Adjusting mechanism and atomization device

By introducing an adjustment mechanism into the electronic atomizing device and using a limiting structure to stabilize the sliding of the adjustment component, the problem of unstable gear adjustment is solved, and the stability and convenience of gear switching are achieved.

CN223653255UActive Publication Date: 2025-12-12HG INNOVATION LTD
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Patent Information

Application Number
CN202423159717.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-12
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing electronic atomizing devices lack stability when adjusting gear levels, making it difficult to switch gears.

Method used

An adjustment mechanism is adopted, including a housing, a gear control component, and an adjustment component. The height and sliding direction of the adjustment component are limited by a first limit structure and a second limit structure, respectively, to ensure stable sliding of the adjustment component on the gear control component.

Benefits of technology

It improves the stability and reliability of gear switching, avoids the difficulty of gear adjustment, and ensures the smoothness and convenience of gear adjustment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides an adjusting mechanism and an atomization device. The adjusting mechanism comprises a shell; the gear control assembly is used for controlling functional gears of the atomization device, and the gear control assembly is arranged on the shell; the adjusting part is arranged on the gear control assembly in a sliding mode and located between the gear control assembly and the shell, and the adjusting part is configured to slide relative to the gear control assembly so as to switch functional gears of the atomization device; a first limiting structure is arranged between the adjusting piece and the gear control assembly so as to limit the adjusting piece to move relative to the gear control assembly in the height direction of the gear control assembly. A second limiting structure is arranged between the adjusting piece and the shell so as to limit the adjusting piece to deviate from the sliding direction of the adjusting piece relative to the gear control assembly. The gear shifting stability of the adjusting piece can be improved, and the phenomenon that the adjusting piece is difficult to adjust in the gear shifting process is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic atomization, in particular to a regulating mechanism and an atomization device. BACKGROUND

[0002] Electronic atomization devices are usually provided with multiple gears to meet the needs of different users. However, the existing electronic atomization devices have insufficient stability when adjusting the gears, and are prone to gear shifting difficulties. CONTENT OF THE UTILITY MODEL

[0003] In view of the above problems, the present application is proposed to provide a regulating mechanism and an atomization device to overcome the above problems or at least partially solve the above problems.

[0004] In order to solve the above problems, in a first aspect, the present application discloses a regulating mechanism for an atomization device, comprising:

[0005] a housing;

[0006] a gear control assembly for controlling the function gears of the atomization device, the gear control assembly being arranged on the housing;

[0007] a regulating member slidingly arranged on the gear control assembly and located between the gear control assembly and the housing, the regulating member being configured to slide relative to the gear control assembly to switch the function gears of the atomization device;

[0008] a first limiting structure is arranged between the regulating member and the gear control assembly to limit the movement of the regulating member relative to the gear control assembly in the height direction thereof; and a second limiting structure is arranged between the regulating member and the housing to limit the deviation of the regulating member from the sliding direction thereof relative to the gear control assembly.

[0009] In some embodiments, the housing has a receiving groove, and the gear control assembly is arranged in the receiving groove;

[0010] The first limiting structure comprises a first limiting portion and a first clamping portion, the first limiting portion being arranged on the gear control assembly, and the first clamping portion being protruded from one side of the regulating member facing the gear control assembly, the first clamping portion being clamped on the first limiting portion and being in abutting engagement with the first clamping portion in the height direction of the regulating member;

[0011] The second limiting structure comprises a second limiting portion and a second clamping portion, the second limiting portion being formed in extension along the sliding direction of the regulating member, and the second clamping portion being protruded from one side of the regulating member along the width direction of the regulating member and being in abutting engagement with the second limiting portion.

[0012] In some embodiments, the gear control assembly comprises a bracket and a power control component arranged on the bracket, the first limiting portion is arranged on the bracket, one end of the adjusting piece is in sliding fit with the bracket through the first clamping portion, and the other end of the adjusting piece is in sliding fit with the power control component; the power control component comprises a gear adjusting portion connected with the adjusting piece, so as to switch the power gear of the atomization device.

[0013] In some embodiments, the bracket is provided with an air inlet component, a first air guide channel in communication with an atomization channel of the atomization device is arranged in the air inlet component, the adjusting piece is provided with a plurality of air adjusting holes in communication with the first air guide channel, and the air adjusting holes are used to synchronously adjust the air inlet amount of the first air guide channel corresponding to the power gear;

[0014] A containing space is formed on one side of the adjusting piece facing the air inlet component, the air inlet component is embedded in the containing space, the number of the first limiting portions is at least two, at least two first limiting portions are respectively protruded on both sides of the air inlet component in the width direction of the adjusting piece, and the number of the first clamping portions is at least two, the first clamping portions are arranged in the containing space corresponding to the positions of the first limiting portions.

[0015] In some embodiments, the adjusting piece comprises a body portion and at least two first elastic arms corresponding to the first clamping portions, the body portion is in sliding fit with the air inlet component;

[0016] The first elastic arms protrude from the body portion in the height direction of the adjusting piece, the first clamping portions are connected to one end of the first elastic arms away from the body portion, and the first clamping portions, the first elastic arms and the body portion enclose the containing space.

[0017] In some embodiments, the gear control assembly further comprises a sealing piece connected between the air inlet component and the adjusting piece;

[0018] A second air guide channel is arranged on the sealing piece, and an air outlet of the second air guide channel is in communication with an air inlet of the first air inlet channel;

[0019] At least one air adjusting hole is arranged opposite to the air inlet of the second air guide channel.

