Improved atomizing electronic cigarette.
Abstract
An improved atomizing electronic cigarette has a power device (1), a sensor (2), an atomizing core component and a liquid storage component (3). The cigarette also has a containing shell, an auxiliary air inlet (4) is provided on the shell. The atomizing core component includes an electric heater (5) and a liquid permeating component (6). The electric heater (5) has a through hole (51), the liquid storage component (3) has a channel (31), and the sensor (2) is connected with the through hole (51) and the channel (31), and forms an airflow loop by the auxiliary air inlet. The liquid permeating component (6) in the atomizing core component of the cigarette is directly sleeved on the electric heater (5), so that the cigarette can adequately heat gasified smoke with uniform small drops, and the user can accept easily and the smoke can easily enter lung bubble and can be absorbed conveniently. The electric heater (5) and the liquid storage component (3) are connected with the through hole (51) and the channel (31), so that the smoke generated by atomizing process can be cooled under the push of airflow, and the absorbed smoke meets the taste of smoker. The cigarette has detachable split structure, so that the cigarette can exchange and carry conveniently.

Term
3.3 yearsleft in the term
Expires 28 January 2030.
- Priority
- Filed
- Granted
- Today
- Expires
14 claims: 3 independent, 11 dependent
- 1NOVEDAD DE LA INVENCIÓN INSTITUTO MF.ZICÁNO D; LA r'/ONS.-AN INOl rú:AL REIVINDICACIONES 5 1Un cigarrillo electrónico de atomización mejorado, que comprende una unidad de suministro de energía (1), un sensor (2), un componente de núcleo de atomización y un componente de almacenamiento de líquido (3), que comprende adicionalmente un alojamiento que contiene los componentes anteriores, una entrada de aire auxiliar (4) estando dispuesta en el alojamiento, un 10 extremo del alojamiento estando provisto con un orificio de succión de aire (a), en donde el componente de núcleo de atomización comprende un calentador eléctrico (5), el calentador eléctrico (5) atomiza líquido desde el componente de almacenamiento de líquido (3), caracterizado porque el componente de almacenamiento de líquido (3) internamente tiene un canal (31) a través del cual 15 fluye el gas atomizado, y la entrada de aire auxiliar (4), el sensor (2) y el orificio de succión de aire (a) forman una trayectoria de flujo de aire.
- 22- El cigarrillo electrónico de atomización de conformidad con la reivindicación 1, caracterizado además porque el componente de núcleo de atomización comprende un componente de permeación de líquido (6) que se 20 enfunda en el calentador eléctrico (5), un canal (51) a través del cual fluye gas se dispone en el componente de núcleo de atomización, y el canal (51) se hace de la estructura del calentador eléctrico (5).
- 3- El cigarrillo electrónico de atomización de conformidad con la INSTÍ7U ? ··7· :7'. ££ L*. ?ZO'’i¿DÁLi U I ,Jj c » 1/L reivindicación 1, caracterizado además porque el calentador eléctrico (5) del z' componente de núcleo de atomización se inserta directamente en el canal (31) del componente de almacenamiento de líquido (3), y el gas atomizado fluye directamente a través del canal (31).
- 45 4,- El cigarrillo electrónico de atomización de conformidad con la reivindicación 1, 2 ó 3, caracterizado además porque el componente de almacenamiento de líquido (3) se proporciona internamente con el canal (31) el cual es un canal hueco, un canal de agujero pasante, un canal anular o un canal con malla de sección transversal dispersa local o combinaciones de los mismos, a 10 través del cual fluye gas. 5, - El cigarrillo electrónico de atomización de conformidad con la reivindicación 4, caracterizado además porque el componente de núcleo de atomización comprende adicionalmente un componente de conducción de líquido (7) que se pone en contacto con el componente de permeación de líquido (6), y el 15 componente de conducción de líquido (7) se pone en contacto también con el componente de almacenamiento de líquido (3).
- 56, - El cigarrillo electrónico de atomización de conformidad con la reivindicación 5, caracterizado además porque el componente de conducción de líquido (7) se enfunda en el componente de permeación de líquido (6), una parte 20 de conducción (71) se extiende desde un extremo del componente de conducción de líquido en la dirección radial, y la parte de conducción (71) se pone en contacto con el componente de almacenamiento de líquido (3).
- 67, - El cigarrillo electrónico de atomización de conformidad con la reivindicación 6, caracterizado además porque el sensor (2) és un sensorde presión de aire o sensor de flujo de aire, el alojamiento comprende un primer alojamiento (8) y un segundo alojamiento (8’), la unidad de suministro de energía (1) y el sensor (2) se ubican en el primer alojamiento (8), el componente de núcleo 5 de atomización y el componente de almacenamiento de líquido (3) se ubican en el segundo alojamiento (8’), y la entrada de aire auxiliar (4) se dispone en un área del primer alojamiento (8) y/o el segundo alojamiento (8’) cerca del sensor.
- 78, - El cigarrillo electrónico de atomización de conformidad con la reivindicación 7, caracterizado además porque una abrazadera (9) se dispone en el 10 segundo alojamiento (8’), el componente de núcleo de atomización se fija en la abrazadera (9), y el calentador eléctrico (5) se conecta con la unidad de suministro de energía (1) y el sensor (2) e inicia a calentar o detiene el calentamiento de acuerdo con la situación de flujo de gas a través del sensor (2).
