WO2022213499A1 - Dispositif d'atomisation électronique, et atomiseur et ensemble d'atomisation associés - Google Patents
Dispositif d'atomisation électronique, et atomiseur et ensemble d'atomisation associés Download PDFInfo
- Publication number
- WO2022213499A1 WO2022213499A1 PCT/CN2021/104516 CN2021104516W WO2022213499A1 WO 2022213499 A1 WO2022213499 A1 WO 2022213499A1 CN 2021104516 W CN2021104516 W CN 2021104516W WO 2022213499 A1 WO2022213499 A1 WO 2022213499A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- atomizing
- atomization
- seat
- channel
- air outlet
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F47/00—Smokers' requisites not otherwise provided for
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/42—Cartridges or containers for inhalable precursors
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/46—Shape or structure of electric heating means
Definitions
- the present invention relates to an atomizing device, and more particularly, to an electronic atomizing device, an atomizer and an atomizing assembly thereof.
- the electronic atomization device in the prior art is generally composed of an atomizer and a power supply assembly.
- the atomizer includes a liquid storage chamber and an atomizing component, the liquid storage chamber is used for storing the atomizable medium, and the atomizing component is used for heating and atomizing the atomizable medium, so as to form an aerosol that can be eaten by the smoker;
- the power supply is used to provide energy to the atomizer.
- the electronic atomization device is also provided with an air flow channel, and the external air enters the atomization component, takes away the atomized vapor or aerosol, and is inhaled by the user along the air flow channel.
- the current air passage is mainly a central air passage, and there are also side air passages. Generally, a certain space needs to be reserved for the air passage, so that the electronic atomization device cannot achieve an ultra-thin volume.
- the technical problem to be solved by the present invention is to provide an improved atomizing assembly, and further provide an improved electronic atomizing device and its atomizer.
- the technical solution adopted by the present invention to solve the technical problem is: constructing an atomization assembly, including an atomization seat, an atomization cavity, and an air flow channel;
- the atomizing seat includes an air outlet for outputting the aerosol
- the air flow channel includes an air outlet channel; the air outlet channel communicates with the atomization cavity and the air outlet, and the air outlet channel at least partially wraps around the side wall of the atomization seat.
- the atomizing seat includes a length and a width direction
- the atomizing seat includes a first side wall arranged in the length direction;
- the air outlet channel includes a first channel section and a second channel section; the first channel section communicates the atomization cavity and the second channel section; the second channel section is formed on the first channel section of the atomization seat.
- a side wall extends toward the air outlet.
- a through hole connecting the first channel section and the second channel section is opened on the first side wall of the atomization seat.
- the first side wall is provided with a first notch; the first notch forms the second channel segment.
- the air outlet channel further includes a third channel segment, the third channel segment communicates with the second channel segment, extends along the length direction of the atomizing seat, and communicates with the air outlet.
- the atomizing seat includes a second side wall disposed in the width direction;
- the second side wall is provided with a second gap
- the second notch extends toward the air outlet along the length direction of the atomizing seat to form the third channel segment.
- the air outlet channel further includes a fourth channel segment communicated with the air outlet.
- the atomization seat is provided with a through groove; the through groove is arranged along the width direction of the atomization seat;
- the through slot forms the fourth channel segment.
- the air outlet is arranged in the direction of the central axis of the atomizing seat.
- the airflow channel further includes an air intake channel that communicates with the atomizing chamber.
- the atomization seat is matched with the support seat to form the atomization cavity;
- the air intake passage is arranged on the support seat.
- the air inlet channel is disposed at the central axis of the support base and extends toward the atomizing cavity.
- the support base includes a base, and a sealing portion provided on the outer side wall of the base and sealingly connected to the atomizing shell of the atomizer.
- the base and the sealing portion are integrally formed.
- the sealing portion is a sealing ring arranged around the outer periphery of the base.
- the atomizing assembly further includes a heating assembly accommodated in the atomizing seat;
- the support base is provided with a support structure for supporting the heating element.
- the atomizing assembly further includes a heating assembly accommodated in the atomizing seat;
- a ventilation channel is arranged between the atomizing seat and the heating component.
