CN209825212U - Electronic cigarette and atomization device thereof - Google Patents

Electronic cigarette and atomization device thereof Download PDF

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Publication number
CN209825212U
CN209825212U CN201920082177.9U CN201920082177U CN209825212U CN 209825212 U CN209825212 U CN 209825212U CN 201920082177 U CN201920082177 U CN 201920082177U CN 209825212 U CN209825212 U CN 209825212U
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China
Prior art keywords
atomizing
base
assembly
shell
seat
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CN201920082177.9U
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Chinese (zh)
Inventor
毛爱民
黄惠华
张鹏飞
郭美玲
周波
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Guangdong Jinlaite Intelligent Technology Co ltd
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Ona Automation Technology Shenzhen Co Ltd
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Priority to CN201920082177.9U priority Critical patent/CN209825212U/en
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Abstract

The utility model discloses an electronic cigarette and an atomization device thereof, wherein the atomization device comprises a first shell, an air duct, an atomization component, a heating component, a base and a first electrode component; the first end of the first shell is provided with an air outlet, and the second end of the first shell is open; the atomization assembly is arranged in the second end of the first shell, and the base is arranged on the second end of the first shell and is matched and connected with the atomization assembly; the air guide pipe is arranged in the first shell, and two ends of the air guide pipe are respectively connected to the air outlet and the atomizing assembly; a liquid storage cavity is formed in the space between the first shell and the gas guide tube; the heating component is arranged on the atomizing component, and an atomizing chamber is formed between the heating component and the base; the base is provided with an air inlet, and the air inlet, the atomizing chamber, the air guide pipe and the air outlet are communicated to form an air flow channel; the first electrode assembly is mounted on the base and is in contact electrical connection with the heat generating assembly. The utility model discloses in, simplified atomizing device's component, made its assembly simply do benefit to automated production, reduce cost.

Description

Electronic cigarette and atomization device thereof
Technical Field
The utility model relates to an electron cigarette technical field especially relates to an electron cigarette and atomizing device thereof.
Background
The electronic cigarette is generally formed by assembling an atomizing device and a power supply device. The atomizing device of current electron cigarette includes components such as screw thread, electrode, sealing member, air duct, heating element, liquid storage cotton, fine pipe of glass, plastic pipe, suction nozzle, and the component quantity is many, and the structure is complicated, and difficult assembly and with high costs, wherein heating element mainly connects through the welding mode electricity, phenomena such as rosin joint, contact failure easily appear, lead to heating element can not normally work. The atomizing device that a plurality of component assemblies formed is whole bulky, and occupation space is big in the electron cigarette for the whole volume of electron cigarette is also great, and the user of being inconvenient for carries.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model lies in, a simple structure, with low costs electron cigarette's atomizing device and have this atomizing device's electron cigarette is provided.
The utility model provides a technical scheme that its technical problem adopted is: the atomization device of the electronic cigarette comprises a first shell, an air guide pipe, an atomization assembly, a heating assembly, a base and a first electrode assembly; the first end of the first shell is provided with an air outlet, and the second end of the first shell is open; the atomization assembly is arranged in the second end of the first shell, and the base is arranged on the second end of the first shell and is connected with the atomization assembly in a matching way;
the air guide pipe is arranged in the first shell, and two ends of the air guide pipe are respectively connected to the air outlet and the atomizing assembly; a liquid storage cavity is formed in the space between the first shell and the gas guide tube;
the heating component is arranged on the atomizing component, and an atomizing chamber is formed between the heating component and the base; the base is provided with an air inlet, and the air inlet, the atomizing chamber, the air guide pipe and the air outlet are communicated to form an air flow channel; the atomization assembly is provided with a liquid inlet hole which is communicated with the liquid storage cavity and the heating assembly;
the first electrode assembly is mounted on the base and is in contact electrical connection with the heat generating assembly.
Preferably, the heating assembly comprises a liquid guiding main body, a heating body arranged on the liquid guiding main body, and two conductors respectively arranged at two opposite ends of the heating body;
the first electrode assembly includes a positive electrode and a negative electrode; the two conductors are respectively in contact and electric connection with the positive electrode and the negative electrode.