- 89, - El cigarrillo electrónico de atomización de conformidad con la 15 reivindicación 8, caracterizado además porque un componente de conexión de admisión de aire (10) y un anillo de electrodo (11) se disponen en la abrazadera (9), el componente de conexión de admisión de aire (10) y el anillo de electrodo (11) se conectan eléctricamente con dos cables del calentador eléctrico (5) respectivamente, el componente de conexión de admisión de aire (10) logra la 20 conexión eléctrica a través de la conexión con el sensor (2), el anillo de electrodo (11) se conecta eléctricamente con la unidad de suministro de energía (1) a través de la conexión del componente de conexión de admisión de aire (10) y el sensor (2) , el componente de conexión de admisión de aire (10) también tiene un venteo a.- ..-. · - · - i» \ /·... 11-iSi'Γ'?;·'; \%Γ,’Γ. La ':de aire (101), el sensor (2) se comunica con el venteo de aire (101), el agujero pasante (51) y el canal (31) y forma un circuito de flujo de aire con la entrada de aire auxiliar (4).
- 910.- El cigarrillo electrónico de atomización de conformidad con la 5 reivindicación 9, caracterizado además porque el primer alojamiento (8) y el segundo alojamiento (8’) se conectan a través de la conexión del componente de conexión de admisión de aire (10) y el sensor (2), y el componente de conexión de admisión de aire (10) y el sensor (2) se conectan por medio de empalme, roscas o sujeción. 10
- 1011,- El cigarrillo electrónico de atomización de conformidad con la reivindicación 9, caracterizado además porque un orificio de succión de aire (a) se dispone en el segundo alojamiento (8’), y el sensor (2) se comunica con el venteo de aire (101), el agujero pasante (51), el canal (31) y el orificio de succión de aire (a) y forma un circuito de flujo de aire con la entrada de aire auxiliar (4). 15
- 1112.- El cigarrillo electrónico de atomización de conformidad con la reivindicación 6, caracterizado además porque el alojamiento es un conjunto integrado, el extremo frontal del cual se proporciona con la entrada de aire auxiliar (4), y el sensor (2) se comunica con el venteo de aire (101), el agujero pasante (51), el canal (31) y el orificio de succión de aire (a) y forma un circuito de flujo de 20 aire con la entrada de aire auxiliar (4).
- 1213.- El cigarrillo electrónico de atomización de conformidad con la reivindicación 1, 2 ó 3, caracterizado además porque un componente de permeación de líquido (6) se pone en contacto con el componente de almacenamiento de líquido (3), el componente de núcleo de atomización se enfunda en el canal (31) del componente de almacenamiento de líquido (3), y la superficie periférica del componente de permeación de líquido (6) se acopla con la pared interna del canal (31).
- 1314, - El cigarrillo electrónico de atomización de conformidad con la reivindicación 5, caracterizado además porque el componente de almacenamiento de líquido (3) se hace de cerámica de micro-agujeros, cerámica espumada, fibra natural, fibra artificial o material metálico de espuma, el componente de permeación de líquido (6) se hace de fibra cerámica, fibra de cuarzo, fibra de vidrio, fibra de aramida, fibra común, papel, tela o material de tela no tejido, el calentador eléctrico (5) se forma por alambres de calentamiento eléctrico espiralmente devanados o se hace de película de calentamiento eléctrico dispuesta en la superficie interna del componente de permeación de líquido, y el calentador eléctrico formado por devanado en espiral o película de calentamiento eléctrico en la superficie interna del componente de permeación de líquido es hueco para formar el agujero pasante (51).
- 1415, - El cigarrillo electrónico de atomización de conformidad con la reivindicación 14, caracterizado además porque el espesor del componente de permeación de líquido (6) varía de 0.5 a 5 mm, y el diámetro del agujero pasante (51) varía de 0.5 a 4 mm.
Independent claims14
155 paragraphs in 22 sections, as filed
(54) Title: AN IMPROVED ELECTRONIC ATOMIZATION CIGARETTE. (54) Title: IMPROVED ATOMIZING ELECTRONIC CIGARETTE.
(57) Summary
The present invention relates to an improved atomization electronic cigarette, comprising a power supply unit (1), a sensor (2), an atomization core component and a liquid storage component (3), comprising additionally a housing containing the above components, an auxiliary air inlet (4) being provided in the housing, one end of the housing being provided with an air suction port (a), wherein the atomization core component comprises an electric heater (5), the electric heater (5) atomizes liquid from the liquid storage component (3), characterized in that the liquid storage component (3) internally has a channel (31) through which the atomized gas flows, and the auxiliary air inlet (4), the sensor (2) and the air suction port (a) form an air flow path.
(57) Abstract
An improved atomizing electronic cigarette has a power device (1), a sensor (2), an atomizing core component and a liquid storage component (3). The cigarette also has a containing Shell, an auxiliary air inlet (4) is provided on the Shell. The atomizing core component ineludes an electric heater (5) and a liquid permeating component (6). The electric heater (5) has a through hole (51), the liquid storage component (3) has a channel (31), and the sensor (2) is connected with the through hole (51) and the channel (31), and forms an airflow loop by the auxiliary air inlet. The liquid permeating component (6) in the atomizing core component of the cigarette is directly sleeved on the electric heater (5), so that the cigarette can adequately heat gasified smoke with uniform small drops, and the user can accept easily and the smoke can easily enter lung bubble and can be absorbed conveniently. The electric heater (5) and the liquid storage component (3) are connected with the through hole (51) and the channel (31), so that the smoke generated by atomizing process can be cooled under the push of airflow, and the absorbed smoke meets the taste of smoker. The cigarette has detachable split structure, so that the cigarette can exchange and carry conveniently.