[0020] In some embodiments, the air inlet component and the power control component are arranged side by side on the bracket, the first clamping portion and the second clamping portion are respectively arranged at both ends of the adjusting piece along the length direction thereof, the air adjusting holes are arranged close to the first clamping portion, and the power control component is arranged close to the second clamping portion;

[0021] And / or, a plurality of first gear prompt grooves are arranged on the first limiting portion at positions corresponding to the plurality of air adjusting holes, and a first dial point is further arranged on the adjusting member at a position corresponding to the first clamping portion, the first dial point being in sliding cooperation with the plurality of first gear prompt grooves to prompt switching of the air adjusting holes.

[0022] And / or, a plurality of second gear prompt grooves are arranged on the second limiting portion at positions corresponding to the plurality of power gears, and a second dial point is further arranged on the adjusting member at a position corresponding to the second clamping portion, the second dial point being in sliding cooperation with the plurality of second gear prompt grooves to prompt switching of the power gears.

[0023] In some embodiments, a limiting groove is concavely arranged at the bottom of the accommodating groove, the limiting groove extending along the sliding direction of the adjusting member to form the second limiting portion; the adjusting member comprises a body portion and at least two second elastic arms, the at least two second elastic arms protruding from both sides of the body portion along the width direction of the adjusting member to form the second clamping portion; the body portion is accommodated in the limiting groove on the side away from the gear control assembly, and the second elastic arms abut against the groove wall of the limiting groove.

[0024] In some embodiments, the adjusting member comprises a dialing portion, and the bottom of the shell is correspondingly provided with an operation hole extending along the sliding direction of the adjusting member.

[0025] The dialing portion is arranged through the operation hole, the dialing portion being at least partially exposed to the shell, and the dialing portion being slidable in the operation hole.

[0026] In a second aspect, the embodiments of the present application further disclose an atomization device comprising the above adjusting mechanism.

[0027] The embodiments of the present application have the following advantages:

[0028] In the embodiments of the present application, the first limiting structure can limit the adjusting member from moving along the height direction of the gear control assembly, and the second limiting structure can limit the adjusting member from deviating from the sliding direction of the gear control assembly, so as to effectively ensure the reliability and stability of the sliding of the adjusting member relative to the gear control assembly, improve the stability of the adjusting member in switching gears, and avoid the phenomenon of difficult gear adjustment of the adjusting member. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 FIG. 1 is a structural schematic diagram of an atomization device according to the present application;

[0030] Figure 2 FIG. 2 is a structural schematic diagram of an adjusting member and a bracket cooperating with each other according to the present application;

[0031] Figure 3 is another structure diagram of the adjustment member cooperating with the bracket of the present application;

[0032] Figure 4 is a structure diagram of a power control component of the present application;

[0033] Figure 5 is a structure diagram of a housing cooperating with an adjustment member of the present application;

[0034] Figure 6 is a structure diagram of a bracket of the present application;

[0035] Figure 7 is a structure diagram of an adjustment member of the present application;

[0036] Figure 8 is a partial structure diagram of a bottom of an atomizing device of the present application;

[0037] Figure 9 is a sectional view of an atomizing device of the present application.

[0038] Explanation of reference signs:

[0039] 1, housing; 11, accommodating groove; 12, limiting groove; 13, operation hole; 2, gear control assembly; 21, bracket; 211, air inlet component; 2111, first air guide channel; 22, power control component; 221, gear adjusting part; 222, connecting terminal; 23, sealing member; 231, second air guide channel; 3, adjustment member; 31, air adjusting hole; 32, accommodating space; 33, body part; 34, first elastic arm; 35, accommodating groove; 36, first click point; 37, second click point; 38, second elastic arm; 39, click part; 4, first limiting structure; 41, first clamping part; 42, first limiting part; 421, first gear prompt groove; 5, second limiting structure; 51, second clamping part; 52, second limiting part; 521, second gear prompt groove; 61, atomizing channel; 62, atomizing assembly; 63, circuit board; 64, shell; 641, suction nozzle; 642, open mouth. DETAILED DESCRIPTION

[0040] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the present application will be further described in detail below with reference to the drawings and specific embodiments.

[0041] The terms "first", "second" in the description and claims of the present application can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / ", generally indicates that the front and rear associated objects are in a "or" relationship.

[0042] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0043] In the description of the present application, it should be noted that unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0044] The embodiment of the present application is to disclose a kind of adjusting mechanism, combine Figures 1 to 4 As shown in the figure, it can be applied in atomizing device, adjusting mechanism includes shell 1;Gear control component 2, for controlling the function gear of atomizing device, gear control component 2 is set on shell 1;Adjusting piece 3, slidingly set on gear control component 2, and located between gear control component 2 and shell 1, adjusting piece 3 is configured to slide relative to gear control component 2, to switch the function gear of atomizing device;First limiting structure 4 is arranged between adjusting piece 3 and gear control component 2, to limit adjusting piece 3 relative to gear control component 2 along its height direction moves;Second limiting structure 5 is arranged between adjusting piece 3 and shell 1, to limit adjusting piece 3 deviates from the sliding direction of its relative gear control component 2.

[0045] In the embodiment of the present application, the first limiting structure 4 can limit the movement of the adjusting part 3 relative to the gear control assembly 2 along the height direction thereof; the second limiting structure 5 can limit the deviation of the adjusting part 3 from the sliding direction thereof relative to the gear control assembly 2, which can effectively ensure the reliability and stability of the sliding of the adjusting part 3 relative to the gear control assembly 2, improve the stability of the adjusting part 3 in switching gears, and avoid the difficult adjustment of the adjusting part 3 during gear adjustment.

