CN208064477U - A kind of electronic cigarette atomizing core and the electronic cigarette - Google Patents
A kind of electronic cigarette atomizing core and the electronic cigarette Download PDFInfo
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- CN208064477U CN208064477U CN201820082295.5U CN201820082295U CN208064477U CN 208064477 U CN208064477 U CN 208064477U CN 201820082295 U CN201820082295 U CN 201820082295U CN 208064477 U CN208064477 U CN 208064477U
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- heating unit
- temperature
- electronic cigarette
- atomization
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Abstract
The utility model discloses a kind of electronic cigarette atomizing core and the electronic cigarettes, wherein electronic cigarette atomizing core includes inlet channel, further include the first heating unit, the second heating unit for the air in inlet channel to be heated to atomization temperature for cigarette tobacco portion to be preheated to atomization critical-temperature, inlet channel, the second heating unit, tobacco portion are sequentially communicated.The utility model can carry out cigarette tobacco portion full and uniform heating atomization, temperature is relatively low simultaneously, heat insulation structural is simple, is not in the phenomenon that tobacco portion or scald oral cavity are burnt in part, and stack velocity is fast, amount of smoke and smoke temperature are stable, uses non-scald on hand, user experience good for a long time.
Description
Technical field
The utility model belongs to electronic cigarette technical field, more particularly to a kind of electronic cigarette atomizing core and the electronic cigarette.
Background technology
One is provided only in atomization core in the electronic cigarette by heating solid tobacco product to obtain smog on the market at present
Heating unit, heating unit directly contact heating generation smog to cigarette tobacco portion and are sucked for user.To keep electronic cigarette heating equal
Even atomization is abundant, and for the temperature that heating unit provides generally at 350 DEG C or more, temperature is higher, causes the heat insulation structural of electronic cigarette multiple
It is miscellaneous, while being susceptible to part and burning or scald oral cavity phenomenon.Further, since heating unit needs certain heating-up time, because
And at the beginning of suction, tobacco portion cannot be atomized smoke at once, and stack velocity is slow, and amount of smoke is unstable, poor user experience.
Invention content
A heating unit is provided only in existing electronic cigarette, in atomization core, heating unit temperature is higher, leads to electronic cigarette
Heat insulation structural is complicated, while being susceptible to part and burning or scald oral cavity phenomenon;Tobacco portion cannot be atomized smoke, smoke speed at once
Degree is slow, and amount of smoke is unstable, poor user experience.The purpose of this utility model is that in view of the above shortcomings of the prior art, providing
A kind of electronic cigarette atomizing core and the electronic cigarette improved, can carry out cigarette tobacco portion full and uniform heating atomization, together
Shi Wendu is relatively low, and heat insulation structural is simple, is not in the phenomenon that tobacco portion or scald oral cavity are burnt in part, and stack velocity is fast, cigarette
Mist amount and smoke temperature are stable, use non-scald on hand, user experience good for a long time.
In order to solve the above technical problems, technical solution used by the utility model is:
A kind of electronic cigarette atomizing core, including inlet channel are structurally characterized in that further include for by cigarette tobacco portion pre-add
First heating unit of the heat to atomization critical-temperature, the second heating for the air in inlet channel to be heated to atomization temperature
Unit, inlet channel, the second heating unit, tobacco portion are sequentially communicated.
By above structure, the electronic cigarette atomizing in-core of the utility model is equipped with the first heating unit and the second heating is single
Member, and in use, the first heating unit of control first works in the second heating unit;Before user prepares smoking, cigarette is inserted into
The electronic cigarette atomizing in-core, at the same time the first heating unit first start work, the preset value of the first heating unit working time
For 10s ~ 30s, preferably 20s ~ 25s;That is the first heating unit at work between values in by cigarette
Tobacco portion is preheated to atomization critical-temperature, and the first heating unit is known as preheating in this heating process;In the preheating
Preset time in, heat is fully transmitted to inside tobacco portion caused by the first heating unit, to make the temperature of tobacco portion
Atomization critical-temperature is risen to, the first heating unit, which works on, after the temperature of tobacco portion rises to atomization critical-temperature makes tobacco
Tobacco portion is only preheated to atomization by the heating temperature for the keeping warm mode namely the first heating unit that portion is in atomization critical-temperature
Critical-temperature, and the temperature under the keeping warm mode is insufficient to allow tobacco portion atomization to generate smog.