Institute
Mexican Property
Industrial
PATENT TITLE NO. 337342 _SE_
M'CRFTAIUA Di. tCONQSnlA '' • '“s.
<img file="MX337342B_D0001.tif" />
Owner (s): RUYAN INVESTMENT (HOLDINGS) LIMITED
Address: Room 1101, 11 / F, China United Center, 28 Marble Road, North Point, Hong Kong,
CHINA
Name: AN IMPROVED ELECTRONIC ATOMIZATION CIGARETTE
Classification: IC 8: A24F47 / 00
Inventor (s): LIK HON
REQUEST resenta .MX / b / 2014/009245
Country:
CN January 2010
Divisional Patent Number: 322548 *
PRIORITY c
Date:
<img file="MX337342B_D0002.tif" />
Number:
February 2009, 200920001296.3 <sup>:</sup> . ’ · · <sup>1</sup>1
Validity: Twenty years
Expiration date; January 28, 2030
The reference patent is granted on the basis of the 1st, 2nd fraction V, 6th fraction III, and 59 of the Industrial Property Law c<sup>D</sup>o] of the "information with article 23 of t he property of the PropertyhrfSu! ada as of the filing date of the sohiStdif
- to go
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This patent has a validity of twenty non-renewable years, and will be subject to the payment of the fee to keep the visionaries on; &
β article # V fraction * IH and 7 ° bis 2 of the 1 / 19S6, 12/26/1997, 11 1/2012); Articles 1, 3 | ustrial (DOF 14/12/1999, reí i 30 del Estatura
Qiin subscribes to this Title lo Industrial Prapledad (Official Gazette of 26B1 / 2004, 06/16/2005, 01/25/2006, 01 nao a), 4th and 12th * section »
0107 / 2002,15 / 07/2004, 28 / ®72004 and zf) 9/2007); articles 1, 3, 4, 5<sup>€</sup> fraction V, subsection a), 16 fractions I or ^ mmimmn ^ W Property and 5th subsection a) of the Agreement that delegates powers to the Deputy Directors General, Coordinator, Divisional Directors, Heads of Regional Offices, Divisional Deputy Directors, Departmental Coordinators and other subordinates of the Mexican Institute of Indu strial Property. (DOF 12/15/1999, amended on 02/04/2000, 07/29/2004, 08/04/2004 and 09/13/2007).
i with foundation: Federation (DOF 05 / 2009,06 / 01/2010, 18/1 ί Regulation of the Institute Me:
hey from '05 / 1999, action V mado el rganico ¡7); 1st, 3rd
Issue Date: February 26, 2016
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AN IMPROVED ELECTRONIC ATOMIZATION CIGARETTE
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FIELD OF THE INVENTION
The invention relates to an atomizing electric cigarette, in particular to an improved atomizing electric cigarette.
BACKGROUND OF THE INVENTION
As a cigarette substitute, electronic atomization cigarettes have occupied a large percentage of the market for smoking substitute products, meanwhile, the improvement and maturity of electronic cigarette atomization technology is a prerequisite for the widespread application and acceptance of electronic cigarettes.
At present, the existing atomizing electronic cigarettes still have many problems and deficiencies, for example poor atomization, large liquid droplets in the final atomized smoke, non-uniform smoke caused by the different sizes of the liquid droplets, too much humidity in smoke, poor mouthfeel, etc. In some conditions, the smoke is at a high temperature due to insufficient cooling and will cause discomfort.
The above problems cause significant differences for smokers between real cigarettes and electronic cigarettes, which is not conducive to smokers selecting electronic cigarettes instead of
BRIEF DESCRIPTION OF THE INVENTION
IMPI
MEXICAN INSTITUTE OF INDUSTRIAL PROPERTY
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the real ones.
To overcome various deficiencies in the prior art, some embodiments of the invention provide an improved atomizing electronic cigarette having a liquid permeation component in an atomizer that is directly sheathed in an electric heater. The cigarette liquid stored in a liquid storage component permeates into the liquid permeation component. The electric heater interacts with the liquid permeation component so that the cigarette liquid is sufficiently atomized with smaller and more uniform atomized or vaporized droplets. In another aspect, by communication, the through holes and channels provided and arranged in the electric heater and the liquid storage component, the large atomized droplets can adhere to the liquid storage component under the pressure of air flow, so that inhaled smoke is more akin to the feel of real cigarettes to more adequately satisfy the smoker's taste.
The main technical solution of an embodiment of the invention is as follows: an improved atomizing electronic cigarette is provided, comprising a power supply unit, a sensor, an atomizing core component and a liquid storage component, additionally comprises a housing containing the components
MEXICAN INSTITUTE OF PROPERTY
INDUSTRIAL <sup>v</sup> '' above. An auxiliary air inlet is arranged in the housing, one end of the housing is provided with an air suction port. The atomization core component comprises an electric heater that can atomize liquid from the liquid storage component. The liquid storage component can have an internal channel through which atomized gas can flow, and the auxiliary air inlet, sensor, and suction nozzle can form an air flow circuit. The through hole through which gas flows can be formed from an internal channel that has channel walls in the liquid storage component, so that the atomized gas directly contacts the core of the liquid storage component at Through the channel walls and large particles of atomized gas can be absorbed due to contact with the liquid storage container. Also, the sensor can communicate with the channel to form an air flow circuit with the auxiliary air inlet.