Preferably, two conductors are respectively provided with a lead; the two leads are respectively connected with the positive electrode and the negative electrode for conduction.
Preferably, the positive electrode and the negative electrode are respectively elastic electrodes which can axially stretch; the positive electrode and the negative electrode are respectively in elastic contact with the two conductors to conduct.
Preferably, the atomizing assembly comprises a first elastic atomizing seat, a second hard atomizing seat and a third elastic atomizing seat;
the first atomizing seat is coated on one end of the second atomizing seat and is tightly matched with the inner wall of the first shell; the third atomizing seat is embedded at the other end of the second atomizing seat, and the heating component is embedded at one side of the third atomizing seat facing the base;
the liquid inlet hole penetrates through the first atomizing base and the third atomizing base.
Preferably, the first atomizing base is provided with a positioning hole, and one end of the air duct is inserted into the positioning hole;
the positioning hole is communicated with the air inlet through a gap between the atomizing assembly and the inner wall of the first shell.
Preferably, the atomizing assembly comprises a first atomizing seat, a second atomizing seat and a third atomizing seat;
the first atomizing seat is tightly matched with the inner wall of the first shell; the second atomizing seat is embedded on the first atomizing seat and faces the base, and the heating component is embedded on one side of the second atomizing seat facing the base; the third atomizing seat is arranged on the base and is connected with the first atomizing seat; the liquid inlet hole penetrates through the first atomizing seat to the second atomizing seat;
the positive electrode and the negative electrode respectively penetrate into the third atomizing seat; and the two conductors are respectively provided with a lead, and the two leads respectively penetrate into the third atomizing base and are bent, extended and attached to the surfaces of the positive electrode and the negative electrode for conduction.
Preferably, the atomizing device further comprises a sealing ring disposed between the base or atomizing assembly and the first housing.
Preferably, the atomization device further comprises a suction nozzle mounted on the first end of the first housing, and a suction nozzle cotton arranged between the suction nozzle and the first end of the first housing.
The utility model also provides an electron cigarette, including power supply unit and above arbitrary any of the connection of cooperateing atomizing device.
Preferably, the power supply device comprises a second shell, a battery cell, a second electrode assembly, a control assembly and a bracket;
the battery cell is arranged in the second shell, and the second electrode assembly is arranged on the battery cell and exposes one end of the second shell; the control assembly is arranged at the other end of the second shell through the bracket; the bracket is provided with a charging port electrically connected with the control assembly;
the second electrode assembly is in contact electrical connection with the first electrode assembly of the atomizing device.
The utility model has the advantages that: the components of the atomization device are simplified, so that the atomization device is simple to assemble, is beneficial to automatic production and reduces the cost. This atomizing device is connected with power supply unit and forms the electron cigarette, and electrode subassembly direct contact electricity on the two is connected, need not set up members such as coupling assembling, reduces the whole volume of electron cigarette, portable more.
Drawings
The invention will be further explained with reference to the drawings and examples, wherein:
fig. 1 is a schematic sectional view of an atomizing device according to a first embodiment of the present invention;
fig. 2 is an exploded schematic view of an atomizing device according to a first embodiment of the present invention;
fig. 3 is a schematic sectional view of an atomizing device according to a second embodiment of the present invention;
fig. 4 is a schematic sectional view of an atomizing device according to a third embodiment of the present invention;
fig. 5 is a schematic sectional view of an atomizing device according to a fourth embodiment of the present invention;
fig. 6 is an exploded schematic view of an atomizing device according to a fourth embodiment of the present invention;
fig. 7 is a schematic cross-sectional view of an electronic cigarette according to an embodiment of the present invention.
Detailed Description
In order to clearly understand the technical features, objects, and effects of the present invention, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1 and 2, the atomization device of the electronic cigarette according to the first embodiment of the present invention may include a first housing 10, an air duct 20, an atomization assembly 30, a heating assembly 40, a base 50, and a first electrode assembly 60.