When tobacco portion is in keeping warm mode, when user smokes, the second heating unit, which quickly heats, enters inlet channel
Interior air makes the temperature of the air in inlet channel rise very rapidly up to atomization temperature so that forming hot-air.However hot-air
The heat of hot-air is absorbed by the tobacco portion of cigarette, tobacco portion in the form of air-flow, to make the temperature of tobacco portion be higher than mist
Change critical-temperature, tobacco portion atomization at this time generates smog and sucked for user.The second heating unit is arranged as a preferred method,
In the inlet channel, thus the second heating unit comes into full contact with the air in inlet channel, so making in inlet channel
Air heating it is more abundant, air themperature rise speed faster.
In the present invention, since tobacco portion has been preheated to atomization critical-temperature by the first heating unit, so
When the hot-air generated by the second heating unit heats passes through tobacco portion with airflow pattern, tobacco portion absorbs a small amount of heat just
Production smog can be atomized.Simultaneously as hot-air fills each tobacco unit of tobacco portion, each of tobacco portion in smoking
Tobacco unit has been pre-heated to atomization critical-temperature by the first heating unit again, so each tobacco unit of tobacco portion is heated
Uniformly and every mouthful of smoke temperature of production is constant, and smog mouthfeel is more preferable.Further, since have the preheating of the first heating unit, the
The hot air temperature of two heating units higher position need not can be such that tobacco portion is atomized very much, so the heat-insulated knot that electronic cigarette need not be too many
Structure can reach good heat insulation, to simple in structure and reduce production cost.
First heating unit is heat-generating pipe as a preferred method, and cigarette tobacco portion is placed in heat-generating pipe, air inlet
Instlated tubular is equipped between channel and the first heating unit.
In the preferred structure, when outside air enters inlet channel, air-flow is not contacted with the first heating unit, so
The heat of first heating unit is not absorbed by the air-flow in inlet channel, it can be ensured that the first heating unit is to tobacco portion
Stable heat supply, and heat insulating effect is more preferable, can accurately control tobacco portion temperature and every mouthful of amount of smoke, user experience
More preferably.
As another preferred embodiment, first heating unit is heat-generating pipe, and cigarette tobacco portion is placed in heat-generating pipe, into
Gas channel is in contact with the first heating unit outer wall.
In the preferred structure, when outside air enters inlet channel, air-flow is contacted with the first heating unit, so air inlet
The air-flow in channel can absorb the heat of the first heating unit offer, to which the heated air-flow is passing through the second heating unit
When, it is heated again to that time needed for atomization temperature is short and temperature is uniform, atomizing effect is more preferable when finally passing through tobacco portion.
The atomization critical-temperature is 130 DEG C ~ 160 DEG C, preferably 140 DEG C ~ 150 DEG C as a preferred method,.
The atomization temperature is 230 DEG C ~ 280 DEG C, preferably 240 DEG C ~ 250 DEG C as a preferred method,.
Further, further include for detecting the airflow sensor for whether thering is air-flow to flow through in inlet channel switch, the air-flow
Inductive switch is electrically connected with the second heating unit.
There is air-flow entrance by airflow sensor inductive switching to inlet channel, is instant on the second heating unit heats sky
Gas is quick on the draw, and functional reliability is high.
Further, further include tracheae, the inlet channel, the first heating unit and the second heating unit are set to the gas
In pipe, one end of tracheae is installed with support base, and the first heating unit and the second heating unit are fixedly arranged on support by supporting mechanism
On seat.
Further, the supporting mechanism includes supporting rack and supporting sleeve, and the first heating unit passes sequentially through supporting sleeve, branch
Support is connected with support base, and the second heating unit is heating wire and is located in supporting sleeve, and the lead of heating wire is solid by supporting rack
It is fixed.
Further, the bottom of support base is equipped with the air flow switch seat for fixing airflow sensor switch.
Based on the same inventive concept, the utility model additionally provides a kind of electronic cigarette, including power supply, cigarette, shell and
The button of shell side, cigarette include connected tobacco portion and mouthpiece portion, which is characterized in that the atomization is equipped in shell
Core, the first heating unit are electrically connected to a power source by button with the second heating unit.