- the atomizing seat includes an accommodating groove for accommodating the heating component
- the accommodating groove includes an opening communicating with the atomizing cavity, an end wall opposite to the opening, and a groove wall disposed along the circumferential direction of the end wall and extending toward the opening;
- the ventilation channel is at least partially disposed on the end wall and the groove wall.
- the present invention also constructs an atomizer, which is characterized in that it includes the atomizing assembly described in the present invention and an atomizing shell sleeved on the periphery of the atomizing assembly.
- the present invention also constructs an electronic atomizing device, which includes the atomizing component of the present invention, and a power supply component connected to the atomizing component to supply power to the atomizing component.
- the electronic atomization device and its atomizer and atomization assembly of the present invention have the following beneficial effects: the atomization assembly communicates the air outlet channel with the atomization cavity and the air outlet, and at least partially surrounds the air outlet channel to the atomization
- the side wall of the seat can save space, reduce the thickness of the atomization seat, make the atomization seat thinner, and then make the entire electronic atomization device ultra-thin.
- FIG. 1 is a schematic structural diagram of an electronic atomization device in some embodiments of the present invention.
- Fig. 2 is a sectional view of the electronic atomization device shown in Fig. 1;
- Fig. 3 is the structural exploded schematic diagram of the electronic atomization device shown in Fig. 1;
- Fig. 4 is the structural representation of the atomizer of the electronic atomization device shown in Fig. 3;
- Fig. 5 is the sectional view of the atomizer shown in Fig. 4;
- Fig. 6 is the sectional view of another angle of the atomizer shown in Fig. 4;
- Fig. 7 is the structural decomposition schematic diagram of the atomizer shown in Fig. 4;
- Fig. 8 is the structural representation of the atomization assembly of the atomizer shown in Fig. 7;
- FIG. 9 is a schematic exploded view of the structure of the atomizing assembly shown in FIG. 8;
- Fig. 10 is the structural representation of the atomization seat of the atomization assembly shown in Fig. 9;
- Figure 11 is a schematic structural diagram of another angle of the atomizing seat shown in Figure 10;
- FIG. 12 is a schematic view of the structure of the atomizing seat shown in FIG. 10 with the bottom facing forward.
- the electronic atomization device includes an atomizer 1 and a power supply assembly 2; the atomizer 1 can be used to heat the atomizing medium.
- the power supply assembly 2 can be mechanically and/or electrically connected to the atomizer 1 , and can provide electrical energy to the atomizer 1 .
- the atomizer 1 includes an atomization shell 10 and an atomization assembly 20 .
- the atomizing shell 10 can be sleeved on the periphery of the atomizing component 20, and the atomizing component 20 is placed in the atomizing shell 10 for heating and atomizing the liquid medium. It will be appreciated that in some embodiments, the atomizing shell 10 may be omitted.
- the atomizing assembly 20 can be directly accommodated in the housing 201 of the power supply assembly 2 to form a disposable electronic atomizing device.
- the atomizing shell 10 is in the shape of a flat cylinder, and the inner side may be a hollow structure, including a casing 11 sleeved on the periphery of the atomizing assembly 20 and an air flow pipe disposed in the casing 11 12.
- the space in the housing 11 and located at the upper part of the atomizing assembly 20 can form a liquid storage chamber 13 for storing liquid atomizing medium.
- the airflow duct 12 can be inserted on the atomizing component 20 and can be used to output the air after atomization of the atomizing component 20 , and an air outlet 14 can be provided at one end of the airflow duct 12 .
- the housing 11 and the airflow duct 12 can be integrally formed, and specifically, in some embodiments, the housing 11 and the airflow duct 12 can be integrally formed by injection molding.
- the atomizing assembly 20 includes an atomizing seat 21 , a supporting seat 22 and a heating assembly 23 .
- the atomizing seat 21 is sleeved on the heating element 23 and communicated with the air flow duct 12 for accommodating the heating element 23 and forming an atomizing cavity 2111, which can form a space for the heating element 23 to heat the liquid atomizing medium , and also facilitates the output of the formed aerosol from the airflow duct 12 .
