Atomization assembly

By introducing a first liquid storage component and a liquid guiding component into the atomizing component, automatic gradation of the atomizing matrix is ​​achieved, solving the problems of monotonous flavor and complicated operation of existing atomizing components, and improving the user experience.

CN223873270UActive Publication Date: 2026-02-06NEVILLA (HONG KONG) LTD
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Patent Information

Application Number
CN202520155569.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-02-06
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing atomizing components offer only one flavor, while multi-flavor components require manual switching, which is cumbersome and inconvenient.

Method used

Design an atomizing component comprising a first liquid reservoir, a second liquid reservoir, and a liquid guide component. The liquid guide component enables automatic gradual change of the atomizing matrix, avoiding manual operation.

Benefits of technology

It enables automatic flavor gradation of the atomizing component, improving user experience and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an atomization assembly which comprises a first liquid storage part, a second liquid storage part, a first partition part and a first liquid guide part, and the first liquid storage part is used for storing a first atomization substrate; the second liquid storage part is arranged around the first liquid storage part and is used for storing a second atomization substrate; the first separator is arranged between the first liquid storage part and the second liquid storage part and is used for separating the first liquid storage part from the second liquid storage part; the first liquid guide part is connected with the first liquid storage part and the second liquid storage part, and the second atomization substrate can flow from the second liquid storage part to the first liquid storage part through the first liquid guide part. According to the atomization assembly provided by the invention, the second atomization substrate can flow to the first liquid storage part through the first liquid guide part, so that the aerosol generated by the atomization assembly can gradually change from the taste of the first atomization substrate to the taste of the second atomization substrate, the gradual change of the taste of the atomization assembly can be realized without manual operation, and the user experience feeling can be improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of atomization, in particular to an atomization assembly. BACKGROUND

[0002] The atomization assembly refers to a device for forming an aerosol by heating or ultrasonic method on the stored atomizable medium. Most of the atomization assemblies on the market have single taste, which is not rich enough. The atomization assemblies with multiple tastes often have multiple atomizers, which need to be manually switched by the user. The operation is complex and not simple enough. CONTENT OF THE UTILITY MODEL

[0003] The technical problem solved by the present application is to provide an atomization assembly to improve the richness of the taste of the atomization assembly.

[0004] The present application provides an atomization assembly, comprising:

[0005] A first liquid storage member for storing a first atomization medium;

[0006] A second liquid storage member disposed close to the first liquid storage member for storing a second atomization medium;

[0007] A first partition member disposed between the first liquid storage member and the second liquid storage member, the first partition member being used to separate at least part of the first liquid storage member and the second liquid storage member;

[0008] A first liquid guide member connecting the first liquid storage member and the second liquid storage member, the first liquid guide member being configured to guide liquid to communicate the first liquid storage member and the second liquid storage member.

[0009] According to an embodiment of the present application, the atomization assembly further comprises an atomization core, the first liquid storage member is arranged around the atomization core, the first partition member is arranged around the first liquid storage member, and the second liquid storage member is arranged around the first partition member.

[0010] According to an embodiment of the present application, the atomization assembly further comprises an atomization core, and the first liquid guide member is disposed close to the atomization core.

[0011] According to an embodiment of the present application, the density of the first liquid storage member is greater than the density of the second liquid storage member.

[0012] According to an embodiment of the present application, the first liquid guide member is located at one end of the first partition member.

[0013] The first liquid storage member and the second liquid storage member are respectively in abutment with the same surface of the first liquid guide member.

[0014] According to an embodiment of the present application, the atomization assembly further comprises:

[0015] The liquid storage bin is internally provided with the first liquid storage member and the second liquid storage member.

[0016] The bottom cover is connected to one end of the liquid storage bin, the first liquid guide member abuts between the first liquid storage member and the bottom cover, and the first liquid guide member abuts between the second liquid storage member and the bottom cover.

[0017] According to an embodiment of the present application, the first partition member is provided with a liquid guide hole, and the first liquid storage member and the second liquid storage member are connected through the liquid guide hole.

[0018] According to an embodiment of the present application, the first liquid guide member is arranged in the liquid guide hole, and the first liquid storage member and the second liquid storage member are respectively connected to the two opposite sides of the first liquid guide member.

[0019] According to an embodiment of the present application, the atomization assembly further comprises:

[0020] The third liquid storage member is used for storing a third atomization substrate.