The invention also employs the following associated technical solution:
the atomization core component comprises a liquid permeation component that is sheathed in an electric heater, a channel or through hole through which gas flows is arranged in the atomization core component, and the channel or through hole is made of the structure of the electric heater and liquid permeation component.
The electric heater of the atomization core component can be directly inserted or stretched directly into the channel of the liquid storage component, so that the atomized gas flows directly to. «Ü-Jfc'iüM.-S - .i. · ;; ··,<sub>to</sub>_... ___________
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through the channel. '—--—
The liquid storage component can be provided internally with a hollow channel, a through-hole channel, an annular channel, or a cross section of sparse mesh channels or combinations thereof, through which gas flows.
The atomization core component may additionally comprise a liquid conduction or transport component in contact with the liquid permeation component, and the liquid storage component.
The liquid conveying or conveying component may be sheathed in the liquid permeating component, and include a conducting portion that extends from one end of the liquid conducting component in the radial direction, to contact the storage component of liquid.
The sensor can be an air pressure sensor or air flow sensor. The housing may comprise a first housing and a second housing, the power device and sensor are located in the first housing, the atomization core component and the liquid storage component are located in the second housing, and the inlet of Auxiliary air is arranged in an area of the first housing and / or the second housing near the sensor.
A clamp is arranged in the second housing, where the atomizing core component is fixed in the clamp. The heater
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MEXICAN INSTITUTE OF THE rKOFIEVAP
INDUSTRIAL
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Electrical connects to the power supply unit and sensor and starts heating or stops heating according to the situation of gas flow through the sensor.
An air intake connection component and an electrode ring are arranged in the clamp, the air intake connection component and the electrode ring are electrically connected with two wires of the electric heater respectively. The air intake connection component achieves electrical connection through connection to the sensor. The electrode ring is electrically connected to the power device through the connection of the air intake connection component and the sensor. The air intake connection component also has an air vent, and the sensor communicates with the air vent. The through hole and channel form an air flow circuit with the auxiliary air inlet.
The first housing and the second housing are connected through the connection of the air intake connection component and the sensor, and the air intake connection component and the sensor are connected by splicing or connecting, threading or clamping .
An air suction port is arranged in the second housing, and the sensor communicates with the air vent, through hole, channel, and air suction port and forms an air flow circuit with the air inlet assistant.
The housing can be a set or integrated, the front end of which is provided with the auxiliary air inlet, and the sensor communicates with
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MEXICAN INSTITUTE
OF THE PROPERTY OR «seRFííA¿><sup>and</sup>
INDUSTRIAL - air vent, through hole, channel and suction port snub and forms an air flow circuit with auxiliary air inlet.
The liquid permeation component may be in contact with the liquid storage component. The atomizing core component can be sheathed in the channel of the liquid storage component. The peripheral surface of the liquid permeation component can be coupled with the internal wall of the channel.
The liquid storage component can be made of micro-hole ceramic, foamed ceramic, natural fiber, artificial fiber, or metallic foam material. The liquid permeation component can be made of ceramic fiber, quartz fiber, glass fiber, aramid fiber, common fiber, paper, cloth, or non-woven fabric material. The electric heater can be formed by spirally wound electric heating wires or is made of electric heating film arranged on the inner surface of the liquid permeation component, and the electric heater formed by spiral winding or electric heating film on the surface Internal of the liquid permeation component can be hollow to form the through hole.
The thickness of the liquid permeation component can be
0.5 to 5mm, and the diameter of the through hole can be 0.5 to 4mm.
Zeolite particles can be added to the liquid permeation component.
MEXICAN INSTITUTE
Aspects of the invention may have the following features
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charities:
(1) the liquid permeation component in the atomization core component can be sheathed directly into the electric heater, so that the cigarette liquid in the liquid storage component can permeate into the liquid permeation component. The thickness of the liquid permeation component can be designed to be only 1mm, so that the cigarette liquid permeated in the liquid permeation component can be more easily atomized, vaporized or gasified by the electric heater, for example , when the cigarette liquid in the liquid permeation component is gasified after reaching the boiling point when the electric heater is heated. As a result, the gasification of the liquid is more efficient. For example, the droplets are smaller and more uniform, they have a diameter between 0.04 micrometers to 0.8 micrometers. Such vapor is much more similar to real cigarette smoke in terms of degree of dispersion and appearance. Such vapor is more readily accepted by the lung socket and can be conveniently absorbed. Meanwhile, as the co-communicating through holes and channels are arranged in the electric heater and the liquid storage component, the atomized gas can pass through the liquid storage component smoothly. And large atomized droplets can be absorbed into, or adhere to, the liquid storage component under air flow pressure, a common problem in the prior art where the
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MEXICAN INSTITUTE OF PROPERTY
INDUSTRIAL
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steam has large particles is passed directly to the user. Consequently, current modalities produce inhaled smoke that more closely satisfies the smoker's taste.
(2) In another solution of some embodiments of the invention, the atomized core component is sheathed in the channel of the liquid storage component, so that the liquid permeation component is directly contacted with the storage component of liquid, Cigarette liquid can permeate and conduct sufficiently and quickly to more efficiently produce vapor or atomized smoke. Furthermore, the structure is simple and space-saving, so that the volume of the full atomizing electronic cigarette can be less.