- the heating element 23 is accommodated in the atomizing seat 21 and is used for atomizing the atomizing medium in the atomizing shell 10 .
- the support base 22 can be assembled with the atomization base 21 for supporting the heating element 23 .
- the atomizing seat 21 is a flat cylindrical shape, including a length direction and a width direction.
- the cross-section of the atomizing seat 21 is roughly oval, and the cross-section of the atomizing seat 21 includes a long axis and a short axis, and the extension direction of the long axis can be the length direction of the atomizing seat 21, and the short axis
- the extension direction of the atomizing seat 21 can be the width direction of the atomizing seat 21 .
- the cross section of the atomizing seat 21 may not be limited to an oval shape, but a rectangle or other shapes.
- the atomizing seat includes a matching portion 211 that cooperates with the atomizing shell 10 , and a socket portion 212 disposed on the matching portion 211 for the sealing sleeve 25 to be sleeved.
- the matching portion 211 is cylindrical, the cross-sectional size of the matching portion 211 can be larger than that of the socket portion 212 , and the cross-sectional size of the matching portion 211 can be matched with the cross-sectional size of the inner side of the atomizing shell 10 .
- the socket portion 212 is disposed at one end of the matching portion 211 , is cylindrical, and is integrally formed with the matching portion 211 .
- the matching portion 211 and the matching portion 211 may be integrally formed by injection molding forming.
- the matching portion 211 includes a first side wall 211a and a second side wall 211b; the number of the first side walls 211a may be two, and the two first side walls 211a are located in the atomizing seat 21 are arranged at intervals in the length direction of the atomizer seat 21 , that is, they are arranged at both ends of the long axis of the atomizing seat 21 .
- the second sidewall 211b is disposed between the two first sidewalls 211a and is in contact with the first sidewall 211a.
- the number of the second side walls 211b may be two, and the two second side walls 211b are located in the width direction of the atomizer seat 21 and spaced apart, that is, arranged on the short axis of the atomizer seat 21 both ends of .
- the atomizing seat 21 includes an atomizing cavity 2111, and the atomizing cavity 2111 is surrounded by the two first side walls 211a and the two second side walls 211b.
- the atomizing cavity 2111 can be Set close to the support base 22 , the atomizing chamber 2111 can be used for the heating element 23 to heat the atomizing medium.
- a through hole 2112 is defined on the first side wall 211a of the atomization seat 21, the through hole 2112 can communicate with the atomization cavity 2111, the through hole 2112 can be two, the two through holes 2112
- the through holes 2112 can be located on two opposite sides of the atomizing chamber 2111 , that is, they can be arranged along the length direction of the atomizing seat 21 .
- the first side wall 211a of the atomizing seat 21 is provided with a first gap 2113, and the first gap 2113 extends along the longitudinal direction of the atomizing seat 21.
- the first gap 2113 can make the thickness of the first side wall 211a thinner.
- the first notch 2113 may be communicated with the through hole 2112 .
- the number of the first notches 2113 may be two, the two first notches 2113 are respectively disposed on the two first side walls 211a, and the first notches 2113 can be directly caused by the atomization
- the seat 21 is formed concavely.
- the second side wall 211b of the atomizing seat 21 is provided with a second gap 2114 , and the second gap 2114 is disposed on the atomizing seat 21 along the length direction of the atomizing seat 21 .
- the air outlet 2121 on the upper part extends, and one end thereof is connected with the first notch 2113 and communicated with the first notch 2113 .
- the second gap 2114 can be located at the junction of the matching portion 211 and the socket portion 212 , thereby facilitating the flow of air.
- the number of the second notches 2114 may be two, and the two second notches 2114 may be located on the two second side walls 211b and corresponding to the two first notches 2113 respectively.
- the atomizing seat 21 is provided with a through groove 2115 , and the through groove 2115 is located in the contact between the matching portion 211 and the socket portion 212 , and is located in the width direction of the atomizing seat 21 and connect the two second notches 2114, and can communicate with the air outlet 2121 provided on the atomizing seat 21.