[0021] The second partition member is arranged between the second liquid storage member and the third liquid storage member, and is used for partitioning the second liquid storage member and the third liquid storage member.

[0022] The second liquid guide member connects the second liquid storage member and the third liquid storage member.

[0023] The third atomization substrate can be moved from the third liquid storage member to the second liquid storage member through the second liquid guide member.

[0024] According to an embodiment of the present application, the second liquid guide member is arranged at one end of the second partition member away from the first liquid guide member.

[0025] According to an embodiment of the present application, the density of the first liquid storage member is greater than the density of the second liquid storage member, and the density of the second liquid storage member is greater than the density of the third liquid storage member.

[0026] The atomization assembly provided by the present application can make the first liquid storage member gradually change from the first atomization substrate to the second atomization substrate, so that the aerosol generated by the atomization assembly can gradually change from the taste of the first atomization substrate to the taste of the second atomization substrate, and the user can realize the gradual change of the taste of the atomization assembly without manual operation, which is beneficial to improve the convenience of the atomization assembly and improve the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained based on these drawings without creative labor.

[0028] Figure 1 is a structural schematic diagram of an embodiment of an atomization assembly of the present application;

[0029] Figure 2 is a cross-sectional schematic diagram of the atomization assembly shown in Figure 1

[0030] Figure 3 is another angle cross-sectional schematic diagram of the atomization assembly shown in Figure 1

[0031] Figure 4 is a structural schematic diagram of an atomizer of the atomization assembly shown in Figure 1

[0032] Figure 5 is a cross-sectional schematic diagram of the atomizer shown in Figure 4

[0033] Figure 6 is another angle cross-sectional schematic diagram of the atomizer shown in Figure 4

[0034] Figure 7 is a structural exploded schematic diagram of the atomizer shown in Figure 4

[0035] Figure 8 is a schematic diagram of part of the structure of the atomizer shown in Figure 4

[0036] Figure 9 is a cross-sectional schematic diagram of part of the structure of the atomizer shown in Figure 4

[0037] Figure 10 is a schematic diagram of part of the structure of another embodiment of an atomization assembly of the present application;

[0038] In the drawings, the components represented by the respective reference numerals are listed as follows:

[0039] ​​​​​​​​The atomizer 10, the atomizing core 110, the air channel 1101, the atomizing tube 111, the air guide tube 112, the first liquid storage member 120, the second liquid storage member 130, the first partition member 140, the liquid guide hole 1401, the first liquid guide member 150, the air guide hole 1501, the liquid storage bin 160, the bottom cover 170, the third liquid storage member 180, the second partition member 190, the second liquid guide member 191, the top cover 192, the communication tube 1921, the pressing part 1922, the backflow groove 1923, the power supply assembly 20, the battery cell 210, the circuit board 220, the shell 30, and the suction nozzle 40. DETAILED DESCRIPTION

[0040] The application will be further described below in conjunction with the drawings and embodiments. It is particularly pointed out that the following embodiments are only for illustrating the application, but not for limiting the scope of the application. Similarly, the following embodiments are only part of the embodiments of the application, not all the embodiments of the application, and all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the application.

[0041] The terms "first", "second", "third" in the embodiments of the application are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second", "third" can explicitly or implicitly include at least one of the features. In the description of the application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically limited. All directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the application are only for explaining the relative positional relationship, movement condition, etc. between the components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly. The terms "include" and "have" and any variations thereof in the embodiments of the application are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or components inherent to the process, method, product or device.

[0042] In this document, reference to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive of one another. Those skilled in the art will appreciate from the present description that embodiments described herein can be combined with other embodiments.

[0043] The embodiments of the application provide an atomizing assembly, such as Figure 1and Figure 2 As shown, the atomizing assembly includes a power supply component 20 and an atomizer 10, with the power supply component 20 electrically connected to the atomizer 10.

[0044] In some embodiments, such as Figures 4 to 6 As shown, the atomizer 10 includes an atomizing core 110, a first liquid reservoir 120, a second liquid reservoir 130, a first separator 140, and a first liquid guide 150. The first liquid reservoir 120 is used to store a first atomizing matrix, and the first liquid reservoir 120 is connected to the atomizing core 110. The second liquid reservoir 130 is disposed near the first liquid reservoir 120 and is used to store a second atomizing matrix. The first separator 140 is disposed between the first liquid reservoir 120 and the second liquid reservoir 130, and the first separator 140 is used to separate at least the first liquid reservoir 120 and the second liquid reservoir 130. The first liquid guide 150 connects the first liquid reservoir 120 and the second liquid reservoir 130, and the second atomizing matrix can flow from the second liquid reservoir 130 to the first liquid reservoir 120 through the first liquid guide 150.

