Air inlet structure, battery rod and electronic atomization device

By using a magnetic component to control the air intake structure of the electronic atomizing device, the problem of laborious air intake structure switching in the prior art is solved, and an easy-to-operate air intake structure design is achieved.

CN224219445UActive Publication Date: 2026-05-12SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN GEEKVAPE TECH CO LTD
Filing Date
2025-03-06
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The air intake structure of existing electronic atomizing devices is laborious to switch, causing inconvenience to users.

Method used

The air intake structure's air regulating component is controlled by a magnetic component to slide or rotate on the bracket. The opening and closing of the atomization channel is achieved through the attraction and separation of the magnetic component, reducing friction and simplifying operation.

Benefits of technology

It enables easy switching of the air intake structure, reduces friction during user operation, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air inlet structure, a battery rod and an electronic atomization device. Belongs to the technical field of aerosol generation. According to the air inlet structure, the air adjusting piece is movably arranged on the support and is provided with the first position and the second position relative to the support, the first magnetic piece is arranged on the air adjusting piece, and the second magnetic piece and the third magnetic piece are arranged on the support; by arranging the magnetic attraction assembly, the air adjusting piece can be controlled to be stably kept at the first position and the second position and be tightly attached to the support, and when the air adjusting piece is switched between the first position and the second position, the air adjusting piece can be tightly attached to the support. The air adjusting piece does not need to move relative to the support in the state of being tightly attached, and therefore position switching can be easily achieved without overcoming large friction force between the air adjusting piece and the air adjusting piece.
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Description

Technical Field

[0001] This application relates to the field of aerosol generation technology, and more specifically, to an air intake structure, a battery rod, and an electronic atomization device. Background Technology

[0002] An electronic atomizing device is a device that heats an aerosol matrix using an atomizing component, causing the heated aerosol matrix to atomize and generate an aerosol for the user to inhale. An electronic atomizing device typically consists of two main parts: an atomizer and a battery. The battery provides power to the atomizer, enabling the atomizing component to heat and atomize the aerosol matrix contained within the atomizer to generate an aerosol.

[0003] For electronic atomizing devices, the air intake structure is generally located on the battery rod. External airflow enters the battery rod through the air intake structure, passes through the battery rod, and then enters the atomizer. Within the atomizer's atomization channel, it mixes with the generated aerosol before exiting the atomizer through the mouthpiece. In existing technology, the air intake structure on the battery rod is typically divided into two types: open and adjustable. An open air intake structure means that the air intake channel is directly connected to the outside environment; an adjustable air intake structure means that the air intake port can be opened or closed, or the airflow volume can be adjusted. Furthermore, for devices with multiple atomizing components, it allows control over the opening of the air intake channels corresponding to some (or more) of the atomizing components, or control over the opening of the air intake channels corresponding to all atomizing components.

[0004] For air intake structures that control the opening or closing of the atomization channel, existing air intake structures typically use a sliding toggle switch to open or close the air passage. In this structure, the toggle switch and the air passage switching area with the ventilation hole are connected by a locking arm and a sliding groove for sliding limit engagement. A sealing ring is provided at the air intake hole to cooperate with the toggle switch. In order to ensure a tight seal between the toggle switch and the sealing ring to effectively block the air intake hole, a large fit between the toggle switch and the locking hole is required. Therefore, there is a large friction between the toggle switch and the air passage switching area during the toggle operation, making it difficult for the user to operate. Thus, the existing air intake structure needs improvement. Utility Model Content

[0005] The main objective of this application is to provide an air intake structure, a battery rod, and an electronic atomizing device to solve the problem that the air intake structure in the prior art is relatively laborious when switching operations.

[0006] On one hand, this application provides an air intake structure for controlling whether the first air intake end of the first atomizing channel is connected to or isolated from the outside, the air intake structure comprising:

[0007] The bracket is configured to have a first air inlet, one end of which is connected to the first air inlet end of the first atomizing channel;

[0008] An air regulating component, movably mounted on the support and having a first position and a second position relative to the support; and

[0009] A magnetic suction assembly, comprising a first magnetic element, a second magnetic element, and a third magnetic element, wherein the first magnetic element is disposed on the air regulating element, and the second magnetic element and the third magnetic element are respectively disposed on the bracket;

[0010] When the gas regulating component is in the first position, the gas regulating component blocks the first air inlet, the first air inlet end of the first atomizing channel is isolated from the outside, and the first magnetic component attracts one of the second magnetic component and the third magnetic component.

[0011] When the air regulating component is in the second position, the air regulating component opens the first air inlet, the first air inlet end of the first atomizing channel is connected to the outside, and the first magnetic component attracts the other of the second magnetic component and the third magnetic component.

[0012] Furthermore, the air intake structure is also used to control the second air intake end of the second atomizing channel to be connected to or isolated from the outside, and the second atomizing channel is independent of the first atomizing channel;

[0013] The bracket is also configured to have a second air inlet, one end of which is connected to the second air inlet end of the second atomizing channel, and the second air inlet and the first air inlet are arranged along a first straight line direction;

[0014] When the air regulating component is in the first position, the air regulating component blocks the first air inlet and opens the second air inlet. The first air inlet end of the first atomizing channel is isolated from the outside, and the second air inlet end of the second atomizing channel is connected to the outside. The first magnetic component attracts one of the second magnetic component and the third magnetic component.