Compared with prior art, the utility model can carry out cigarette tobacco portion full and uniform heating atomization, simultaneously
Temperature is relatively low, and heat insulation structural is simple, is not in the phenomenon that tobacco portion or scald oral cavity are burnt in part, and stack velocity is fast, smog
Amount and smoke temperature are stable, use non-scald on hand, user experience good for a long time.
Description of the drawings
Fig. 1 is one positive view of atomization core embodiment.
Fig. 2 is the oblique sectional view of atomization core embodiment one after being put into cigarette.
Fig. 3 is the oblique sectional view of atomization core embodiment two after being put into cigarette.
Fig. 4 is one example structure schematic diagram of electronic cigarette.
Fig. 5 is the Temperature-time graph of relation of the first heating unit and the second heating unit during use.
Fig. 6 is the temperature of the first heating unit and the second heating unit in smoking process with tobacco segment length change curve
Figure.
Wherein, 1 is inlet channel, and 2 be the first heating unit, and 3 be the second heating unit, and 4 be instlated tubular, and 5 be air-flow sense
Inductive switch, 6 be tracheae, and 7 be support base, and 8 be supporting rack, and 9 be supporting sleeve, and 10 be air flow switch seat, and 11 be power supply, and 12 be cigarette
Branch, 1201 be tobacco portion, and 1202 be mouthpiece portion, and 13 be shell, and 14 be button, and 15 be atomization core, and 16 be mainboard.
Specific implementation mode
Atomization core embodiment one
As shown in Figure 1 to Figure 2, electronic cigarette atomizing core includes inlet channel 1, further includes for by 12 tobacco portion 1201 of cigarette
It is preheated to the first heating unit 2 of atomization critical-temperature, for the air in inlet channel 1 to be heated to the of atomization temperature
Two heating units 3, inlet channel 1, the second heating unit 3, tobacco portion 1201 are sequentially communicated.Second heating unit 3 is arranged
It is come into full contact in the inlet channel 1 and with the air in the inlet channel 1.First heating unit 2 first works in second
Heating unit 3 makes tobacco portion 1201 adequately be preheated before smoking, to promote smoking effect more preferable.
First heating unit 2 is heat-generating pipe, and 12 tobacco portion 1201 of cigarette is placed in heat-generating pipe, inlet channel 1 and the
It is equipped with instlated tubular 4 between one heating unit 2, influences pre-add to prevent the heat of the first heating unit 2 from being absorbed by inlet channel 1
The effect of heat.
The atomization critical-temperature is 130 DEG C ~ 160 DEG C, preferably 140 DEG C ~ 150 DEG C.
The atomization temperature is 230 DEG C ~ 280 DEG C, preferably 240 DEG C ~ 250 DEG C.
Whether electronic cigarette atomizing core further includes being connected to inlet channel 1 and having air-flow to flow through for detecting in inlet channel 1
Airflow sensor switch 5, which is electrically connected with the second heating unit 3.
Electronic cigarette atomizing core further includes tracheae 6, and the inlet channel 1, the first heating unit 2 and the second heating unit 3 are
In the tracheae 6, it is provided with inlet channel 1 between tracheae 6 and instlated tubular 4, one end of instlated tubular 4 and tracheae 6 is installed in
On support base 7, first through hole is provided on support base 7(It is unnumbered), the first heating unit 2 and the second heating unit 3 pass through branch
Support mechanism is fixedly arranged on support base 7.When smoked, outside air enters the inlet channel 1 in the form of air-flow, passes through described
First through hole(It is unnumbered)With the second heating unit 3, then it is discharged from the top of the first heating unit 2.As shown by the arrows in Figure 1
It is moved towards for air-flow in direction.
The supporting mechanism includes supporting rack 8 and supporting sleeve 9, and the first heating unit 2 passes sequentially through supporting sleeve 9, supporting rack 8
It is connected with support base 7, the second heating unit 3 is heating wire and is located in supporting sleeve 9, and the lead of heating wire is solid by supporting rack 8
It is fixed, it is heated by the second heating unit 3 when air-flow passes through the second heating unit 3, makes the temperature rise of air-flow to atomization temperature.
The bottom of support base 7 is equipped with the air flow switch seat 10 for fixing airflow sensor switch 5, is set on air flow switch seat 10
It is equipped with the second through-hole for being connected to the inlet channel 1(It is unnumbered), when have air-flow pass through the inlet channel 1 when can trigger air-flow
Inductive switch 5 makes the second heating unit 3 be powered on.
It is inserted into heat-generating pipe in 12 tobacco portion 1201 of cigarette, when user smokes, external air flow enters inlet channel 1, so
After pass through first through hole(It is unnumbered), become thermal current after the second heating unit 3, last thermal current passes through 12 tobacco portion of cigarette
1201, so that the atomization of 12 tobacco portion 1201 of cigarette is formed smog and is sucked for user.It is moved towards for air-flow in direction as shown by the arrows in Figure 1.
Atomization core embodiment two
As shown in figure 3, atomization core embodiment two is similar with one structure of embodiment, difference lies in first heating units 2
For heat-generating pipe, 12 tobacco portion 1201 of cigarette is placed in heat-generating pipe, and inlet channel 1 is set between tracheae 6 and heat-generating pipe and air inlet
Channel 1 is in contact with fever pipe outer wall.When smoked, outside air enters the inlet channel 1 in the form of air-flow, passes through institute
State first through hole(It is unnumbered)With the second heating unit 3, then it is discharged from the top of the first heating unit 2.Such as arrow institute in Fig. 3
Show that direction is moved towards for air-flow.
It for structure similar with embodiment one in embodiment two, does not do word herein and repeats, but have no effect on this
Understanding and realization of the technical staff in field to the utility model.
Electronic cigarette embodiment
As shown in figure 4, electronic cigarette include power supply 11,13 side of cigarette 12, shell 13 and shell button 14, cigarette 12 wrap
Connected tobacco portion 1201 and mouthpiece portion 1202 are included, is heated equipped with the atomization core 15 described in embodiment one, first in shell 13
Unit 2 and the second heating unit 3 connect on motherboard 16 and are electrically connected by button 14 with power supply 11.Side shown in arrow in Fig. 4
It is moved towards to for air-flow.
Included the following steps using the method that the utility model electronic cigarette is atomized:
12 tobacco portion 1201 of cigarette is preheated to atomization critical-temperature by step A1.;The atomization critical-temperature is 130 DEG C
~ 160 DEG C, preferably 140 DEG C ~ 150 DEG C.
Step A. outside airs enter inlet channel 1.
Air in inlet channel 1 is heated to atomization temperature by step B.;The atomization temperature is 230 DEG C ~ 280 DEG C, excellent
It is selected as 240 DEG C ~ 250 DEG C.
The air that step C. is heated to atomization temperature flows through the tobacco portion 1201 for being preheated to atomization critical-temperature, tobacco
The heat absorption atomization of portion 1201 generates smog and is sucked for user.
As shown in figure 5, when curve indicates to push button 14 1. the first heating unit 2 temperature and time relationship.When pressing
When button 14, the first heating unit 2 makes tobacco portion 1201 be preheated to 150 °C of critical-temperature of atomization within the time of 10s ~ 30s,
That is the heating temperature of first heating unit 2 only gives tobacco portion 1201 heating and thermal insulation, gives birth to tobacco portion 1201
Produce smog.It is single by the first heating of controller control when the temperature of the first heating unit 2 reaches preset atomization critical-temperature
First 2 constant power operations make 1201 constant temperature of tobacco portion in atomization critical temperature range, with when smoking quick smoke for user
It sucks.
As shown in figure 5,2. curve indicates to push button the temperature and time relationship of the second heating unit 3 when smoking after 14.
When smoked, airflow sensor switch 5 has monitored that air enters inlet channel 1, by airflow sensor switch 5 that second heating is single
Member 3 is connected with power supply 11, and quickly heating enters the air in inlet channel 1 to the second heating unit 3, keeps the temperature of air at this fast
Speed rises to atomization temperature.The subsequent hot-air for rising to atomization temperature is in the form of air-flow by the tobacco portion of cigarette 12
1201, tobacco portion 1201 absorbs the heat of hot-air, and higher than atomization critical-temperature and production is atomized to the temperature of tobacco portion 1201
Raw smog is sucked for user.
Since tobacco portion 1201 is preheated to atomization critical-temperature by the first heating unit 2, so adding by second
When hot cell 3 adds thermogenetic hot-air with airflow pattern by tobacco portion 1201, tobacco portion 1201 absorbs a small amount of heat just
Production smog can be atomized.Simultaneously as hot-air fills each tobacco unit of tobacco portion 1201, tobacco portion in smoking
1201 each tobacco unit has been pre-heated to atomization critical-temperature by the first heating unit 2 again, so tobacco portion 1201
Each tobacco unit is heated evenly and the every mouthful of smoke temperature produced is constant, and smog mouthfeel is more preferable.Further, since there is the first heating
The hot air temperature of the preheating of unit 2, the second heating unit 3 higher position need not can be such that tobacco portion 1201 is atomized very much, so electric
Sub- cigarette, which does not need too many heat insulation structural, can reach good heat insulation, to simple in structure and reduce production cost.
By the curve in Fig. 6 3. it is found that since the first heating unit 2 is mainly used for preheating tobacco portion 1201, and flow through
The hot air temperature of tobacco portion 1201 is higher than 1201 pre-heating temperature of tobacco portion, so in smoking process, thermal current will not be inhaled
The heat of the first heating unit 2 is received, therefore the temperature of first heating unit 2 will not change too much, so could be more preferable
Ground ensures the stack velocity of tobacco portion 1201.Therefore 2 required heating power of the first heating unit of later stage is constant, so battery
Longer life expectancy.
By the curve in Fig. 6 4. it is found that in smoking process, the hot-air of the second heating unit 3 passes through tobacco portion 1201
When, since the heat in hot-air is constantly absorbed by tobacco portion 1201, so the temperature of hot-air enters cigarette with the thermal current
The length in careless portion 1201 and continuously decrease, the temperature of decline is probably at 20 °C ~ 50 °C, but at the smoke end of tobacco portion 1201,
The temperature of thermal current can at least make the tobacco product section atomization production smog that thermal current passes through, and meet need of the user to smog
It asks.
The embodiments of the present invention are described above in conjunction with attached drawing, but the utility model is not limited to
The specific implementation mode stated, the above mentioned embodiment is only schematical, rather than limitation, this field it is common
Technical staff is not departing from the utility model aims and scope of the claimed protection situation under the enlightenment of the utility model
Under, many forms can be also made, these are belonged within the scope of protection of the utility model.
Claims (12)
1. a kind of electronic cigarette atomizing core, including inlet channel(1), which is characterized in that further include for by cigarette(12)Tobacco portion
(1201)It is preheated to the first heating unit of atomization critical-temperature(2), for by inlet channel(1)Interior air is heated to mist
Change the second heating unit of temperature(3), inlet channel(1), the second heating unit(3), tobacco portion(1201)It is sequentially communicated.
2. electronic cigarette atomizing core as described in claim 1, which is characterized in that first heating unit(2)For heat-generating pipe, cigarette
Branch(12)Tobacco portion(1201)It is placed in heat-generating pipe, inlet channel(1)With the first heating unit(2)Between be equipped with instlated tubular(4).
3. electronic cigarette atomizing core as described in claim 1, which is characterized in that first heating unit(2)For heat-generating pipe, cigarette
Branch(12)Tobacco portion(1201)It is placed in heat-generating pipe, inlet channel(1)With the first heating unit(2)Outer wall is in contact.
4. electronic cigarette atomizing core as described in any one of claims 1 to 3, which is characterized in that the atomization critical-temperature is 130
℃~160℃。
5. electronic cigarette atomizing core as claimed in claim 4, which is characterized in that the atomization critical-temperature is 140 DEG C ~ 150 DEG C.
6. electronic cigarette atomizing core as described in any one of claims 1 to 3, which is characterized in that the atomization temperature be 230 DEG C ~
280℃。
7. electronic cigarette atomizing core as claimed in claim 6, which is characterized in that the atomization temperature is 240 DEG C ~ 250 DEG C.
8. electronic cigarette atomizing core as described in any one of claims 1 to 3, which is characterized in that further include logical for detecting air inlet
Road(1)Inside whether there is the airflow sensor switch that air-flow flows through(5), airflow sensor switch(5)With the second heating unit(3)It is electrically connected
It connects.
9. electronic cigarette atomizing core as claimed in claim 8, which is characterized in that further include tracheae(6), the inlet channel(1),
First heating unit(2)With the second heating unit(3)It is set to the tracheae(6)It is interior, tracheae(6)One end be installed with support base
(7), the first heating unit(2)With the second heating unit(3)It is fixedly arranged on support base by supporting mechanism(7)On.
10. electronic cigarette atomizing core as claimed in claim 9, which is characterized in that the supporting mechanism includes supporting rack(8)With branch
Support set(9), the first heating unit(2)Pass sequentially through supporting sleeve(9), supporting rack(8)With support base(7)It is connected, the second heating is single
Member(3)For heating wire and it is located at supporting sleeve(9)Interior, the lead of heating wire passes through supporting rack(8)It is fixed.
11. electronic cigarette atomizing core as claimed in claim 9, which is characterized in that support base(7)Bottom be equipped with for fixing gas
Influenza inductive switch(5)Air flow switch seat(10).
12. a kind of electronic cigarette, including power supply(11), cigarette(12), shell(13)And shell(13)The button of side(14), cigarette
(12)Including connected tobacco portion(1201)With mouthpiece portion(1202), which is characterized in that shell(13)It is interior to be equipped with such as claim 1
To 11 any one of them atomization cores(15), the first heating unit(2)With the second heating unit(3)Pass through button(14)With electricity
Source(11)Electrical connection.
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CN201820082295.5U CN208064477U (en) | 2018-01-18 | 2018-01-18 | A kind of electronic cigarette atomizing core and the electronic cigarette |
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CN201820082295.5U CN208064477U (en) | 2018-01-18 | 2018-01-18 | A kind of electronic cigarette atomizing core and the electronic cigarette |
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CN110051038A (en) * | 2018-01-18 | 2019-07-26 | 湖南中烟工业有限责任公司 | A kind of electronic cigarette atomizing core, electronic cigarette and its atomization method |
CN110226776A (en) * | 2019-06-19 | 2019-09-13 | 深圳市精渡科技有限公司 | Electronic cigarette and its temperature control method, device and computer readable storage medium |
WO2020228805A1 (en) * | 2019-05-16 | 2020-11-19 | 厦门蜂涛陶瓷有限公司 | Non-contact e-cigarette heater |
JP2022532583A (en) * | 2019-05-16 | 2022-07-15 | 厦門蜂涛陶瓷有限公司 | Heating air type electronic cigarette heater, ceramic heating element and its manufacturing method |
JP2022533064A (en) * | 2019-05-16 | 2022-07-21 | 厦門蜂涛陶瓷有限公司 | Thermal energy recovery device and non-contact heating pneumatic electronic cigarette heater equipped with it |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN110051038A (en) * | 2018-01-18 | 2019-07-26 | 湖南中烟工业有限责任公司 | A kind of electronic cigarette atomizing core, electronic cigarette and its atomization method |
WO2020228805A1 (en) * | 2019-05-16 | 2020-11-19 | 厦门蜂涛陶瓷有限公司 | Non-contact e-cigarette heater |
JP2022532583A (en) * | 2019-05-16 | 2022-07-15 | 厦門蜂涛陶瓷有限公司 | Heating air type electronic cigarette heater, ceramic heating element and its manufacturing method |
JP2022533063A (en) * | 2019-05-16 | 2022-07-21 | 厦門蜂涛陶瓷有限公司 | Non-contact electronic cigarette heater |
JP2022533064A (en) * | 2019-05-16 | 2022-07-21 | 厦門蜂涛陶瓷有限公司 | Thermal energy recovery device and non-contact heating pneumatic electronic cigarette heater equipped with it |
JP7292756B2 (en) | 2019-05-16 | 2023-06-19 | 厦門蜂涛陶瓷有限公司 | Air-heated electronic cigarette heater, ceramic heating element and manufacturing method thereof |
JP7336155B2 (en) | 2019-05-16 | 2023-08-31 | 厦門蜂涛陶瓷有限公司 | contactless electronic cigarette heater |
CN110226776A (en) * | 2019-06-19 | 2019-09-13 | 深圳市精渡科技有限公司 | Electronic cigarette and its temperature control method, device and computer readable storage medium |
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