WO2020056827A1 - Corps de stockage d'e-liquide à réseau tridimensionnel inorganique, dispositif d'atomisation et cigarette électronique - Google Patents

Corps de stockage d'e-liquide à réseau tridimensionnel inorganique, dispositif d'atomisation et cigarette électronique Download PDF

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Publication number
WO2020056827A1
WO2020056827A1 PCT/CN2018/110736 CN2018110736W WO2020056827A1 WO 2020056827 A1 WO2020056827 A1 WO 2020056827A1 CN 2018110736 W CN2018110736 W CN 2018110736W WO 2020056827 A1 WO2020056827 A1 WO 2020056827A1
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WO
WIPO (PCT)
Prior art keywords
inorganic
oil storage
dimensional network
storage body
dimensional
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Application number
PCT/CN2018/110736
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English (en)
Chinese (zh)
Inventor
高鞠
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苏州晶品新材料股份有限公司
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Publication of WO2020056827A1 publication Critical patent/WO2020056827A1/fr

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    • A24F47/008

Definitions

  • the present invention relates to the technical field of electronic cigarettes, and in particular, to an inorganic three-dimensional network oil storage body, and an atomizing device and an electronic cigarette using the inorganic three-dimensional network oil storage body.
  • An electronic cigarette is an electronic product that mimics cigarettes. It converts nicotine and the like into steam by means of atomization and the like for users to inhale to achieve a function similar to that of traditional cigarettes.
  • Some electronic cigarettes mainly include: battery components, atomizers and cigarette bombs.
  • the battery assembly includes a lithium battery and a control circuit, and the atomizer includes a heating body.
  • the heating body atomizes the smoke liquid contained in the bomb under the power of the battery assembly for users to inhale. In this way, the problem of simultaneous release of harmful substances such as tar and carbon monoxide during the combustion of traditional cigarettes is overcome.
  • Chinese patent discloses an electronic cigarette, which includes a smoke bomb tube and an atomizing component.
  • the atomizing component is fixed in the smoke bomb tube.
  • the atomizing assembly includes a reservoir, a liquid-conducting medium, and a heating element.
  • the liquid reservoir has a liquid storage cavity and a liquid outlet for storing smoke liquid, and the liquid outlet is in communication with the liquid storage cavity.
  • the liquid-conducting medium is a porous liquid-conducting material and is connected to the liquid outlet.
  • the heating element is fixed in the smoke tube and there is a gap with the liquid-conducting medium.
  • Chinese patent discloses an atomizer including a smoke bomb, a base assembly detachably connected to the smoke bomb, and an atomizing head mounted on the base assembly,
  • the cartridge includes a flue communicating with the airflow of the atomizing head, and the cartridge is axially movable between the cartridge and the atomizing head.
  • the atomizing head is in fluid communication or cut off, and when the smoke bomb is in fluid communication with the atomizing head, the flue protrudes from the atomizer body for users to inhale.
  • the present invention aims to provide an inorganic three-dimensional network oil storage body, and an atomization device and an electronic cigarette using the inorganic three-dimensional network oil storage body, so as to overcome the shortcomings in the prior art.
  • An inorganic three-dimensional network oil storage body which is constructed by one-dimensional inorganic fiber filaments in a three-dimensional space by weaving;
  • the gaps in the inorganic three-dimensional network oil storage body are interconnected with each other.
  • the corresponding average distance between adjacent one-dimensional inorganic fiber filaments in the X, Y, and Z directions is a, b, c
  • the diameter of the one-dimensional inorganic fiber filament is q>
  • the size of q> is 0.01 [ xm ⁇ 100 [ xm, the ratio of a, b, c and q>
  • the size of q> is The ratio of a, b, c and q> is from 0.1 to 100: 1.
  • the one-dimensional inorganic fiber filaments are formed into a two-dimensional sheet by weaving, and the two-dimensional sheet forms the inorganic three-dimensional network oil storage body in an ordered structure.
  • the two-dimensional sheet is a layered body, and the layered body forms the inorganic three-dimensional network oil storage body by winding.
  • the radius of the coiling rate of the inorganic three-dimensional network oil storage body is: 100 (Vm ⁇ 5000 (Vm.
  • the two-dimensional sheet is a hollow cylinder, and a plurality of the cylinders are coaxially nested to form the inorganic three-dimensional network oil storage body.