[0046] The atomization device in the embodiment of the present application can atomize the aerosol substrate. The atomization device is provided with an atomization channel 61, and the aerosol substrate can be atomized in the atomization channel 61. The atomization device can also be provided with a suction nozzle 641 and an air inlet channel. The suction nozzle 641 can be arranged above the atomization channel 61 and communicate with the atomization channel 61. After a user sucks through the suction nozzle 641, the aerosol substrate can be atomized into an aerosol in the atomization channel 61. External air can enter the atomization channel 61, and the external air can be mixed into the aerosol. Finally, the aerosol mixed with air can be sucked by the user through the suction nozzle 641.

[0047] In the embodiment of the present application, the gear control assembly 2 can be used to control the functional gears of the atomization device, and the gear control assembly 2 can be fixedly installed through the shell 1. The adjusting part 3 can be slidingly arranged on the gear control assembly 2 to switch the functional gears.

[0048] In the embodiment of the present application, the adjusting part 3 can be an integrally formed structure or a spliced structure, and the present application does not make specific limitation on this.

[0049] In the embodiment of the present application, the first limiting structure 4 is arranged between the adjusting part 3 and the gear control assembly 2, and is used to limit the adjusting part 3, so as to avoid the movement of the adjusting part 3 relative to the gear control assembly 2 along the height direction thereof. The second limiting structure 5 is arranged between the adjusting part 3 and the shell 1, and is used to limit the adjusting part 3, so as to avoid the deviation of the adjusting part 3 from the sliding direction thereof, and facilitate the smooth sliding of the adjusting part 3 relative to the gear control assembly 2.

[0050] As Figure 3As shown, the sliding direction of the adjusting piece 3 is the S1 direction, the width direction of the adjusting piece 3 is the S2 direction, and the sliding direction of the adjusting piece 3, the width direction of the adjusting piece 3 and the height direction of the adjusting piece 3 are perpendicular to each other, or the included angle between any two of the sliding direction of the adjusting piece 3, the width direction of the adjusting piece 3 and the height direction of the adjusting piece 3 can also be a non-right angle. Among them, the sliding direction of the adjusting piece 3 is the length direction of the adjusting piece 3. In the embodiment of the application, the first limiting structure 4 can limit the movement of the adjusting piece 3 along its height direction, and the second limiting structure 5 can limit the deviation of the adjusting piece 3 along its width direction. Thus, under the combined limiting action of the first limiting structure 4 and the second limiting structure 5, the adjusting piece 3 slides along its length direction, and the adjusting piece 3 moves in one direction, which can improve the stability of the movement of the adjusting piece 3, improve the reliability of the gear switching function, and improve the convenience of gear shifting.

[0051] In some embodiments, as Figure 5 As shown, the shell 1 has a containing groove 11, and the gear control assembly 2 is arranged in the containing groove 11, so that the shell 1 can limit the gear control assembly 2 through the containing groove 11, thereby facilitating the reliability of installing the gear control assembly 2 on the shell 1.

[0052] In some embodiments, the first limiting structure 4 includes a first limiting part 42 and a first clamping part 41. The first limiting part 42 is arranged on the gear control assembly 2, and the first clamping part 41 is arranged on one side of the adjusting piece 3 facing the gear control assembly 2. The first clamping part 41 is clamped on the first limiting part 42 and abuts with the first clamping part 41 along the height direction of the adjusting piece 3.

[0053] In the embodiment of the application, the first clamping part 41 and the first limiting part 42 are clamped and matched along the height direction of the adjusting piece 3, which can improve the convenience of limiting the movement of the adjusting piece 3 along its height direction by the first limiting structure 4.

[0054] In some embodiments, the second limiting structure 5 includes a second limiting part 52 and a second clamping part 51. The second limiting part 52 extends along the sliding direction of the adjusting piece 3, and the second clamping part 51 protrudes from one side of the adjusting piece 3 along the width direction of the adjusting piece 3 and abuts with the second limiting part 52.

[0055] In the embodiment of the application, the second clamping part 51 and the second limiting part 52 are clamped and matched along the width direction of the adjusting piece 3, which can improve the convenience of limiting the movement of the adjusting piece 3 along its width direction by the second limiting structure 5.

[0056] In the embodiments of the present application, the first clamping portions 41 can be arranged on one side or both sides of the adjusting piece 3 along the width direction thereof, the first limiting portions 42 can be adaptively adjusted according to the number of the first clamping portions 41, and the first limiting portions 42 can be arranged one by one corresponding to the first clamping portions 41. The first clamping portions 41 and the first limiting portions 42 can be clamped by means of concave-convex cooperation or buckle cooperation, etc. For example, one of the first clamping portions 41 and the first limiting portions 42 is a convex, and the other is a groove, or both the first clamping portions 41 and the first limiting portions 42 are buckles.

[0057] In the embodiments of the present application, the second clamping portions 51 can be arranged on one side or both sides of the adjusting piece 3 along the width direction thereof, the second limiting portions 52 can be adaptively adjusted according to the number of the second clamping portions 51, and the second limiting portions 52 can be arranged one by one corresponding to the second clamping portions 51. The second clamping portions 51 and the second limiting portions 52 can be clamped by means of concave-convex cooperation or buckle cooperation, etc. For example, one of the second clamping portions 51 and the second limiting portions 52 is a convex, and the other is a groove, or both the second clamping portions 51 and the second limiting portions 52 are buckles.

[0058] In some embodiments, the number of the first clamping portions 41 can include at least one, and at least two first clamping portions 41 can be arranged at intervals along the sliding direction of the adjusting piece 3. The number of the second clamping portions 51 can include at least one, and at least two second clamping portions 51 can be arranged at intervals along the sliding direction of the adjusting piece 3.

[0059] In some embodiments, at least two first clamping portions 41 are arranged at intervals along the sliding direction thereof on one side of the adjusting piece 3 along the width direction thereof, and / or at least two second clamping portions 51 are arranged at intervals along the sliding direction thereof on one side of the adjusting piece 3 along the width direction thereof, which facilitates to improve the reliability of the sliding of the adjusting piece 3, and further improves the reliability and stability of the adjusting piece 3 in switching the functional gears.