(3) In another embodiment of the invention, the electronic cigarette is designed to be a separable and changeable divided structure, so that the change of components can be achieved simply by separating and re-assembling the first and second housing. Such an electronic cigarette is more practical to carry since it is also more portable.
BRIEF DESCRIPTION OF THE FIGURES
FIG. 1 is a side sectional view of an electronic cigarette according to the invention, showing the first housing separated from the second housing;
FIG. 2 is a side sectional view of an electronic cigarette according to the invention, showing the first housing connected to the second housing;
FIG. 3 is a side sectional view of an atomization core component in an electronic cigarette according to the invention;
FIG. 4 is a top view of an atomization core component in an electronic cigarette according to the invention;
FIG. 5 is an electrical connection block diagram for forming a closed circuit between the components of an electronic cigarette according to the invention, and
FIG. 6 is a side sectional view of an electronic cigarette according to another embodiment of the invention.
DETAILED DESCRIPTION OF THE INVENTION
The invention will be described in detail later in conjunction with the figures.
As shown in Fig. 1 to Fig. 5, the invention provides an improved atomizing electronic cigarette, comprising an energy device 1, a sensor 2, an atomizing core component and a liquid storage component 3 , which additionally comprises a housing containing the above components. An auxiliary air inlet 4 is arranged in an area of the housing close to the sensor 2. The core component of
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INDUSTRIAL,, atomization comprises an electric heater 5 and a liquid permeation component 6 sheathed in the electric heater 5. The electric heater 5 is of a hollow structure and has a through hole 51 through which gas flows. Liquid storage component 3 internally has a channel 31 through which gas flows. The channel may be a hollow channel, a through hole channel, an annular channel, or a channel with a locally dispersed cross-sectional mesh or combinations thereof, the purpose of which is to cause the atomized gas passing through the channel to contact with the liquid storage core of the liquid storage component, and making the liquid storage component 3 in coordination with the liquid permeation component 6 permeate the cigarette liquid to the liquid permeation component 6. Furthermore, the sensor 2 communicates with the through hole 51 and the channel 31 and forms an air flow circuit with auxiliary air inlet 4.
In the embodiment, as shown in Fig. 1 to Fig. 3, the atomization core component additionally comprises a liquid conduction component 7 which is brought into contact with the liquid permeation component 6, and with the component liquid storage 3. The liquid conduction component 7 is sheathed into the liquid permeation component 6, with a conduction part 71 extending from one end of the liquid conduction component in the radial direction, and contacting the liquid storage 3. As a result, the cigarette liquid in the liquid storage component 3 is
<img file="MX337342B_D0012.tif" />
MEXICAN INSTITUTE DF THE PROPERTY
INDUSTRIAL
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Absorbs and permeates the liquid permeation component. In order to make the liquid conduction component 7 mate with the liquid permeation component 6 more closely to improve the conductivity of the liquid, a clamping sleeve 12 can be sheathed on the liquid conduction component 7.
As shown in Fig. 1, sensor 2 can be an air pressure sensor or an air flow sensor. In the mode, an air flow sensor is used. The housing comprises a first housing 8 and a second housing 8 ', the power supply unit 1 and the sensor 2 are located in the first housing 8, the atomization core component and the liquid storage component 3 are located in the second housing 8 ', and the auxiliary air inlet 4 is arranged in an area of the first housing 8 and / or the second housing 8' close to the sensor 2. In the embodiment, the auxiliary air inlet 4 is arranged in the first housing 8 and is located in an area close to the sensor 2. The power supply unit 1 is a battery that can be a rechargeable battery or a disposable battery.
A clamp 9 is arranged in the second housing 8 ', the atomization core component is fixed in the clamp 9, and the electric heater 5 connects with the power device 1 and the sensor 2 and starts heating or stops heating according to the gas flow situation detected by the sensor 2. An air intake connection component 10 and an electrode ring 11 are arranged in the clamp 9. The air intake connection component 10 and the electrode ring 11 are connected
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electrically with two wires from the electric heater 5 respectively. The air intake connection component 10 achieves an electrical connection through the connection to the sensor 2. The electrode ring 11 is electrically connected to the power device 1 through the connection of the air intake connection component 10 and sensor 2. A complete closed loop is formed, as shown in Fig. 4. The function of the sensor is to turn the complete circuit on or off according to the gas flow. When the user inhales, the gas inside the electronic cigarette flows. At this time, the sensor turns on the circuit for the electric heater 5 to start heating. When the user stops inhaling, the gas stops flowing, and the sensor shuts off the circuit to cause the electric heater 5 to stop heating. An electrode ring post 13 corresponding to electrode ring 10 is arranged in the opening of first housing 8. A contact portion 131 extends from electrode ring post 13 in the axial direction. Electrode ring pole 13 connects to power device 1. When the first housing 8 and the second housing 8 'are connected, the contact part 131 is inserted into the second housing 8' and makes contact with the electrode ring 11, to form a complete closed circuit.
In this embodiment, the first housing 8 and the second housing 8 'are connected through the connection of the air intake connection component 10 and sensor 2, and the air intake connection component 10 and sensor 2 are connected connect by splicing or connecting, threading or clamping. Through such a separable and changeable divided structure, the change of the ί
MEXICAN INSTITUTE
OE THE PROPERTY
INDUSTRIAL
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Components can be achieved simply by separating and reassembling the first housing 8 and the second housing 8 ', so that it is practical to carry and use the electronic cigarette. This embodiment describes a connection structure by means of threads.