  • the two-dimensional sheet is a layered body, and a plurality of the layered bodies are stacked to form the inorganic three-dimensional network oil storage body.
  • the upper and lower surfaces of the layered body are flat, or the upper surface of the layered body is concave, and the lower surface is convex, or the layered body
  • the upper and lower surfaces of the body are wavy surfaces.
  • the two-dimensional sheet is a layered body, and the layer The shaped body forms the inorganic three-dimensional network oil storage body by folding.
  • the two-dimensional sheet is a columnar body, and a plurality of the columnar bodies are aligned in the same direction to form the inorganic three-dimensional network oil storage body.
  • a plurality of the columnar bodies are arranged in a spiral manner in the same direction to form the inorganic three-dimensional network oil storage body, or a plurality of the columnar bodies are in the same direction in a radiation manner. Arranged to form the inorganic three-dimensional network oil storage body.
  • the one-dimensional inorganic fiber filament is a nanometer-scale high-temperature-resistant inorganic fiber.
  • the one-dimensional inorganic fiber filament is selected from oxides, nitrides, and carbides.
  • the oxide is aluminum oxide or silicon oxide or titanium oxide
  • the nitride is aluminum nitride or boron nitride or silicon nitride
  • the carbonization is Silicon carbide
  • the hot-melt temperature of the one-dimensional inorganic fiber filament is
  • An atomization device includes: a heating body and the above-mentioned inorganic three-dimensional network oil storage body that conducts heat with the heating body.
  • the heating body includes a heating cylinder and a resistance film, the heating cylinder is wound from a flexible substrate, or the heating cylinder is a cylindrical ceramic, glass, or crystal
  • the resistance film is attached to an inner wall of the heating cylinder
  • the inorganic three-dimensional network oil storage body is filled in an internal space of the heating cylinder and is in contact with the resistance film
  • the heating body includes a heating tube and a resistance wire, the heating tube is wound by a flexible substrate, or the heating tube is one of a cylindrical ceramic, glass, and crystal, and the resistance wire is attached to the On the inner side wall of the heating cylinder, the inorganic three-dimensional network oil storage body is filled in the internal space of the heating cylinder and is in contact with the resistance wire.
  • the flexible substrate is one or more of polyimide, polyetheretherketone, Teflon or ceramic.
  • the heating body further includes a heating tube or a resistor wound thereon
  • a heat conducting rod of wire, the heating pipe or a heat conducting rod wound with a resistance wire is located in the heating cylinder, and the inorganic three-dimensional network oil storage body is filled between the heating cylinder and the heating pipe, or And thermal bar.
  • the heating body includes a heating tube, and the heating tube is at least one, and the heating tube is inserted into the inorganic three-dimensional network from one end of the inorganic three-dimensional network oil storage body.
  • Network oil storage body includes a heating tube, and the heating tube is at least one, and the heating tube is inserted into the inorganic three-dimensional network from one end of the inorganic three-dimensional network oil storage body. Network oil storage body.
  • the heating body includes a heat conducting rod and a resistance wire wound around the heat conducting rod, and the heat conducting rod, together with the resistance wire thereon, stores oil from the inorganic three-dimensional network.
  • One end of the body is inserted into the inorganic three-dimensional network oil storage body.
  • An electronic cigarette comprising: the atomizing device as described above, and a power supply device electrically connected to the atomizing device, the power supply device including a battery and a circuit board, and the battery is connected to the battery via the circuit board and The heating body of the atomizing device is electrically connected.
  • the inorganic three-dimensional network oil storage body of the present invention has a higher oil storage rate, the internal gaps of which are interconnected with each other, and more e-liquid can be stored at one time. Furthermore, it replaces the traditional smoke bombs, and overcomes the disadvantages of the need to carry and replace the smoke bombs during the use of the existing electronic cigarettes, and the oil conductance is not smooth. At the same time, the space between the fiber filaments in the inorganic three-dimensional network oil storage body of the present invention can be adjusted in a three-dimensional direction, which is convenient for controlling the atomization and oil conduction of the e-liquid, and is beneficial to improving the user experience.