[0015] When the air regulating component is in the second position, the air regulating component opens the first air inlet and blocks the second air inlet, so that the first air inlet end of the first atomizing channel is connected to the outside, and the second air inlet end of the second atomizing channel is isolated from the outside, and the first magnetic component attracts the other of the second magnetic component and the third magnetic component.

[0016] Furthermore, the air regulating component has a third position relative to the bracket, and the third position is not the same as the first position and the second position;

[0017] The magnetic attraction assembly further includes a fourth magnetic element, which is disposed on the bracket and is positioned differently from the second and third magnetic elements on the bracket.

[0018] When the gas regulating component is in the third position, the gas regulating component simultaneously opens the first air inlet and the second air inlet, so that the first air inlet end of the first atomizing channel is connected to the outside, and the second air inlet end of the second atomizing channel is connected to the outside, and the first magnetic component and the fourth magnetic component attract each other.

[0019] Furthermore, the air regulating component is slidably disposed on the bracket along the first straight line direction to switch between the first position, the second position, and the third position;

[0020] The second magnetic component, the third magnetic component, and the fourth magnetic component are disposed on the bracket along the first straight line direction, and the first of the second, third, and fourth magnetic components is located between the second and third of the second, third, and fourth magnetic components.

[0021] Furthermore, the air regulating component is provided with at least one first limiting part along the first straight line direction;

[0022] The bracket is provided with a second limiting part along the first straight direction. The second limiting part is adapted to the first limiting part so that the air regulating component is slidably limited and connected to the bracket along the first straight direction.

[0023] Furthermore, the air regulating component is provided with two parallel first limiting portions on both sides along the first straight line direction; the bracket is provided with a matching second limiting portion corresponding to each of the first limiting portions.

[0024] Wherein, one of the first limiting part and the second limiting part is a limiting slide groove, and the other of the first limiting part and the second limiting part is a limiting connecting arm.

[0025] Furthermore, the air regulating component is rotatably mounted on the bracket along the rotation axis to switch between the first position, the second position, and the third position;

[0026] Wherein, the rotation axis is perpendicular to the plane in which the air regulating component and the bracket are in contact at the first position or the second position;

[0027] When the gas regulating component is in the first position, the first magnetic component is attracted to one of the second magnetic component and the third magnetic component.

[0028] When the gas regulating component is in the second position, the first magnetic component is attracted to the other of the second magnetic component and the third magnetic component.

[0029] When the gas regulating component is in the third position, the first magnetic component and the fourth magnetic component attract each other.

[0030] Furthermore, the gas regulating component is provided with a first magnetic component on each of its two sides along the first straight line direction;

[0031] The bracket is provided with a second magnetic element, a third magnetic element and a fourth magnetic element on both sides along the first straight line direction. The two second magnetic elements are respectively located on opposite sides of the first air inlet, the two third magnetic elements are respectively located on opposite sides of the second air inlet, and the two fourth magnetic elements are located between the two second magnetic elements and the two third magnetic elements along the first straight line direction.

[0032] When the gas regulating component is in the first position, the two first magnetic components are attracted to each other by one second magnetic component.

[0033] When the gas regulating component is in the second position, the two first magnetic components are respectively attracted to one of the third magnetic components;

[0034] When the gas regulating component is in the third position, the two first magnetic components are attracted to each other by one of the fourth magnetic components.

[0035] Furthermore, the air intake structure further includes a first sealing element, which is disposed within the first air intake hole, and the first sealing element has multiple independent first through holes; and

[0036] The second sealing element is disposed inside the second air inlet, and the second sealing element has multiple independent second through holes.

[0037] On the other hand, this application also provides a battery rod, which includes the air intake structure described in any of the above claims;

[0038] The battery rod also includes a mounting bracket, which is configured to form a first air intake channel and a second air intake channel. The first air intake channel and the second air intake channel are arranged along the first straight line direction, and the first air intake channel connects the first air intake end and the first air intake hole of the first atomizing channel, and the second air intake channel connects the second air intake end and the second air intake hole of the second atomizing channel; and

[0039] The first power supply component and the second power supply component are provided. The mounting frame is configured to have a first receiving position and a second receiving position. The first receiving position and the second receiving position are arranged along a second straight line direction. The first power supply component is located in the first receiving position and the second power supply component is located in the second receiving position.

[0040] Wherein, the second straight line direction is perpendicular to the first straight line direction, and the first air intake channel and the second air intake channel are respectively located in the gap between the first receiving position and the second receiving position.

[0041] Furthermore, this application also provides an electronic atomizing device, which includes the aforementioned battery rod; and

[0042] An atomizer is connected to the end of the battery rod away from the air intake structure. The atomizer is configured to form a first atomizing unit and a second atomizing unit that are independent of each other. The first atomizing unit is configured to form a first atomizing channel, and the second atomizing unit is configured to form a second atomizing channel.

[0043] In the air intake structure of this application, by movably mounting the air regulating component on the bracket and having a first position and a second position relative to the bracket, and by providing a first magnetic component on the air regulating component, and a second magnetic component and a third magnetic component on the bracket, when the first magnetic component is attracted to one of the second magnetic component and the third magnetic component, the air regulating component can be stably maintained in the first position and tightly attached to the bracket to block the first air intake hole, thereby isolating the first air intake end of the first atomizing channel from the outside. When the magnetic component and the other of the third magnetic component are attracted to each other, the gas regulating component can be stably held in the second position to open the first air inlet, thereby connecting the first air inlet end of the first atomizing channel to the outside. By setting the magnetic component, not only can the gas regulating component be stably held in the first position and the second position, but the gas regulating component can also be switched between the first position and the second position without relative movement between it and the bracket in a tightly fitted state. Therefore, the position switching can be easily achieved without overcoming the large friction between the gas regulating component and the bracket. Attached Figure Description

[0044] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0045] Figure 1This is a schematic diagram of the air intake structure in one embodiment of this application.