[0045] In one embodiment, the second liquid storage component 130 is disposed around the first liquid storage component 120, and the first separator 140 completely separates the first liquid storage component 120 and the second liquid storage component 130, so that the first liquid storage component 120 and the second liquid storage component 130 do not contact each other, thereby preventing the first atomizing matrix and the second atomizing matrix from flowing freely between the first liquid storage component 120 and the second liquid storage component 130.

[0046] In this embodiment, the second liquid storage component 130 is connected to the first liquid guide component 150 and the first liquid storage component 120, allowing the aerosol generated by the atomizing core 110 to gradually change from the flavor of the first atomizing matrix to the flavor of the second atomizing matrix. This gradual change in flavor of the atomizing component can be achieved without manual operation by the user, which is beneficial to improving the user experience. At the same time, the first liquid storage component 120 and the second liquid storage component 130 are separated by the first separator 140 to control the mixing efficiency between the first atomizing matrix and the second atomizing matrix, and to avoid excessive mixing of the atomizing matrix during storage and transportation due to excessive contact area between the first liquid storage component 120 and the second liquid storage component 130.

[0047] In one embodiment, when the atomizing assembly is not in use, the first atomizing matrix stored in the first liquid reservoir 120 is in a full state, so the second atomizing matrix is ​​difficult to enter the first liquid reservoir 120. When the atomizing assembly is in use, the first atomizing matrix stored in the first liquid reservoir 120 can move to the atomizing core 110 and be heated and atomized by the atomizing core 110 to form an aerosol with the flavor of the first atomizing matrix.

[0048] As the first atomized substrate is gradually atomized, the mass of the first atomized substrate in the first liquid storage member 120 gradually decreases, and the second atomized substrate in the second liquid storage member 130 can be moved to the first liquid storage member 120 through the first liquid guide member 150, mixed with the first atomized substrate to form a mixed atomized substrate, and heated and atomized by the atomization core 110 to form an aerosol with a mixed taste, and the proportion of the first atomized substrate in the mixed atomized substrate gradually decreases, and the taste of the aerosol gradually changes to the taste of the second atomized substrate. When the first atomized substrate in the first liquid storage member 120 is consumed, the atomization core 110 only heats and atomizes the second atomized substrate to generate an aerosol with the taste of the second atomized substrate, so that the aerosol generated by the atomization assembly has rich and diverse tastes and has a gradual change feature.

[0049] In some embodiments, the first atomized substrate and the second atomized substrate can be atomized substrates with different tastes, that is, the first atomized substrate and the second atomized substrate can be different in composition to obtain different tastes. For example, the first atomized substrate can be a fruit tea taste, and the second atomized substrate can be a mint taste, so that the user can experience a gradual change from a fruit tea taste to a mint taste. In other embodiments, the first atomized substrate and the second atomized substrate can be similar or identical in composition but different in concentration, so that the tastes are similar but the intensity of taste perception is different. For example, the concentration of the first atomized substrate is greater than that of the second atomized substrate, so that the user can experience a gradual change in taste.

[0050] In one embodiment, the atomization assembly further includes an atomization core 110, and the first liquid guide member 150 is arranged near the atomization core 110. The first liquid storage member 120 and the second liquid storage member 130 are both porous materials, and liquid atomized substrates can spontaneously flow from areas with high liquid concentration to areas with low liquid concentration through capillary force. Since the first atomized substrate or the second atomized substrate is consumed near the atomization core 110 to form an area with low liquid concentration, arranging the first liquid guide member 150 near the atomization core 110 can quickly transfer the second atomized substrate to the first liquid storage member 120 and mix with the first atomized substrate near the atomization core 110 to form a composite taste.

[0051] In some embodiments, the materials of the first liquid storage member 120 and the second liquid storage member 130 can be materials with liquid adsorption properties. Specifically, the first liquid storage member 120 and the second liquid storage member 130 can be oil storage cotton, and the materials thereof can include flax cotton and oil-soaked cotton.