  • FIG. 1 is a schematic diagram of a forming process of an inorganic three-dimensional network oil storage body according to the present invention
  • FIG. 1-1 is an electron micrograph of a two-dimensional sheet in an inorganic three-dimensional network oil storage body according to the present invention
  • FIGS. 1-2 are electron micrographs of two-dimensional flakes in an inorganic three-dimensional network oil reservoir of the present invention
  • FIGS. 1-3 are electron micrographs of an inorganic three-dimensional network oil storage body according to the present invention. At this time, the inorganic three-dimensional network oil storage body is formed by winding;
  • FIGS. 1-4 are electron micrographs of an inorganic three-dimensional network oil storage body according to the present invention. At this time, the inorganic three-dimensional network storage is formed by stacking;
  • FIG. 2 is a schematic perspective view of a specific embodiment of an inorganic three-dimensional network oil storage body according to the present invention
  • FIG. 3 is a schematic perspective view of a specific embodiment of an inorganic three-dimensional network oil storage body according to the present invention.
  • FIG. 4 is a schematic diagram of a layer structure of an embodiment of an inorganic three-dimensional network oil storage body according to the present invention.
  • FIG. 5 is a schematic diagram of a layer structure of an embodiment of an inorganic three-dimensional network oil storage body according to the present invention.
  • FIG. 6 is a schematic diagram of a layer structure of an embodiment of an inorganic three-dimensional network oil storage body according to the present invention.
  • FIG. 7 is a top view of a specific embodiment of an inorganic three-dimensional network oil storage body according to the present invention.
  • FIG. 8 is a top view of a specific embodiment of an inorganic three-dimensional network oil storage body according to the present invention.
  • FIG. 9 is a top view of a specific embodiment of the inorganic three-dimensional network oil storage body of the present invention.
  • FIG. 10 is a schematic plan view of a specific embodiment of an atomizing device according to the present invention.
  • FIG. 11 is a schematic plan view of a specific embodiment of an atomizing device according to the present invention.
  • FIG. 12 is a schematic plan view of a specific embodiment of an atomizing device according to the present invention.
  • FIG. 13 is a schematic plan view of a specific embodiment of an electronic cigarette according to the present invention.
  • the inorganic three-dimensional network oil storage body of the present invention is constructed by one-dimensional inorganic fiber filaments in a three-dimensional space by weaving.
  • the gaps in the inorganic three-dimensional network oil storage body are interconnected with each other, so that more e-liquids can be stored at a time, thereby replacing the traditional e-cigarettes.
  • the structure of the inorganic three-dimensional network oil storage body of the present invention is characterized by the following parameters: In three-dimensional space In the orthogonal coordinate system, the average distance between adjacent one-dimensional inorganic fiber filaments in the X, Y, and Z directions is a, b, and c, and the diameter of the one-dimensional inorganic fiber filaments is q>, where q The size of> is 0.01pm ⁇ 10 (Vm, the ratio of a, b, c and q> is 0.01 ⁇ 1000: 1.
  • the size of q> is 0.1 [xm ⁇ 10 [xm, the The ratio of a, b, c and cp is 0.1 ⁇ 100: 1. In this way, the spacing between the fiber filaments can be adjusted in three dimensions, which is convenient for controlling the atomization and oil conduction of the e-liquid, and is beneficial to improving the user experience.
  • the one-dimensional inorganic The fiber filament 1 is formed into a two-dimensional sheet 2 by weaving.
  • the distance between the one-dimensional inorganic fiber filaments 1 in the two-dimensional sheet 2 can be controlled by a weaving process.
  • each of the two-dimensional sheets 2 forms the inorganic three-dimensional network oil storage body 3 by an ordered structure.
  • the two-dimensional sheet is a layered body, and the layered body forms the inorganic three-dimensional network oil storage body by winding. Therefore, by controlling the density of knitting and the tightness of the winding, the control of a, b, and c can be realized. At this time, the inorganic three-dimensional network oil storage body formed by winding can be inserted into the applied electronic cigarette as a whole.
  • the curvature radius of the inorganic three-dimensional network oil storage body is: 100 (Vm ⁇ 5000 (Vm.)
  • the electron micrograph of the inorganic three-dimensional network oil storage body formed by the winding method is shown in Figure 1-3.
  • the two-dimensional sheet is a hollow cylinder, and a plurality of the cylinders are coaxially nested to form the inorganic three-dimensional network oil storage body.
  • a, b, and c can be controlled.
