CN218605061U - A atomizing device and electron cigarette for electron cigarette - Google Patents

A atomizing device and electron cigarette for electron cigarette Download PDF

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Publication number
CN218605061U
CN218605061U CN202221551444.0U CN202221551444U CN218605061U CN 218605061 U CN218605061 U CN 218605061U CN 202221551444 U CN202221551444 U CN 202221551444U CN 218605061 U CN218605061 U CN 218605061U
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atomizing
oil storage
housing
oil
atomizing core
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CN202221551444.0U
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程义林
侯贵平
金奇斌
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BYD Precision Manufacturing Co Ltd
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BYD Precision Manufacturing Co Ltd
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Abstract

The application discloses atomizing device and electron cigarette for electron cigarette, the device includes: shell, atomizing core mounting is equipped with oil storage bin, air flue and atomizing storehouse in the shell, is equipped with the atomizing core on the atomizing core mounting, the atomizing core respectively with oil storage bin and atomizing storehouse intercommunication, the atomizing core is used for atomizing the medium of treating in the oil storage bin, is formed with at least one oil storage tank on the atomizing core mounting, the width of oil storage tank is w, the degree of depth of oil storage tank is h, w, h satisfy respectively: w is more than or equal to 0.25mm and less than or equal to 0.5mm, h is more than or equal to 0.1mm and less than or equal to 0.4mm. From this, can be convenient for increase the guidance quality that liquid medium flows to the inside collection of liquid medium that forms because the condensation of cold and hot exchange smog of atomizing device, simultaneously, the oil storage tank can increase the adnexed area of liquid medium, increases the collection to liquid medium, increases the security and the cleanness that use atomizing device, avoids the liquid medium backward flow of condensation to enter the atomizing storehouse to the smog that the messenger supplies the user to inhale is more healthy.

Description

A atomizing device and electron cigarette for electron cigarette
Technical Field
The application relates to the technical field of electronic cigarettes, in particular to an atomizing device for an electronic cigarette and the electronic cigarette.
Background
The electron cigarette includes cigarette bullet and tobacco rod usually, and the cigarette bullet is installed in the tobacco rod and can produce the smog of being absorbed by the human body, and the cigarette bullet is provided with oil storage bin, air flue, atomizing storehouse and atomizing core, is provided with the tobacco tar that is used for producing smog in the oil storage bin, and the tobacco tar gets into atomizing storehouse and is atomized into smog through atomizing core, and smog is inhaled by the user through the air flue.
As the atomizing device that the cigarette bullet used among the correlation technique, the oil storage tank position that its inside set up is reasonable inadequately, leads to the oil leak easily, and the liquid medium ability after the condensation of storage is effective, and is unfavorable for atomizing device's miniaturization and flattening design.
SUMMERY OF THE UTILITY MODEL
The present application is directed to solving at least one of the problems in the prior art. To this end, a first object of the present application is to provide an atomization device for an electronic cigarette, which can store part of smoke condensed by heat exchange, and collect the part of smoke, so as to make the atomization device safer and healthier.
A second objective of the present application is to provide an electronic cigarette, which includes the above atomization device for an electronic cigarette.
According to an embodiment of the first aspect of the application, the atomizing device for the electronic cigarette comprises: the atomizing device comprises a shell and an atomizing core fixing piece, wherein an oil storage bin, an air passage and an atomizing bin communicated with the air passage are arranged in the shell, and the shell is provided with at least one air inlet communicated with the atomizing bin and an air suction port communicated with the air passage; the atomizing core mounting is established in the shell, the atomizing core mounting is separated oil storage bin with the atomizing storehouse, be equipped with the atomizing core on the atomizing core mounting, the atomizing core respectively with oil storage bin with the atomizing storehouse intercommunication, the atomizing core be used for with the medium of waiting to atomize in the oil storage bin atomizes, be formed with at least one oil storage tank on the atomizing core mounting, the width of oil storage tank is w, the degree of depth of oil storage tank is h, wherein, w, h satisfy respectively: w is more than or equal to 0.25mm and less than or equal to 0.5mm, h is more than or equal to 0.1mm and less than or equal to 0.4mm.
