CN110693089A - Electronic cigarette atomization assembly and electronic cigarette - Google Patents
Electronic cigarette atomization assembly and electronic cigarette Download PDFInfo
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- CN110693089A CN110693089A CN201911084572.1A CN201911084572A CN110693089A CN 110693089 A CN110693089 A CN 110693089A CN 201911084572 A CN201911084572 A CN 201911084572A CN 110693089 A CN110693089 A CN 110693089A
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Abstract
The invention relates to an electronic cigarette atomization component and an electronic cigarette, which are used for relieving the problem that an atomizer cannot be reused. Wherein, the electronics cigarette atomization component includes: the liquid storage part comprises a liquid storage cavity and a sealing part, the liquid storage cavity is formed inside the liquid storage part and is configured to contain tobacco juice, the liquid storage cavity is provided with an opening end, and the sealing part is arranged at the opening end; the atomizer is detachably connected with the liquid storage part and comprises a liquid guiding part, and a liquid flow channel is formed in the liquid guiding part; the first end of the liquid guiding piece is configured to penetrate through the sealing piece and be inserted into the liquid storage cavity after the connection of the atomizer and the liquid storage piece is completed, so that the tobacco juice in the liquid storage cavity flows to the inside of the atomizer through the liquid flow channel. The invention has the advantages of simple structure, convenient operation, reusable atomizer, low material consumption cost and environmental protection.
Description
Technical Field
The invention relates to the field of electronic cigarettes, in particular to an electronic cigarette atomization assembly and an electronic cigarette.
Background
Electronic cigarettes generally use electric energy as a driving source to realize the device that tobacco tar and tobacco juice products are inhaled into a human body after being atomized. One currently known effective form is to heat the electronic cigarette liquid absorbed in the porous material through an electric heating component to realize atomization; and mixes with the air stream for the user to draw the aerosol.
Because the electronic cigarette liquid has multiple tastes, after the consumer wants to change the electronic cigarette liquid of different tastes or the electronic cigarette liquid is used up, generally need to change the whole change of electron smog spinning disk atomiser and abandon, cause the unable reuse of consumptive material from this, use cost is too high, the not friendly scheduling problem of environment.
Disclosure of Invention
Some embodiments of the invention provide an electronic cigarette atomization component and an electronic cigarette, which are used for relieving the problem that an atomizer cannot be reused.
Some embodiments of the invention provide an electronic aerosolization assembly comprising:
the liquid storage part comprises a liquid storage cavity and a sealing part, the liquid storage cavity is formed inside the liquid storage part and is configured to contain tobacco juice, the liquid storage cavity is provided with an opening end, and the sealing part is arranged at the opening end; and
the atomizer is detachably connected with the liquid storage part and comprises a liquid guide part, and a liquid flow channel is formed in the liquid guide part; the first end of the liquid guiding piece is configured to penetrate through the sealing piece and be inserted into the liquid storage cavity after the connection of the atomizer and the liquid storage piece is completed, so that the tobacco juice in the liquid storage cavity flows to the inside of the atomizer through the liquid flow channel.
In some embodiments, the reservoir further comprises a flue formed inside the reservoir, the flue being independent of the reservoir chamber.
In some embodiments, the reservoir is annular and is disposed about the flue, or the flue is annular and is disposed about the reservoir, or the flue and the reservoir are disposed side-by-side.
In some embodiments, the atomizer further comprises an atomizing core and a conductive contact, the atomizing core comprises a first side surface and a second side surface which are arranged oppositely, the first side surface of the atomizing core is communicated with the liquid flow channel of the liquid guide member, and the second side surface of the atomizing core is abutted with the conductive contact.
In some embodiments, the nebulizer further comprises an air intake passage and a pneumatic switch;
the air inlet channel is communicated with the flue, and the air inlet channel is configured to enable inlet air of the air inlet channel to flow to the flue through the atomizing core;
the pneumatic switch is arranged in the air inlet channel and on a circuit where the conductive contact is located, and the pneumatic switch is configured to be turned off when the air inlet pressure of the air inlet channel reaches a preset air pressure value of the pneumatic switch, so that the circuit is turned on.
In some embodiments, the first end of the fluid director is configured as a tip.
In some embodiments, the liquid storage part and the atomizer are provided with mutually matched snap groove structures.
In some embodiments, the atomizer further comprises a sealing member, and the sealing member is arranged at the position where the atomizer is connected and matched with the liquid storage member.
