CN217547283U - Atomizing device and liquid guide mechanism thereof - Google Patents

Atomizing device and liquid guide mechanism thereof Download PDF

Info

Publication number
CN217547283U
CN217547283U CN202123254375.5U CN202123254375U CN217547283U CN 217547283 U CN217547283 U CN 217547283U CN 202123254375 U CN202123254375 U CN 202123254375U CN 217547283 U CN217547283 U CN 217547283U
Authority
CN
China
Prior art keywords
liquid guiding
liquid
fluid
drain
atomizing device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202123254375.5U
Other languages
Chinese (zh)
Inventor
陈师华
王长江
李博众
黄启斯
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Woody Vapes Technology Co Ltd
Original Assignee
Shenzhen Woody Vapes Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Woody Vapes Technology Co Ltd filed Critical Shenzhen Woody Vapes Technology Co Ltd
Priority to CN202123254375.5U priority Critical patent/CN217547283U/en
Application granted granted Critical
Publication of CN217547283U publication Critical patent/CN217547283U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Special Spraying Apparatus (AREA)

Abstract

The utility model discloses an atomizing device's drain mechanism and atomizing device, the liquid guide mechanism is arranged in guiding atomizing matrix among the atomizing device, and the liquid guide mechanism is including nested first drain spare and the second drain spare that sets up, and wherein, first drain spare is made for fiber material, can play the effect to the absorption water conservancy diversion of atomizing matrix, and the second drain spare is made for the compliance material, can change the shape after the atress, is convenient for to lead liquid mechanism fixed, can make the stability of drain mechanism better, and then makes atomizing device's atomization effect better.