  • the inorganic three-dimensional network oil storage body formed by nesting can be integrally inserted into the applied electronic cigarette.
  • the two-dimensional sheet is a layered body, and a plurality of the layered bodies are stacked to form the inorganic three-dimensional network oil storage body. . Therefore, by controlling the density of weaving and the number of stacked layered bodies, a, b, and c can be controlled. At this time, each layered body can be filled into the applied electronic cigarette in a filled manner.
  • the electron micrograph of the inorganic three-dimensional network oil storage body formed by stacking is shown in Figure 1-4.
  • the upper and lower surfaces of the layered body are flat surfaces. At this time, the spacing between adjacent layers remains the same.
  • the upper surface of the layered body is concave and the lower surface is convex. At this time, the interval between adjacent layers changes periodically.
  • the upper and lower surfaces of the layered body may also be wave-shaped surfaces.
  • the two-dimensional sheet is a columnar body, and a plurality of the columnar bodies are aligned in the same direction to form the inorganic three-dimensional network oil storage body.
  • the columnar body can be filled in the electronic cigarette by an insertion method.
  • several of the columnar bodies are inserted into the applied electronic cigarette in a spiral manner in the same direction.
  • several of the columnar bodies are inserted into the applied electronic cigarette in the same direction in a radiation manner. in.
  • the two-dimensional sheet is a layered body, and the layered body forms the inorganic three-dimensional network oil storage body by folding. Therefore, by controlling the density of knitting and the number of folded layers, a, b, and c can be controlled.
  • the inorganic three-dimensional network oil storage body of this embodiment is applied to an electronic cigarette, the columnar body can be filled in the electronic cigarette by an insertion method.
  • the folding method may be a double folding method.
  • the one-dimensional inorganic fiber filament is a nanometer-scale high-temperature-resistant inorganic fiber.
  • the fibers can form a nano-micro-scale pitch, which is conducive to the large comparative area of the inorganic three-dimensional network oil storage body.
  • high-temperature-resistant inorganic fibers are used, which can withstand higher temperatures, so that the e-liquid can be heated within the required temperature range.
  • the high temperature resistant inorganic fiber is a high temperature glass fiber or a ceramic fiber.
  • the one-dimensional inorganic fiber filament is selected from an oxide, a nitride, and a carbide.
  • the oxide is alumina or silicon oxide or titanium oxide
  • the nitride is aluminum nitride or boron nitride or silicon nitride
  • the carbide is silicon carbide.
  • the hot melting temperature of the one-dimensional inorganic fiber filament is 600 ° C ⁇ 1500 ° C.
  • the hot-melt temperature of the one-dimensional inorganic fiber filament is 600 ° C to 1000 ° C. In this way, it can adapt to the high-temperature heating requirements of the electronic cigarette without generating harmful substances.
  • the present invention also provides an atomization device 4 using the inorganic three-dimensional network oil storage body.
  • the atomization device 4 includes a heating body and a heating body.
  • the above-mentioned inorganic three-dimensional network oil storage body 3 that performs heat conduction.
  • the heating body may include a heating cylinder 41 and a resistance film 42.
  • the heating cylinder 41 is wound from a flexible substrate.
  • the heating cylinder is one of cylindrical ceramic, glass, and crystal.
  • the flexible substrate is one or more of polyimide (PI), polyetheretherketone (PEE K), Teflon or ceramic.
  • the resistance film 42 is attached to the inner side wall of the heating tube 41, and the inorganic three-dimensional network oil storage body 3 is filled in the internal space of the heating tube 41 and is in contact with the resistance film 42 . Therefore, when the resistance film 42 is heated by being energized, it can heat the inorganic three-dimensional network oil storage body 3 to realize the atomization of the smoke oil stored in the inorganic three-dimensional network oil storage body 3.
  • the resistance film 42 may be replaced by a resistance wire.
  • the heating body further includes a heating tube 46 or a thermally conductive rod 46 with a resistance wire wound thereon, and the heating tube 46 or a thermally conductive rod 46 with a resistance wire wound thereon is located in the heating cylinder 41, and the inorganic
  • the three-dimensional network oil storage body is filled between the heating cylinder 41 and the heating pipe 46, or between the heating cylinder 41 and the heat conducting rod 46. In this way, it is beneficial to uniformly heating the inorganic three-dimensional network oil storage body therein, and the atomization effect is improved.