Some embodiments of the invention provide an electronic cigarette, which includes a battery assembly, and the electronic aerosolization assembly described above, the electronic aerosolization assembly being detachably connected to the battery assembly.
In some embodiments, the battery assembly comprises a housing, the electronic cigarette atomization assembly is connected with the housing in a plugging manner, and a mutually matched buckle clamping groove structure or a magnetic force adsorption assembly is arranged between the housing and the electronic cigarette atomization assembly.
In some embodiments, the battery assembly includes a housing and a battery disposed within the housing, the battery being electrically connected to a nebulizer in the electronic aerosolization assembly.
In some embodiments, the battery includes a rechargeable battery, the battery assembly further includes a control board disposed in the housing and electrically connected to the battery, and the control board is further provided with a charging interface for charging the battery.
Based on the technical scheme, the invention at least has the following beneficial effects:
in some embodiments, stock solution spare can be dismantled with the atomizer and be connected, the inside of the drain spare of atomizer is formed with liquid flow channel, be connected the completion back at atomizer and stock solution spare, the first end of drain spare pierces through the sealing member, insert and locate the stock solution intracavity, so that the tobacco juice of stock solution intracavity passes through the inside of liquid flow channel flow direction atomizer, atomize, the tobacco juice in stock solution spare finishes using, perhaps, when the tobacco juice of different tastes needs to be changed, only need pull down stock solution spare from the atomizer, the stock solution spare of more renewing or the stock solution spare that has stored different taste tobacco juice can, moreover, the steam generator is simple in structure, and convenient for operation, the atomizer is repeatedly usable, the consumptive material is with low costs, and the environmental protection.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the invention without limiting the invention. In the drawings:
fig. 1 is a schematic assembly flow diagram of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
fig. 2(a) is a schematic view of a first embodiment of a reservoir of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
figure 2(b) is a schematic view of a second embodiment of a reservoir of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
figure 2(c) is a schematic view of a third embodiment of a reservoir of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
fig. 2(d) is a schematic view of a fourth embodiment of a reservoir of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
fig. 3 is a schematic cross-sectional view of a nebulizer of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
fig. 4 is a schematic assembly flow diagram of a three-dimensional structure of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
fig. 5 is an assembly flow diagram of a cross-sectional structure of an electronic aerosolization assembly provided in accordance with some embodiments of the present invention;
figure 6 is a schematic assembly flow diagram of a three-dimensional structure of an electronic cigarette provided in accordance with some embodiments of the present invention;
figure 7 is an assembled cross-sectional view of a battery assembly, an atomizer, and a reservoir of an electronic cigarette according to some embodiments of the present invention.
The reference numbers in the drawings illustrate the following:
1-liquid storage part; 11-a liquid storage cavity; 12-a closure; 13-flue;
2-an atomizer; 21-a liquid guide member; 211-a first end of a liquid guide; 22-an atomizing core; 23-a conductive contact; 24-an intake passage; 25-a pneumatic switch; 26-a seal; 27-a housing; 28-interface; 29-buckling;
3-a battery assembly; 31-a housing; 32-a battery; 33-a control panel; 331-a charging interface; 34-an air inlet;
10-an electronic cigarette atomization component;
100-electronic cigarette.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments. It is to be understood that the described embodiments are merely a few embodiments of the invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without any inventive step, are within the scope of the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate orientations or positional relationships based on those shown in the drawings, and are used merely for convenience in describing the present invention and for simplifying the description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be taken as limiting the scope of the present invention.
As shown in fig. 1, some embodiments provide an electronic aerosolization assembly 10 that includes a reservoir 1 and an atomizer 2.
As shown in fig. 2(a) to 2(d), the liquid storage member 1 includes a liquid storage chamber 11 and a sealing member 12. A reservoir 11 is formed inside the reservoir 1 and is configured to contain a liquid smoke, the reservoir 11 having an open end, and a closure 12 disposed at the open end. The closure 12 is used to seal the open end to enclose the tobacco juice within the reservoir 11.
The atomizer 2 is detachably connected with the liquid storage part 1. The atomizer 2 includes a liquid guide 21, and a liquid flow passage is formed inside the liquid guide 21. The first end of the liquid guiding member 21 is configured to penetrate the sealing member 12 and be inserted into the liquid storage cavity 11 after the atomizer 2 is connected to the liquid storage member 1, so that the tobacco liquid in the liquid storage cavity 11 flows to the inside of the atomizer 2 through the liquid flow channel.