Description

Atomizing device and liquid guide mechanism thereof
Technical Field
The utility model relates to an aerosol technical field, in particular to atomizing device's drain mechanism and atomizing device.
Background
The atomizing device is used as an emerging technology, aerosol is formed in a mode of heating an atomizing substrate, the working temperature is low, and compared with the traditional mode, the atomizing device is safer. Wherein, the atomizing device of cotton core formula is through leading the atomizing matrix to the liquid guide cotton through the cotton core, and the rethread adds the liquid guide cotton and atomizes atomizing matrix, and its taste returns the degree height, and the cost is lower.
At present generally can establish the pipe at cotton core overcoat in the atomizing device, can play the effect of fixed cotton core, and it is fixed only through running through the cotton core that the drain is cotton, leads to the stability of its structure relatively poor, influences atomization effect.
SUMMERY OF THE UTILITY MODEL
The utility model provides an atomizing device's drain mechanism and atomizing device to lead the cotton technical problem of structure of liquid in the atomizing device among the solution prior art.
In order to solve the technical problem, the utility model discloses a technical scheme provide an atomizing device's drain mechanism for the guide atomizing matrix in the atomizing device, drain mechanism is including the first drain spare and the second drain spare of nested setting, wherein, first drain spare is made for fiber material, the second drain spare is made for flexible material.
In a specific embodiment, the second liquid guiding member is formed with a plurality of micro holes, and the micro holes are arranged at intervals along the axial direction and/or the circumferential direction of the second liquid guiding member.
In a specific embodiment, a liquid-conducting rate of one of the first liquid-conducting member and the second liquid-conducting member located in an inner layer is smaller than a liquid-conducting rate of one of the first liquid-conducting member and the second liquid-conducting member located in an outer layer.
In a specific embodiment, the first liquid guiding member is arranged in an L shape or a U shape.
In a specific embodiment, the first liquid guiding member includes a first liquid guiding section and a second liquid guiding section, the extending direction of the second liquid guiding section is perpendicular to or inclined with the extending direction of the first liquid guiding section, the first liquid guiding member further includes an extending portion connected to the second liquid guiding section, and the extending direction of the extending portion is perpendicular to or inclined with the extending direction of the second liquid guiding section.
In a specific embodiment, the liquid guiding rate of the extension part is greater than the liquid guiding rates of the first liquid guiding section and the second liquid guiding section.
In a specific embodiment, the liquid guiding mechanism further includes at least one heating element, at least a portion of the at least one heating element is disposed in one of the first liquid guiding element and the second liquid guiding element, which is located in an inner layer, and/or disposed between the first liquid guiding element and the second liquid guiding element, and/or disposed outside one of the first liquid guiding element and the second liquid guiding element, which is located in an outer layer.
In order to solve the technical problem, the utility model discloses a further technical scheme provide an atomizing device, include the core, lead liquid mechanism, pipe and first casing as above, lead liquid mechanism still including set up in first drain or heating member on the second drain, lead liquid mechanism and run through the core sets up, the pipe box is located outside the core, first casing cover is located outside the pipe, the pipe with be used for holding atomizing matrix between the first casing, atomizing matrix can warp the pipe reaches the core flows to first drain with second drain, heating member is used for right on first drain and/or the second drain atomizing matrix heats in order to produce aerosol.
In a specific embodiment, the conduit is formed with a slot, at least a portion of the liquid guiding mechanism is accommodated in the slot, and the liquid guiding mechanism and the slot are in interference fit.
In an embodiment, the conduit is sleeved outside the liquid guiding mechanism and the core body, and the conduit and the liquid guiding mechanism are in interference fit.
The utility model discloses atomizing device's drain mechanism is arranged in guiding atomizing matrix among the atomizing device, drain mechanism is including the first drain spare and the second drain spare of nested setting, wherein, first drain spare is made for fiber material, can play the effect to the absorption water conservancy diversion of atomizing matrix, the second drain spare is made for flexible material, can change the shape after the atress, be convenient for fixed with the drain mechanism, can make the stability of drain mechanism better, and then make atomizing device's atomization effect better.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments are briefly introduced below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without inventive efforts, wherein:
fig. 1 is a schematic front view of an embodiment of a liquid guiding mechanism of an atomizing device according to the present invention;
fig. 2 is a schematic perspective view of an embodiment of a liquid guiding mechanism of the atomizing device according to the present invention;
fig. 3 is a schematic cross-sectional view of an embodiment of a liquid guiding mechanism of the atomization device of the present invention;
fig. 4 is a schematic front view of another embodiment of the liquid guiding mechanism of the atomizing device of the present invention;
fig. 5 is a schematic front view of another embodiment of the liquid guiding mechanism of the atomizing device of the present invention;
fig. 6 is a schematic cross-sectional view of another embodiment of the liquid guiding mechanism of the atomization device of the present invention;
fig. 7 is an exploded view of an embodiment of the atomizing device of the present invention;
fig. 8 is a schematic sectional view showing a partial structure of another embodiment of the atomizing device of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work all belong to the protection scope of the present invention.
The terms "first", "second" and "first" in this application are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or to implicitly indicate the number of technical features indicated. In the description of the present application, "plurality" means at least two, e.g., two, three, etc., unless explicitly specifically limited otherwise. Furthermore, the terms "include" and "have," as well as any variations thereof, are intended to cover a non-exclusive inclusion. For example, a process, method, system, article, or apparatus that comprises a list of steps or elements is not limited to only those steps or elements but may alternatively include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus. While the term "and/or" is merely one type of association that describes an associated object, it means that there may be three types of relationships, e.g., a and/or B, which may mean: a exists alone, A and B exist simultaneously, and B exists alone. In addition, the character "/" herein generally indicates that the former and latter related objects are in an "or" relationship.