[0052] In some embodiments, the first liquid storage member 120 has a density greater than that of the second liquid storage member 130. The first liquid storage member 120 and the second liquid storage member 130 can absorb the atomized substrate by capillary action, and when the first atomized substrate of the first liquid storage member 120 is consumed, the second atomized substrate in the second liquid storage member 130 can be absorbed by the first liquid storage member 120 under the influence of capillary action due to the density of the first liquid storage member 120 being greater than that of the second liquid storage member 130.

[0053] Specifically, the first liquid storage member 120 and the second liquid storage member 130 are oil storage cotton, and the greater the density of the oil storage cotton, the denser the fibers in the oil storage cotton, the more the atomized substrate contacts the fibers in the oil storage cotton, and the stronger the absorption (capillary) action of the atomized substrate and the fibers in the oil storage cotton. Thus, the second atomized substrate in the second liquid storage member 130 can be absorbed by the first liquid storage member 120.

[0054] In some embodiments, the first liquid guide member 150 is made of a material having the property of absorbing and guiding liquid. Specifically, the first liquid guide member 150 can be oil storage cotton.

[0055] In some embodiments, the first liquid guide member 150 can have a smaller sealing than the first liquid storage member 120 and a larger sealing than the second liquid storage member 130.

[0056] In some embodiments, the first liquid storage member 120 is arranged around the atomization core 110, the first partition member 140 is arranged around the first liquid storage member 120, and the second liquid storage member 130 is arranged around the first partition member 140.

[0057] Specifically, the first liquid storage member 120 and the second liquid storage member 130 can have a cross-section in the shape of a ring, and the first partition member 140 can have a tubular shape. The atomization core 110, the first liquid storage member 120, the first partition member 140, and the second liquid storage member 130 are nested from the inside to the outside. The atomized substrate can move along a path from the outside to the inside to the atomization core 110, gradually changing from one flavor to another, providing users with a rich and interesting smoking experience.

[0058] In some embodiments, the first liquid guide member 150 is located at one end of the first partition member 140, and the first liquid storage member 120 and the second liquid storage member 130 are connected to the same side of the first liquid guide member 150, and the first liquid storage member 120 and the second liquid storage member 130 respectively abut the same surface of the first liquid guide member 150.

[0059] In some embodiments, as Figure 5 , Figures 7 to 9As shown, the atomizer 10 further comprises a liquid storage bin 160 and a bottom cover 170 connected to one end of the liquid storage bin 160, the first liquid storage member 120 and the second liquid storage member 130 are arranged in the liquid storage bin 160, the first liquid guide member 150 abuts between the first liquid storage member 120 and the bottom cover 170, and the first liquid guide member 150 abuts between the second liquid storage member 130 and the bottom cover 170.

[0060] In some embodiments, a sealing ring is sealingly connected between the bottom cover 170 and the liquid storage bin 160 to prevent the atomization substrate of the first liquid storage member 120 and the second liquid storage member 130 from leaking from the connection between the bottom cover 170 and the liquid storage bin 160.

[0061] Specifically, the first liquid guide member 150 can simultaneously contact the side of the first liquid storage member 120 facing the bottom cover 170 and the side of the second liquid storage member 130 facing the bottom cover 170. By arranging the first liquid guide member 150, the second atomization substrate in the second liquid storage member 130 can bypass the first partition member 140 and enter the first liquid storage member 120.

[0062] In some embodiments, the side of the bottom cover 170 facing the first liquid guide member 150 can be a flat surface, i.e., the contact surface between the bottom cover 170 and the first liquid guide member 150 is a flat surface, so that the bottom cover 170 can evenly apply force to the first liquid guide member 150, thereby enabling the side of the first liquid guide member 150 away from the bottom cover 170 and the side of the first liquid storage member 120 close to the first liquid guide member 150 and the side of the second liquid storage member 130 close to the first liquid guide member 150 to be in sufficient contact.

[0063] In some embodiments, the first liquid guide member 150 is an integral structure, the first liquid guide member 150 is provided with a gas guide hole 1501, the atomization core 110 is provided with an atomization tube 111, the atomization tube 111 is inserted into the gas guide hole 1501, and the first liquid storage member 120 is arranged around the atomization tube 111.

[0064] In some embodiments, the outer contour of the first liquid guide member 150 can correspond to the outer contour of the cross section of the second liquid storage member 130, so that the first liquid guide member 150 and the second liquid storage member 130 are in sufficient contact.