According to the atomizing device, the oil storage groove is formed in the atomizing core fixing piece, so that the liquid medium formed by condensing the cold and heat exchange smoke in the atomizing device can be conveniently collected, the liquid medium attached to the outer surface of the atomizing core fixing piece can flow to a preset position regularly, the flowing guidance of the liquid medium is improved, meanwhile, the oil storage groove can increase the attached area of the liquid medium, the collection of the liquid medium is increased, the safety and the cleanness of the atomizing device are improved, the condensed liquid medium is prevented from flowing back into the atomizing bin, and the smoke sucked by a user is healthier; when the depth and the width of the oil storage tank are within the range values, the maximum space utilization rate is ensured, the oil storage tank has the oil storage effect with the optimal performance, the oil leakage prevention effect of the prepared electronic cigarette is best, and the smoke taste is pure.
In some embodiments, the width of the reservoir tank gradually increases from the tank bottom of the reservoir tank toward the notch of the reservoir tank.
In some embodiments, the reservoir includes two side walls opposite each other, extending from a bottom of the reservoir in a direction toward a notch of the reservoir, the two side walls in a direction away from each other.
In some embodiments, the oil reservoir is provided on a side surface of the atomizing core fixing member facing the outer housing.
In some embodiments, the housing has a length direction, a width direction, and a thickness direction, a dimension of the length direction of the housing is greater than a dimension of the width direction of the housing, and a dimension of the width direction of the housing is greater than or equal to a dimension of the thickness direction of the housing.
In some embodiments, the oil reservoir is a plurality of oil reservoirs, the plurality of oil reservoirs including: at least one first oil reservoir, the first oil reservoir extends along the length direction of shell.
In some embodiments, the plurality of reservoirs comprises: at least one second oil reservoir extending in a width direction of the outer case.
In some embodiments, the atomizing core holder has a plurality of ribs on an outer surface thereof, the plurality of ribs including: a plurality of first protruding muscle, it is a plurality of first protruding muscle is followed the width direction interval of shell sets up and follows the length direction of shell extends, adjacent two inject between the first protruding muscle first oil storage tank.
In some embodiments, the plurality of ribs further comprises: a plurality of second protruding muscle, it is a plurality of the second protruding muscle is followed the length direction interval of shell sets up and follows the width direction of shell extends, at least adjacent two inject between the second protruding muscle the second oil storage tank.
In some embodiments, at least a portion of two adjacent second ribs may coincide in a length direction of the housing.
In some embodiments, the second rib is located closer to the air inlet than the first rib.
In some embodiments, an atomization bin communication port and a storage groove are formed on a surface of at least one side of the atomization core fixing piece in the thickness direction of the housing, the atomization bin communication port penetrates through a side wall of the atomization core fixing piece, the storage groove is located adjacent to the atomization bin communication port on one side of the oil storage bin and is communicated with the atomization bin communication port, the first protruding ribs and the second protruding ribs are arranged in the storage groove, a blocking rib is arranged in the storage groove and is connected with a side edge of the oil storage bin adjacent to the atomization bin communication port, one end of the blocking rib is connected with the side wall of the storage groove in the width direction of the housing, and the other end of the blocking rib is spaced apart from the other side wall of the storage groove in the width direction of the housing.
In some embodiments, the atomizing wick holder further comprises: and the retaining rib, the second retaining rib and the side wall of the accommodating groove far away from the oil storage bin are spaced from each other to define the third oil storage groove.
An electronic cigarette according to an embodiment of a second aspect of the present application includes the atomization device for the electronic cigarette in any one of the above embodiments.
Additional aspects and advantages of the present application will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the present application.
Drawings
The above and/or additional aspects and advantages of the present application will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic perspective view of a stereo split according to an embodiment of the present application.
FIG. 2 is a schematic cross-sectional view according to one embodiment of the present application.
FIG. 3 is a schematic cross-sectional view of another embodiment according to the present application.
FIG. 4 is a schematic cross-sectional view of an atomizing core holder and base assembly according to an embodiment of the present application.
Fig. 5 is a schematic view of an atomizing core holder according to an embodiment of the present application.
Fig. 6 is an enlarged view of a portion P in fig. 5.
Reference numerals:
an atomizing device 100;
a housing 10; an oil storage bin 11; an oil storage bin communication port 111; an airway 12; a suction port 121; an atomization bin 13; a base assembly 14; a buckle 141; an air inlet 142;
an atomizing-core fixing member 20; an oil reservoir 21; a notch 211; a slot bottom 212; a first oil reservoir 213; a second oil reservoir 214; the first ribs 22; the second ribs 23; an atomization bin communication port 24; a receiving groove 25; the third oil reservoir 251; a stopper rib 26; a fastening position 27;
an atomizing core 30; a base seal 40; an oil storage space 50.