The first housing 10 is a cylindrical structure including opposite first and second ends. The first end is closed and provided with an air outlet 101, and the second end is open. A liquid storage cavity 102 is formed in the first housing 10 for storing the tobacco liquid.
The air duct 20 is disposed in the first casing 10, and one end of the air duct is connected to the air outlet 101 in an interference manner and the like and is communicated with the air outlet 101. The space between the first housing 10 and the airway tube 20 forms a reservoir 102.
In this embodiment, the air duct 20 is inserted through the middle of the first casing 10, and the liquid storage chamber 102 surrounds the air duct 20. In other embodiments, airway tube 20 may be integrally formed in first housing 10.
The atomizing assembly 30 is mounted within the second end of the first housing 10 such that the second end of the first housing 10 is closed, and thus the reservoir 102 is closed. The other end of the air duct 20 is connected to the atomizing assembly 30 in an interference manner, and the inner channel of the air duct 20 is isolated from the liquid storage cavity 102. The heating component 40 is installed on the atomizing component 30, and the atomizing component 30 is provided with a liquid inlet hole 301 for communicating the liquid storage cavity 102 with the heating component 40.
Specifically, the atomizing assembly 30 may include a first atomizing base 31, a second atomizing base 32, and a third atomizing base 33 that are cooperatively disposed. The first atomizing base 31 is coated on one end of the second atomizing base 32 and is tightly matched with the inner wall of the first shell 10; a close fit between the side surface of the first atomizing base 31 and the inner wall of the first housing 10 can be further achieved by a concave-convex structure. A positioning hole 310 is formed in the first atomizing base 31, and one end of the air duct 20 is inserted into the positioning hole 310; the positioning hole 310 may also penetrate through the second atomizing base 32.
The third atomizing base 33 is embedded in the other end of the second atomizing base 32, and the outer side surface of the second atomizing base 32 can be further provided with a buckle to be fixed with the inner wall of the first housing 10 in a buckling manner.
The second atomizing base 32 is a structural body of the atomizing assembly 20, and is made of a hard material, such as plastic, so as to maintain the structural strength of the atomizing assembly 30. The first atomizing base 31 and the third atomizing base 33 can be made of elastic materials with certain sealing performance, and can effectively prevent the smoke liquid from leaking out of the atomizing device in the processes of transportation, storage and falling.
The heating element 40 is embedded on a side of the third atomizing base 33 facing the base 50. The liquid inlet hole 301 penetrates through the first atomizing base 31 to the third atomizing base 33, so that the smoke liquid can flow along the liquid inlet hole 302 to the heat generating component 40. The heating assembly 40 may include a liquid guiding body, a heating body disposed on the liquid guiding body, and two conductors disposed at opposite ends of the heating body, respectively. The liquid guiding main body is used for adsorbing smoke liquid, and the heating body is preferably arranged on one side of the liquid guiding main body facing the base 50; the conductor is used to electrically connect with the first electrode assembly 60.
The base 50 is installed on the second end of the first housing 10 and is connected with the atomizing assembly 30 in a matching way; the bottom periphery of the base 30 can be snap-fit connected with the port of the second end of the first housing 10 through a step. The heat generating unit 40 faces the base 50 on the atomizing unit 30, and an atomizing chamber 103 is formed between the heat generating unit and the base 50. The base 50 is provided with an air inlet 51, the atomization chamber 103, the air duct 20 and the air outlet 101 are communicated to form an air flow channel, and the air flow flows as the arrow in fig. 1. The smoke liquid in the liquid storage cavity 102 flows to the heating component 40 through the liquid inlet hole 301 for atomization, and the smoke formed by atomization is output along the airflow channel.
The positioning hole 310 is communicated with the air inlet 51 through a gap between the atomization assembly 30 and the inner wall of the first housing 10, so that the air guide tube 20 is communicated with the atomization chamber 103 and the air inlet 51 through the positioning hole 310.