[0065] In some embodiments, the number of first liquid guide members 150 is one or more, and a plurality of first liquid guide members 150 can be arranged in a central symmetric distribution around the atomization tube 111, and each first liquid guide member 150 is connected with the first liquid storage member 120 and the second liquid storage member 130. Specifically, the number of first liquid guide members 150 can be 1, 3, 4, 7, etc.

[0066] In some embodiments, the heating element and the oil guide cotton are arranged in the atomization tube 111, the oil guide cotton is wrapped on the heating element, the oil guide cotton is connected with the first liquid storage member 120 through the through hole of the atomization tube 111, so as to guide the atomization substrate in the first liquid storage member 120 to the heating element, and the atomization substrate is heated and atomized by the heating element to form an aerosol.

[0067] In some embodiments, the atomization core 110 is provided with an air channel 1101, and the aerosol generated by the heating and atomization of the heating element can move to the outside of the atomizer 10 through the air channel 1101. The atomization core 110 further comprises a gas guide pipe 112, which is inserted into one end of the atomization tube 111 away from the bottom cover 170. The gas guide pipe 112 and the atomization tube 111 cooperate to form the air channel 1101, and the air channel 1101 extends from the inside of the atomization tube 111 to the inside of the gas guide pipe 112.

[0068] In some embodiments, the first partition member 140 is provided with a liquid guide hole 1401, and the first liquid storage member 120 and the second liquid storage member 130 are connected through the liquid guide hole 1401.

[0069] Specifically, the first liquid storage member 120 and the second liquid storage member 130 can be respectively abutted on the inner and outer sides of the first partition member 140, and the first liquid storage member 120 and the second liquid storage member 130 are in contact and fit at the liquid guide hole 1401, so that the second atomization substrate in the second liquid storage member 130 can be adsorbed by the first liquid storage member 120 through the liquid guide hole 1401.

[0070] In some embodiments, the first liquid guide member 150 is arranged in the liquid guide hole 1401, and the first liquid storage member 120 and the second liquid storage member 130 are respectively connected to the opposite sides of the first liquid guide member 150.

[0071] Specifically, the first liquid guide member 150 can be fixedly connected with the side wall of the liquid guide hole 1401 in a manner of adhesion or interference fit, or the first liquid guide member 150 can be pressed by the first liquid storage member 120 and the second liquid storage member 130 on both sides to be fixed in the liquid guide hole 1401. The second atomization substrate in the second liquid storage member 130 can be adsorbed by the first liquid storage member 120 through the first liquid guide member 150 at the liquid guide hole 1401.

[0072] In some embodiments, the number of liquid guide holes 1401 can be one or more and be distributed in a central symmetry around the air channel 1101. Specifically, the number of liquid guide holes 1401 can be 2, 4, 5, 7, etc., and each liquid guide hole 1401 can be provided with a first liquid guide member 150.

[0073] In some embodiments, the atomizer 10 further comprises a top cover 192 provided with a communication pipe 1921 in communication with the air channel 1101, the communication pipe 1921 is inserted into the air channel 1101, and the top cover 192 is provided with a pressing portion 1922 on the side facing the first liquid storage member 120, the pressing portion 1922 abuts against the first liquid storage member 120 and the second liquid storage member 130, so that the first liquid storage member 120 and the second liquid storage member 130 are in full contact with the first liquid guide member 150 under the action of the pressure.

[0074] In some embodiments, as shown in Figure 2 and Figure 4 the top cover 192 is provided with the suction nozzle 40 on the side facing away from the first liquid storage member 120, and the air channel 1101 is in communication with the suction nozzle 40 through the communication pipe 1921. The top cover 192 is provided with a backflow groove 1923 near the suction nozzle 40, the backflow groove 1923 is in communication with the communication pipe 1921, and the backflow groove 1923 is used to guide the liquid on the side of the top cover 192 near the suction nozzle 40 to flow to the communication pipe 1921. By providing the backflow groove 1923, the condensed liquid formed near the suction nozzle 40 can flow back to the liquid storage compartment 160 along the backflow groove 1923.

[0075] Specifically, the backflow groove 1923 is in the shape of a fishbone, and the bottom wall of the backflow groove 1923 gradually inclines toward the first liquid storage member 120 in the direction from the edge of the top cover 192 to the axis of the communication pipe 1921.

[0076] In some embodiments, the top cover 192 and the suction nozzle 40 are further provided with condensed cotton, the condensed cotton covers the backflow groove 1923, and the condensed cotton is used to adsorb the condensed liquid flowing back to the suction nozzle 40.