The smoke liquid in the liquid storage cavity 11 flows into the atomizer 2 through the liquid flow channel and is atomized into smoke by the atomizer 2 for suction.
In some embodiments, stock solution spare 1 can be dismantled with atomizer 2 and be connected, and the tobacco juice in stock solution spare 1 finishes using, perhaps, when needing to change the tobacco juice of different tastes, only need to pull down stock solution spare 1 from atomizer 2, change new stock solution spare 1 or store stock solution spare 1 that has different taste tobacco juice can, simple structure, convenient operation, 2 repeatedly usable of atomizer, the consumptive material is with low costs, and the environmental protection etc..
In some embodiments, the reservoir 1 further comprises a flue 13, the flue 13 is formed inside the reservoir 1, and the flue 13 is independent from the reservoir 11.
In some embodiments, the reservoir 11 is a sealed chamber, and the outer wall of the reservoir 11 and the outer wall of the flue 13 may be a single integral component or may be assembled from two components.
The opening end of the liquid storage cavity 11 is provided with a sealing piece 12, so that the tobacco juice in the liquid storage cavity 11 is in a sealing state when not used, and the leakage of the tobacco juice in the carrying and transporting processes is prevented. When the cigarette liquid in the liquid storage cavity 11 is used, the liquid guide part 21 of the atomizer 2 penetrates through the sealing part 12 at the opening end of the liquid storage cavity 11 and extends into the liquid storage cavity 11.
Optionally, the closure 12 comprises a sealing membrane.
In some embodiments, as shown in fig. 2(a), 2(b), the reservoir chamber 11 is annular and disposed around the flue 13.
As shown in fig. 2(a), the flue 13 is located at the center of the annular liquid storage cavity 11, i.e. the flue 13 is coaxial with the liquid storage cavity 11.
As shown in fig. 2(b), the flue 13 is located in the annular liquid storage cavity 11, but the flue 13 is not coaxial with the liquid storage cavity 11, i.e. the flue 13 is eccentric to the liquid storage cavity 11.
As shown in fig. 2(c), the flue 13 and the reservoir chamber 11 are arranged side by side.
As shown in fig. 2(d), the flue 13 is annular and disposed around the reservoir chamber 11.
In some embodiments, the number of the liquid guiding members 21 is one, two or more, and the position of the liquid guiding members 21 is determined according to the arrangement position of the liquid storage cavity 11. For example: the liquid guiding member 21 is disposed around the flue 13 in a state where the liquid storage chamber 11 is annular, and the liquid guiding member 21 is disposed at a position of a central axis of the flue 13 or the like in a case where the liquid storage chamber 11 is disposed in the annular flue 13.
Optionally, the drainage member 21 comprises a catheter.
In some embodiments, as shown in fig. 3, the atomizer 2 further includes an atomizing core 22 and an electrically conductive contact 23, the atomizing core 22 includes a first side and a second side which are oppositely disposed, the first side of the atomizing core 22 is communicated with the liquid flow channel of the liquid guide 21, and the second side of the atomizing core 22 is abutted to the electrically conductive contact 23.
The smoke liquid introduced by the liquid flow channel of the liquid guide piece 21 enters the atomizing core 22 and is immersed in the atomizing core 22, the atomizing core 22 is abutted against the conductive contact 23, and the smoke liquid in the atomizing core 22 is atomized by electrifying the conductive contact 23 to form smoke.
In some embodiments, the atomizing core 22 is a porous member. For example: the atomizing core 22 is a porous member made of a fibrous material.
In some embodiments, the atomizer 2 further comprises a housing 27, and the atomizing core 22 is mounted in a cavity surrounded by the housing 27.
In some embodiments, the liquid guide 21 is disposed outside the first side of the atomizing core 22, and the conductive contact 23 is disposed outside the second side of the atomizing core 22.
In some embodiments, the nebulizer 2 further comprises an air intake channel 24 and a pneumatic switch 25.
The intake passage 24 communicates with the flue 13, and the intake passage 24 is configured such that intake air thereof flows toward the flue 13 through the atomizing core 22.
The air inlet passage 24 is configured such that the air is sequentially supplied through the second side surface of the atomizing core 22, the inside of the atomizing core 22, and the first side surface of the atomizing core 22 toward the flue 13.