[0046] Figure 2 This is an exploded view of the air intake structure in one embodiment of this application.

[0047] Figure 3 for Figure 1 A sectional view along the A-A1 direction.

[0048] Figure 4 for Figure 1 A cross-sectional view along the B-B1 direction shows the air regulating component sliding along the first straight line in the first position.

[0049] Figure 5 for Figure 1 A cross-sectional view along the C-C1 direction shows the air regulating component sliding along the first straight line in the second position.

[0050] Figure 6 for Figure 1 A cross-sectional view along the B-B1 direction shows the air regulating component sliding along the first straight line in the first position.

[0051] Figure 7 for Figure 1 A cross-sectional view along the C-C1 direction shows the air regulating component sliding along the first straight line in the second position.

[0052] Figure 8 for Figure 1 A cross-sectional view along the B-B1 direction shows the air regulating component sliding along the first straight line in the third position.

[0053] Figure 9 for Figure 1 A cross-sectional view along the C-C1 direction shows the air regulating component sliding along the first straight line in the third position.

[0054] Figure 10 for Figure 1 A cross-sectional view along the B-B1 direction, showing the air regulating component rotating along the axis of rotation in the first position.

[0055] Figure 11 for Figure 1 A cross-sectional view along the C-C1 direction, showing the air regulating component rotating along the axis of rotation in the second position.

[0056] Figure 12 for Figure 1 A cross-sectional view along the C-C1 direction, showing the air regulating component rotating along the axis of rotation in the third position.

[0057] Figure 13This is a schematic diagram of the battery rod in one embodiment of this application.

[0058] Figure 14 for Figure 13 A sectional view along the D-D1 direction.

[0059] Figure 15 for Figure 13 A sectional view along the E-E1 direction.

[0060] Figure 16 for Figure 13 A cross-sectional view along the F-F1 direction shows the air regulating component sliding along the first straight line in the first position.

[0061] Figure 17 for Figure 13 A cross-sectional view along the F-F1 direction shows the air regulating component sliding along the first straight line in the second position.

[0062] Figure 18 for Figure 13 A cross-sectional view along the F-F1 direction shows the air regulating component sliding along the first straight line in the third position.

[0063] Figure 19 This is a schematic diagram of an electronic atomizing device in one embodiment of this application, with the outer casing hidden in the diagram.

[0064] Figure 20 for Figure 19 A cross-sectional view along the G-G1 direction.

[0065] Figure 21 for Figure 19 A cross-sectional view along the H-H1 direction shows the air regulating component sliding along the first straight line in the first position, and the corresponding airflow path is shown.

[0066] The above figures include the following reference numerals:

[0067] Air intake structure 10, bracket 11, first air intake 111, second air intake 112, second limiting part 113, air regulating component 12, first limiting part 121, first magnetic component 131, second magnetic component 132, third magnetic component 133, fourth magnetic component 134, first sealing component 14, first through hole 141, second sealing component 15, second through hole 151, first linear direction X, second linear direction Y, rotation axis L, battery rod 100, mounting bracket 20, first air intake channel 21, second air intake channel 22, first receiving position 23, and the second air intake 100 are also present. Two receiving compartments 24, first power supply unit 30, second power supply unit 40, main control board 50, charging board 60, switch board 70, control button 80, control switch 90, electronic atomizing device 1000, atomizer 200, first atomizing unit 210, first atomizing channel 211, first atomizing tube 212, first liquid guiding component 213, first heating element 214, second atomizing unit 220, second atomizing channel 221, second atomizing tube 222, second liquid guiding component 223, second heating element 224, first liquid storage chamber 230, second liquid storage chamber 240. Detailed Implementation

[0068] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0069] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0070] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0071] Please see Figure 1-3 As shown, this application provides an air intake structure 10, which is used to control whether the first air intake end of the first atomizing channel 211 is connected to or isolated from the outside. The air intake structure 10 includes a bracket 11, an air regulating component 12, and a magnetic suction assembly. The air regulating component 12 is movably disposed on the bracket 11 and has a first position and a second position relative to the bracket 11. The magnetic suction assembly is partially disposed on the bracket 11 and partially disposed on the air regulating component 12, and is used to control the air regulating component 12 to be stably maintained in the first position or the second position.

[0072] Furthermore, the bracket 11 is configured to have a first air inlet 111, one end of which is connected to the first air intake end of the first atomizing channel 211. When the air regulating component 12 is in the first position, the air regulating component 12 blocks the end of the first air inlet 111 away from the first atomizing channel 211, so that external airflow cannot enter the first atomizing channel 211 from the first air intake end through the first air inlet 111. When the air regulating component 12 is in the second position, the air regulating component 12 is opened at the end of the first air inlet 111 away from the first atomizing channel 211, so that external airflow can enter the first atomizing channel 211 from the first air intake end through the first air inlet 111.