[0077] In some embodiments, as shown in Figure 10 the atomizer 10 further comprises a third liquid storage member 180, a second separation member 190, and a second liquid guide member 191, the third liquid storage member 180 is used to store a third atomization substrate, the second separation member 190 is arranged between the second liquid storage member 130 and the third liquid storage member 180, the second separation member 190 is used to separate the second liquid storage member 130 and the third liquid storage member 180, and the second liquid guide member 191 connects the second liquid storage member 130 and the third liquid storage member 180, so that the third atomization substrate can move from the third liquid storage member 180 to the second liquid storage member 130 through the second liquid guide member 191. By providing the third liquid storage member 180, the aerosol taste of the atomizer 10 can gradually change between three tastes, and the taste change is more diverse.

[0078] In some embodiments, the second separation member 190 surrounds the second liquid storage member 130, and the third liquid storage member 180 surrounds the second separation member 190.

[0079] Specifically, the second partition 190 can be tubular in shape, and the third liquid storage 180 can be annular in shape. The atomizing core 110, the first liquid storage 120, the first partition 140, the second liquid storage 130, the second partition 190, and the third liquid storage 180 are nested from inside to outside.

[0080] In some embodiments, the densities of the first liquid storage 120, the second liquid storage 130, and the third liquid storage 180 gradually decrease. The third liquid storage 180 can be oil storage cotton, and the second liquid guide 191 can be oil guide cotton. The density of the second liquid guide 191 can be greater than that of the third liquid storage 180 and less than that of the second liquid storage 130.

[0081] In some embodiments, the second partition 190 can be provided with a through hole, and the second liquid storage 130 and the third liquid storage 180 can be in contact through the through hole, so that the third atomizing substrate in the third liquid storage 180 can be adsorbed by the second liquid storage 130, and then the third atomizing substrate can be adsorbed by the first liquid storage 120 through the second liquid storage 130.

[0082] In some embodiments, the second liquid guide 191 can be arranged at the through hole of the second partition 190 to connect the second liquid storage 130 and the third liquid storage 180.

[0083] In some embodiments, the distance between the first liquid guide 150 and the second liquid guide 191 to the bottom cover 170 can not be the same. By arranging the connection positions of the first liquid guide 150 and the first liquid storage 120, the second liquid storage 130, and the connection positions of the second liquid guide 191 and the second liquid storage 130, the third liquid storage 180, the transmission path of the atomizing substrate can be effectively controlled, thereby achieving a more rich taste gradient effect.

[0084] In some embodiments, the second liquid guide 191 can be arranged at one end of the second partition 190, and the second liquid storage 130 and the third liquid storage 180 are connected to the same side of the second liquid guide 191.

[0085] In some embodiments, the second liquid guide 191 is arranged at an end of the second partition 190 away from the first liquid guide 150. The distance between the second liquid guide 191 and the first liquid guide 150 is as long as possible to prolong the moving path of the atomizing substrate from the second liquid guide 191 to the first liquid guide 150, so that the third atomizing substrate will not be immediately guided out of the first liquid guide 150 after entering the second liquid storage 130, so that the taste of the aerosol can gradually change from the taste of the first atomizing substrate to the taste of the second atomizing substrate, and then gradually change from the taste of the second atomizing substrate to the taste of the third atomizing substrate.

[0086] In some embodiments, the first liquid guide 150 is directly connected only to the first liquid reservoir 120 and the second liquid reservoir 130, and not directly connected to the third liquid reservoir 180. The second liquid guide 191 is directly connected only to the second liquid reservoir 130 and the third liquid reservoir 180, and not directly connected to the first liquid reservoir 120.

[0087] Specifically, the third liquid storage component 180 is located inside the liquid storage chamber 160, and the second liquid guiding component 191 is located at the end of the second partition 190 away from the bottom cover 170. The second liquid guiding component 191 is connected to the side of the second liquid storage component 130 away from the bottom cover 170 and the side of the third liquid storage component 180 away from the bottom cover 170. The first liquid guiding component 150 is connected to the side of the second liquid storage component 130 near the bottom cover 170 and the side of the first liquid storage component 120 near the bottom cover 170.

[0088] In some embodiments, such as Figure 2 and Figure 3 As shown, the power supply component 20 includes a battery cell 210 and a circuit board 220. The battery cell 210 is electrically connected to the atomizing core 110 through the circuit board 220.