Referring to fig. 1 to 3, the utility model discloses a liquid guide mechanism 100 embodiment of atomizing device 10 is arranged in guiding atomizing matrix (not shown in the figure) among the atomizing device 10, liquid guide mechanism 100 includes first liquid guide 110 and second liquid guide 120 of nested setting, wherein, first liquid guide 110 is made for fiber material, can play the effect to the absorption water conservancy diversion of atomizing matrix, second liquid guide 120 is made for flexible material, can change the shape after the atress, be convenient for with liquid guide mechanism 100 fixed, can make liquid guide mechanism 100's stability better, and then make atomizing device 10's atomization effect better.
In this embodiment, the first liquid guiding member 110 may be made of a cotton material, so that the liquid storing and guiding effects are good. In other embodiments, the first liquid guiding member 110 may also be hemp material or chemical fiber, and the like, which is not limited herein.
In this embodiment, the second liquid guiding member 120 may be made of a metal material such as copper, iron, etc.
In this embodiment, first drain 110 is the cavity setting, and second drain 120 is cylindrical setting, and second drain 120 nestification sets up in first drain 110 to make the effect that is located the first drain 110 in the outside and can play better absorption water conservancy diversion, the second drain 120 that is located the inboard plays the supporting role.
In other embodiments, the second liquid guiding element 120 may be disposed in a hollow manner, the first liquid guiding element 110 may be disposed in a cylindrical manner, and the first liquid guiding element 110 is nested in the second liquid guiding element 120, which is not limited herein.
In this embodiment, the first liquid guiding member 110 is U-shaped, so as to achieve a better fixing effect.
Specifically, the first liquid guiding member 110 includes a first liquid guiding section 111 and two second liquid guiding sections 112 connected to two ends of the first liquid guiding section 111, and an extending direction of the second liquid guiding sections 112 is perpendicular to an extending direction of the first liquid guiding section 111, so that the first liquid guiding member 110 is U-shaped.
In other embodiments, the extending direction of the second liquid guiding section 112 and the extending direction of the first liquid guiding section 111 may also be disposed obliquely, which is not limited herein.
In other embodiments, the first liquid guiding element 110 may include only one first liquid guiding section 111 and one second liquid guiding section 112 connected to one end of the first liquid guiding section 111, so that the first liquid guiding element 110 is L-shaped and can also play a role in fixing.
In this embodiment, the second liquid guiding member 120 is formed with a plurality of micropores 121, the plurality of micropores 121 are disposed at intervals along an axial direction and/or a circumferential direction of the second liquid guiding member 120, and the micropores 121 are disposed to play a role of guiding the atomized matrix, so that the liquid guiding effect of the liquid guiding mechanism 100 is better.
The liquid-guiding rate of one of the first liquid-guiding element 110 and the second liquid-guiding element 120 located in the inner layer (i.e., the second liquid-guiding element 120 in this embodiment) is smaller than the liquid-guiding rate of one of the first liquid-guiding element 110 and the second liquid-guiding element 120 located in the outer layer (i.e., the first liquid-guiding element 110 in this embodiment), and compared with a case where the liquid-guiding mechanism only includes a single material, the liquid-guiding rate of the inner layer liquid-guiding element relative to the outer layer liquid-guiding element is smaller, so that the total liquid-guiding rate of the liquid-guiding mechanism can be reduced to a certain extent, and it is avoided that when the atomization device 10 is not used, too much atomization matrix is adsorbed on the liquid-guiding mechanism 100, and the atomization matrix is easy to leak through the first liquid-guiding element 110.
In this embodiment, fluid-conducting mechanism 100 further includes at least one heating element 130, at least a portion of at least one heating element 130 being disposed between first fluid-conducting member 110 and second fluid-conducting member 120 and being capable of heating an aerosol-forming substrate attached to first fluid-conducting member 110 and/or second fluid-conducting member 120 to form an aerosol. The heating area contacted with the heating element 130 can be increased by arranging the second liquid guide element 120, and the atomization effect is improved.
In this embodiment, the plurality of micropores 121 are formed in the portion of the second liquid guiding element 120 corresponding to the second liquid guiding section 112 of the first liquid guiding element 110, and the heating element 130 is wound on the portion of the second liquid guiding element 120 corresponding to the first liquid guiding section 111 of the first liquid guiding element 110, because the liquid guiding rate of the portion of the second liquid guiding element 120 provided with the micropores 121 is higher than the liquid guiding rate of the portion of the second liquid guiding element 120 not provided with the micropores 121, the liquid guiding effect of the first liquid guiding section 111 can be further improved, and the winding of the heating element 130 is facilitated.
In other embodiments, the plurality of micro holes 121 may be formed only on the portion of the second drainage member 120 corresponding to the first drainage section 111, or the plurality of micro holes 121 may be formed on the portion of the second drainage member 120 corresponding to the first drainage section 111 and the second drainage section 112, which is not limited herein.
In this embodiment, the heating member 130 may be a heating wire, and is conveniently wound around the second liquid guiding member 120. In other embodiments, the heating element 130 may also be a heating sheet or a heating block, etc., and is not limited herein.
Referring to fig. 4, in another embodiment, the first liquid guiding member 310 of the liquid guiding mechanism 300 is disposed outside the second liquid guiding member (not shown), and the heating member 320 is disposed outside one of the first liquid guiding member 310 and the second liquid guiding member (i.e. the first liquid guiding member 310 in this embodiment) which is located at an outer layer. In other embodiments, the heating element may be disposed in one of the first and second liquid-guiding members in the inner layer, which is not limited herein.
Referring to fig. 1 to fig. 3 again, in other embodiments, the liquid guiding mechanism 100 may include two heating members 130, where the two heating members 130 are respectively disposed on the first liquid guiding member 110 and the second liquid guiding member 120, so that the first liquid guiding member 110 and the second liquid guiding member 120 can be independently controlled, that is, the first liquid guiding member 110 can be independently heated, the second liquid guiding member 120 can be independently heated, or the first liquid guiding member 110 and the second liquid guiding member 120 can be simultaneously heated, and the functions are more comprehensive.
In an embodiment, when it is determined that the power required to be heated exceeds the power threshold, the second liquid guiding member 120 located at the inner layer may be preheated at a first lower power, and then the first liquid guiding member 110 located at the outer layer may be heated at a second higher power, which is higher than the first power, so as to prevent uneven heating or liquid explosion, and achieve higher safety.