[0073] Further, please refer to Figure 2 As shown, the magnetic attraction assembly includes a first magnetic element 131, a second magnetic element 132, and a third magnetic element 133. The first magnetic element 131 is disposed on the air regulating element 12, and the second magnetic element 132 and the third magnetic element 133 are respectively disposed on the bracket 11.

[0074] Please see Figure 4-5 As shown, when the air regulating component 12 is in the first position, it blocks the first air inlet 111, isolating the first air inlet end of the first atomizing channel 211 from the outside. At this time, the first magnetic component 131 attracts one of the second magnetic component 132 and the third magnetic component 133, so that the air regulating component 12 can be stably held in the first position under magnetic attraction and tightly attached to the bracket 11, thereby isolating the first air inlet end of the first atomizing channel 211 from the outside by blocking the first air inlet 111.

[0075] Please see Figure 6-7As shown, when the air regulating component 12 is in the second position, the air regulating component 12 opens the first air inlet 111, and the first air inlet end of the first atomizing channel 211 is connected to the outside. At this time, the first magnetic component 131 and one of the second magnetic component 132 and the third magnetic component 133 attract each other, so that the air regulating component 12 can be stably held in the second position under the magnetic attraction and tightly attached to the bracket 11, thereby connecting the first air inlet end of the first atomizing channel 211 to the outside through the first air inlet 111.

[0076] Furthermore, by setting the magnetic suction component, not only can the gas regulating component 12 be stably maintained in the first position and the second position and closely attached to the bracket 11, but also, compared with the prior art of using a limiting sliding connection to slide and closely attach the gas regulating component 12 to the bracket 11, the gas regulating component 12 can switch between the first position and the second position without relative movement between it and the bracket 11 in a tightly attached state. Thus, the position switching can be easily achieved without overcoming the large friction between the gas regulating component 12 and the bracket 11.

[0077] Further, please refer to Figure 1-9 As shown, in one embodiment, the air intake structure 10 is further used to control whether the second air intake end of the second atomizing channel 221 is connected to or isolated from the outside. The second atomizing channel 221 is independent of the first atomizing channel 211.

[0078] The bracket 11 is also configured to have a second air inlet 112, one end of which is connected to the second air inlet end of the second atomizing channel 221, and the second air inlet 112 and the first air inlet 111 are arranged along the first straight line direction X.

[0079] The air regulating component 12 also has a third position relative to the bracket 11, which is not the same as the first position and the second position. When the air regulating component 12 is in the third position, the air regulating component 12 simultaneously opens the first air inlet 111 and the second air inlet 112.

[0080] Furthermore, the magnetic attraction assembly also includes a fourth magnetic element 134. The fourth magnetic element 134 is disposed on the support 11 and is positioned differently from the second magnetic element 132 and the third magnetic element 133 on the support 11. The fourth magnetic element 134 attracts the first magnetic element 131 to hold the air regulating element 12 in the third position.

[0081] Please see Figure 4-5 As shown, when the air regulating component 12 is in the first position, the air regulating component 12 blocks the first air inlet 111 and opens the second air inlet 112. The first air inlet end of the first atomizing channel 211 is isolated from the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside. The first magnetic component 131 and one of the second magnetic component 132 and the third magnetic component 133 attract each other.

[0082] Please see Figure 6-7 As shown, when the air regulating component 12 is in the second position, the air regulating component 12 opens the first air inlet 111 and blocks the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is isolated from the outside, and the first magnetic component 131 and the other of the second magnetic component 132 and the third magnetic component 133 are attracted to each other.

[0083] Please see Figure 8-9 As shown, when the air regulating component 12 is in the third position, the air regulating component 12 simultaneously opens the first air inlet 111 and the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside, and the first magnetic component 131 and the fourth magnetic component 134 attract each other.

[0084] By setting the fourth magnetic component 134, the second air inlet 112, and the second atomizing channel 221 connected to the second air inlet 112, the air intake structure 10 can control the first atomizing channel 211 and the second atomizing channel 221, so that the user can easily switch the position of the air regulating component 12 on the bracket 11 according to the needs.

[0085] Further, please refer to Figure 1 and Figure 4-9 As shown, in a first embodiment, the air regulating component 12 is slidably disposed on the support 11 along the first straight direction X, so as to switch between the first position, the second position, and the third position. The second magnetic component 132, the third magnetic component 133, and the fourth magnetic component 134 are spaced apart on the air regulating component 12 along the first straight direction X, and the first of the second, third, and fourth magnetic components 132, 133, and 134 is disposed along the first straight direction X between the second and third of the second, third, and fourth magnetic components 132, 133, and 134.

[0086] In one specific embodiment, the second magnetic element 132 is located relative to the third magnetic element 133 and the fourth magnetic element 134 along the first straight direction X, close to the first air inlet 111. The fourth magnetic element 134 is located between the second magnetic element 132 and the third magnetic element 133, and the third magnetic element 133 is close to the second air inlet 112.

[0087] When the air regulating component 12 is in the first position, the air regulating component 12 blocks the first air inlet 111 and opens the second air inlet 112. The first air inlet end of the first atomizing channel 211 is isolated from the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside. The first magnetic component 131 and the second magnetic component 132 attract each other.

[0088] When the air regulating component 12 is in the second position, the air regulating component 12 opens the first air inlet 111 and blocks the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is isolated from the outside, and the first magnetic component 131 and the third magnetic component 133 attract each other.

[0089] When the air regulating component 12 is in the third position, the air regulating component 12 simultaneously opens the first air inlet 111 and the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside, and the first magnetic component 131 and the fourth magnetic component 134 attract each other.

[0090] In another specific embodiment, the third magnetic element 133 is located relative to the fourth magnetic element 134 and the second magnetic element 132 along the first straight direction X, close to the first air inlet 111, the fourth magnetic element 134 is located between the third magnetic element 133 and the second magnetic element 132, and the second magnetic element 132 is close to the second air inlet 112.

[0091] When the air regulating component 12 is in the first position, the air regulating component 12 blocks the first air inlet 111 and opens the second air inlet 112. The first air inlet end of the first atomizing channel 211 is isolated from the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside. The first magnetic component 131 and the third magnetic component 133 attract each other.

[0092] When the air regulating component 12 is in the second position, the air regulating component 12 opens the first air inlet 111 and blocks the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is isolated from the outside, and the first magnetic component 131 and the second magnetic component 132 attract each other.

[0093] When the air regulating component 12 is in the third position, the air regulating component 12 simultaneously opens the first air inlet 111 and the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside, and the first magnetic component 131 and the fourth magnetic component 134 attract each other.

[0094] In other specific embodiments, the relative positions of the second magnetic element 132, the third magnetic element 133, and the fourth magnetic element 134 can be adjusted, and are not limited here.

[0095] Furthermore, the air regulating component 12 is provided with at least one first limiting portion 121 along the first straight direction X. The bracket 11 is provided with a second limiting portion 113 along the first straight direction X, and the second limiting portion 113 is adapted to the first limiting portion 121 so that the air regulating component 12 is slidably and limitingly connected to the bracket 11 along the first straight direction X. The cooperation between the first limiting portion 121 and the second limiting portion 113 is only used to prevent the air regulating component 12 from detaching from the bracket 11, and is not used to prevent the air regulating component 12 from being in a tight fit with the bracket 11.

[0096] In one embodiment, the air regulating component 12 is provided with a first limiting part 121, and the bracket 11 is provided with a second limiting part 113. The first limiting part 121 is located on the same side of the first air inlet 111 and the second air inlet 112 along the first straight direction X; or, the first limiting part 121 is located between the first air inlet 111 and the second air inlet 112 along the first straight direction X.

[0097] In another embodiment, the air regulating component 12 is provided with two parallel first limiting portions 121 on both sides along the first straight direction X; the bracket 11 is provided with a matching second limiting portion 113 corresponding to each of the first limiting portions 121. By setting the two first limiting portions 121 and the two second limiting portions 113 to limit and cooperate with each other, the air regulating component 12 can move more stably when switching between the first position and the second position.

[0098] Furthermore, one of the first limiting part 121 and the second limiting part 113 is a limiting groove, and the other of the first limiting part 121 and the second limiting part 113 is a limiting connecting arm. The limiting connecting arm is inserted into the corresponding limiting groove, and the limiting connecting arm can slide in the corresponding limiting groove, so that the air regulating component 12 can switch between the first position and the second position relative to the bracket 11.

[0099] Please see Figure 10-12 As shown, in the second embodiment, the air regulating component 12 is rotatably mounted on the bracket 11 along the rotation axis L, so that the air regulating component 12 can rotate relative to the bracket 11 to switch between the first position, the second position and the third position.

[0100] In a further embodiment, the rotation axis L is perpendicular to the plane in which the air regulating component 12 and the bracket 11 are in contact when they are in the first position or the second position, so that the air regulating component 12 does not extend out of the bracket 11 when switching between the first position, the second position and the third position.

[0101] When the gas regulating component 12 is in the first position, the first magnetic component 131 is attracted to one of the second magnetic component 132 and the third magnetic component 133.

[0102] When the gas regulating component 12 is in the second position, the first magnetic component 131 is attracted to one of the second magnetic component 132 and the third magnetic component 133.

[0103] When the air regulating component 12 is in the third position, the air regulating component 12 simultaneously opens the first air inlet 111 and the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside, and the first magnetic component 131 and the fourth magnetic component 134 attract each other.

[0104] In one specific embodiment, the third magnetic element 133 is positioned relative to the second magnetic element 132 and closer to the first air inlet 111 along the first linear direction X, and the second magnetic element 132 is positioned closer to the second air inlet 112. The second magnetic element 132, the third magnetic element 133, and the fourth magnetic element 134 are respectively located on the rotation path of the first magnetic element 131, and the fourth magnetic element 134 is located on the same side of the second magnetic element 132 and the third magnetic element 133 along the first linear direction X.

[0105] When the air regulating component 12 is in the first position, the air regulating component 12 blocks the first air inlet 111 and opens the second air inlet 112. The first air inlet end of the first atomizing channel 211 is isolated from the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside. The first magnetic component 131 and the third magnetic component 133 attract each other.

[0106] When the air regulating component 12 is in the second position, the air regulating component 12 opens the first air inlet 111 and blocks the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is isolated from the outside, and the first magnetic component 131 and the second magnetic component 132 attract each other.

[0107] When the air regulating component 12 is in the third position, the air regulating component 12 simultaneously opens the first air inlet 111 and the second air inlet 112, so that the first air inlet end of the first atomizing channel 211 is connected to the outside, and the second air inlet end of the second atomizing channel 221 is connected to the outside, and the first magnetic component 131 and the fourth magnetic component 134 attract each other.

