a direction toward the liquid storage tank, the first extension portion surrounds one end of the liquid storage tank, the second extension portion surrounds part of the circumferential side wall of the liquid storage tank, and the second extension portion is detachably connected to the outer wall of the shell located in the first chamber.

5. The atomizing device according to claim 1, characterized in that The atomizing device further comprises a bottom cover, which is detachably mounted on an end of the housing facing away from the atomizing bin to block an opening of the housing located in the second chamber.

6. The atomizing device according to claim 1, characterized in that An aerosol channel is provided in the liquid storage device, and the suction nozzle has a suction nozzle channel, which is communicated with the aerosol channel.

7. The atomizing device according to claim 6, characterized in that The atomization device also includes a cache component, which is arranged inside the atomization bin. An insertion port is provided at one end of the atomization bin facing away from the suction nozzle. The cache component is provided with an atomization channel. The insertion port, the atomization channel and the aerosol channel are connected in sequence.

8. The atomizing device according to claim 7, characterized in that The atomization device further includes an atomization core. The partition plate is provided with a mounting seat. The atomization core is fixed to the mounting seat. The atomization core can be inserted into the atomization channel through the insertion port.

9. The atomizing device according to claim 8, characterized in that The atomization device also includes a sealing assembly, which includes a first sealing member and a second sealing member. The first sealing member is arranged at one end of the aerosol channel close to the atomization core, and the second sealing member is arranged at the insertion port. After the atomization core is inserted into the atomization channel through the insertion port, the first sealing member and the second sealing member are used to interference fit with both ends of the atomization core.

10. The atomizing device according to claim 1, wherein A liquid passage hole is provided at one end of the liquid storage tank close to the atomization tank, a sealing member is provided at the liquid passage hole, and a pushing column is provided inside the atomization tank. When the liquid storage tank is installed into the atomization tank through the opening of the atomization tank, the pushing column can push the sealing member out of the liquid passage hole.