[0060] For example, the first clamping portions 41 can be arranged on one side of the adjusting piece 3 along the width direction thereof, and the second clamping portions 51 can be arranged on the other side of the adjusting piece 3 along the width direction thereof, and the first clamping portions 41 and the second clamping portions 51 can be arranged at diagonal positions of the adjusting piece 3 or on opposite sides of the adjusting piece 3. Alternatively, the first clamping portions 41 are symmetrically distributed along the width direction of the adjusting piece 3, and the second clamping portions 51 are symmetrically distributed along the width direction of the adjusting piece 3. In this case, both sides of the adjusting piece 3 along the width direction thereof can be clamped and cooperated with the gear control assembly 2 and the shell 1, so that both sides of the adjusting piece 3 along the width direction thereof are stressed, which can reduce the influence caused by strength and assembly tolerance, effectively ensure that the adjusting piece 3 is stressed uniformly, and is conducive to improving the stability of the sliding of the adjusting piece 3, and can reduce the probability of difficult-to-adjust functional gears.

[0061] For example, the adjusting member 3 is provided with two first clamping portions 41, so that two limiting points are formed between the adjusting member 3 and the gear control assembly 2. The adjusting member 3 is provided with three first clamping portions 41, so that three limiting points are formed between the adjusting member 3 and the gear control assembly 2. The more limiting points, the better the effect of limiting the adjusting member 3 to move in the height direction. The adjusting member 3 is provided with two second clamping portions 51, so that two limiting points are formed between the adjusting member 3 and the shell 1. The adjusting member 3 is provided with three second clamping portions 51, so that three limiting points are formed between the adjusting member 3 and the shell 1. The more limiting points, the better the effect of limiting the adjusting member 3 to move in the width direction.

[0062] In some embodiments, the gear control assembly 2 includes a support 21 and a power control component 22 arranged on the support 21. The first limiting portion 42 is arranged on the support 21. One end of the adjusting member 3 is in sliding fit with the support 21 through the first clamping portion 41. The other end of the adjusting member 3 is in sliding fit with the power control component 22. The power control component 22 includes a gear adjusting portion 221 connected with the adjusting member 3, so as to switch the power gear of the atomization device.

[0063] In the embodiments of the present application, the adjusting member 3 can drive the gear adjusting portion 221 to move synchronously during the sliding process, thereby improving the convenience and reliability of switching the power gear of the atomization device. Moreover, one end of the adjusting member 3 is in sliding fit with the support 21 through the first clamping portion 41, and the other end is in sliding fit with the power control component 22. Therefore, both ends of the adjusting member 3 are stressed, so as to ensure the stability of the adjusting member 3 during the sliding process.

[0064] In some embodiments, as shown in Figure 6 and Figure 7 The support 21 is provided with an air inlet component 211. The air inlet component 211 is provided with a first air guide passage 2111 in communication with the atomization passage 61 of the atomization device. The adjusting member 3 is provided with a plurality of air adjusting holes 31 in communication with the first air guide passage 2111. The air adjusting holes 31 are used to synchronously adjust the air inlet amount of the first air guide passage 2111 corresponding to the power gear. The side of the adjusting member 3 facing the air inlet component 211 is formed with a containing space 32. The air inlet component 211 is embedded in the containing space 32. The number of the first limiting portions 42 is at least two. The first limiting portions 42 are respectively protruded on both sides of the air inlet component 211 in the width direction of the adjusting member 3. The number of the first clamping portions 41 is at least two. The first clamping portions 41 are arranged in the containing space 32 corresponding to the positions of the first limiting portions 42.

[0065] In the embodiments of the present application, the air adjusting hole 31 can be adjusted synchronously with the power gear, that is, the air intake amount can be adjusted while the power gear is adjusted, which can further enrich the taste diversity of the atomization device. The air intake component 211 is embedded in the accommodating space 32 on the adjusting piece 3, which can improve the reliability of the cooperation between the air adjusting hole 31 and the first air guide channel 2111, and further improve the convenience of adjusting the air intake amount. The first clamping part 41 is arranged in the accommodating space 32 corresponding to the position of the first limiting part 42, which facilitates the abutting limiting cooperation between the first clamping part 41 and the first limiting part 42.

[0066] In some embodiments, the air adjusting hole 31 and the power gear are switched synchronously, which can change the air intake amount of the atomization channel 61, and the heating power of the atomization device does not change, that is, the taste of the atomization device can be adjusted only by adjusting the air intake amount of the atomization channel 61; or the air intake amount of the atomization channel 61 does not change, and the heating power of the atomization device changes, that is, the taste of the atomization device can be adjusted only by adjusting the heating power of the atomization device; or the air intake amount of the atomization channel 61 changes, and the heating power of the atomization device also changes, that is, the taste of the atomization device can be adjusted by adjusting the air intake amount of the atomization channel 61 and the heating power of the atomization device at the same time.

[0067] In the embodiments of the present application, since the air intake component 211 and the power control component 22 are both arranged on the bracket 21, the assembly tolerance can be reduced, and the reliability of the air intake amount switching and the heating power switching can be improved. The adjusting piece 3 and the power control component 22 are arranged on the same side of the bracket 21, which facilitates the simplification of the connection between the adjusting piece 3 and the gear adjusting part 221. In some embodiments, the adjusting piece 3 is provided with an accommodating groove 35, and at least part of the power adjusting piece 3 is embedded in the accommodating groove 35.