[0108] In other specific embodiments, the relative positions of the second magnetic element 132, the third magnetic element 133, and the fourth magnetic element 134 can be adjusted, and are not limited here.

[0109] Further, please refer to Figure 2 and Figure 4-9 As shown, in one embodiment, the air regulating component 12 is provided with a first magnetic component 131 on both sides along the first straight direction X. The bracket 11 is provided with a second magnetic component 132, a third magnetic component 133, and a fourth magnetic component 134 on both sides along the first straight direction X. The two third magnetic components 133 are located on opposite sides of the first air inlet 111, and the two second magnetic components 132 are located on opposite sides of the second air inlet 112. One second magnetic component 132, one third magnetic component 133, and one fourth magnetic component 134 are located on the rotation path of one of the first magnetic components 131, and the other second magnetic component 132, another third magnetic component 133, and another fourth magnetic component 134 are located on the rotation path of the other first magnetic component 131. The two fourth magnetic components 134 are located on the same side of the two second magnetic components 132 and the two third magnetic components 133 along the first straight direction X.

[0110] When the gas regulating component 12 is in the first position, the two first magnetic components 131 are attracted to each other by one of the third magnetic components 133.

[0111] When the gas regulating component 12 is in the second position, the two first magnetic components 131 are attracted to each other by one of the second magnetic components 132.

[0112] When the gas regulating component 12 is in the third position, the two first magnetic components 131 are attracted to each other by one of the fourth magnetic components 134.

[0113] By providing two first magnetic elements 131, two second magnetic elements 132, two third magnetic elements 133, and two fourth magnetic elements 134, the air regulating element 12 can fit more tightly against the bracket 11 corresponding to the first air inlet 111 or the second air inlet 112 in the first or second position, thereby sealing the first air inlet 111 or the second air inlet 112 more stably, and keeping the air regulating element 12 relatively stationary with the bracket 11 in the third position.

[0114] In one embodiment, the first magnetic element 131, the second magnetic element 132, the third magnetic element 133, and the fourth magnetic element 134 are all continuous or discontinuous annular structures. The third magnetic element 133 or the second magnetic element 132 near the first air inlet 111 is located on the outer periphery of the first air inlet 111, and the second magnetic element 132 or the third magnetic element 133 near the second air inlet 112 is located on the outer periphery of the second air inlet 112. Therefore, when the air regulating element 12 is in the first position, it can uniformly and stably seal the first air inlet 111 under the mutual attraction of the magnetic components; when the air regulating element 12 is in the second position, it can uniformly and stably seal the second air inlet 112 under the mutual attraction of the magnetic components.

[0115] Further, please refer to Figure 1-2 and Figure 4-12As shown, the air intake structure 10 further includes a first sealing element 14 and a second sealing element 15. The first sealing element 14 is disposed within the first air intake hole 111, and has multiple independent first through holes 141. The second sealing element 15 is disposed within the second air intake hole 112, and has multiple independent second through holes 151. By providing the first sealing element 14 and the second sealing element 15, the air regulating element 12 can more effectively block the first air intake hole 111 in the first position and more effectively block the second air intake hole 112 in the second position, thereby improving the sealing effect on the first air intake hole 111 and the second air intake hole 112.

[0116] Furthermore, by providing a plurality of first through holes 141 on the first seal 14, the first seal 14 has better structural strength and can be more tightly connected to the first air inlet 111; and by providing a plurality of second through holes 151 on the second seal 15, the second seal 15 has better structural strength and can be more tightly connected to the second air inlet 112.

[0117] On the other hand, please see Figure 13-18 and Figure 1-2 As shown, this application also provides a battery rod 100, which includes the air intake structure 10 described in any of the above claims. Therefore, the battery rod 100 has all the aforementioned beneficial effects, which will not be repeated here.

[0118] Furthermore, the battery rod 100 also includes a mounting bracket 20, which is configured to form a first air intake channel 21 and a second air intake channel 22, such that the first air intake channel 21 and the second air intake channel 22 are integrally formed. The first air intake channel 21 and the second air intake channel 22 are arranged along the first straight direction X, and the first air intake channel 21 connects the first air intake end of the first atomizing channel 211 and the first air intake hole 111, so that external airflow passes through the air intake structure 10 through multiple first through holes 141 and continues to flow through the first air intake channel 21, and mixes with the generated aerosol in the first atomizing channel 211; the second air intake channel 22 connects the second air intake end of the second atomizing channel 221 and the second air intake hole 112, so that external airflow passes through the air intake structure 10 through multiple second through holes 151 and continues to flow through the second air intake channel 22, and mixes with the generated aerosol in the second atomizing channel 221.

[0119] Furthermore, the battery rod 100 also includes a first power supply component 30 and a second power supply component 40. The mounting bracket is configured to have a first receiving position 23 and a second receiving position 24, which are arranged along a second straight line direction Y. The first power supply component 30 is disposed in the first receiving position 23 and is used to supply power to the first atomizing unit 210 and / or the second atomizing unit 220. The second power supply component 40 is disposed in the second receiving position 24 and is used to supply power to the first atomizing unit 210 and / or the second atomizing unit 220.