[0089] In some embodiments, the atomizing assembly further includes a housing 30, a power supply assembly 20, and an atomizer 10 housed within the housing 30. A mouthpiece 40 is located at the end of the housing 30 furthest from the bottom cover 170, and the mouthpiece 40 is connected to the air passage 1101 via a connecting pipe 1921. An air hole is located at the bottom of the housing 30, and a through-tube is located on the side of the bottom cover 170 near the first liquid reservoir 120, which is inserted into the atomizing tube 111. External gas can enter the atomizing assembly through the air hole in the housing 30, enter the air passage 1101 through the through-tube in the bottom cover 170, and then exit from the mouthpiece 40 through the connecting pipe 1921.

[0090] The atomizing component provided in this application, by setting a first liquid guide 150, allows the second atomizing matrix to move from the second liquid storage 130 to the first liquid storage 120. The atomizing matrix heated by the atomizing core 110 can gradually change from the first atomizing matrix to the second atomizing matrix. The aerosol generated by the atomizing core 110 can gradually change from the flavor of the first atomizing matrix to the flavor of the second atomizing matrix. Users can achieve gradual flavor changes without manual operation, and the flavor changes are rich and diverse, which helps to improve the convenience of the atomizing component and enhance the user experience.

[0091] The above description is only a part of the embodiments of this application and does not limit the scope of protection of this application. Any equivalent device or equivalent process transformation made based on the content of this application specification and drawings, or direct or indirect application in other related technical fields, are similarly included in the patent protection scope of this application.

Claims

1. An atomizing assembly, characterized in that, The application relates to an atomization assembly. The atomization assembly comprises: a first liquid storage member for storing a first atomization substrate; a second liquid storage member arranged close to the first liquid storage member for storing a second atomization substrate; a first partition member arranged between the first liquid storage member and the second liquid storage member, the first partition member being used for partitioning at least part of the first liquid storage member and the second liquid storage member; 2. The atomization assembly of claim 1, wherein, a first liquid guide member connecting the first liquid storage member and the second liquid storage member, the first liquid guide member being configured to guide liquid to communicate the first liquid storage member and the second liquid storage member.

3. The atomization assembly of claim 1, wherein, The atomization assembly further comprises an atomization core, the first liquid storage member is arranged around the atomization core, the first partition member is arranged around the first liquid storage member, and the second liquid storage member is arranged around the first partition member.

4. The atomization assembly of claim 1, wherein, The atomization assembly further comprises an atomization core, and the first liquid guide member is arranged close to the atomization core.

5. The atomization assembly of claim 1, wherein, The density of the first liquid storage member is greater than the density of the second liquid storage member. The first liquid guide member is located at one end of the first partition member.

6. The atomization assembly of claim 5, wherein, The first liquid storage member and the second liquid storage member are respectively in abutment with the same surface of the first liquid guide member. The atomization assembly further comprises: a liquid storage bin in which the first liquid storage member and the second liquid storage member are arranged; 7. The atomization assembly of claim 1, wherein, a bottom cover connected to one end of the liquid storage bin, the first liquid guide member is in abutment between the first liquid storage member and the bottom cover, and the first liquid guide member is in abutment between the second liquid storage member and the bottom cover.

8. The atomization assembly of claim 7, wherein, The first partition member is provided with a liquid guide hole, and the first liquid storage member and the second liquid storage member are connected through the liquid guide hole.

9. The atomization assembly of claim 1, wherein, The first liquid guide member is arranged in the liquid guide hole, and the first liquid storage member and the second liquid storage member are respectively connected to the opposite sides of the first liquid guide member. The atomization assembly further comprises: a third liquid storage member for storing a third atomization substrate; a second partition member arranged between the second liquid storage member and the third liquid storage member, the second partition member being used for partitioning the second liquid storage member and the third liquid storage member; a second liquid guide member connecting the second liquid storage member and the third liquid storage member; 10. The atomization assembly of claim 9, wherein, The third atomization substrate can be moved from the third liquid storage member to the second liquid storage member through the second liquid guide member.

11. The atomization assembly of claim 9, wherein, The second liquid guide member is arranged at one end of the second partition member away from the first liquid guide member. The density of the first liquid storage member is greater than the density of the second liquid storage member, and the density of the second liquid storage member is greater than the density of the third liquid storage member.