As shown in Fig. 1, the air intake connection component 10 also has an air vent 101, the sensor 2 communicates with the air vent 101, the through hole 51 and the channel 31 and forms a circuit air flow with auxiliary air inlet 4. An air suction port a is arranged in the second housing 8 ', and the sensor 2 communicates with the air vent 101, the through hole 51, the channel 31 and the air suction port a and forms a flow circuit. air with auxiliary air inlet 4.
The liquid storage component 3 is made of liquid storage core materials such as micro-hole ceramic, foamed ceramic, natural fiber, artificial fiber, or foam metal material. Liquid permeation component 6 is made of ceramic fiber, quartz fiber, glass fiber, aramid fiber, common fiber, paper, cloth, or non-woven fabric material. The thickness of the liquid permeation component 6 is 0.5 to 5 mm. The electric heater 5 is formed by spirally wound electric heating wires, which forms the through hole 51. The diameter of the through hole 51 can be 0.5 to 4 mm. In this embodiment, the thickness of the liquid permeation component 6 is 1 mm, and the diameter of the through hole 51 is 1 mm.
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The liquid permeation component 6 in the atomization core component is directly sheathed in the electric heater 5. The cigarette liquid in the liquid storage component 3 is conveyed and permeates to the liquid permeation component 6 by the liquid conduction 7. The thickness of the liquid permeation component 6 is 1 mm. As a result, the permeated cigarette liquid can be fully gasified by the electric heater 5 more easily. When the user inhales, since the sensor 2 communicates with the air vent 101, the through hole 51, the channel 31 and the air suction port a form an air flow circuit with the auxiliary air inlet 4. When gas flow is generated within the electronic cigarette, the sensor 3 turns on the circuit, the electric heater 5 begins to heat to cause the cigarette liquid in the liquid permeation component 6 to be gassed after reaching the boiling point. At the same time, because the through hole 51 and the channel 31 of the electric heater 5 and the liquid storage component 3 are in communication, the smoke generated during the atomization process can be further cooled under the thrust of the air flow and finally inhale into the mouth cavity of the user through the air suction port a.
In another preferred embodiment of the invention, as shown in
FIG. 6, the liquid permeation component 6 is brought into contact with the liquid storage component 3. The atomizing core component is sheathed in the channel 31 of the liquid storage component 3, and the peripheral surface of the permeation component liquid 6 is
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<img file="MX337342B_D0017.tif" />
mates with the inner wall of channel 31.
The liquid storage component 3 can be made of micro-hole ceramic, foamed ceramic, natural fiber, artificial fiber, or foam metal material. Liquid permeation component 6 can be made of ceramic fiber, quartz fiber, glass fiber, aramid fiber, common fiber, paper, cloth, or non-woven fabric material. The thickness of the liquid permeation component 6 varies from 0.5 to 5 mm. The electric heater 5 is formed by spirally wound electric heating wires to form a through hole 5. The diameter of the through hole 51 can be 0.5 to 4 mm. In this embodiment, the thickness of the liquid permeation component 6 is 1 mm, and the diameter of the through hole 51 is 1 mm.
In this embodiment, the atomizing core component is integrally sheathed in the channel 31 of the liquid storage component 3, so that the spherical surface of the liquid permeation component 6 is directly in contact with the internal wall of the channel 31 of the liquid storage component 3. Because the contact area is large, the permeation and conduction of the cigarette liquid are sufficient and fast, and the atomized smoke is generated efficiently. At the same time, the structure is simple and space-saving, to minimize the size of the atomizing electronic cigarette.
In other embodiments, an improved atomizing electronic cigarette is provided comprising an energy device (1), a sensor (2), an atomizing core component and a storage component for
<img file="MX337342B_D0018.tif" />
liquid (3), additionally comprises a housing that contains the above components, an auxiliary air inlet (4) that is arranged in the housing. One end of the housing is provided with an air suction port, characterized in that the atomization core component comprises an electric heater (5), the electric heater (5) atomizes liquid into a liquid storage component (3). The liquid storage component (3) internally has a channel (31) through which the atomized gas flows, and the auxiliary air inlet (4), the sensor (2) and the suction nozzle form a flow circuit of air.
In other aspects, the atomization electronic cigarette can be characterized in that the atomization core component comprises a liquid permeation component (6) that is sheathed in the electric heater (5), a channel (51) through which the Flowing gas is arranged in the atomization core component, and the channel (51) is made from the structure of the electric heater (5).
In other aspects, the atomization electronic cigarette can be characterized in that the electric heater (5) of the atomization core component is inserted directly into the channel (31) of the liquid storage component (3), and the atomized gas directly flows through channel (31).
In other aspects, the atomizing electronic cigarette is characterized in that the liquid storage component (3) is provided internally with the channel (31) which is a hollow channel, a channel of
<img file="MX337342B_D0019.tif" />
<img file="MX337342B_D0020.tif" />
INSTITUTE ΧϊνΛΝΟ
THE PROFUGA OR INDUSTRIAL
<img file="MX337342B_D0021.tif" />
through hole, an annular channel or a channel with a local dispersed cross-sectional mesh or combinations thereof, through which the gas flows.