The pneumatic switch 25 is arranged in the air inlet channel 23, the pneumatic switch 25 is arranged on a circuit where the conductive contact 23 is located, and the pneumatic switch 25 is configured to be closed when the air inlet pressure of the air inlet channel 24 reaches a preset pressure value of the pneumatic switch 25, so that the circuit where the conductive contact 23 is located is conducted, and the tobacco tar is atomized. When the air pressure of the air inlet channel 24 does not reach the preset pressure value of the pneumatic switch 25, the circuit where the conductive contact 23 is located is opened, and the atomization of the tobacco tar is stopped.
In some embodiments, as shown in fig. 3, the second side of the atomizing core 22 in the housing 27 is further provided with a port 28, the port 28 is used for connecting with the flue 13, and the air inlet channel 24 is provided outside the second side of the atomizing core 22. The flue 13, the interface 28, the air inlet channel 24 and the like together form an air channel.
The position of the mouthpiece 28 is adjusted according to the position of the flue 13.
In some embodiments, first end 211 of drain 21 is configured as a tip.
The first end 211 of the liquid guiding member 21 is of a needle-like or inclined-cut structure, and is used for piercing the sealing member 12 of the liquid storage member 1, so that the tobacco liquid in the liquid storage chamber 11 flows to the atomizing core 22 in the atomizer 2 through the liquid guiding member 21.
In some embodiments, the reservoir 1 and the atomizer 2 are provided with cooperating snap-fit structures.
As shown in fig. 4 and 5, the housing 27 of the atomizer 2 is provided with a buckle 29, the outer wall of the liquid storage component 1 is provided with a clamping groove, the lower end (the end portion close to the sealing component 12) of the liquid storage component 1 is covered on the upper end (the end portion close to the first end 211 of the liquid guiding component 21) of the atomizer 2, the upper end of the atomizer 2 is inserted into the lower end of the liquid storage component 1, the first end 211 of the liquid guiding component 21 penetrates through the sealing component 12 and is inserted into the liquid storage cavity 11, and the smoke liquid in the liquid storage cavity 11 flows into the atomizer 2 through the liquid flow channel of the liquid guiding component 21.
In some embodiments, the nebulizer 2 further comprises a seal 26, and the seal 26 is provided at a location where the nebulizer 2 is coupled to the reservoir 1.
In some embodiments, as shown in fig. 4, the housing 27 of the nebulizer 2 is provided with a groove, and the sealing member 26 is disposed in the groove, wherein the sealing member 26 is used to seal the nebulizer 2 and the liquid storage member 1 after the nebulizer 2 is assembled with the liquid storage member 1, so that the nebulizer 2 and the liquid storage member 1 form a closed system to prevent liquid leakage when combined into the electronic cigarette atomization assembly 10.
Meanwhile, the buckle 29 can stretch out and draw back relative to the shell 27, so that the liquid storage part 1 and the atomizer 2 can be conveniently detached for multiple times, and the empty liquid storage part 1 used up by replacing tobacco liquid is used, so that the atomizer 2 can be used for multiple times.
As shown in fig. 6, some embodiments also provide an electronic cigarette 100 comprising a battery assembly 3, and the above-described electronic aerosolization assembly 10, the electronic aerosolization assembly 10 being detachably connected to the battery assembly 3.
In some embodiments, electronic cigarette atomization component 10 and battery assembly 3 adopt a plug-in connection form, and the end portion of electronic cigarette atomization component 10 provided with atomizer 2 is inserted into housing 31 of battery assembly 3, so as to form an integral electronic cigarette.
In some embodiments, as shown in fig. 7, the battery assembly 3 includes a housing 31, the electronic cigarette atomization assembly 10 is connected to the housing 31 in a plug-in manner, and a mutually-matched snap-fit groove structure or a magnetic force absorption assembly is provided between the housing 31 and the electronic cigarette atomization assembly 10.
In some embodiments, the magnetic force adsorption component comprises magnetic pieces and the like which are adsorbed to each other.
In some embodiments, housing 31 has air inlet 34, and after the end of electronic aerosolization assembly 10 having atomizer 2 is inserted into housing 31 of battery assembly 3, air inlet 34 is in communication with air inlet channel 24 of atomizer 2, and air inlet 34 is adjacent to pneumatic switch 25.
Alternatively, pneumatic switch 25 may be first positioned within housing 31 and then inserted into electronic aerosolization assembly 10.
In some embodiments, the battery assembly 3 includes a housing 31 and a battery 32, the battery 32 is disposed in the housing 31, the battery 32 is electrically connected to the atomizer 2 in the electronic cigarette atomization assembly, and the electronic cigarette achieves a smoking function by actuation of the pneumatic switch 25.
In some embodiments, the atomizer 2 is operatively connected to the battery assembly 3 through conductive contacts 23. In the process of pumping, the pneumatic switch 23 senses the air pressure change between the inside of the shell 31 of the battery assembly 3 and the air inlet channel 24, when the air pressure value reaches the preset pressure value of the pneumatic switch 23, the pneumatic switch 23 is communicated with the power supply of the battery 32, and the electronic cigarette works.
In some embodiments, the battery 32 includes a rechargeable battery, the battery assembly 3 further includes a control board 33, the control board 33 is disposed in the housing 31 and electrically connected to the battery 32, and the control board 33 is further provided with a charging interface 331 for charging the battery 32, which can implement functions including but not limited to supplementing power to the battery 32, voltage stabilization control, short circuit protection, power prompt, and the like.
As shown in fig. 4, 5, in some embodiments, the assembly and use of electronic aerosolization assembly 10 is:
before use, the liquid storage part 1 containing cigarette liquid with favorite taste and the atomizer 2 with proper atomization power are selected, one end of the atomizer 2 with the liquid guiding part 21 is aligned with the bottom of the liquid storage part 1, the liquid storage part is forcibly inserted until the first end 211 of the liquid guiding part 21 punctures the sealing part 12, and a buckle 29 'clicking' sound is sensed to indicate that the liquid storage part 1 and the atomizer 2 are installed in place.
After the assembly is finished, the liquid storage part 1 is arranged on the upper portion, the atomizer 2 is arranged on the lower portion, the standing time is about 10 minutes, the tobacco juice in the liquid storage part 1 flows into the cavity inside the atomizer 2 through the liquid guide part 21, the atomization core 22 is soaked, the electronic cigarette atomization component 10 is inserted into the shell 31 of the battery component 3, and the electronic cigarette atomization component can be sucked for use.
In some embodiments, the bottom closure member 12 of the reservoir 1 is preferably made of an elastic self-closing silicone gasket material.
The replacement process of the liquid storage part 1 comprises the following steps:
when the tobacco juice in the stock solution spare 1 exhausts, perhaps, the tobacco juice in the stock solution spare 1 does not use and finishes, but need to change the stock solution spare 1 that stores the tobacco juice of other tastes, stock solution spare 1 and atomizer 2 are held between the fingers respectively to both hands, pull out to 29 unblocks of buckle 29 hard, stock solution spare 1 and the separation of atomizer 2, sealing member 12 utilizes the flexible elasticity of silica gel to block the puncture hole on sealing member 12 this moment, prevents that surplus tobacco juice is excessive in the stock solution spare 1. Then, the liquid storage member 1, which is new or stores another flavor smoke liquid, is replaced for the atomizer 2, and is installed and used.
In some embodiments, the liquid storage component 1 is a disposable component, and when the liquid in the liquid storage cavity 11 is exhausted, the liquid can not be injected into the liquid storage cavity 11 repeatedly, and the atomizer 2 can be used continuously by replacing a new liquid storage component 1.
In the description of the present invention, it should be understood that the terms "first", "second", "third", etc. are used to define the components, and are used only for the convenience of distinguishing the components, and if not otherwise stated, the terms have no special meaning, and thus, should not be construed as limiting the scope of the present invention.
Furthermore, the technical features of one embodiment may be combined with one or more other embodiments advantageously without explicit negatives.
Finally, it should be noted that the above examples are only used to illustrate the technical solutions of the present invention and not to limit the same; although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art will understand that: modifications to the specific embodiments of the invention or equivalent substitutions for parts of the technical features may be made; without departing from the spirit of the present invention, it is intended to cover all aspects of the invention as defined by the appended claims.
Claims (12)
1. An electronic cigarette atomization assembly, comprising:
the liquid storage piece (1) comprises a liquid storage cavity (11) and a sealing piece (12), the liquid storage cavity (11) is formed inside the liquid storage piece (1) and is configured to contain tobacco juice, the liquid storage cavity (11) is provided with an opening end, and the sealing piece (12) is arranged at the opening end; and
the atomizer (2) is detachably connected with the liquid storage part (1), the atomizer (2) comprises a liquid guide part (21), and a liquid flow channel is formed inside the liquid guide part (21); the first end of the liquid guide piece (21) is configured to penetrate through the sealing piece (12) after the atomizer (2) is connected with the liquid storage piece (1) and is inserted into the liquid storage cavity (11), so that the smoke liquid in the liquid storage cavity (11) flows to the inside of the atomizer (2) through the liquid flow channel.
2. The electronic aerosolization assembly of claim 1, wherein the reservoir (1) further comprises a chimney (13), the chimney (13) being formed inside the reservoir (1), the chimney (13) being independent of the reservoir (11).
3. The electronic aerosolization assembly of claim 2, wherein the reservoir (11) is annular and is disposed about the chimney (13), or wherein the chimney (13) is annular and is disposed about the reservoir (11), or wherein the chimney (13) and the reservoir (11) are disposed side-by-side.
4. The electronic aerosolization assembly of claim 1, wherein the atomizer (2) further comprises an atomizing core (22) and an electrically conductive contact (23), the atomizing core (22) comprising first and second oppositely disposed sides, the first side of the atomizing core (22) being in communication with the liquid flow channel of the liquid guide (21), the second side of the atomizing core (22) being in abutment with the electrically conductive contact (23).
5. An electronic aerosolization assembly according to claim 4, wherein the nebulizer (2) further comprises an air inlet channel (24) and a pneumatic switch (25);
the air inlet channel (24) is communicated with the flue (13), and the air inlet channel (24) is configured to lead the inlet air to the flue (13) through the atomizing core (22);
the pneumatic switch (25) is arranged in the air inlet channel (24) and on a circuit where the conductive contact (23) is located, and the pneumatic switch (25) is configured to be closed when the air inlet pressure of the air inlet channel (24) reaches a preset air pressure value of the pneumatic switch (25) and is switched on the circuit.
6. The electronic aerosolization assembly of claim 1, wherein the first end (211) of the liquid-conducting member (21) is configured as a tip.
7. An electronic aerosolization assembly according to claim 1, wherein the reservoir (1) and the atomizer (2) are provided with cooperating snap-in groove structures.
8. The electronic aerosolization assembly of claim 1, wherein the atomizer (2) further comprises a seal (26), the seal (26) being disposed at a location where the atomizer (2) is coupled to the reservoir (1).
9. An electronic cigarette, characterized in that it comprises a battery assembly (3) and an electronic aerosolization assembly (10) according to any of claims 1-8, the electronic aerosolization assembly (10) being detachably connected to the battery assembly (3).
10. The electronic cigarette according to claim 9, characterized in that the battery assembly (3) comprises a housing (31), the electronic cigarette atomization assembly (10) is connected with the housing (31) in a plugging manner, and a mutually matched snap-fit groove structure or a magnetic force adsorption assembly is arranged between the housing (31) and the electronic cigarette atomization assembly (10).
11. The electronic cigarette of claim 9, characterized in that the battery assembly (3) comprises a housing (31) and a battery (32), the battery (32) being provided within the housing (31), the battery (32) being electrically connected to the atomizer (2) in the electronic cigarette atomization assembly.
12. The electronic cigarette according to claim 11, wherein the battery (32) comprises a rechargeable battery, the battery assembly (3) further comprises a control board (33), the control board (33) is disposed in the housing (31) and electrically connected to the battery (32), and the control board (33) is further provided with a charging interface (331) for charging the battery (32).
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CN111657555A (en) * | 2020-06-02 | 2020-09-15 | 镁乐生物科技(深圳)有限公司 | Atomizer and electronic atomization device |
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CN108783614A (en) * | 2018-09-18 | 2018-11-13 | 福建中烟工业有限责任公司 | Electronic smoke atomizer assemble method and electronic cigarette assemble method |
CN209314962U (en) * | 2018-10-31 | 2019-08-30 | 常州市派腾电子技术服务有限公司 | Liquid storage component, atomizing component, atomizer and electronic cigarette |
CN209314970U (en) * | 2018-11-23 | 2019-08-30 | 常州市派腾电子技术服务有限公司 | Atomizer and electronic cigarette |
Cited By (1)
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CN111657555A (en) * | 2020-06-02 | 2020-09-15 | 镁乐生物科技(深圳)有限公司 | Atomizer and electronic atomization device |
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