[0120] Wherein, the second straight direction Y is perpendicular to the first straight direction X, so that the first air intake channel 21 and the second air intake channel 22 arranged side by side are located on two mutually perpendicular straight lines with the first power supply component 30 and the second power supply component 40 arranged side by side. Since the cross-sectional area of ​​the first power supply component 30 and the second power supply component 40 is large, and the cross-sectional area of ​​the first air intake channel 21 and the second air intake channel 22 is small, the first air intake channel 21 and the second air intake channel 22 are respectively located in the gap between the first receiving position 23 and the second receiving position 24. Thus, the gap between the first receiving position 23 and the second receiving position 24 can be cleverly used to accommodate the first air intake channel 21 and the second air intake channel 22. Therefore, when the first power supply component 30 and the second power supply component 40 are arranged side by side along the second straight direction Y, the cross-sectional area of ​​the mounting bracket 20 is not increased, and the arrangement of the first air intake channel 21 and the second air intake channel 22 along the first straight direction X is achieved. This effectively controls the cross-sectional area of ​​the battery rod 100, thereby achieving a compact design of the overall structure of the battery rod 100.

[0121] Furthermore, one end of the first air intake channel 21 is sealed and connected to the first air intake end of the first atomizing channel 211, and the other end of the first air intake channel 21 is sealed and supported by the end of the first sealing member 14 away from the air regulating member 12, and is connected to multiple first through holes 141, so that the first sealing member 14 can also be sealed and connected to the first air intake channel 21.

[0122] One end of the second air intake channel 22 is sealed and connected to the second air intake end of the second atomizing channel 221. The other end of the second air intake channel 22 is sealed and supported by the end of the second seal 15 away from the air regulating member 12, and is connected to a plurality of second through holes 151, so that the second seal 15 can also be sealed and connected to the second air intake channel 22.

[0123] Further, please refer to Figure 14As shown, the battery rod 100 also includes a main control board 50, a charging board 60, a switch board 70, and a control button 80, all respectively mounted on the mounting bracket 20. The main control board 50 is electrically connected to the charging board 60, the switch board 70, the first atomizing unit 210, and the second atomizing unit 220, respectively; the charging board 60 is electrically connected to the first power supply component 30 and the second power supply component 40; the control button 80 is directly opposite the control switch 90 on the switch board 70 and is used to press the control switch 90 under the action of external force to turn the battery rod 100 on or off.

[0124] On the other hand, please refer to Figure 19-21 and Figure 1-18 As shown, this application also provides an electronic atomizing device 1000, which includes the battery rod 100 described above. Therefore, the electronic atomizing device 1000 has all the beneficial effects of the battery rod 100 described above, which will not be repeated here.

[0125] Furthermore, the electronic atomizing device 1000 also includes an atomizer 200. The atomizer 200 is connected to the end of the battery rod 100 away from the air intake structure 10. The atomizer 200 is configured to have a first atomizing unit 210 and a second atomizing unit 220 that are independent of each other. The first atomizing unit 210 forms a first atomizing channel 211, and the second atomizing unit 220 forms a second atomizing channel 221.

[0126] Further, please refer to Figure 20 As shown, the atomizer 200 is further configured with a first liquid reservoir 230 and a second liquid reservoir 240 that are independent of each other. The first liquid reservoir 230 is used to contain the aerosol matrix supplied to the first atomizing unit 210, and the second liquid reservoir 240 is used to contain the aerosol matrix supplied to the second atomizing unit 220. The aerosol matrix contained in the first liquid reservoir 230 and the aerosol matrix contained in the second liquid reservoir 240 may have the same or different flavors, which is not limited here.

[0127] Furthermore, the first atomizing unit 210 includes a first atomizing tube 212, a first liquid guiding component 213, and a first heating component 214. The first liquid guiding component 213 and the first heating component 214 are respectively disposed inside the first atomizing tube 212, and the outer wall of the first liquid guiding component 213 is attached to the inner wall of the first atomizing tube 212, the first heating component 214 is disposed on the inner wall of the first liquid guiding component 213, and the first heating component 214 is electrically connected to the main control board 50.

[0128] The second atomizing unit 220 includes a second atomizing tube 222, a second liquid guiding component 223, and a second heating element 224. The second liquid guiding component 223 and the second heating element 224 are respectively disposed inside the second atomizing tube 222, and the outer wall of the second liquid guiding component 223 is attached to the inner wall of the second atomizing tube 222. The second heating element 224 is disposed on the inner wall of the second liquid guiding component 223, and the second heating element 224 is electrically connected to the main control board 50.

[0129] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.

[0130] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this application.

[0131] The above are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. An air intake structure for controlling whether the first air intake end of a first atomizing channel is connected to or disconnected from the outside, characterized in that, The air intake structure includes: The bracket is configured to have a first air inlet, one end of which is connected to the first air inlet end of the first atomizing channel; An air regulating component, movably mounted on the support and having a first position and a second position relative to the support; and A magnetic suction assembly, comprising a first magnetic element, a second magnetic element, and a third magnetic element, wherein the first magnetic element is disposed on the air regulating element, and the second magnetic element and the third magnetic element are respectively disposed on the bracket; When the gas regulating component is in the first position, the gas regulating component blocks the first air inlet, the first air inlet end of the first atomizing channel is isolated from the outside, and the first magnetic component attracts one of the second magnetic component and the third magnetic component. When the air regulating component is in the second position, the air regulating component opens the first air inlet, the first air inlet end of the first atomizing channel is connected to the outside, and the first magnetic component attracts the other of the second magnetic component and the third magnetic component.