- the atomizing seat 21 is provided with an accommodating groove 2116, the accommodating groove 2116 can communicate with the atomizing cavity 2111, and the size of the accommodating groove 2116 can be smaller than the atomizing cavity 2111 size, the accommodating slot 2116 is used for accommodating the heating element 223 .
- the shape and size of the accommodating groove 2116 can be adapted to the shape and size of the heating element 23 .
- the accommodating groove 2116 includes an opening, an end wall 2117 and a groove wall 2118, the opening can communicate with the atomizing cavity 2111, and the opening communicates with the atomizing cavity 2111 for the heating element 23 to be installed enter.
- the end wall 2117 is disposed opposite to the opening, and the end wall 2117 can be annular, with a central through hole formed in the middle for the inflow of the atomizing medium.
- the groove wall 2118 can be disposed along the circumferential direction of the end wall 2117 and can extend toward the opening to form an accommodating cavity for accommodating the heating element 223 around the end wall 2117 .
- a ventilation channel 2119 is provided between the atomizing seat 21 and the heating component 23 , specifically, the ventilation channel 2119 is at least partially disposed on the end wall 2117 and the groove wall 2118 , which is used for ventilation to facilitate the flow of the atomized medium to the heating element 223 .
- the ventilation channel 2119 includes a first ventilation groove and a second ventilation groove; the first ventilation groove is disposed on the groove wall 2118 and extends toward the atomization cavity 2111 and the atomization cavity 2111 The second ventilation groove is arranged on the end wall 2117 and along the circumferential direction of the end wall 2117 , and is arranged opposite to the heating element 23 .
- the atomizing seat 21 includes an air outlet 2121 , and the air outlet 2121 can be located on the socket portion 212 .
- the air outlet 2121 may be disposed along the longitudinal direction of the atomizing seat 21, at the central axis of the atomizing seat 21, specifically, in some embodiments, the air outlet 2121 may be disposed in the sleeve at the central axis of the connecting portion 212 .
- a lower liquid hole 2122 can be provided on the atomizing seat 21 , the lower liquid hole 2122 is located on the socket portion 212 and can be longitudinally arranged, and can be connected with the liquid storage cavity on the atomizing shell 10 .
- the number of the lower liquid holes 2122 can be two, and the two lower liquid holes 2122 can be arranged side by side along the length direction of the atomizing seat 21 and pass through the central through hole on the end wall 2117 of the accommodating groove 2116 and the accommodating groove 2116 In communication, the air outlet 2121 may be located between the two lower liquid holes 2122 .
- the atomization assembly includes an air flow channel, specifically, the air flow channel includes an air intake channel 220 and an air outlet channel 210; the air intake channel 220 is provided on the support base 22 and is connected with the atomization
- the cavity 2111 is in communication and can be used for external air to enter the atomizing cavity 2111 .
- the air outlet channel 210 is disposed on the atomizing seat 21 and at least partially wraps around the side wall of the atomizing seat 21 .
- the air outlet channel 210 communicates with the atomizing chamber 2111 and communicates with the airflow duct 12 for outputting the aerosol formed after atomization to the airflow duct 12 .
- the air outlet channel 210 can be connected to the airflow duct 12
- the air outlet 2121 communicates with the air flow duct 12 .
- the air outlet channel 210 can go from the atomizing cavity 2111 to the side wall of the atomizing seat 21 along the length direction of the atomizing seat 21 , and extend toward the air outlet 2121 , and be connected with the air outlet 2121 Connected. Specifically, in some embodiments, the air outlet channel 210 can be wound around the first side wall 211 a along the length direction of the atomization seat 21 , then around the second side wall 211 b , and along the width direction of the atomization seat 21 . Extend to the air outlet 2121.
- the air outlet channel 210 includes a first channel section 2101 , a second channel section 2102 , a third channel section 2103 and a fourth channel section 2104 .
- the first channel section 2101 can communicate with the atomizing cavity 2111 and the second channel section 2102, and can extend along the length direction of the atomizing seat 21 to the first side wall 211a of the atomizing seat 21, specifically, can extend to the through hole 2112.