In other aspects, the atomization electronic cigarette is characterized in that the atomization core component additionally comprises a liquid conduction component (7) which is brought into contact with the liquid permeation component (6), and with the liquid storage (3).
In other aspects, the atomizing electronic cigarette is characterized in that the liquid conduction component (7) is sheathed in the liquid permeation component (6), a conduction part (71) extends from one end of the conduction component of liquid in the radial direction, and the conduction part (71) is brought into contact with the liquid storage component (3).
In other aspects, the atomizing electronic cigarette is characterized in that the sensor (2) is an air pressure sensor or air flow sensor, the housing comprises a first housing (8) and a second housing (8 '), the power device (1) and sensor (2) are located in the first housing (8), the atomization core component and the liquid storage component (3) are located in the second housing (8 '), and the auxiliary air inlet (4) are arranged in an area of the first housing (8) and / or the second housing (8 ') close to the sensor.
In other aspects, the atomizing electronic cigarette is characterized in that a clamp (9) is arranged in the second housing (8 '), the \ * Η S j ν \ L <sup>V</sup> Atomizing core component is fixed on the clamp (9), and the electric heater (5) connects with the power device (1) and the sensor (2) and starts heating or stops heating according to the situation of gas flow through sensor (2).
In other aspects, the atomizing electronic cigarette is characterized in that an air intake connection component (10) and an electrode ring (11) are arranged in the clamp (9), the air intake connection component (10). ) and the electrode ring (11) are electrically connected with two wires of the electric heater (5) respectively, the air intake connection component (10) achieves the electrical connection through the connection with the sensor (2), the electrode ring (11) is electrically connected to the power device (1) through the connection of the air intake connection component (10) and the sensor (2), the air intake connection component ( 10) also has an air vent (101), the sensor (2) communicates with the air vent (101), the through hole (51) and the channel (31) and forms an air flow circuit with the auxiliary air inlet (4).
In other aspects, the atomizing electronic cigarette is characterized in that the first housing (8) and the second housing (8 ') are connected through the connection of the air intake connection component (10) and the sensor (2) , and the air intake connection component (10) and the sensor (2) are connected by means of a joint or connection, threads or fastening.
In other aspects, the atomizing electronic cigarette is characterized in that an air suction hole (a) is arranged in the second
<img file="MX337342B_D0022.tif" />
housing (8 '), and the sensor (2) communicates with the air vent (101), e? through hole (51), the channel (31) and the air suction hole (a) and form an air flow circuit with the auxiliary air inlet (4).
In other aspects, the atomizing electronic cigarette is characterized in that the housing is an integrated assembly, the front end of which is provided with the auxiliary air inlet (4), and the sensor (2) communicates with the air vent ( 101), the through hole (51), the channel (31) and the air suction hole (a) and form an air flow circuit with the auxiliary air inlet (4).
In other aspects, the atomizing electronic cigarette is characterized in that the liquid permeation component (6) is brought into contact with the liquid storage component (3), the atomization core component is sheathed in the channel (31) of the liquid storage component (3), and the peripheral surface of the liquid permeation component (6) mates with the internal wall of the channel (31).
In other aspects, the atomizing electronic cigarette is characterized in that the liquid storage component (3) is made of micro-hole ceramic, foamed ceramic, natural fiber, artificial fiber, or metallic foam material, the liquid permeation component (6) It is made of ceramic fiber, quartz fiber, glass fiber, aramid fiber, common fiber, paper, cloth or non-woven cloth material, the electric heater (5) is formed by spirally wound electric heating wires or is made of electric heating film arranged on the Inner surface of the component of υ · τ, Γί t
- d *. 't<sup>x</sup>xM
ÍNSTi i j'l ·. '·' V <
> PirDAD liquid permeation, and the electric heater formed by winding crease electric heating film on the inner surface of the liquid permeation is hollow to form the through hole (51).
In other aspects, the atomizing electronic cigarette is characterized in that the thickness of the liquid permeation component (6) varies from 0.5 to 5 mm, and the diameter of the through hole (51) varies from 0.5 to 4 mm.
In other aspects, the atomizing electronic cigarette is characterized in that zeolite particles are added in the liquid permeation component (6).
V Τ 't'<sup>1</sup> ΊΪ
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Contents22
24 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9 Sheet 10 Sheet 11 Sheet 12 Sheet 13 Sheet 14 Sheet 15 Sheet 16 Sheet 17 Sheet 18 Sheet 19 Sheet 20 Sheet 21 Sheet 22 Sheet 23 Sheet 24
88 members in 20 offices
Priority claims10
| Document | Office | Kind | Date |
|---|---|---|---|
| 200920001296 | China | U | |
| 200920001296 | China | U | |
| 2009200012963 | China | – | |
| 2010000125 | China | W | |
| 2010000125 | China | W | |
| 2009200012963 | – | – | – |
| CN1000125 | – | – | – |
| CN20092001296U | – | – | – |
| CN2009201296U | – | – | – |
| WO2010CN00125 | – | – | – |
Members88
| Document | Office | Kind | |
|---|---|---|---|
| CN201379072Y | China | Y | |
| CA2752255A1 | Canada | A1 | |
| CA2884987A1 | Canada | A1 | |
| WO2010091593A1 | World Intellectual Property Organization (WIPO) | A1 | |
| IL214538A0 | Israel | A0 | |
| IL214538D0 | Israel | D0 | |
| AU2010213270A1 | Australia | A1 | |
| SG174233A1 | Singapore | A1 | |
| EP2404515A1 | European Patent Office (EPO) | A1 | |
| EA201171031A1 | Eurasian Patent Organization (EAPO) | A1 | |
| MX2011008503A | Mexico | A | |
| KR20120012961A | Republic of Korea | A | |
| CN102387719A | China | A | |
| US2012111347A1 | United States of America | A1 | |
| JP2012517229A | Japan | A | |
| US2012279512A1 | United States of America | A1 | |
| ZA201106325B | South Africa | B | |
| ZA201206458B | South Africa | B | |
| EP2404515A4 | European Patent Office (EPO) | A4 | |
| NZ595117A | New Zealand | A | |
| EG26588A | Egypt | A | |
| US8689805B2 | United States of America | B2 | |
| AU2010213270B2 | Australia | B2 | |
| AU2014206215A1 | Australia | A1 | |
| EP2772149A2 | European Patent Office (EPO) | A2 | |
| US2014305453A1 | United States of America | A1 | |
| EP2772149A3 | European Patent Office (EPO) | A3 | |
| SG2014008262A | Singapore | A | |
| CA2752255C | Canada | C | |
| EP2404515B1 | European Patent Office (EPO) | B1 | |
| ES2551779T3 | Spain | T3 | |
| DK2404515T3 | Denmark | T3 | |
| KR101593728B1 | Republic of Korea | B1 | |
| KR20160017667A | Republic of Korea | A | |
| MX337342BThis record | Mexico | B | |
| PL2404515T3 | Poland | T3 | |
| JP5877066B2 | Japan | B2 | |
| BRPI1008569A2 | Brazil | A2 | |
| CN102387719B | China | B | |
| US9320300B2 | United States of America | B2 | |
| JP2016073316A | Japan | A | |
| US2016213067A1 | United States of America | A1 | |
| AU2014206215B2 | Australia | B2 | |
| EA024396B1 | Eurasian Patent Organization (EAPO) | B1 | |
| HUE028292T2 | Hungary | T2 | |
| JP6146788B2 | Japan | B2 | |
| KR20170070269A | Republic of Korea | A | |
| US2017172213A1 | United States of America | A1 | |
| CA2884987C | Canada | C | |
| JP2017153483A | Japan | A | |
| KR101813457B1 | Republic of Korea | B1 | |
| EA201690438A2 | Eurasian Patent Organization (EAPO) | A2 | |
| KR20180000347A | Republic of Korea | A | |
| EA201690438A3 | Eurasian Patent Organization (EAPO) | A3 | |
| US2018184719A1 | United States of America | A1 | |
| KR101968390B1 | Republic of Korea | B1 | |
| US10383366B2 | United States of America | B2 | |
| US10477898B2 | United States of America | B2 | |
| KR20190132577A | Republic of Korea | A | |
| EP2772149B1 | European Patent Office (EPO) | B1 | |
| US10588353B2 | United States of America | B2 | |
| JP2020072730A | Japan | A | |
| US2020146348A1 | United States of America | A1 | |
| EP3677131A1 | European Patent Office (EPO) | A1 | |
| EA035753B1 | Eurasian Patent Organization (EAPO) | B1 | |
| PL2772149T3 | Poland | T3 | |
| BRPI1008569B1 | Brazil | B1 | |
| EA202091010A2 | Eurasian Patent Organization (EAPO) | A2 | |
| EA202091010A3 | Eurasian Patent Organization (EAPO) | A3 | |
| ES2806687T3 | Spain | T3 | |
| US2021112863A1 | United States of America | A1 | |
| KR102267469B1 | Republic of Korea | B1 | |
| KR20210076180A | Republic of Korea | A | |
| US11044944B2 | United States of America | B2 | |
| JP6977071B2 | Japan | B2 | |
| JP2022020770A | Japan | A | |
| EP3677131B1 | European Patent Office (EPO) | B1 | |
| PL3677131T3 | Poland | T3 | |
| ES2934512T3 | Spain | T3 | |
| KR20230058537A | Republic of Korea | A | |
| JP7351884B2 | Japan | B2 | |
| JP2023160994A | Japan | A | |
| US11805816B2 | United States of America | B2 | |
| US2024108068A1 | United States of America | A1 | |
| MX389897B | Mexico | B | |
| JP7660799B2 | Japan | B2 | |
| US12274301B2 | United States of America | B2 | |
| KR102810189B1 | Republic of Korea | B1 |
Numbers
- Publication
- 337342
- Publication, DOCDB
- 337342
- Publication, EPODOC
- MX337342
- Application
- 2014009245
- Application, DOCDB
- 2014009245
- Application, EPODOC
- MX20140009245
Titles2
- Spanish
- UN CIGARRILLO ELECTRONICO DE ATOMIZACION MEJORADO.
- English
- IMPROVED ATOMIZING ELECTRONIC CIGARETTE.
Classification
- CPC, 17
- A24F47/00
- A24F40/46
- A24F40/40
- A24F40/10
- A61M11/041
- A61M15/06
- A61M2016/0024
- A61M2205/8206
- A61M11/042
- H05B3/0014
- A24F40/44
- A24F40/42
- A24F40/51
- A24F40/485
- A24F40/20
- H05B1/0202
- H05B3/06
- IPC, 5
- A24F47 00
- A24F13 00
- A24F17 00
- A24F40 10
- A24F40 46