2. The intake structure according to claim 1, characterized in that, The air intake structure is also used to control the second air intake end of the second atomizing channel to be connected to or isolated from the outside, and the second atomizing channel is independent of the first atomizing channel; The bracket is also configured to have a second air inlet, one end of which is connected to the second air inlet end of the second atomizing channel, and the second air inlet and the first air inlet are arranged along a first straight line direction; When the air regulating component is in the first position, the air regulating component blocks the first air inlet and opens the second air inlet. The first air inlet end of the first atomizing channel is isolated from the outside, and the second air inlet end of the second atomizing channel is connected to the outside. The first magnetic component attracts one of the second magnetic component and the third magnetic component. When the air regulating component is in the second position, the air regulating component opens the first air inlet and blocks the second air inlet, so that the first air inlet end of the first atomizing channel is connected to the outside, and the second air inlet end of the second atomizing channel is isolated from the outside, and the first magnetic component attracts the other of the second magnetic component and the third magnetic component.

3. The intake structure according to claim 2, characterized in that, The air regulating component also has a third position relative to the bracket, and the third position is not the same as the first position and the second position. The magnetic attraction assembly further includes a fourth magnetic element, which is disposed on the bracket and is positioned differently from the second and third magnetic elements on the bracket. When the gas regulating component is in the third position, the gas regulating component simultaneously opens the first air inlet and the second air inlet, so that the first air inlet end of the first atomizing channel is connected to the outside, and the second air inlet end of the second atomizing channel is connected to the outside, and the first magnetic component and the fourth magnetic component attract each other.

4. The intake structure according to claim 3, characterized in that, The air regulating component is slidably disposed on the bracket along the first straight line direction to switch between the first position, the second position and the third position; The second magnetic component, the third magnetic component, and the fourth magnetic component are disposed on the bracket along the first straight line direction, and the first of the second, third, and fourth magnetic components is located between the second and third of the second, third, and fourth magnetic components.

5. The intake structure according to claim 4, characterized in that, The air regulating component is provided with at least one first limiting part along the first straight line direction; The bracket is provided with a second limiting part along the first straight direction. The second limiting part is adapted to the first limiting part so that the air regulating component is slidably limited and connected to the bracket along the first straight direction.

6. The intake structure according to claim 5, characterized in that, The air regulating component has two parallel first limiting parts on both sides along the first straight line direction; the bracket has a matching second limiting part corresponding to each of the first limiting parts. Wherein, one of the first limiting part and the second limiting part is a limiting slide groove, and the other of the first limiting part and the second limiting part is a limiting connecting arm.

7. The intake structure according to claim 3, characterized in that, The air regulating component is rotatably mounted on the bracket along the rotation axis to switch between the first position, the second position, and the third position; Wherein, the rotation axis is perpendicular to the plane in which the air regulating component and the bracket are in contact at the first position or the second position; When the gas regulating component is in the first position, the first magnetic component is attracted to one of the second magnetic component and the third magnetic component. When the gas regulating component is in the second position, the first magnetic component is attracted to the other of the second magnetic component and the third magnetic component. When the gas regulating component is in the third position, the first magnetic component and the fourth magnetic component attract each other.

8. The intake structure according to any one of claims 3-7, characterized in that, The gas regulating component has a first magnetic component on each of its two sides along the first straight line direction; The bracket is provided with a second magnetic element, a third magnetic element and a fourth magnetic element on both sides along the first straight line direction. The two second magnetic elements are respectively located on opposite sides of the first air inlet, the two third magnetic elements are respectively located on opposite sides of the second air inlet, and the two fourth magnetic elements are located between the two second magnetic elements and the two third magnetic elements along the first straight line direction. When the gas regulating component is in the first position, the two first magnetic components are attracted to each other by one second magnetic component. When the gas regulating component is in the second position, the two first magnetic components are respectively attracted to one of the third magnetic components; When the gas regulating component is in the third position, the two first magnetic components are attracted to each other by one of the fourth magnetic components.

9. The intake structure according to claim 8, characterized in that, The air intake structure further includes a first sealing element, which is disposed within the first air intake hole, and the first sealing element has multiple independent first through holes; and The second sealing element is disposed inside the second air inlet, and the second sealing element has multiple independent second through holes.

10. A battery rod, characterized in that, The battery rod includes the air intake structure according to any one of claims 2-9; The battery rod also includes a mounting bracket, which is configured to form a first air intake channel and a second air intake channel. The first air intake channel and the second air intake channel are arranged along the first straight line direction, and the first air intake channel is connected between the first air intake end and the first air intake hole of the first atomizing channel, and the second air intake channel is connected between the second air intake end and the second air intake hole of the second atomizing channel. as well as The first power supply component and the second power supply component are provided. The mounting frame is configured to have a first receiving position and a second receiving position. The first receiving position and the second receiving position are arranged along a second straight line direction. The first power supply component is located in the first receiving position and the second power supply component is located in the second receiving position. Wherein, the second straight line direction is perpendicular to the first straight line direction, and the first air intake channel and the second air intake channel are respectively located in the gap between the first receiving position and the second receiving position.

11. An electronic atomizing device, characterized in that, The electronic atomizing device includes the battery rod as described in claim 10; and An atomizer is connected to the end of the battery rod away from the air intake structure. The atomizer is configured to form a first atomizing unit and a second atomizing unit that are independent of each other. The first atomizing unit is configured to form a first atomizing channel, and the second atomizing unit is configured to form a second atomizing channel.