In an embodiment, when the usage time of the atomizing device 10 exceeds the first time threshold and/or the usage number of the atomizing device 10 exceeds the first number threshold, the method for heating the first liquid guiding member 110 and the second liquid guiding member 120 simultaneously may be switched to only heat the first liquid guiding member 110 with the third power, and when the usage time of the atomizing device 10 exceeds the second time threshold and/or the usage number of the atomizing device 10 exceeds the second number threshold, the method for heating the first liquid guiding member 110 with the third power only may be switched to only heat the second liquid guiding member 120 with the fourth power, where the fourth power is less than the third power, the suction amount may be gradually reduced, and thus the dependency of the user may be reduced, and since the second liquid guiding member 120 is made of a porous material, the durability is better, and therefore, the mouth feel and quality of the aerosol generated by the atomizing device 10 may be continuously maintained, and the safety is higher.
Referring to fig. 5 and 6, another embodiment of the liquid guiding mechanism 400 of the atomizing device 10 of the present invention includes a first liquid guiding member 410, a second liquid guiding member 420, and a heating member 430, which are nested, wherein the structures of the second liquid guiding member 420 and the heating member 430 are as described in the second liquid guiding member 120 and the heating member 130 of the liquid guiding mechanism 100 of the atomizing device 10, and are not described herein again.
The difference between the present embodiment and the above embodiments is that in the present embodiment, the first liquid guiding element 410 includes a first liquid guiding section 411, a second liquid guiding section 412 and an extending portion 413 connected to the second liquid guiding section 412, and an extending direction of the extending portion 413 is perpendicular to an extending direction of the second liquid guiding section 412, which can facilitate the fixing of the liquid guiding mechanism 400, so that the stability of the liquid guiding mechanism 400 is better.
In other embodiments, the extending direction of the extending portion 413 and the extending direction of the second liquid guiding section 412 may also be inclined, which is not limited herein.
In this embodiment, the liquid guiding rate of extension 413 is greater than the liquid guiding rate of first liquid guiding section 411 and second liquid guiding section 412, make atomizing substrate can flow from extension 413 to second liquid guiding section 412, first liquid guiding section 411 faster, thereby make liquid guiding speed of liquid guiding mechanism 400 faster, the liquid guiding effect is better, and then make atomizing device 10's atomizing effect better, and when the volume of atomizing substrate is less, extension 413 also can adsorb atomizing substrate, and then can further prevent the weeping.
Referring to fig. 1 to 3 and 7, an embodiment of the atomizing device 10 of the present invention includes a liquid guiding mechanism 100, a core 210, a conduit 220 and a first housing 510, wherein the liquid guiding mechanism 100 refers to the above liquid guiding mechanism embodiment, which is not described herein again, in this embodiment, the liquid guiding mechanism 100 runs through the core 210, the conduit 220 is sleeved outside the core 210, the first housing 510 is sleeved outside the conduit 220, the conduit 220 and the first housing 510 are used for accommodating an atomized substrate, the atomized substrate can flow to the first liquid guiding member 110 and the second liquid guiding member 120 through the conduit 220 and the core 210, and the heating member 130 is used for heating the atomized substrate on the first liquid guiding member 110 and/or the second liquid guiding member 120 to generate aerosol.
In the present embodiment, the duct 220 is formed with a slot 221, at least a portion of the liquid guiding mechanism 100 is accommodated in the slot 221, and the liquid guiding mechanism 100 and the slot 221 are arranged in an interference fit manner, so that the liquid guiding mechanism 100 is more stable. Referring to fig. 8, in another embodiment, the liquid guiding mechanism 600 of the atomizing device 10 penetrates through the core 710, the conduit 720 is sleeved outside the liquid guiding mechanism 600 and the core 710, at least a portion of the liquid guiding mechanism 600 is accommodated in the conduit 720, and the conduit 720 and the liquid guiding mechanism 600 are arranged in an interference fit manner, so that the liquid guiding mechanism 600 is more stable.
Referring to fig. 1 to 3 and 7, the atomizing device 10 further includes a battery 230, a microphone 240, a suction nozzle 250 and a second housing 520, wherein the battery 230 is disposed at the bottom of the core 210 and electrically connected to the heating element 130, the microphone 240 is disposed at the bottom of the battery 230 and electrically connected to the battery 230, the suction nozzle 250 is disposed at the top of the conduit 220, the second housing 520 is sleeved outside the conduit 220, the battery 230 and the microphone 240, and the second housing 520 is connected to the first housing 510, so that the atomizing device 10 has a regular appearance.
In this embodiment, the suction nozzle 250 may include a nozzle body 251 and a first sealing member 252, and the first sealing member 252 may function as a seal for the nozzle body 251 to prevent liquid leakage.
In this embodiment, the aerosol apparatus 10 may further include a reservoir 260, the reservoir 260 being disposed between the first housing 510 and the conduit 220 and being capable of storing the aerosol substrate.
In this embodiment, the liquid storage member 260 may be made of a fiber material such as cotton, hemp, etc.
In this embodiment, the atomizing device 10 may further include a second sealing member 271 and a third sealing member 272, the second sealing member 271 is disposed between the core 210 and the battery 230, the third sealing member 272 is disposed between the conduit 220 and the suction nozzle 250, and the second sealing member 271 and the third sealing member 272 can seal the atomizing device 10 to prevent liquid leakage.
Referring to fig. 1, in this embodiment, a length D1 of the clamping groove 221 in the axial direction of the conduit 220 is smaller than a distance D2 between a top surface of the liquid guiding mechanism 100 and a top surface of the second sealing member 271 of the bearing core 210, so that the liquid guiding mechanism 100 and the clamping groove 221 form an interference fit, and after the in-line liquid guiding mechanism 100 is assembled on the core 210, two ends of the liquid guiding mechanism 100 are conveniently bent toward the bottom to form a U-shape, the core 210, the conduit 220 and the liquid guiding mechanism 100 can be better fixed, and meanwhile, the liquid guiding mechanism 100 can better absorb an atomized matrix at the bottom of the liquid storage member 260, so as to prevent the atomizing device 10 from being dry-burned, and the safety is higher.
In the embodiment of the liquid guiding mechanism 100 provided with the extending portion 113, the extending portion 113 may be fixedly disposed on the second sealing member 271, for example, by means of adhesion, fixing by a fixing member, and the like, so that the stability of the liquid guiding mechanism 100 can be improved.
In this embodiment, the atomization device 10 may further include an insulating tube 530, and the insulating tube 530 is disposed between the battery 230, the microphone 240, and the second housing 520, so as to perform an insulating function, and prevent the battery 230 or the microphone 240 from leaking electricity.
In this embodiment, the insulating tube 530 may be made of an insulating material such as silicon gel or plastic.
The above only is the embodiment of the present invention, not limiting the patent scope of the present invention, all the equivalent structures or equivalent processes that are used in the specification and the attached drawings or directly or indirectly applied to other related technical fields are included in the patent protection scope of the present invention.