[0068] In the embodiments of the present application, at least part of the power adjusting piece 3 is embedded in the accommodating groove 35, which can improve the reliability of the limiting cooperation between the power adjusting piece 3 and the adjusting piece 3, and further improve the reliability of the adjusting piece 3 driving the power adjusting piece 3 to move synchronously in the first direction.

[0069] In some embodiments, the accommodating groove 35 is adapted to the shape of the gear adjusting part 221, for example, the accommodating groove 35 is a circular groove, and the gear adjusting part 221 can be a circular column; the accommodating groove 35 is a polygonal groove, and the gear adjusting part 221 can be a polygonal prism.

[0070] In the embodiments of the present application, by connecting the different air adjusting holes 31 with the first air guide channel 2111, the air intake amount of the first air guide channel 2111 can be adjusted, and then the air intake amount into the atomization channel 61 can be improved. Different air intake amounts can produce different atomization effects, form aerosols with different tastes, and meet the diversified needs of users.

[0071] In some embodiments, the number of air adjustment holes 31 can correspond to the number of air adjustment gears, and can be consistent with the number of power gears. The sizes of the plurality of air adjustment holes 31 can be the same or different.

[0072] For example, when the number of power gears is three, the number of adjustable gears of the air adjustment gears is three, and the number of air adjustment holes 31 can be three. When the number of power gears is four, the number of adjustable gears of the air adjustment gears is four, and the number of air adjustment holes 31 can be four. The number of power gears can be a natural number greater than 1, and can be set according to actual needs. The embodiments of the present application do not make specific limitations in this regard.

[0073] In some embodiments, the air adjustment hole 31 can also be a large hole, and the air intake amount of the first air guide channel 2111 can be adjusted by shielding at least part of the air adjustment hole 31 with the baffle.

[0074] In some embodiments, the number of first limiting portions 42 and the number of first clamping portions 41 are both at least two, and are arranged on both sides of the adjustment member 3 along the width direction thereof, so that both sides of the adjustment member 3 along the width direction thereof are limited, and the limiting effect is better.

[0075] In some embodiments, as shown in Figure 3 and Figure 4 The atomization device further includes a circuit board 63. The power control component 22 can be electrically connected to the circuit board 63. The circuit board 63 can be arranged on the bracket 21. The power control component 22 can be provided with a plurality of connection terminals 222 spaced apart along the sliding direction of the adjustment member 3. The gear shifting portion 221 is in electrical conduction with different connection terminals 222, which can realize switching of power gears to adjust the heating power of the atomization device and enrich the taste diversity of the atomization device. The number of connection terminals 222 is equal to the number of gears of the power gears. The number of connection terminals 222 can be consistent with the number of air adjustment holes 31, so as to realize synchronous switching of air adjustment gears and power gears.

[0076] In some embodiments, the stroke between adjacent two connection terminals 222 is equal to the stroke between adjacent two air adjustment holes 31. The stroke between adjacent two connection terminals 222 is the stroke of the gear shifting portion 221 from one connection terminal 222 to the adjacent connection terminal 222. The stroke between adjacent two connection terminals 222 is not limited in the embodiments of the present application. For example, it can be 1 mm, 1.8 mm, 2 mm, 2.5 mm, or 3 mm, etc.

[0077] In some embodiments, the opening sizes of the plurality of air adjusting holes 31 gradually increase along the sliding direction of the adjusting member 3, and the corresponding heat generation power of the connection terminal 222 gradually increases, so that the more the air intake amount of the atomization channel 61 is, the greater the heat generation power of the corresponding atomization assembly 62 can be, and the taste of the atomization device can be improved.

[0078] In some embodiments, the gear adjusting part 221 and the adjusting member 3 are integrated, which can improve the connection reliability between the gear adjusting part 221 and the adjusting member 3, and further ensure the reliability of the synchronous movement of the adjusting member 3 driving the gear adjusting part 221. In some embodiments, the adjusting member 3 is provided with a receiving groove 35, and at least part of the gear adjusting part 221 is embedded in the receiving groove 35, so as to improve the limiting cooperation reliability between the gear adjusting part 221 and the adjusting member 3, and further improve the reliability of the synchronous movement of the adjusting member 3 driving the gear adjusting part 221 along the first direction. The position of the receiving groove 35 is matched with the position of the power adjusting member 3.

[0079] In some embodiments, the adjusting member 3 includes a body part 33 and at least two first elastic arms 34 corresponding to the first clamping part 41, the body part 33 is in sliding cooperation with the air inlet member 211; the first elastic arm 34 protrudes from the body part 33 along the height direction of the adjusting member 3, the first clamping part 41 is connected to one end of the first elastic arm 34 away from the body part 33, and the first clamping part 41, the first elastic arm 34 and the body part 33 form a receiving space 32.

[0080] In the embodiments of the present application, the first elastic arm 34 protrudes from the body part 33 along the height direction of the adjusting member 3, the first clamping part 41 is connected to one end of the first elastic arm 34 away from the body part 33, which facilitates the first clamping part 41, the first elastic arm 34 and the body part 33 to form the receiving space 32, so that the first limiting part 42 is arranged in the receiving space 32, which facilitates the limiting of the movement of the adjusting member 3 along its height direction by the first clamping part 41.

[0081] In the embodiments of the present application, the first limiting part 42 is located in the receiving space 32 and abuts against the first clamping part 41 along the height direction of the adjusting member 3.

[0082] In some embodiments, the first elastic arm 34 can be deformed, so that the first elastic arm 34 can drive the first clamping part 41 to tightly abut against the first limiting part 42, thereby improving the limiting effect on the adjusting member 3.

[0083] In the embodiments of the present application, the gear position control assembly 2 further includes a sealing member 23, which is sealingly connected between the air inlet member 211 and the adjusting member 3; the sealing member 23 is provided with a second air guide channel 231, the air outlet of the second air guide channel 231 communicates with the air inlet of the first air guide channel 2111; at least one air adjusting hole 31 is arranged opposite to the air inlet of the second air guide channel 231.