The first electrode assembly 60 is mounted on the base 50 and is electrically contacted to the heat generating assembly 40. The first electrode assembly 60 includes a positive electrode 61 and a negative electrode 62; the positive electrode 61 and the negative electrode 62 are electrically connected in contact with two conductors of the heat generating element 50, respectively.
In this embodiment, the positive electrode 61 and the negative electrode 62 are both cylinders, and are respectively in direct contact with two conductors of the heating element 40, and the elasticity of the third atomizing base 33 is used to make the pressure applied to the conductors by the first electrode assembly 60 be larger, so that the positive electrode 61 and the negative electrode 62 can be in stable contact with the corresponding conductors, and the electrical connection performance is good.
Further, the atomization device of the present embodiment further includes a seal ring 70 disposed between the base 50 and the first housing 10 to seal a gap therebetween.
The atomizer of the present embodiment further comprises a suction nozzle 80 mounted on the first end of the first housing 10, and a suction nozzle cotton 90 disposed between the suction nozzle 80 and the first end of the first housing 10. Specifically, the suction nozzle 80 is disposed on the first end of the first casing 10 in a snap-fit manner, and a nozzle opening thereof is communicated with the air outlet 101 of the first casing 10. The mouthpiece cotton 90 is located between the mouthpiece 80 and the first end of the first housing 10 and is used to absorb the condensed smoke and prevent the smoke from entering the mouth of a person during smoking.
During the atomizer assembly of this embodiment, during air duct 20, atomization component 30, heating element 40 and base 50 etc. assemble first casing 10 in proper order with same direction, easy operation does benefit to automated production.
As shown in fig. 3, the atomization device for an electronic cigarette according to a second embodiment of the present invention may include a first housing 10, an air duct 20, an atomization assembly 30, a heating assembly 40, a base 50, and a first electrode assembly 60.
The arrangement of the first housing 10, the air duct 20, the atomizing assembly 30, the heating assembly 40, the base 50 and the first electrode assembly 60 can be referred to the above description of the first embodiment, and will not be described herein again.
The present embodiment is different from the first embodiment described above in that: the two conductors of the heating element 40 are also provided with leads 41, respectively.
The two lead wires 41 are connected to the positive electrode 61 and the negative electrode 62 of the first electrode assembly 60, respectively, to be conducted. The lead 41 and the positive electrode 61/the negative electrode 62 may be connected by welding, riveting, or the like, so that the contact connection between the heat generating element 40 and the first electrode assembly 60 is more stable.
Further, the atomization device of the present embodiment further includes a seal ring 70 disposed between the base 50 and the first housing 10 to seal a gap therebetween.
The atomizer of the present embodiment further comprises a suction nozzle 80 mounted on the first end of the first housing 10, and a suction nozzle cotton 90 disposed between the suction nozzle 80 and the first end of the first housing 10. Specifically, the suction nozzle 80 is disposed on the first end of the first casing 10 in a snap-fit manner, and a nozzle opening thereof is communicated with the air outlet 101 of the first casing 10. The mouthpiece cotton 90 is located between the mouthpiece 80 and the first end of the first housing 10 and is used to absorb the condensed smoke and prevent the smoke from entering the mouth of a person during smoking.
During the atomizer assembly of this embodiment, during air duct 20, atomization component 30, heating element 40 and base 50 etc. assemble first casing 10 in proper order with same direction, easy operation does benefit to automated production.
As shown in fig. 4, the atomization device for an electronic cigarette according to a third embodiment of the present invention may include a first housing 10, an air duct 20, an atomization assembly 30, a heating assembly 40, a base 50, and a first electrode assembly 60.
The arrangement of the first housing 10, the air duct 20, the atomizing assembly 30, the heating assembly 40, the base 50 and the first electrode assembly 60 can be referred to the above description of the first embodiment, and will not be described herein again.
The present embodiment is different from the first embodiment described above in that: the positive electrode 61 and the negative electrode 62 of the first electrode assembly 60 are respectively elastic electrodes that are axially stretchable; the positive electrode 61 and the negative electrode 62 are respectively in elastic contact with two conductors of the heating element 40 to conduct, so that the contact is stable and the maintenance is convenient.
Further, the atomization device of the present embodiment further includes a seal ring 70 disposed between the base 50 and the first housing 10 to seal a gap therebetween.
The atomizer of the present embodiment further comprises a suction nozzle 80 mounted on the first end of the first housing 10, and a suction nozzle cotton 90 disposed between the suction nozzle 80 and the first end of the first housing 10. Specifically, the suction nozzle 80 is disposed on the first end of the first casing 10 in a snap-fit manner, and a nozzle opening thereof is communicated with the air outlet 101 of the first casing 10. The mouthpiece cotton 90 is located between the mouthpiece 80 and the first end of the first housing 10 and is used to absorb the condensed smoke and prevent the smoke from entering the mouth of a person during smoking.
During the atomizer assembly of this embodiment, during air duct 20, atomization component 30, heating element 40 and base 50 etc. assemble first casing 10 in proper order with same direction, easy operation does benefit to automated production.
As shown in fig. 5 and 6, an atomization device for an electronic cigarette according to a fourth embodiment of the present invention may include a first housing 10, an air duct 20, an atomization assembly 30, a heating assembly 40, a base 50, and a first electrode assembly 60; and may further include a packing 70, a suction nozzle 80, and a nozzle cotton 90.
The arrangement of the first housing 10, the air duct 20, the atomizing assembly 30, the heat generating assembly 40, the base 50, the first electrode assembly 60, the mouthpiece 80 and the mouthpiece cotton 90 can be described with reference to the first embodiment.
The atomizing assembly 30 includes a first atomizing base 31, a second atomizing base 32, and a third atomizing base 33. The present embodiment is different from the first embodiment described above in that: the first atomizing base 31 is tightly fitted with the inner wall of the first housing 10; the second atomizing base 32 is embedded on the first atomizing base 31 and faces the base 50, and the heating component 40 is embedded on one side of the second atomizing base 32 facing the base 50; the third atomizing base 33 is disposed on the base 50 and connected to the first atomizing base 31. The liquid inlet hole 301 penetrates through the first atomizing base 31 to the second atomizing base 32.
The first atomizing base 31 is a structural body of the atomizing assembly 20, and is made of a hard material, such as plastic, so as to maintain the structural strength of the atomizing assembly 30. The second atomizing base 32 and the third atomizing base 33 can be made of elastic materials with certain sealing performance, and can effectively prevent the smoke liquid from leaking out of the atomizing device in the processes of transportation, storage and falling.
The positive electrode 61 and the negative electrode 62 of the first electrode assembly 60 are respectively columnar, are disposed on the base 50, and penetrate into the third atomization seat 33, respectively.
Further, the two conductors of the heating element 40 are respectively provided with a lead 41, and the two leads 41 respectively penetrate into the third atomizing base 33 and are respectively bent and extended to be attached to the surfaces of the positive electrode 61 and the negative electrode 62 for conduction. In this embodiment, the lead 41 penetrates into the third atomizing seat 33 and the bent and extended lead segment can be attached to the axial surface of the positive electrode 61/negative electrode 62, and the lead 41 and the positive electrode 61/negative electrode 62 are positioned by penetrating into the third atomizing seat 33, so that the two can be stably contacted and electrically connected.
The third atomizing base 33 is disposed on the base 50, so that the smoke liquid can be effectively prevented from leaking to the air inlet 51 of the base 50.
Specifically, in the present embodiment, the air inlet 51 is located at the middle position of the base 50; the third atomizing base 33 includes two base bodies 331 disposed at two sides of the air inlet 51 at an interval, and the two base bodies 331 are connected to form the third atomizing base 33 by a connecting rod 332. The connecting rod 332 is an elongated strip relative to the housing 331 and does not interfere with the communication between the air inlet 51 and the air duct 20.
The base 331 has through holes for the positive/negative electrodes 61, 62 and the lead 41 to pass through.
The sealing ring 70 is disposed between the first housing 10 and the atomizing assembly 30 (the first atomizing base 31) to perform a sealing and fastening function.
During the atomizer assembly of this embodiment, during air duct 20, atomization component 30, heating element 40 and base 50 etc. assemble first casing 10 in proper order with same direction, easy operation does benefit to automated production.
As shown in fig. 7, the electronic cigarette according to an embodiment of the present invention includes a power supply device and an atomizing device that are connected in a matching manner. The atomizing device is the atomizing device of any one of the above embodiments.
The power supply device may include a second casing 1, a battery cell 2, a second electrode assembly 3, a control assembly 4, and a bracket 5. The battery cell 2 is mounted in the second casing 1, and the second electrode assembly 3 is disposed on the battery cell 2 and exposes one end of the second casing 1. The control assembly 4 is mounted at the other end of the second housing 1 by a bracket 5. The support 5 is provided with a charging port 7 electrically connected with the control component 4, so that an external power supply can charge the battery cell 2.
Adopt buckle or magnetism to inhale the mode and connect between atomizing device and the power supply unit, compare in threaded connection comparatively convenient and fast.
The power supply device is connected with the atomization device in a matching way by exposing one end of the second electrode assembly 3, wherein the second shell 1 is connected with the first shell 10 of the atomization device, and a gap is reserved between the second shell 1 and the first shell 10 for air to enter the atomization device. The second electrode assembly 3 is electrically connected to the first electrode assembly 60 without a connecting member or the like. The second electrode assembly 3 also includes a positive electrode and a negative electrode electrically connected in contact with the positive electrode 61 and the negative electrode 62 of the first electrode assembly 60, respectively.
The positive electrode and the negative electrode of the second electrode assembly 3 may be elastic electrodes that are axially stretchable and respectively brought into elastic contact with the positive electrode 61 and the negative electrode 62 of the first electrode assembly 60 to conduct, so that the contact is stable.
Further, the utility model discloses an electron cigarette still can include the third casing 6 that corresponds power supply unit and atomizing device setting. The third casing 6 is fitted outside the first casing 10 and the second casing 1, and one end surface of the third casing is connected with the suction nozzle 80 of the atomization device, so that the atomization device and the power supply device are covered by the third casing 6 to form the electronic cigarette with an integrated appearance.
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. An atomization device of an electronic cigarette is characterized by comprising a first shell, an air duct, an atomization assembly, a heating assembly, a base and a first electrode assembly; the first end of the first shell is provided with an air outlet, and the second end of the first shell is open; the atomization assembly is arranged in the second end of the first shell, and the base is arranged on the second end of the first shell and is connected with the atomization assembly in a matching way;
the air guide pipe is arranged in the first shell, and two ends of the air guide pipe are respectively connected to the air outlet and the atomizing assembly; a liquid storage cavity is formed in the space between the first shell and the gas guide tube;
the heating component is arranged on the atomizing component, and an atomizing chamber is formed between the heating component and the base; the base is provided with an air inlet, and the air inlet, the atomizing chamber, the air guide pipe and the air outlet are communicated to form an air flow channel; the atomization assembly is provided with a liquid inlet hole which is communicated with the liquid storage cavity and the heating assembly;
the first electrode assembly is mounted on the base and is in contact electrical connection with the heat generating assembly.
2. The atomizing device according to claim 1, wherein the heating assembly includes a liquid guiding body, a heating body disposed on the liquid guiding body, and two conductors disposed at opposite ends of the heating body, respectively;
the first electrode assembly includes a positive electrode and a negative electrode; the two conductors are respectively in contact and electric connection with the positive electrode and the negative electrode.
3. The atomizing device according to claim 2, wherein a lead wire is further provided on each of the two conductors; the two leads are respectively connected with the positive electrode and the negative electrode for conduction.
4. The atomizing device of claim 2, wherein the positive and negative electrodes are each axially retractable elastic electrodes; the positive electrode and the negative electrode are respectively in elastic contact with the two conductors to conduct.
5. The atomizing device of claim 2, wherein the atomizing assembly includes a first resilient atomizing base, a second rigid atomizing base, and a third resilient atomizing base;
the first atomizing seat is coated on one end of the second atomizing seat and is tightly matched with the inner wall of the first shell; the third atomizing seat is embedded at the other end of the second atomizing seat, and the heating component is embedded at one side of the third atomizing seat facing the base;
the liquid inlet hole penetrates through the first atomizing base and the third atomizing base.
6. The atomizing device according to claim 5, wherein a positioning hole is formed in the first atomizing base, and one end of the air duct is inserted into the positioning hole;
the positioning hole is communicated with the air inlet through a gap between the atomizing assembly and the inner wall of the first shell.
7. The atomizing device of claim 2, wherein the atomizing assembly includes a first atomizing seat, a second atomizing seat, and a third atomizing seat;
the first atomizing seat is tightly matched with the inner wall of the first shell; the second atomizing seat is embedded on the first atomizing seat and faces the base, and the heating component is embedded on one side of the second atomizing seat facing the base; the third atomizing seat is arranged on the base and is connected with the first atomizing seat; the liquid inlet hole penetrates through the first atomizing seat to the second atomizing seat;
the positive electrode and the negative electrode respectively penetrate into the third atomizing seat; and the two conductors are respectively provided with a lead, and the two leads respectively penetrate into the third atomizing base and are bent, extended and attached to the surfaces of the positive electrode and the negative electrode for conduction.
8. The atomizing device of any one of claims 1-7, further comprising a seal disposed between the base or atomizing assembly and the first housing.
9. The atomizing device of any one of claims 1-7, further comprising a suction nozzle mounted on the first end of the first housing, a suction nozzle cotton disposed between the suction nozzle and the first end of the first housing.
10. An electronic cigarette, comprising a power supply device and the atomizing device of any one of claims 1 to 9 which are cooperatively connected;
the power supply device comprises a second shell, a battery cell, a second electrode assembly, a control assembly and a bracket;
the battery cell is arranged in the second shell, and the second electrode assembly is arranged on the battery cell and exposes one end of the second shell; the control assembly is arranged at the other end of the second shell through the bracket; the bracket is provided with a charging port electrically connected with the control assembly;
the second electrode assembly is in contact electrical connection with the first electrode assembly of the atomizing device.
CN201920082177.9U 2019-01-17 2019-01-17 Electronic cigarette and atomization device thereof Active CN209825212U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920082177.9U CN209825212U (en) 2019-01-17 2019-01-17 Electronic cigarette and atomization device thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920082177.9U CN209825212U (en) 2019-01-17 2019-01-17 Electronic cigarette and atomization device thereof

Publications (1)

Publication Number Publication Date
CN209825212U true CN209825212U (en) 2019-12-24

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Application Number Title Priority Date Filing Date
CN201920082177.9U Active CN209825212U (en) 2019-01-17 2019-01-17 Electronic cigarette and atomization device thereof

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109619689A (en) * 2019-01-17 2019-04-16 昂纳自动化技术(深圳)有限公司 Electronic cigarette and its atomising device
CN110959914A (en) * 2019-12-27 2020-04-07 昂纳自动化技术(深圳)有限公司 Conjoined cigarette
CN111567872A (en) * 2020-04-02 2020-08-25 昂纳自动化技术(深圳)有限公司 Conjoined cigarette
WO2021128247A1 (en) * 2019-12-27 2021-07-01 昂纳自动化技术(深圳)有限公司 Conjoined cigarette

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109619689A (en) * 2019-01-17 2019-04-16 昂纳自动化技术(深圳)有限公司 Electronic cigarette and its atomising device
CN110959914A (en) * 2019-12-27 2020-04-07 昂纳自动化技术(深圳)有限公司 Conjoined cigarette
WO2021128247A1 (en) * 2019-12-27 2021-07-01 昂纳自动化技术(深圳)有限公司 Conjoined cigarette
CN111567872A (en) * 2020-04-02 2020-08-25 昂纳自动化技术(深圳)有限公司 Conjoined cigarette

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