Claims (10)

1. The utility model provides an atomizing device's drain mechanism for guide atomizing matrix in the atomizing device, its characterized in that, drain mechanism is including nested first drain and the second drain that sets up, wherein, first drain is made for fiber material, the second drain is made for pliability material, first drain includes first drain section and second drain section, the extending direction of second drain section with the extending direction of first drain section is perpendicular setting or slope setting.
2. The fluid guiding mechanism as recited in claim 1, wherein the second fluid guiding member has a plurality of micro holes formed therein, and the micro holes are spaced along an axial direction and/or a circumferential direction of the second fluid guiding member.
3. The fluid routing mechanism of claim 1, wherein a fluid routing rate of one of the first and second fluid routing members that is located in an inner layer is less than a fluid routing rate of one of the first and second fluid routing members that is located in an outer layer.
4. The mechanism of claim 1, wherein the first fluid-directing member is disposed in an L-shape or a U-shape.
5. The fluid guiding mechanism as recited in claim 4, wherein the first fluid guiding element further comprises an extension portion connected to the second fluid guiding section, and the extension portion extends in a direction perpendicular to or inclined from the extension direction of the second fluid guiding section.
6. The fluid directing mechanism of claim 5, wherein the extension has a fluid directing rate that is greater than the fluid directing rates of the first and second fluid directing segments.
7. The fluid delivery mechanism of claim 1, further comprising at least one heating element, at least a portion of at least one of the heating elements being disposed within one of the first and second fluid delivery members that is located in an inner layer, and/or disposed between the first and second fluid delivery members, and/or disposed outside one of the first and second fluid delivery members that is located in an outer layer.
8. An atomizing device, comprising a core, the liquid guiding mechanism according to any one of claims 1 to 7, a conduit, and a first housing, wherein the liquid guiding mechanism further comprises a heating element disposed on the first liquid guiding element or the second liquid guiding element, the liquid guiding mechanism is disposed through the core, the conduit is sleeved outside the core, the first housing is sleeved outside the conduit, the conduit and the first housing are used for accommodating an atomizing substrate, the atomizing substrate can flow to the first liquid guiding element and the second liquid guiding element through the conduit and the core, and the heating element is used for heating the atomizing substrate on the first liquid guiding element and/or the second liquid guiding element to generate aerosol.
9. The atomizing device of claim 8, wherein the conduit is formed with a slot, at least a portion of the liquid guiding mechanism is received in the slot, and the liquid guiding mechanism and the slot are in an interference fit.
10. The atomizing device of claim 8, wherein the conduit is disposed around the liquid-conducting mechanism and the wick body, and the conduit and the liquid-conducting mechanism are disposed in an interference fit manner.
CN202123254375.5U 2021-12-22 2021-12-22 Atomizing device and liquid guide mechanism thereof Active CN217547283U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123254375.5U CN217547283U (en) 2021-12-22 2021-12-22 Atomizing device and liquid guide mechanism thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123254375.5U CN217547283U (en) 2021-12-22 2021-12-22 Atomizing device and liquid guide mechanism thereof