[0084] In this embodiment, gas can enter the second air guide channel 231 through at least one air regulating hole 31, then enter the first air guide channel 2111, and finally enter the atomization channel 61 of the atomizing device. The sealing member 23 is sealed between the air inlet component 211 and the regulating member 3, which can improve the sealing performance at the air inlet and outlet of the second air guide channel 231, ensuring the reliability of adjusting the amount of gas entering the atomization channel 61 of the atomizing device.

[0085] In this embodiment, the sealing element 23 can be a plastic part or a silicone part, which provides a good sealing effect.

[0086] In some embodiments, the air intake component 211 and the power control component 22 are arranged side by side on the bracket 21, the first latching part 41 and the second latching part 51 are respectively arranged at both ends of the adjusting member 3 along its length direction, the air regulating hole 31 is arranged near the first latching part 41, and the power control component 22 is arranged near the second latching part 51.

[0087] In this embodiment, the air regulating port 31 and the power control component 22 can be respectively set at both ends of the regulating member 3 along its length direction, which can improve the convenience of arranging the air regulating structure and the power regulating structure respectively, and make the regulating mechanism reasonably arranged while satisfying the effect of simultaneously regulating air and regulating power.

[0088] In this embodiment, the air intake component 211 and the power control component 22 are arranged side by side along the length of the adjusting component 3. In this way, when the adjusting component 3 drives the adjusting part 221 to move along the length of the adjusting component 3, it is convenient to switch between the air adjustment level and the power level at the same time, and to synchronously adjust the air intake of the atomizing channel 61 and the heating power of the atomizing device.

[0089] In some embodiments, such as Figure 6 As shown, the first limiting part 42 is provided with a plurality of first gear indicator grooves 421 corresponding to the positions of the plurality of air adjustment holes 31, and the adjusting part 3 is also provided with a first dial point 36 corresponding to the position of the first locking part 41. The first dial point 36 slides and engages with the plurality of first gear indicator grooves 421 to indicate the switching of the air adjustment holes 31.

[0090] In this embodiment of the application, the coordination between the first wave point and the first gear indication groove 421 can improve the sense of gear adjustment.

[0091] In some embodiments, the number of the first gear prompt slots 421 can be consistent with or inconsistent with the number of the air adjustment holes 31, and the application does not limit the specific number of the first gear prompt slots 421 and the air adjustment holes 31. The first dial point 36 can be a protrusion, and when the first dial point 36 is engaged with one of the first gear prompt slots 421, the corresponding air adjustment hole 31 can be opposite to the air inlet of the first air guide channel 2111. In some embodiments, a protrusion can be formed between two adjacent first gear prompt slots 421, and the first dial point 36 can be a groove.

[0092] In some embodiments, as shown in FIG. 5, the second limiting part 52 is provided with a plurality of second gear prompt slots 521 corresponding to the positions of the plurality of power gears, and the adjusting member 3 is further provided with a second dial point 37 corresponding to the position of the second engaging part 51. The second dial point 37 is in sliding cooperation with the plurality of second gear prompt slots 521 to prompt the switching of the power gears. Figure 5

[0093] In the embodiments of the application, the cooperation of the second wave point and the second gear prompt slot 521 can improve the gear feeling of air adjustment.

[0094] In some embodiments, the number of the second gear prompt slots 521 can be consistent with or inconsistent with the number of the power gears, and the application does not limit the specific number of the second gear prompt slots 521 and the power gears. The second dial point 37 can be a protrusion, and when the second dial point 37 is engaged with one of the second gear prompt slots 521, the corresponding air adjustment hole 31 can be opposite to the air inlet of the second air guide channel 231. In some embodiments, a protrusion can be formed between two adjacent second gear prompt slots 521, and the second dial point 37 can be a groove.

[0095] In some embodiments, the bottom of the accommodating groove 11 can be concavely provided with a limiting groove 12 extending along the sliding direction of the adjusting member 3 to form the second limiting part 52; the adjusting member 3 comprises a body part 33 and at least two second elastic arms 38 protruding from the two sides of the body part 33 along the width direction of the adjusting member 3 to form the second engaging part 51; the side of the body part 33 away from the gear control assembly 2 is accommodated in the limiting groove 12, and the second elastic arms 38 abut on the groove wall of the limiting groove 12.

[0096] In the embodiments of the application, the second limiting part 52 can be the limiting groove 12 arranged at the bottom of the accommodating groove 11, and the second engaging part 51 can be the second elastic arm 38 protruding from the side wall of the body part 33 in the width direction of the adjusting member 3. The second elastic arm 38 is in limiting cooperation with the limiting groove 12 along the width direction of the adjusting member 3, so that the limiting groove 12 can limit the adjusting member 3 from shaking along the width direction thereof by the second elastic arm 38.

[0097] ​In some embodiments, the body part 33 is accommodated in the limiting groove 12 and can slide in the limiting groove 12, which can improve the reliability of the sliding of the adjusting member 3.

[0098] In some embodiments, the second elastic arm 38 can be deformed so that the second elastic arm 38 can tightly contact the groove wall of the limiting groove 12, thereby improving the limiting effect on the adjusting member 3.

[0099] In some embodiments, as shown in Figure 8 The adjusting member 3 is provided with a pushing part 39, and the bottom of the shell 1 is correspondingly provided with an operation hole 13 extending along the sliding direction of the adjusting member 3; the pushing part 39 is arranged in the operation hole 13, and the pushing part 39 is at least partially exposed to the shell 1, and the pushing part 39 can slide in the operation hole 13.

[0100] In the embodiments of the present application, at least part of the pushing part 39 is exposed to the shell 1, which facilitates the user to apply an external force to the adjusting member 3 through the pushing part 39, so that the adjusting member 3 slides. The operation hole 13 can limit and guide the movement of the pushing part 39, which is conducive to ensuring the accuracy of the gear adjustment of the adjusting member 3.

[0101] In some embodiments, the operation hole 13 is a one-letter-shaped hole, an oval-shaped hole, or the like.

[0102] In some embodiments, in order to make the pushing part 39 pass through the operation hole 13 on the shell 1, the pushing part 39 can protrude from the side of the adjusting member 3 away from the power control component 22, the pushing part 39 can be punched, so that the side of the adjusting member 3 away from the power control component 22 protrudes to form the pushing part 39, and the other side can form a notch facing the accommodating groove 35 of the power control component 22, and the gear adjusting part 221 can be embedded in the accommodating groove 35. In this way, when the pushing part 39 is adjusted, the gear adjusting part 221 can also be acted on, which can improve the stability of the simultaneous adjustment of the gear position and the power position switching.

[0103] The adjusting mechanism in the embodiments of the present application has at least the following advantages:

[0104] In the embodiments of the present application, the first limiting structure can limit the movement of the adjusting member relative to the gear control assembly along the height direction thereof, and the second limiting structure can limit the movement of the adjusting member away from the sliding direction thereof relative to the gear control assembly, which can effectively ensure the reliability and stability of the sliding of the adjusting member relative to the gear control assembly, improve the stability of the gear position switching of the adjusting member, and avoid the difficult adjustment of the adjusting member during the gear adjustment.

[0105] In a second aspect, the embodiments of the present application also disclose an atomization device, which can comprise the adjusting mechanism.

[0106] In the embodiments of the present application, as shown in Figure 9As shown, the atomization device can include an atomization channel 61, an atomization assembly 62 can be arranged in the atomization channel 61, the atomization assembly 62 can atomize the aerosol substrate, the atomization assembly 62 can include a heating element and a liquid guide element, and a liquid storage element can also be arranged in the atomization channel 61, the liquid storage element is used to store the aerosol substrate, the liquid guide element can guide the aerosol substrate stored by the liquid storage element to the heating element, the heating element is powered to heat, so that the aerosol substrate is atomized into an aerosol. Wherein, the liquid storage element can be an oil storage cotton, an oil bottle and the like, the liquid guide element can be an oil guide cotton, and the heating element can be a heating wire.

[0107] In some embodiments, the atomization device can further include a power supply element and a circuit board 63, and the power supply element and the heating element are electrically connected to the circuit board 63. The power supply element can realize electrical conduction with the heating element through the circuit board 63 to supply power to the heating element. The power supply element is specifically a rechargeable battery or a primary battery.

[0108] In some embodiments, the power control component 22 is arranged on the circuit board 63, the power control component 22 includes a plurality of connection terminals 222, the connection terminals 222 can be electrically connected to the atomization assembly 62 through the circuit board 63, so that the atomization assembly 62 can atomize the aerosol substrate, the adjusting member 3 drives the gear adjusting part 221 to move together, and the gear adjusting part 221 is used to switch different connection terminals 222 to be electrically connected to the heating element in the atomization assembly 62, so as to adjust the heating power of the atomization assembly 62.

[0109] In some embodiments, the atomization device further includes a housing 64, and the bottom of the housing 64 is provided with an opening 642. The shell 1 is detachably mounted on the opening 642, and the shell 1 and the housing 64 can form an accommodating cavity. Figure 1 and Figure 4 As shown, the shell 1 is detachably mounted on the opening 642 of the housing 64, so that the shell 1 and the housing 64 can be disassembled, which is convenient for maintenance and replacement of parts of the atomization device. The shell 1 can be mounted at the opening 642 of the housing 64 by buckling, clamping or the like.

[0110] The atomization device in the embodiments of the present application has at least the following advantages:

[0111] In the embodiments of the present application, the first limiting structure can limit the adjusting member to move relative to the gear control assembly along the height direction thereof, and the second limiting structure can limit the adjusting member to deviate from the sliding direction of the gear control assembly relative thereto. The reliability and stability of the sliding of the adjusting member relative to the gear control assembly can be effectively ensured, the stability of the adjusting member switching gears can be improved, and the phenomenon of difficult adjustment of the adjusting member during gear adjustment can be avoided.

[0112] Although the preferred embodiments of the application have been described, those skilled in the art will be able to make additional modifications and variations without departing from the scope of the application. Accordingly, the appended claims are intended to encompass all such modifications and variations as falling within the scope of the application.

[0113] Finally, it is to be understood that the phraseology or terminology employed herein, such as "first" and "second", etc., are for descriptive purposes only and should not be construed to connote or otherwise imply any kind of ordering, precedence or relationships between or among the elements or operations so described. Moreover, the terms "comprising", "including", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises a... " does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element.

[0114] The above provides a kind of adjusting mechanism and atomizing device provided by the present application, the principle and implementation mode of the present application are described in the text by applying specific examples, the above embodiment is only for helping to understand the method of the present application and its core idea;For the general technical personnel in the art, according to the idea of the present application, there will be changes in specific implementation mode and application range, the above is described, the content of the specification should not be understood as the limitation of the present application.

Claims

1. A regulating mechanism for an atomizing device, characterized by, The utility model relates to an atomization device, including: A shell (1); Gear control assembly (2) for controlling the function gear of the atomization device, the gear control assembly (2) is arranged on the shell (1); Adjusting part (3) is slidably arranged between the gear control assembly (2) and the shell (1), and the adjusting part (3) is configured to slide relative to the gear control assembly (2) to switch the function gear of the atomization device; First limiting structure (4) is arranged between the adjusting part (3) and the gear control assembly (2) to limit the adjusting part (3) from moving along the height direction of the gear control assembly (2);Second limiting structure (5) is arranged between the adjusting part (3) and the shell (1) to limit the adjusting part (3) from deviating from the sliding direction of the gear control assembly (2).

2. The adjustment mechanism of claim 1, wherein, The shell (1) has a receiving groove (11), and the gear control assembly (2) is arranged in the receiving groove (11); The first limiting structure (4) includes a first limiting part (42) and a first clamping part (41), the first limiting part (42) is arranged on the gear control assembly (2), the first clamping part (41) is protruded on one side of the adjusting part (3) towards the gear control assembly (2), the first clamping part (41) is clamped on the first limiting part (42), and the first clamping part (41) is abutted and matched along the height direction of the adjusting part (3); The second limiting structure (5) includes a second limiting part (52) and a second clamping part (51), the second limiting part (52) is arranged on the inner wall of the receiving groove (11), and the second clamping part (51) is protruded on one side of the adjusting part (3) along the width direction of the adjusting part (3) and is abutted and matched with the second limiting part (52).

3. The adjustment mechanism of claim 2, wherein, The gear control assembly (2) includes a support (21) and a power control component (22) arranged on the support (21), the first limiting part (42) is arranged on the support (21), one end of the adjusting part (3) is slidably matched with the support (21) through the first clamping part (41), and the other end of the adjusting part (3) is slidably matched with the power control component (22);The power control component (22) includes a gear adjusting part (221) connected with the adjusting part (3) to switch the power gear of the atomization device.

4. The adjustment mechanism of claim 3, wherein, The support (21) is provided with an air inlet component (211), the air inlet component (211) is provided with a first air guide channel (2111) communicated with an atomization channel (61) of the atomization device, the adjusting part (3) is provided with a plurality of air adjusting holes (31) communicated with the first air guide channel (2111), and the air adjusting holes (31) are used for synchronously adjusting the air inlet amount of the first air guide channel (2111) corresponding to the power gear. The adjusting piece (3) is formed with a containing space (32) on one side facing the air inlet component (211), the air inlet component (211) is embedded in the containing space (32), the number of the first limiting parts (42) is at least two, at least two first limiting parts (42) are respectively protruded on both sides of the air inlet component (211) in the width direction of the adjusting piece (3), and the number of the first clamping parts (41) is at least two, the first clamping parts (41) are arranged in the containing space (32) corresponding to the positions of the first limiting parts (42).

5. The adjustment mechanism of claim 4, wherein, The adjusting piece (3) comprises a body part (33) and at least two first elastic arms (34) corresponding to the first clamping parts (41), and the body part (33) is in sliding fit with the air inlet component (211); The first elastic arms (34) are protruded from the body part (33) in the height direction of the adjusting piece (3), the first clamping parts (41) are connected to one end of the first elastic arms (34) away from the body part (33), and the first clamping parts (41), the first elastic arms (34) and the body part (33) enclose the containing space (32).

6. The adjustment mechanism of claim 4, wherein, The gear control assembly (2) further comprises a sealing piece (23) sealingly connected between the air inlet component (211) and the adjusting piece (3); The sealing piece (23) is provided with a second air guide channel (231), and the air outlet of the second air guide channel (231) is in communication with the air inlet of the first air guide channel (2111); At least one of the air adjusting holes (31) is arranged opposite to the air inlet of the second air guide channel (231).

7. The adjustment mechanism of claim 4, wherein, The air inlet component (211) and the power control component (22) are arranged side by side on the support (21), the first clamping parts (41) and the second clamping parts (51) are respectively arranged at both ends of the adjusting piece (3) along the length direction thereof, the air adjusting holes (31) are arranged close to the first clamping parts (41), and the power control component (22) is arranged close to the second clamping parts (51); And / or, a plurality of first gear prompt grooves (421) are arranged on the first limiting parts (42) corresponding to the positions of the plurality of air adjusting holes (31), and a first dial point (36) is further arranged on the adjusting piece (3) corresponding to the position of the first clamping parts (41), the first dial point (36) is in sliding fit with the plurality of first gear prompt grooves (421) to prompt the switching of the air adjusting holes (31); And / or, a plurality of second gear prompt grooves (521) are arranged on the second limiting parts (52) corresponding to the positions of the plurality of power gears, and a second dial point (37) is further arranged on the adjusting piece (3) corresponding to the position of the second clamping parts (51), the second dial point (37) is in sliding fit with the plurality of second gear prompt grooves (521) to prompt the switching of the power gears.

8. The adjustment mechanism of claim 2, wherein, The bottom of the accommodating groove (11) is concavely provided with a limiting groove (12) extending along the sliding direction of the adjusting member (3) to form the second limiting part (52); the adjusting member (3) comprises a body part (33) and at least two second elastic arms (38) protruding from both sides of the body part (33) along the width direction of the adjusting member (3) to form the second clamping part (51); the body part (33) is accommodated in the limiting groove (12) on the side away from the gear control assembly (2), and the second elastic arms (38) abut against the groove wall of the limiting groove (12).

9. The adjustment mechanism according to any one of claims 1 to 8, characterized in that The adjusting member (3) is provided with a poking part (39), and the bottom of the shell (1) is correspondingly provided with an operation hole (13) extending along the sliding direction of the adjusting member (3); The poking part (39) is arranged in the operation hole (13), the poking part (39) is at least partially exposed outside the shell (1), and the poking part (39) can slide in the operation hole (13).

10. An atomising device characterised in that, The adjusting mechanism comprises the adjusting mechanism according to any one of claims 1 to 9.