- the second channel 2112 can be formed on the first side wall 211 a of the atomizing seat 21 , and can be disposed along the longitudinal direction, and can be formed by the first gap 2113 .
- the through hole 2112 is used to communicate the first channel segment 2101 and the second channel segment 2102 .
- the third channel section 2103 is bent and arranged with the second channel section 2102 and communicates with the second channel section 2102 , and can extend along the length direction of the atomizing seat 21 and communicate with the air outlet 2121 .
- the third channel segment 2103 can be formed by the second notch 2114 and can extend toward the through groove 2115 and communicate with the through groove 2115 .
- the fourth channel segment 2104 may be formed in the through groove 2115 .
- the number of the air outlet channels 210 may be two, and the two air outlet channels 210 may be respectively formed on two opposite sides of the atomizer seat 21 and communicated through the through groove 2115 , that is, the two air outlet channels
- the fourth channel segment 2104 of 210 is in communication.
- the external air can enter the atomization chamber 211 from the middle of the support seat 22, and the aerosol formed after atomization can turn from the bottom of the heating surface of the heating element 23 along the length direction of the atomization seat 21 to the atomization chamber 211.
- the support base 22 may cooperate with the atomization base 21 to form an atomization cavity 2111 , and the support base 22 may include a base 221 and a sealing portion 222 ;
- the atomizing seat 21 can be arranged on the base 211, and the atomizing shell 10 can be sleeved on the base 221.
- the cross-section of the base 221 may be substantially elliptical.
- the shape and size of the base 221 can be adapted to the shape and size of the opening of the atomizing shell 10 .
- the sealing portion 222 is disposed on the outer side wall of the base 221 for sealingly connecting with the atomizing shell 10 .
- the support base 22 is provided with a support structure 223 , and the support structure 223 can extend from the base 221 to the atomization chamber 2111 for supporting the heating element 23 .
- the support structure 223 includes two support arms 2231 spaced apart. The two supporting walls 2231 can be arranged at intervals on the long axis of the base 221 , and can cooperate with each other to support the heating element 23 .
- the support base 22 is provided with an air intake hole 224
- the air intake hole 224 can be located between the two support arms 2231, and can be connected with the atomization chamber 2111 and the air intake channel 220 communicated, and the gas in the air inlet channel 220 can pass into the atomizing cavity 2111 .
- the atomizing seat 21 can be snapped with the supporting seat 22 .
- the end surface of the mating portion 211 of the atomizing seat 21 can be provided with a hook 213 extending toward the support seat 22
- the base 221 is provided with a button hole 225
- the button hole 225 can be connected with the The hook 213 is correspondingly set and can be inserted into the hook 213 .
- the number of the hooks 213 may be two, and the two hooks 213 may be arranged at intervals, specifically, may be arranged at intervals along the long axis direction of the atomizing seat 21 .
- the number of the button holes 225 may also be two.
- the atomizing seat 21 may be provided with mounting holes 226, the mounting holes 226 may be used for the installation of the electrode element 24, the mounting holes 226 may be two, and the two mounting holes 226 may be located in Two opposite sides of the air intake hole 224 .
- the air intake passage 220 may be located at the central axis of the support base 22 and may extend along the longitudinal direction of the support base 22 , one end may be communicated with the outside, and the other end may be connected with the air intake hole 224 Connected to allow external air to enter the atomizing chamber 2111.
- the heating element 23 may include a liquid absorbing liquid 231 and a heating element installed on the liquid absorbing liquid 231 , and the liquid absorbing liquid 231 may be a ceramic porous body, and may be substantially bowl-shaped.
- the heating element can be disposed on the liquid absorbing liquid 231 and can be integrally formed with the liquid absorbing liquid 231.
- the heating element and the liquid absorbing liquid 231 can be integrally formed by sintering.
- the heating element may be a metal heating sheet, and may be disposed on the end surface of the liquid absorbing liquid 231 and the support seat 22 opposite to each other.
- the heating element 23 further includes a buffer pad 232 , the buffer pad 232 can be installed on the end surface of the liquid absorbing body 231 opposite to the heating body, and can be installed with the end surface of the accommodating groove 2116 Walls 2117 abut.
- the atomizing assembly 20 may further include electrode pieces 24 , the number of electrode pieces 24 may be two, and the two electrode pieces 24 may be installed in the mounting holes 226 of the support base 22 in a one-to-one correspondence. middle.
- the atomizing assembly 20 may further include a sealing sleeve 25, and the sealing sleeve 25 may be sleeved on the atomizing seat 21, specifically, the sealing sleeve 25 may be sleeved on the sleeve On the part 212 , it can be sealed with the atomizing shell 10 .
- the sealing sleeve 25 may be a silicone sleeve.
- the sealing sleeve 25 is provided with a first escape hole 251 and a second escape hole 252 , the first escape hole 251 is corresponding to the air outlet 2121 , and the second escape hole 252 is corresponding to the lower liquid hole 2122 set up.
- the power supply assembly 2 may include a casing 201 and a power source 202 , and the casing 201 may be in a flat cylindrical shape and may be sleeved on part of the atomizer 1 .
- the housing 201 can also accommodate the atomizing assembly 20 therein.
- the power source 202 can be accommodated in the housing 201 and can be connected to the electrode member 24 to be connected to the atomizer 1 for supplying power to the atomizer 1 .
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Abstract
La présente invention concerne un dispositif d'atomisation électronique, un atomiseur (1) et un ensemble d'atomisation (20) associés. L'ensemble d'atomisation (20) comprend une base d'atomisation (21), une cavité d'atomisation (2111) et un canal d'écoulement d'air. La base d'atomisation (21) comprend une sortie d'air (2121) pour délivrer un aérosol ; le canal d'écoulement d'air comprend un canal de sortie d'air (210) ; le canal de sortie d'air (210) est en communication avec la cavité d'atomisation (2111) et la sortie d'air (2121) ; et le canal de sortie d'air (210) s'étend au moins partiellement vers la paroi latérale de la base d'atomisation (21). Dans l'ensemble d'atomisation (20), le canal de sortie d'air (210) est en communication avec la cavité d'atomisation (2111) et la sortie d'air (2121), et le canal de sortie d'air (210) s'étend au moins partiellement vers la paroi latérale de la base d'atomisation (21), de telle sorte que l'espace puisse être économisé, et que l'épaisseur de la base d'atomisation (21) puisse être réduite. La réduction de l'épaisseur de la base d'atomisation (21) permet une conception ultra-fine de l'ensemble du dispositif d'atomisation électronique.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202110381462.2A CN113142662B (zh) | 2021-04-09 | 2021-04-09 | 电子雾化装置及其雾化器和雾化组件 |
| CN202110381462.2 | 2021-04-09 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2022213499A1 true WO2022213499A1 (fr) | 2022-10-13 |
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ID=76888962
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2021/104516 Ceased WO2022213499A1 (fr) | 2021-04-09 | 2021-07-05 | Dispositif d'atomisation électronique, et atomiseur et ensemble d'atomisation associés |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN113142662B (fr) |
| WO (1) | WO2022213499A1 (fr) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116264915A (zh) * | 2021-12-19 | 2023-06-20 | 比亚迪精密制造有限公司 | 雾化装置和具有其的电子烟 |
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| CN208130526U (zh) * | 2018-03-06 | 2018-11-23 | 江苏帕特斯环保科技有限公司 | 一种用于干燥塔的热风分配器 |
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2021
- 2021-04-09 CN CN202110381462.2A patent/CN113142662B/zh active Active
- 2021-07-05 WO PCT/CN2021/104516 patent/WO2022213499A1/fr not_active Ceased
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| WO2018209659A1 (fr) * | 2017-05-18 | 2018-11-22 | 昂纳自动化技术(深圳)有限公司 | Cigarette électronique et dispositif d'atomisation combinés |
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| CN211832832U (zh) * | 2020-01-02 | 2020-11-03 | 深圳麦克韦尔科技有限公司 | 一种电子雾化装置及其雾化器 |
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| CN113142662B (zh) | 2025-10-31 |
| CN113142662A (zh) | 2021-07-23 |
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