Publications (1)

Publication Number Publication Date
CN217547283U true CN217547283U (en) 2022-10-11

Family

ID=83465842

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123254375.5U Active CN217547283U (en) 2021-12-22 2021-12-22 Atomizing device and liquid guide mechanism thereof

Country Status (1)

Country Link
CN (1) CN217547283U (en)

Similar Documents

Publication Publication Date Title
US10973262B2 (en) Electronic cigaratte with porous body and atomizer thereof
US20220218036A1 (en) Electronic vaporization apparatus and vaporizer thereof
CN215684779U (en) Atomizer and aerosol-generating device
CN217547283U (en) Atomizing device and liquid guide mechanism thereof
CN114223962A (en) Liquid guide mechanism of atomization device, atomization device and assembly method of atomization device
CN216416049U (en) Atomizer and aerosol generating device
CN214509399U (en) Aerosol generating device and atomization assembly thereof
CN217284807U (en) Atomizing device and liquid guide mechanism thereof
CN218354598U (en) Electronic atomization device
CN220109122U (en) Atomizer and electronic atomization device
CN218354593U (en) Heater, atomizer, and aerosol-generating device
CN115462561A (en) Electronic atomization device and atomizer thereof
CN217609534U (en) Aerosol generating device
CN216821785U (en) Atomizing core and aerosol generating device
EP4305983A1 (en) Vapor cartridge
CN215531626U (en) Atomizing device and aerosol-generating device
CN216147226U (en) Atomizer and aerosol-generating device
CN108618204B (en) Atomizer and electronic cigarette
CN215347012U (en) Atomizer, electronic atomization device and liquid guide element for atomizer
CN212437296U (en) Atomizing core assembly of atomizing device, atomizing device and electronic atomizing equipment
CN212754265U (en) A hollow oil storage subassembly and electron cigarette for electron cigarette
CN114732164A (en) Electronic atomization device and atomizer, atomization assembly and liquid guide device thereof
CN113995172A (en) Atomizing core structure, atomizer and aerosol generating device
CN218303435U (en) Electronic atomization device and atomizer thereof
CN111671161A (en) Hollow oil storage assembly for electronic cigarette, assembly method of hollow oil storage assembly and electronic cigarette

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant