CN211960897U - Atomizing device and electronic cigarette with same - Google Patents

Atomizing device and electronic cigarette with same Download PDF

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Publication number
CN211960897U
CN211960897U CN202020124821.7U CN202020124821U CN211960897U CN 211960897 U CN211960897 U CN 211960897U CN 202020124821 U CN202020124821 U CN 202020124821U CN 211960897 U CN211960897 U CN 211960897U
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oil cup
air inlet
oil
hole
main body
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CN202020124821.7U
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Chinese (zh)
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陈才德
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Shenzhen Abufan Technology Co ltd
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Shenzhen Abufan Technology Co ltd
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Abstract

The utility model discloses an atomization device, which comprises a suction nozzle cover and an oil cup assembly, wherein the suction nozzle cover is provided with a suction nozzle opening; the oil cup assembly comprises an oil cup main body and a base, a liquid storage bin of a ceramic vent pipeline with a ceramic heating element arranged therein is formed in the oil cup main body, and a through hole connected with the ceramic vent pipeline and communicated with the suction nozzle opening and an oil filling hole communicated with the liquid storage bin are formed at the front end of the oil cup main body; an air inlet is formed in one side, close to the oil filling hole, of the oil cup main body, a first air inlet channel communicated with the air inlet is formed in one side, close to the air inlet, of the inner wall of the oil cup main body and the outer wall of the liquid storage bin, and the first air inlet channel is communicated with the ceramic ventilation pipeline through the base; the oil cup main part is equipped with the venthole, and one side that the oil cup main part is close to the venthole is formed with the air inlet that has the air guide groove, and one side that the oil cup main part inner wall is close to the air inlet is formed with the fourth air guide passageway with the stock solution storehouse inner wall respectively with air inlet and venthole intercommunication, fourth air guide passageway and suction nozzle mouth intercommunication. The utility model discloses still disclose an electron cigarette.

Description

Atomizing device and electronic cigarette with same
Technical Field
The utility model relates to an electron cigarette technical field especially relates to an atomizing device and have this atomizing device's electron cigarette.
Background
In recent years, with the development of science and technology and society, people are gradually aware of the harm of smoking tobacco to human bodies, and the smoking of tobacco is gradually limited or even prohibited in some occasions so as not to bring influence on the health of people and the surrounding environment. However, most smokers are not easy to quit the habit of smoking tobacco completely, so the electronic cigarette appears. The electronic cigarette is an electronic product simulating a cigarette, and has the same appearance, smoke, taste and sensation as the cigarette; it is a product which is changed into steam by means of atomization and the like and then is sucked by a user, and has a tendency of replacing tobacco to a certain extent. The electron cigarette product on the existing market generally adopts single air pipe and fibre heat-generating body, leads to some high viscosity liquid atomizing cooling back to block up the air flue easily, causes and can not ventilate for the switch can't start, can not satisfy user's demand, and user experience is poor.
In view of this, it is necessary to provide an atomization device and an electronic cigarette having the same, which can solve the above-mentioned defects, so as to prevent the switch from being disabled due to the blockage of the air passage after the tobacco tar is atomized and cooled, thereby improving the user experience.
Disclosure of Invention
The utility model aims to solve the technical problem that an atomizing device and have this atomizing device's electron cigarette stops up the air flue and the unable start-up of switch that leads to in order to avoid behind the tobacco tar atomizing cooling, improves user experience.
In order to solve the technical problem, the utility model discloses a as follows technical scheme: an atomizing device comprises a nozzle cover and an oil cup assembly, wherein a nozzle opening is formed in the end face of one end of the nozzle cover, and an accommodating space is formed in the other end of the nozzle cover in an inwards concave mode; the front end of the oil cup assembly is placed in the containing space, the oil cup assembly comprises an oil cup main body and a base embedded at the tail end of the oil cup main body, a conductive mechanism is arranged on the base, a liquid storage bin is formed in the middle of the oil cup main body, a ceramic vent pipeline penetrating through the liquid storage bin along the axis direction of the ceramic vent pipeline is formed in the middle of the liquid storage bin, a through hole is formed in the middle of the front end of the oil cup main body, one end of the ceramic vent pipeline is placed in the through hole, and the through hole is communicated with a suction nozzle opening; the other end of the ceramic vent pipe is arranged on the base through a sealing piece, and a ceramic heating body is arranged in the pipe wall of the ceramic vent pipe; an oil filling hole is formed in one side of the through hole in the front end of the oil cup main body and communicated with the liquid storage bin, and an oil blocking plug is inserted into the oil filling hole; an air inlet hole is formed in one side, close to the oil filling hole, of the oil cup main body, a first air inlet channel communicated with the air inlet hole is formed between one side, close to the air inlet hole, of the inner wall of the oil cup main body and the outer wall of the liquid storage bin, and the first air inlet channel is communicated with the ceramic vent pipeline through a base; the oil cup comprises an oil cup body and is characterized in that an air outlet hole communicated with a suction nozzle opening is formed in the other side of the through hole of the oil cup body, an air inlet is formed in one side, close to the air outlet hole, of the oil cup body, an air guide groove communicated with the air inlet is formed in the outer wall of the oil cup body, a fourth air guide channel communicated with the air inlet and the air outlet hole is formed between one side, close to the air inlet, of the inner wall of the oil cup body and the outer wall of the liquid storage bin, and the fourth air guide channel is communicated with the suction nozzle opening through the air outlet hole.
The further technical scheme is as follows: the suction nozzle opening is arranged corresponding to the air outlet hole.
The further technical scheme is as follows: the front end of the oil cup main body is provided with a clamping groove, and a clamping point matched and clamped with the clamping groove is formed on the inner wall of the suction nozzle cover corresponding to the clamping groove.
The further technical scheme is as follows: one end of the ceramic vent pipe is sleeved with a sealing sleeve, one end of the sealing sleeve extends outwards to form a flange, the other end of the sealing sleeve is placed in the through hole, and the flange is abutted to the bottom edge of the through hole.
The further technical scheme is as follows: one end of the oil blocking plug is arranged in the oil filling hole, the other end of the oil blocking plug extends out of the oil filling hole and outwards extends to form a blocking piece, and the blocking piece is abutted to the end face of the oil cup main body.
The further technical scheme is as follows: the other end of the oil blocking plug is inwards recessed to form an accommodating groove, and an embedding piece is formed on the inner wall of the suction nozzle cover corresponding to the accommodating groove.
The further technical scheme is as follows: the air inlet is positioned at the middle end of the oil cup main body.
In order to solve the technical problem, the utility model also provides an electronic cigarette with the atomization device, which comprises a shell, a battery pack and the atomization device with the structure, wherein the front end of the shell is sleeved at the tail end of the atomization device, and the air inlet is exposed out of the shell; the battery component is arranged in the shell and positioned at the tail end of the oil cup component to be connected with the oil cup component, the battery component comprises a control panel fixing seat, a battery, an airflow inductive switch and an electrode column, the control panel fixing seat is sleeved at the tail end of the shell, a chip control board is fixed on the shell and is positioned in the shell, the battery, the airflow inductive switch and the electrode column are sequentially arranged in the middle of the shell along the direction far away from the chip control board, the battery is respectively electrically connected with the chip control board and the airflow inductive switch, the airflow inductive switch and the electrode pole are arranged in the shell through a connecting seat, and the electrode column is electrically connected with the battery through the airflow inductive switch, and the electrode column is inserted into the conductive mechanism so as to fixedly connect the battery component to the tail end of the oil cup component.
The further technical scheme is as follows: the electrode column is placed in the placing part of the conductive mechanism, and an elastic groove is formed in the vertical direction of the placing part, so that the electrode column is in close contact with the conductive mechanism.
The further technical scheme is as follows: the electrode column comprises a positive electrode and a negative electrode, the conductive mechanism is a conductive cylinder and comprises a positive conductive cylinder and a negative conductive cylinder, and the positive electrode and the negative electrode are respectively inserted with the corresponding positive conductive cylinder and the corresponding negative conductive cylinder so as to fixedly connect the battery component to the tail end of the oil cup component.
The utility model has the advantages of: the atomizing device is characterized in that a liquid storage bin is arranged in the oil cup main body, a ceramic air duct is arranged in the liquid storage bin, the ceramic air duct is communicated with a suction nozzle opening of the suction nozzle cover through a through hole, an air inlet hole is formed in one side, close to the oil injection hole, of the oil cup main body, a first air inlet channel communicated with the air inlet hole is formed between one side, close to the air inlet hole, of the inner wall of the oil cup main body and the outer wall of the liquid storage bin, and the first air inlet channel is communicated with the ceramic air duct through a base; meanwhile, the oil cup main body is also provided with an air outlet hole communicated with the suction nozzle port, an air inlet is formed at one side close to the air outlet hole, an air guide groove communicated with the air inlet is formed on the outer wall of the oil cup main body, a fourth air guide channel respectively communicated with the air inlet and the air outlet hole is formed between one side of the inner wall of the oil cup main body close to the air inlet and the outer wall of the liquid storage bin, and the fourth air guide channel is communicated with the suction nozzle port through the air outlet hole; constitute the smog air flue by inlet port, first inlet channel, base, ceramic air duct and through-hole, constitute the air current inductive switch intake duct by air guide groove, air inlet, fourth air guide channel and venthole so that the smog air flue in the oil cup subassembly is independent separately completely with the air current inductive switch intake duct, effectively solves the jam problem that traditional smog air flue and air current inductive switch intake duct after the communion leads to because high viscosity liquid atomizing cooling condensation, avoids the problem that the air current inductive switch that the communion air flue does not ventilate and lead to can not start, prevents simultaneously that the condensate from leading to the fact along the inside damage of air current inductive switch intake duct flow direction battery, and the practicality is strong, and user experience is high. And simultaneously, the utility model provides an electron cigarette has above-mentioned function, and the practicality is strong, can satisfy user's demand well, and user experience is high.
Drawings
Fig. 1 is a schematic structural diagram of an atomizing device of the present invention;
FIG. 2 is a schematic view of the atomization device of FIG. 1 in an exploded configuration;
FIG. 3 is a cross-sectional view of the atomizing device shown in FIG. 1;
FIG. 4 is a schematic view of the atomizer shown in FIG. 1 with the housing omitted;
fig. 5 is a schematic structural diagram of the electronic cigarette of the present invention;
figure 6 is a cross-sectional view of the electronic cigarette of the present invention;
figure 7 is a cross-sectional view of the e-cigarette of figure 5 at another angle;
fig. 8 is an exploded view of the electronic cigarette shown in fig. 5 without the atomizing device.
Detailed Description
To make the objects, technical solutions and advantages of the present invention more clearly understood by those skilled in the art, the present invention will be further described with reference to the accompanying drawings and examples.
Referring to fig. 1 to 4, in the present embodiment, the atomizing device 10 includes a nozzle cover 110 and an oil cup assembly 120. A nozzle opening 111 is formed in an end surface of one end of the nozzle cover 110, and an accommodating space 112 is formed in the other end of the nozzle cover 110 by being recessed inward. The front end of the oil cup assembly 120 is placed in the accommodating space 112, the oil cup assembly 120 includes an oil cup main body 121 and a base 122 embedded in the end of the oil cup main body 121, and the base 122 is provided with a conductive mechanism 123. A liquid storage tank 1211 is formed in the middle of the oil cup body 121, a ceramic vent pipe 124 penetrating through the liquid storage tank 1211 along the axial direction is formed in the middle of the liquid storage tank 1211, a through hole 125 is formed in the middle of the front end of the oil cup body 121, one end of the ceramic vent pipe 124 is placed in the through hole 125, and the through hole 125 is communicated with the suction nozzle opening 111, so that the ceramic vent pipe 124 is communicated with the suction nozzle opening 111. The other end of the ceramic vent pipe 124 is mounted on the base 122 through a sealing member 126, and a ceramic heating element 1242 is disposed in a pipe wall thereof. The front end of the oil cup main body 121 in one side of the through hole 125 is provided with an oil filler 1212 for a user to inject the tobacco tar into the liquid storage 1211, the oil filler 1212 is communicated with the liquid storage 1211, and an oil blocking plug 1213 is inserted into the oil filler 1212 to seal the oil filler 1212, so that the tobacco tar is prevented from flowing out of the oil filler 1212 during use.
An air inlet hole 127 is formed on one side of the oil cup main body 121 close to the oil filling hole 1212, a first air inlet channel 1214 communicated with the air inlet hole 127 is formed between one side of the inner wall of the oil cup main body 121 close to the air inlet hole 127 and the outer wall of the liquid storage tank 1211, and the first air inlet channel 1214 is communicated with the ceramic vent pipe 124 through the base 122. An air outlet 128 communicated with the suction nozzle port 111 is formed in the other side of the through hole 125 of the oil cup main body 121, an air inlet 129 is formed in one side of the oil cup main body 121 close to the air outlet 128, an air guide groove 1291 communicated with the air inlet is formed in one side of the air inlet 129 on the outer wall of the oil cup main body 121, a fourth air guide channel 1218 communicated with the air inlet 129 and the air outlet 128 is formed between one side of the inner wall of the oil cup main body 121 close to the air inlet 129 and the outer wall of the liquid storage tank 1211, and the fourth air guide channel 1218 is communicated with the suction nozzle port 111 through the air outlet 128.
The air inlet hole 127 is communicated with the ceramic ventilating pipe 124 through the first air inlet channel 1214 and the base 122, so that atomized smoke can conveniently flow, the air inlet hole 127, the first air inlet channel 1214, the base 122, the ceramic ventilating pipe 124, the through hole 125 and the mouthpiece opening 111 form a smoke passage for the atomized smoke to flow, condensation liquid caused by incomplete smoke taking can be prevented from being gathered in the ceramic heating element 1242 and sucked by a user, and the smoke passage is of a U-shaped structure, so that the bottom oil leakage phenomenon can be effectively prevented. The air guide groove 1291, the air inlet 129, the fourth air guide channel 1218, the air outlet 128 and the suction nozzle 111 form an air inlet channel of the airflow inductive switch, so that air flows to trigger the airflow inductive switch to work, the ceramic heating element 1242 works to heat the tobacco tar to generate smoke, and the atomization device 10 works normally. Smog air flue and air current inductive switch intake duct are independent separately completely, effectively solve traditional smog air flue and air current inductive switch intake duct after the common connection because the jam problem that high viscosity liquid atomizing cooling condensation leads to, avoid the common air flue not ventilate and the problem that air current inductive switch that leads to can not start, prevent simultaneously that the condensate from leading to the fact the damage along air current inductive switch intake duct flow direction battery inside, and the practicality is strong, and user experience is high. The conducting mechanism 123 is used for transmitting current to the ceramic heating element 1242 to control the operation thereof to generate heat.
Specifically, in the present embodiment, the nozzle opening 111 is disposed corresponding to the air outlet 128 to increase the distance that the smoke flows to the nozzle opening 111, so as to effectively prevent the smoke from being directly sucked out of the nozzle opening 111 along with the smoke. The air inlet hole 127 is disposed at the middle end of the oil cup main body 121 and is located at one side close to the oil filling hole 1212, and preferably, the air inlet 129 is disposed at the middle end of the oil cup main body 121 and is located at one side close to the air outlet 128.
Specifically, in the present embodiment, the oil cup assembly 120 further includes a housing 1201, a front end of the oil cup main body 121 is disposed in the accommodating space 112 of the nozzle cover 110, a rear end of the oil cup main body extends out of the nozzle cover 110, and the housing 1201 is sleeved on a terminal of the oil cup assembly 120 and is located below the nozzle cover 110 to protect the oil cup main body 121 and make the atomizing device 10 have an attractive appearance. Preferably, the end of the oil cup body 121 is formed with a liquid inlet hole 1215 corresponding to the liquid storage 1211. A sealing ring 1202 is sleeved on the outer side of the upper end of the oil cup body 121.
Specifically, in this embodiment, a clamping groove 1216 is disposed at the front end of the oil cup main body 121, a clamping point 1111, which is engaged with the clamping groove 1216, is formed on the inner wall of the nozzle cover 110 corresponding to the clamping groove 1216, and the clamping point 1111 is clamped in the clamping groove 1216, so that the nozzle cover 110 is fixed at the front end of the oil cup main body 121, and thus the detachable connection is realized. Preferably, the number of the locking grooves 1216 and the locking points 1111 is two, two locking grooves 1216 are respectively disposed at two sides of the front end of the oil cup body 121, and two locking points 1111 are respectively disposed at the inner wall of the nozzle cover 110 corresponding to the locking grooves 1216.
Specifically, in this embodiment, a sealing sleeve 1241 is sleeved on one end of the ceramic vent 124, one end of the sealing sleeve 1241 extends outward to form a rib, the other end of the sealing sleeve 1241 is placed in the through hole 125, and the rib abuts against the bottom edge of the through hole 125.
Specifically, one end of the oil blocking plug 1213 is placed in the oil filling hole 1212, and the other end of the oil blocking plug 1217 extends out of the oil filling hole 1212 and is formed with a stopper 1217, and the stopper 1217 abuts against an end surface of the oil cup main body 121. Preferably, the other end of the oil blocking plug 1213 is recessed inward to form a receiving groove, and an insert 113 is formed on the inner wall of the nozzle cover 110 corresponding to the receiving groove. The oil blocking plug 1213 is mounted on the insertion member 113 through a receiving groove so that the oil blocking plug 1213 is fixed to the nozzle cover 110. Through setting up oil cup subassembly 120 and suction nozzle cover 110 separately to in being fixed in suction nozzle cover 110 with hindering oily stopper 1213, after the stock solution 1211 of oil cup main part 121 was annotated with the tobacco tar, the front end of oil cup subassembly 120 is located to suction nozzle cover 110 cover, hinder oily stopper 1213 through suction nozzle cover 110 put into in oil filler point 1212, and locate in draw-in groove 1216 through the stuck 1111 card so that suction nozzle cover 110 is fixed in on oil cup subassembly 120, realize the sealed of oil filler point 1212 simultaneously, effectively prevent secondary oiling, and can avoid the tobacco tar to spill, and installation convenient operation.
Preferably, the ceramic ventilation pipe 124, the ceramic heating element 1242, the sealing sleeve 1241 and the oil blocking plug 1213 are all made of non-metal materials, so that the problem of metal oxidation is avoided, the tobacco tar is prevented from deteriorating, and the atomization effect of the atomization device 10 is improved.
Referring to fig. 5 to 8, in the present embodiment, the electronic cigarette 20 includes a housing 210, a battery assembly 220 and the atomization device 10, the front end of the housing 210 is sleeved on the end of the atomization device 10, and the air inlet 127 is exposed out of the housing 210. The battery assembly 220 is disposed in the casing 210 and located at the end of the oil cup assembly 120 to be connected to the oil cup assembly 120, the battery assembly 220 includes a control board fixing seat 221, a battery 222, an airflow inductive switch 223 and an electrode column 224, the control board fixing seat 221 is sleeved at the end of the casing 210, a chip control board 225 is fixed on the control board fixing seat 221, and the chip control board 225 is located in the casing 210 to avoid external damage. The battery 222, the airflow inductive switch 223 and the electrode column 224 are sequentially disposed in the middle of the housing 210 along a direction away from the chip control board 225, and the battery 222 is electrically connected to the chip control board 225 and the airflow inductive switch 223, respectively, to provide a working power supply for the same. The airflow inductive switch 223 and the electrode post 224 are disposed in the housing 210 through a connecting seat 226, the electrode post 224 is electrically connected to the battery 222 through the airflow inductive switch 223, and the electrode post 224 is inserted into the conductive mechanism 123 to fixedly connect the battery assembly 220 to the end of the oil cup assembly 120 and transmit the current to the atomizer 10. One side of the control board fixing seat 221 is provided with a light guide 201 exposed out of the housing 210, and the light guide 201 is electrically connected with the chip control board 225 to prompt the working state of the electronic cigarette 20 according to the working state of the battery 222.
The control panel fixing seat 221 is provided with a vent hole, the vent hole is communicated with the casing 210, the inside of the casing 210 is communicated with the air guide groove 1291 and the air inlet 129 of the atomization device 10, the vent hole of the control panel fixing seat 221 is communicated with the inside of the casing 210, the air guide groove 1291, the air inlet 129, the fourth air guide channel 1218, the air outlet 128 and the suction nozzle 111 to form an air flow induction switch air inlet channel, air is circulated to trigger the air flow induction switch 223 to work, current is conducted, and the air flow induction switch air inlet channel is transmitted to the conductive mechanism 123 from the electrode column 224, so that the ceramic heating body 1242 works to heat smoke oil and generate smoke, and the atomization device 10 works normally. The air inlet hole 127 is communicated with the ceramic ventilation pipeline 124, so that atomized smoke can conveniently flow, the air inlet hole 127, the first air inlet channel 1214, the base 122, the ceramic ventilation pipeline 124, the through hole 125 and the suction nozzle 111 form a smoke air passage for the atomized smoke to flow, condensate liquid caused by incomplete taking of the smoke is prevented from gathering in the ceramic heating element 1242 and being sucked by a user, and the smoke air passage is of a U-shaped structure, so that the phenomenon of oil leakage at the bottom can be effectively prevented. Smog air flue and air current inductive switch intake duct are independent separately completely, effectively solve traditional smog air flue and air current inductive switch intake duct after the common connection because the jam problem that high viscosity liquid atomizing cooling condensation leads to, avoid the common air flue not ventilate and the problem that air current inductive switch 223 that leads to can not start, prevent simultaneously that the condensate from leading to the fact the damage along air current inductive switch intake duct flow direction battery inside, and the practicality is strong, and user experience is high. The chip control board 225 is electrically connected with the battery 222, the electrode column 224 is electrically connected with the battery 222 through the airflow inductive switch 223, and the electrode column 224 is inserted into the conductive mechanism 123 to provide a working power supply for the operation of the ceramic heating element 1242.
Specifically, the electrode post 224 is inserted into the insertion portion 2241 of the conductive mechanism 123, and an elastic groove 2242 is formed along the vertical direction, so that the electrode post 224 is tightly inserted into the conductive mechanism 123. Through put into portion 2241 and set up the elastic trough 2242 and make when putting into portion 2241 and get into electrically conductive mechanism 123 earlier by the extrusion reset in order to be full of electrically conductive mechanism 123 in, so that the portion 2241 of putting into of electrode post 224 and electrically conductive mechanism 123's in close contact with, electric conductive property is stable, is difficult to drop. The electrode column 224 includes a positive electrode and a negative electrode, the conductive mechanism 123 is a conductive cylinder, and includes a positive conductive cylinder and a negative conductive cylinder, the positive electrode and the negative electrode are inserted into the corresponding positive conductive cylinder and the negative conductive cylinder, the conductive mechanism 123 is fixed on the base 122, so that the battery assembly 220 is fixedly connected to the end of the oil cup assembly 120, the atomization device 10 is inserted into the battery assembly 220 in a tight fit manner, the conductive performance is stable, and the resistance value is low.
Specifically, the airflow inductive switch 223 is disposed in the middle of the connection seat 226, the positive electrode and the negative electrode are disposed on two sides of the airflow inductive switch 223, and one end of the positive electrode and one end of the negative electrode are fixed in the connection seat 226 to be electrically connected to the airflow inductive switch 223, the placing part 2242 extends out of the connection seat 226 to be inserted into the corresponding positive conductive cylinder and the corresponding negative conductive cylinder, so as to transmit the electrical signal of the battery 222 to the conductive mechanism 123, thereby providing a working power supply for the operation of the atomization device 10.
Preferably, the two opposite sides of the inner wall of the housing 210 are formed with a boss 211 for the connection seat 226 to be engaged with, corresponding to the front side of the battery 222, a protruding point 2262 is formed at the bottom end of the connection seat 226 corresponding to the boss 211, a groove 2261 engaged with the boss 211 is formed between the protruding point 2262 and the top end of the connection seat 226, the protruding point 2262 of the connection seat 226 is inclined outward toward the top end to form a guiding direction, so that the connection seat 226 is placed in the housing 210, and the boss 211 of the housing 210 is engaged with the groove 2261, so that the connection seat 226 is fixed in the housing 210.
Based on the design, when the ceramic heating device works, a user inhales air, the air flows from the control board fixing seat at the tail end of the shell to the air guide groove through the shell, is sucked out from the suction nozzle port through the air inlet and through the fourth air guide channel and the air outlet hole, the air flow induction switch senses the air flow and works, the electrode column conducts electricity to the electric conduction mechanism, the ceramic heating body works, and the tobacco tar in the liquid storage bin is atomized; the air enters from the air inlet hole and passes through the first air inlet channel, the base and the ceramic vent pipeline, and the smoke is taken out and circulated to the through hole, so that the smoke is sucked out from the suction nozzle cover.
To sum up, the atomization device of the utility model is characterized in that a liquid storage bin is arranged in the oil cup main body, a ceramic vent pipe is arranged in the liquid storage bin, the ceramic vent pipe is communicated with a suction nozzle opening of the suction nozzle cover through a through hole, an air inlet hole is arranged on one side of the oil cup main body close to the oil injection hole, a first air inlet channel communicated with the air inlet hole is formed between one side of the inner wall of the oil cup main body close to the air inlet hole and the outer wall of the liquid storage bin, and the first air inlet channel is communicated with the ceramic vent pipe through a base; meanwhile, the oil cup main body is also provided with an air outlet hole communicated with the suction nozzle port, an air inlet is formed at one side close to the air outlet hole, an air guide groove communicated with the air inlet is formed on the outer wall of the oil cup main body, a fourth air guide channel respectively communicated with the air inlet and the air outlet hole is formed between one side of the inner wall of the oil cup main body close to the air inlet and the outer wall of the liquid storage bin, and the fourth air guide channel is communicated with the suction nozzle port through the air outlet hole; constitute the smog air flue by inlet port, first inlet channel, base, ceramic air duct and through-hole, constitute the air current inductive switch intake duct by air guide groove, air inlet, fourth air guide channel and venthole so that the smog air flue in the oil cup subassembly is independent separately completely with the air current inductive switch intake duct, effectively solves the jam problem that traditional smog air flue and air current inductive switch intake duct after the communion leads to because high viscosity liquid atomizing cooling condensation, avoids the problem that the air current inductive switch that the communion air flue does not ventilate and lead to can not start, prevents simultaneously that the condensate from leading to the fact along the inside damage of air current inductive switch intake duct flow direction battery, and the practicality is strong, and user experience is high. And simultaneously, the utility model provides an electron cigarette has above-mentioned function, and the practicality is strong, can satisfy user's demand well, and user experience is high.
The foregoing is considered as illustrative of the preferred embodiments of the invention and is not intended to limit the invention in any way. Various equivalent changes and modifications can be made on the basis of the above embodiments by those skilled in the art, and all equivalent changes and modifications within the scope of the claims should fall within the protection scope of the present invention.

Claims (10)

1. An atomizing device, comprising:
the end surface of one end of the suction nozzle cover is provided with a suction nozzle opening, and the other end of the suction nozzle cover is inwards recessed to form an accommodating space;
the front end of the oil cup component is placed in the containing space, the oil cup component comprises an oil cup main body and a base embedded at the tail end of the oil cup main body, a conductive mechanism is arranged on the base, a liquid storage bin is formed in the middle of the oil cup main body, a ceramic vent pipeline penetrating through the liquid storage bin along the axis direction of the ceramic vent pipeline is formed in the middle of the liquid storage bin, a through hole is formed in the middle of the front end of the oil cup main body, one end of the ceramic vent pipeline is placed in the through hole, and the through hole is communicated with a suction nozzle opening; the other end of the ceramic vent pipe is arranged on the base through a sealing piece, and a ceramic heating body is arranged in the pipe wall of the ceramic vent pipe; an oil filling hole is formed in one side of the through hole in the front end of the oil cup main body and communicated with the liquid storage bin, and an oil blocking plug is inserted into the oil filling hole; an air inlet hole is formed in one side, close to the oil filling hole, of the oil cup main body, a first air inlet channel communicated with the air inlet hole is formed between one side, close to the air inlet hole, of the inner wall of the oil cup main body and the outer wall of the liquid storage bin, and the first air inlet channel is communicated with the ceramic vent pipeline through a base; the oil cup comprises an oil cup body and is characterized in that an air outlet hole communicated with a suction nozzle opening is formed in the other side of the through hole of the oil cup body, an air inlet is formed in one side, close to the air outlet hole, of the oil cup body, an air guide groove communicated with the air inlet is formed in the outer wall of the oil cup body, a fourth air guide channel communicated with the air inlet and the air outlet hole is formed between one side, close to the air inlet, of the inner wall of the oil cup body and the outer wall of the liquid storage bin, and the fourth air guide channel is communicated with the suction nozzle opening through the air outlet hole.
2. The atomizing device of claim 1, wherein the nozzle orifice is disposed in correspondence with the air outlet hole.
3. The atomizing device according to claim 1, wherein a clamping groove is formed at the front end of the oil cup main body, and a clamping point which is matched and clamped with the clamping groove is formed on the inner wall of the nozzle cover corresponding to the clamping groove.
4. The atomization device of claim 1, wherein a sealing sleeve is sleeved on one end of the ceramic vent pipe, a flange is formed by extending one end of the sealing sleeve outwards, the other end of the sealing sleeve is placed in the through hole, and the flange abuts against the bottom edge of the through hole.
5. The atomizing device according to claim 1, wherein one end of the oil blocking plug is inserted into the oil filling hole, and the other end of the oil blocking plug extends out of the oil filling hole and is formed with a blocking piece in an outward extending manner, and the blocking piece abuts against an end face of the oil cup body.
6. The atomizing device according to claim 5, wherein the other end of the oil blocking plug is recessed inward to form a receiving groove, and an insertion piece is formed on the inner wall of the nozzle cover corresponding to the receiving groove.
7. The atomizing device of claim 1, wherein the air inlet is located at a middle end of the oil cup body.
8. An electronic cigarette, comprising a housing, a battery pack and the atomizing device of any one of claims 1 to 7, wherein the front end of the housing is sleeved at the tail end of the atomizing device and the air inlet is exposed out of the housing; the battery component is arranged in the shell and positioned at the tail end of the oil cup component to be connected with the oil cup component, the battery component comprises a control panel fixing seat, a battery, an airflow inductive switch and an electrode column, the control panel fixing seat is sleeved at the tail end of the shell, a chip control board is fixed on the shell and is positioned in the shell, the battery, the airflow inductive switch and the electrode column are sequentially arranged in the middle of the shell along the direction far away from the chip control board, the battery is respectively electrically connected with the chip control board and the airflow inductive switch, the airflow inductive switch and the electrode pole are arranged in the shell through a connecting seat, and the electrode column is electrically connected with the battery through the airflow inductive switch, and the electrode column is inserted into the conductive mechanism so as to fixedly connect the battery component to the tail end of the oil cup component.
9. The electronic cigarette of claim 8, wherein the insertion portion of the electrode post into the conductive mechanism is provided with an elastic groove along a vertical direction thereof, so that the electrode post is tightly inserted into the conductive mechanism.
10. The electronic cigarette of claim 8, wherein the electrode column comprises a positive electrode and a negative electrode, the conductive mechanism is a conductive cylinder comprising a positive conductive cylinder and a negative conductive cylinder, and the positive electrode and the negative electrode are inserted into the corresponding positive conductive cylinder and the corresponding negative conductive cylinder, so that the battery assembly is fixedly connected to the end of the oil cup assembly.
CN202020124821.7U 2020-01-19 2020-01-19 Atomizing device and electronic cigarette with same Active CN211960897U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022142892A1 (en) * 2020-12-31 2022-07-07 深圳市吉迩科技有限公司 Atomization device with laterally arranged heating body
WO2023082705A1 (en) * 2021-11-12 2023-05-19 深圳市吉迩科技有限公司 Atomizer and atomization apparatus

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022142892A1 (en) * 2020-12-31 2022-07-07 深圳市吉迩科技有限公司 Atomization device with laterally arranged heating body
WO2023082705A1 (en) * 2021-11-12 2023-05-19 深圳市吉迩科技有限公司 Atomizer and atomization apparatus

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