Detailed Description
Embodiments of the present application are described in detail below, the embodiments described with reference to the drawings being exemplary, and an atomizing device 100 for an electronic cigarette and an electronic cigarette according to embodiments of the present application are described below with reference to fig. 1 to 6, the atomizing device 100 for an electronic cigarette including: a housing 10, an atomizing core holder 20.
Specifically, as shown in fig. 1 to 4, an oil storage bin 11, an air passage 12, and an atomization bin 13 communicated with the air passage 12 are disposed in the housing 10, the housing 10 is provided with at least one air inlet 142 communicated with the atomization bin 13 and an air suction port 121 communicated with the air passage 12, the air inlet 142 and the air suction port 121 are respectively disposed at two ends of the housing 10 in the length direction, external air enters the atomization bin 13 from the air inlet 142, so that smoke in the atomization bin 13 flows to the air suction port 121 through the air passage 12 communicated with the atomization bin 13 for a user to inhale. Atomizing core mounting 20 establishes in shell 10, and atomizing core mounting 20 separates oil storage storehouse 11 and atomizing storehouse 13, is equipped with atomizing core 30 on the atomizing core mounting 20, and atomizing core 30 communicates with oil storage storehouse 11 and atomizing storehouse 13 respectively, and atomizing core 30 is used for atomizing the medium of treating that flows to atomizing core 30 in oil storage storehouse 11 and forms smog in order to supply the suction.
Referring to fig. 5 and 6, at least one oil reservoir 21 is formed in the atomizing core-fixing member 20. For example, the oil reservoir 21 serves to store a part of the liquid medium generated in the atomizing core holder 20. The liquid medium meets the low-temperature air entering from the air inlet 142 by the high-temperature smoke generated by atomization, part of the high-temperature smoke is condensed to form the liquid medium to be attached to the surface of the oil storage tank 21, and the oil storage tank 21 can collect the part of the liquid. The width of oil reservoir 21 is w, and the depth of oil reservoir 21 is h, and wherein, w, h satisfy respectively: w is more than or equal to 0.25mm and less than or equal to 0.5mm, h is more than or equal to 0.1mm and less than or equal to 0.4mm. Optionally, w =0.35mm, h =0.25mm. But is not limited thereto.
According to the atomizing device 100 of the present application, the oil storage tank 21 is formed on the atomizing core fixing member 20, so that the collection of the liquid medium formed by the condensation of the heat exchange smoke inside the atomizing device 100 can be facilitated, the liquid medium attached to the outer surface of the atomizing core fixing member 20 can flow to the preset position regularly, the guidance of the liquid medium flow is increased, meanwhile, the oil storage tank 21 can increase the attachment area of the liquid medium, the collection of the liquid medium is increased, the safety and the cleanness of the atomizing device 100 are increased, and the condensed liquid medium is prevented from flowing back to the atomizing chamber 13, so that the smoke sucked by the user is healthier; when the depth and the width of the oil storage tank 21 are within the above range values, the maximum utilization rate of the space is ensured, the oil storage tank 21 has the oil storage effect with the optimal performance, the prepared electronic cigarette has the best oil leakage prevention effect, and the smoke has pure taste.
In some embodiments, in conjunction with fig. 6, the width of the oil reservoir 21 gradually increases from the reservoir bottom 212 of the oil reservoir 21 toward the notch 211 of the oil reservoir 21 in the thickness direction of the atomizing core holder 20. The cross-sectional shape of the oil reservoir 21 may be trapezoidal, and the groove bottom 212 of the oil reservoir 21, i.e., the side of the oil reservoir 21 adjacent to the center of the atomizing core holder 20, is smaller than the side of the oil reservoir 21 away from the center of the atomizing core holder 20. Therefore, the width of the notch 211 of the oil reservoir 21 is larger than the width of the groove bottom 212, so that the condensed liquid medium can be attached to the surface of the oil reservoir 21, and the contact area between the oil reservoir 21 and the liquid medium can be increased.
Alternatively, as shown in fig. 6, each of the oil sumps 21 includes two side walls opposed to each other, and the two side walls extend from the groove bottom 212 of the oil sump 21 in a direction toward the notch 211 of the oil sump 21 and in a direction away from each other, that is, the width of the side of the oil sump 21 away from the center of the atomizing core holder 20 is larger than the width of the groove bottom 212. The width may be a distance in the width direction of the atomizing core holder 20, that is, the left-right direction shown in fig. 2. Therefore, the two side walls of the oil storage tank 21 are far away from each other along the direction from the tank bottom 212 to the tank top, so that the contact area between the oil storage tank 21 and the condensed liquid medium can be further increased, the storage is convenient, and the liquid medium is prevented from flowing out of the atomization device 100 or the atomization device 100 is prevented from oil leakage or oil leakage.
In some embodiments, referring to fig. 3 and 5, the oil storage groove 21 is disposed on a side surface of the atomizing core fixing member 20 facing the housing 10, so that the oil storage groove 21 and the housing 10 together define a flow passage of the condensed liquid medium, which facilitates complete separation of the liquid medium from the mist atomized by the atomizing core 30, and increases cleanness of the mist atomized by the atomizing core 30.
In some embodiments, referring to fig. 2 and 3, the housing 10 has a length direction, a width direction, and a thickness direction, where the length direction of the housing 10 may be the up-down direction shown in fig. 2, the width direction may be the left-right direction shown in fig. 2, and the thickness direction may be the front-back direction shown in fig. 3. The dimension of the housing 10 in the longitudinal direction is larger than the dimension of the housing 10 in the width direction, and the dimension of the housing 10 in the width direction is larger than or equal to the dimension of the housing 10 in the thickness direction. Thus, the atomizer 100 is convenient to carry and use and has a foolproof function by defining the dimensions of the housing 10 in the longitudinal direction, the width direction and the thickness direction.
Referring to fig. 6, the number of the oil reservoir 21 may be plural, and the plural oil reservoirs 21 may include at least one first oil reservoir 213, or include at least one second oil reservoir 214, or include both of the plural first oil reservoirs 213 and the plural second oil reservoirs 214. Here, the plurality of oil reservoirs 21 include: at least one first oil reservoir 213 and at least one second oil reservoir 214 are illustrated as examples. The first oil reservoir 213 extends in the longitudinal direction of the housing 10, and the second oil reservoir 214 extends in the width direction of the housing 10. Therefore, the oil reservoir 21 includes a plurality of first oil reservoirs 213 extending in the longitudinal direction and a plurality of second oil reservoirs 214 extending in the width direction, and the contact between the oil reservoir 21 and the condensed liquid medium can be sufficiently increased, thereby increasing the oil-retaining capacity of the oil reservoir 21.
According to some embodiments of the present application, as shown in fig. 5 and 6, the atomizing core fixing member 20 is provided with a plurality of ribs on the outer surface thereof, and the ribs may include a plurality of first ribs 22, or a plurality of second ribs 23, or both a plurality of first ribs 22 and a plurality of second ribs 23. Here, the plurality of ribs simultaneously include: the plurality of first ribs 22 and the plurality of second ribs 23 are explained as an example. The plurality of first ribs 22 are arranged at intervals along the width direction of the housing 10 and extend along the length direction of the housing 10, and a first oil storage groove 213 is defined between two adjacent first ribs 22. The second ribs 23 are arranged at intervals along the length direction of the outer shell 10 and extend along the width direction of the outer shell 10, and a second oil storage groove 214 is defined between at least two adjacent second ribs 23. Therefore, the first oil storage grooves 213 and the second oil storage grooves 214 can be respectively defined by the first convex ribs 22 and the second convex ribs 23 at intervals, the structural strength of the atomizing core fixing member 20 can be increased, condensed liquid medium can be stored conveniently, and the storage capacity of the liquid medium is increased.
In some embodiments, at least a portion of two adjacent second ribs 23 coincide in the length direction of the housing 10. It is understood that two adjacent second ribs 23 may extend along the width direction of the housing 10, and along the length direction of the housing 10, orthographic projections formed by two adjacent second ribs 23 at least partially overlap. Therefore, at least part of the two second ribs 23 are overlapped in the length direction of the shell 10, the storage capacity of the condensed liquid medium can be increased, for example, when the liquid medium falls down along the length direction of the shell 10, the area of the second ribs 23 in contact with the liquid medium can be increased, the part of the liquid medium is convenient to store, meanwhile, the space on the outer surface of the atomizing core fixing piece 20 can be fully utilized, and the utilization rate of the space on the outer surface of the atomizing core fixing piece 20 is improved.
Further, as shown in fig. 5, the second rib 23 is located closer to the air inlet 142 than the first rib 22, so that the liquid medium formed on the atomizing core fixing member 20 can flow along the first oil reservoir 213 formed by the first rib 22 to the second oil reservoir 214 formed by the second rib 23, and the second rib 23 located below can receive the liquid medium adhered to the surface of the first rib 22. Therefore, the collection and storage of the liquid medium on the first rib 22 can be further increased, the liquid medium on the first rib 22 is prevented from falling into other places of the atomizing core fixing member 20, and the possibility that the condensed liquid medium leaks out of the atomizing device 100 is reduced.
In some embodiments, referring to fig. 5, an atomizing chamber communicating opening 24 and a receiving groove 25 are formed on at least one side surface of the atomizing core fixing member 20 along the thickness direction of the housing 10, the atomizing chamber communicating opening 24 penetrates through the side wall of the atomizing core fixing member 20, and the receiving groove 25 is located on one side of the atomizing chamber communicating opening 24 adjacent to the oil storage chamber 11 and communicates with the atomizing chamber communicating opening 24, that is, the receiving groove 25 may be located on a surface of one side of the atomizing core fixing member 20 where the plurality of ribs are formed. A plurality of first protruding muscle 22 and a plurality of second protruding muscle 23 all establish in storage tank 25, still be equipped with in the storage tank 25 and keep off muscle 26, it can extend along the width direction of shell 10 to keep off muscle 26, keep off muscle 26 be located atomizing storehouse intercommunication mouthful 24 towards one side of oil storage storehouse 11 and meet with the side (atomizing storehouse intercommunication mouthful 24 last border) of atomizing storehouse intercommunication mouthful 24 neighbouring oil storage storehouse 11, the one end that keeps off muscle 26 links to each other with the storage tank 25 along the width direction's of shell 10 lateral wall, the other end that keeps off muscle 26 and storage tank 25 another lateral wall along the width direction of shell 10 are spaced apart each other.
Along the width direction of shell 10, the edge that one side edge that first protruding muscle 22 was kept away from to atomizing storehouse intercommunication mouth 24 is the edge that first protruding muscle 22 one side was kept away from for storage tank 25, and the one end that keeps off muscle 26 is connected with above-mentioned edge, and the other end that keeps off muscle 26 extends along the width direction of shell 10, and sets up along the relative marginal interval of the width direction of shell 10 with above-mentioned edge.
Therefore, first protruding muscle 22, second protruding muscle 23 and fender muscle 26 are all located in the storage tank 25, be convenient for protruding muscle and fender muscle 26's setting, avoid protruding muscle and fender muscle 26 excessive protrusion atomizing core mounting 20's surface in the thickness direction of shell 10, increase the space between atomizing core mounting 20 and the shell 10, guarantee the degree of depth and the intercommunication of atomizing storehouse 13 and storage tank 25 of first oil storage tank 213 and second oil storage tank 214, increase the atomizing in-process, because low temperature air and high temperature smog meet the storage capacity that leads to partial smog condensation to form liquid medium. The retaining rib 26 can improve the structural strength of the accommodating groove 25, and can prevent the liquid medium in the first oil storage groove 213 and the second oil storage groove 214 from flowing to the atomizing chamber 13 from the atomizing chamber communication port 24, so that the smoke which can be sucked is healthier.
Further, as shown in fig. 5, the atomizing core holder 20 includes: the at least one third oil reservoir 251, the rib 26 and the side walls of the second rib 23 and the receiving groove 25 remote from the oil sump 13 are spaced apart from each other to define the third oil reservoir 251. In other words, the rib 26 and the second rib 23 are spaced apart from each other on the side of the atomizing core holder 20 facing the housing 10 to form a third oil storage groove 251, the rib 26 is spaced apart from the sidewall of the receiving groove 25 on the side away from the oil storage tank 11 to form another third oil storage groove 251, and the two third oil storage grooves 251 are respectively disposed on two sides of the rib 26 along the length direction of the housing 10. The third oil reservoir 251 communicates the atomization chamber communication port 24 with the first oil reservoir 213 and the second oil reservoir 214. Thus, the third oil reservoir 251 is provided in the atomizing core fixing member 20, which facilitates communication between the atomizing chamber communication port 24 and the first and second oil reservoirs 213 and 214, so that part of the mist can flow to the first and second oil reservoirs 213 and 214 through the third oil reservoir 251, thereby increasing the area of the atomizing device 100 to which the condensed liquid medium adheres.
An electronic cigarette according to an embodiment of the second aspect of the present application includes the atomization device 100 for the electronic cigarette in any of the above embodiments.
Referring to fig. 1 to 6, a plurality of first ribs 22 and a plurality of second ribs 23 are formed on the outer peripheral surface of the atomizing core fixing member 20, the first oil storage groove 213 is limited by the plurality of first ribs 22, the second oil storage groove 214 is limited by the plurality of second ribs 23, the first oil storage groove 213 extends along the length direction of the outer shell 10, the second oil storage groove 214 extends along the width direction of the outer shell 10, the plurality of first ribs 22 and the second ribs 23 are disposed in the accommodating groove 25 and are communicated with the atomizing chamber 13, so as to store the liquid medium formed by partial condensation in the oil storage groove 21, and the liquid medium overflowing from the oil storage groove 21 can be stored in the oil storage space 50 along the gap between the atomizing core fixing member 20 and the outer shell 10. The oil storage space 50 may be defined by the base seal 40 and the base assembly 14 together. The housing 10 includes a base assembly 14, and the base assembly 14 is engaged with a catch 27 provided in the atomizing core holder 20 by a catch 141. A base sealing member 40 may be disposed between the atomizing core fixing member 20 and the base assembly 14, and the base sealing member 40 seals a gap formed between the atomizing core fixing member 20 and the base assembly 14, so as to prevent smoke in the atomizing chamber 13 from flowing away and a medium to be atomized from flowing away. Meanwhile, the uniqueness of air intake of the air inlet 142 can be further ensured, and the adjustment of the air intake amount is convenient to realize.
In the in-process that the electron cigarette used, the medium of treating atomizing in the oil storage storehouse 11 can flow to oil storage storehouse intercommunication mouth 111, and oil storage storehouse intercommunication mouth 111 forms on atomizing core mounting 20, and through oil storage storehouse intercommunication mouth 111, the medium of treating atomizing can flow to atomizing core 30, forms smog flow direction atomizing storehouse 13 in atomizing core 30 after atomizing in, and the user of being convenient for inhales from the air flue 12 flow direction induction port 121 with atomizing storehouse 13 intercommunication. Meanwhile, in order to facilitate the user to suck the food in a labor-saving manner, the end of the housing 10, which is far away from the air suction port 121, is provided with the air inlet 142, the air inlet 142 is communicated with the atomization bin 13, the air entering the air inlet 142 can be exchanged with the air inside the housing 10, the air pressure inside the housing 10 is balanced, and the user can conveniently suck the food.
According to the electronic cigarette, including the atomizing device 100 for the electronic cigarette in the above embodiment, the storage of the liquid medium formed by condensing part of the smoke in the cold and heat exchange process of the atomizing device 100 can be facilitated, the storage space is increased, the influence of the liquid medium backflow atomizing bin 13 on the cleanness of the smoke atomized by the atomizing core 30 is avoided, the cleanness of the smoke atomized and formed in the electronic cigarette is increased, and the use safety of a user is improved.
In the description of the present application, it is to be understood that the terms "center," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used in the orientations and positional relationships indicated in the drawings for convenience in describing the present application and for simplicity in description, and are not intended to indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be considered limiting of the present application.
In the description of the present application, "the first feature" and "the second feature" may include one or more of the features. In the description of the present application, "a plurality" means two or more. In the description of the present application, the first feature being "on" or "under" the second feature may include the first and second features being in direct contact, and may also include the first and second features being in contact not directly but via another feature therebetween. In the description of the present application, the first feature being "on," "above" and "over" the second feature includes the first feature being directly above and obliquely above the second feature, or simply indicating that the first feature is at a higher level than the second feature.
In the description herein, reference to the description of the terms "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the application. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example.
While embodiments of the present application have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the application, the scope of which is defined by the claims and their equivalents.

Claims (12)

1. An aerosolization device for an electronic cigarette, comprising:
the device comprises a shell, an oil storage bin, an air passage and an atomization bin communicated with the air passage are arranged in the shell, and the shell is provided with at least one air inlet communicated with the atomization bin and an air suction port communicated with the air passage;
atomizing core mounting, atomizing core mounting is established in the shell, atomizing core mounting is separated the oil storage storehouse with the atomizing storehouse, be equipped with the atomizing core on the atomizing core mounting, the atomizing core respectively with the oil storage storehouse with atomizing storehouse intercommunication, the atomizing core be used for with the medium of waiting to atomize in the oil storage storehouse atomizes, be formed with at least one oil storage tank on the atomizing core mounting, the width of oil storage tank is w, the degree of depth of oil storage tank is h, wherein, w, h satisfy respectively: w is more than or equal to 0.25mm and less than or equal to 0.5mm, h is more than or equal to 0.1mm and less than or equal to 0.4mm.
2. The atomizing device for an electronic cigarette according to claim 1, wherein the width of the oil reservoir gradually increases from a bottom of the oil reservoir toward a notch of the oil reservoir.
3. The atomizing device for an electronic cigarette according to claim 1, wherein the oil reservoir includes two side walls opposed to each other, and the two side walls extend in a direction away from each other from a groove bottom of the oil reservoir toward a notch of the oil reservoir.
4. The atomizing device for an electronic cigarette according to claim 1, wherein the oil reservoir is provided on a side surface of the atomizing core holder facing the housing.
5. The aerosolization device for an electronic cigarette according to any one of claims 1-4, wherein the housing has a length direction, a width direction, and a thickness direction, a dimension of the housing in the length direction being greater than a dimension of the housing in the width direction, the dimension of the housing in the width direction being greater than or equal to the dimension of the housing in the thickness direction.
6. The aerosol apparatus for an electronic cigarette of claim 5, wherein the oil reservoir is a plurality of oil reservoirs, the plurality of oil reservoirs comprising:
at least one first oil reservoir extending along a length of the housing; and/or
At least one second oil reservoir extending in a width direction of the housing.
7. The atomizing device for an electronic cigarette according to claim 6, wherein a plurality of ribs are provided on an outer surface of the atomizing core holder, and the plurality of ribs include:
the first convex ribs are arranged at intervals along the width direction of the shell and extend along the length direction of the shell, and a first oil storage groove is defined between every two adjacent first convex ribs; and/or
A plurality of second protruding muscle, it is a plurality of the second protruding muscle is followed the length direction interval of shell sets up and follows the width direction of shell extends, at least adjacent two inject between the second protruding muscle the second oil storage tank.
8. The aerosol apparatus for an electronic cigarette of claim 7, wherein at least a portion of two adjacent second ribs coincide in a length direction of the housing.
9. The aerosolization device for an electronic cigarette of claim 7, wherein the second rib is positioned closer to the air inlet than the first rib.
10. The atomizing device for an electronic cigarette according to claim 7, wherein an atomizing bin communicating opening and a receiving groove are formed on at least one side surface of the atomizing core fixing member along the thickness direction of the housing, the atomizing bin communicating opening penetrates through a side wall of the atomizing core fixing member, the receiving groove is located on one side of the atomizing bin communicating opening adjacent to the oil storage bin and is communicated with the atomizing bin communicating opening, the first protruding ribs and the second protruding ribs are all arranged in the receiving groove, a blocking rib is arranged in the receiving groove, the blocking rib is connected with a side edge of the atomizing bin communicating opening adjacent to the oil storage bin, one end of the blocking rib is connected with the side wall of the receiving groove along the width direction of the housing, and the other end of the blocking rib is spaced apart from the other side wall of the receiving groove along the width direction of the housing.
11. The aerosolization device for an electronic cigarette of claim 10, further comprising:
at least one third oil storage groove, the fender muscle with the second protruding muscle with the storage tank keep away from the lateral wall of oil storage storehouse is spaced apart from each other in order to inject the third oil storage groove.
12. An electronic cigarette, characterized by comprising the atomizing device for an electronic cigarette according to any one of claims 1 to 11.
CN202221551444.0U 2022-06-20 2022-06-20 A atomizing device and electron cigarette for electron cigarette Active CN218605061U (en)

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