  • the heating body in another heating method, includes a heating pipe 43, and the heating pipe 43 is at least one.
  • the heating pipe 43 is inserted into the inorganic three-dimensional network oil storage body 3 from one end of the inorganic three-dimensional network oil storage body 3. Therefore, when the heating pipe 43 is electrically heated and heated, it can heat the inorganic three-dimensional network oil storage body 3 to realize the atomization of the smoke oil stored in the inorganic three-dimensional network oil storage body 3.
  • each heating tube 43 is evenly inserted into the inorganic three-dimensional network oil storage body 3.
  • the heating body in another heating method, includes a heat conducting rod 44 and a resistance wire 45 wound around the heat conducting rod 44.
  • the insertion end of the heat conducting plate may be designed into a shape suitable for insertion. Therefore, the heat conducting rod 44 together with the resistance wire 45 thereon is inserted into the inorganic three-dimensional network oil storage body 3 from one end of the inorganic three-dimensional network oil storage body 3. Therefore, when the resistance wire 45 is heated by being energized, it can heat the inorganic three-dimensional network oil storage body 3 to realize the atomization of the smoke oil stored in the inorganic three-dimensional network oil storage body 3.
  • the present invention also provides an electronic cigarette 5 using the atomizing device 4.
  • the electronic cigarette 5 includes the atomizing device 4 as described above.
  • a power supply device electrically connected to the atomizing device 4.
  • the power supply device includes a battery 51 and a circuit board 52, and the battery 51 is electrically connected to the heating body of the atomizing device 4 through the circuit board 52. Therefore, under the control of the circuit board 52, the battery 51 supplies power to the heating body.
  • the battery 51 may be a lithium battery 51 or the like.
  • the heating body when the heating body includes a heating cylinder 41 and a resistance film 42, the heating cylinder
  • a cigarette holder 53 is installed at one end of 41, and the cigarette holder 53 is in communication with the inside of the heating cylinder 41.
  • the cigarette holder 53 It is also filled with a substance that filters the atomized e-liquid.
  • the battery 51 and the circuit board 52 are housed in the heating tube 41, and the battery 51 supplies power to the resistance film 42 through the circuit board 52.
  • a plurality of ventilation holes 54 are also provided on the heating cylinder 41. Therefore, when the user inhales the atomized smoke, the smoke enters the human body through the mouthpiece 53 under the negative pressure, and the external air enters the heating cylinder 41 through the vent hole 54 to balance the internal and external air pressure.
  • the inorganic three-dimensional network oil storage body of the present invention has a high oil storage rate, and its internal gaps are interconnected with each other, which can store more e-liquid at one time, and then replace the traditional e-cigarette, which overcomes The existing electronic cigarettes need to carry and replace cigarette bombs during use, and the drawbacks are that the oil flow is not smooth.
  • the spacing between the fiber filaments in the inorganic three-dimensional network oil storage body of the present invention can be adjusted in a three-dimensional direction, which is convenient for controlling the atomization and oil conduction of the e-liquid, and is beneficial to improving the user experience.

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Abstract

La présente invention concerne un corps de stockage d'e-liquide à réseau tridimensionnel inorganique, un dispositif d'atomisation et une cigarette électronique. Le corps de stockage d'e-liquide à réseau tridimensionnel inorganique est formé par tissage de fibres inorganiques unidimensionnelles dans un espace tridimensionnel; les espaces dans le corps de stockage d'e-liquide à réseau tridimensionnel inorganique sont en communication l'un avec l'autre; dans le système de coordonnées orthogonales de l'espace tridimensionnel, les espaces moyens correspondants entre les fibres inorganiques unidimensionnelles adjacentes dans les directions X, Y et Z sont a, b et c; le diamètre des fibres inorganiques unidimensionnelles est φ, la taille de φ étant de 0,01 µm à 100 µm; le rapport a, b et c à φ étant de 0,01 à 1000:1. La présente invention a un taux de stockage d'e-liquide élevé, les espaces internes sont en communication l'un avec l'autre, et un lot d'e-liquide peut être stocké à la fois, ce qui permet de remplacer une cartouche de fumée classique, et de surmonter l'inconvénient d'un guidage d'e-liquide difficile provoqué par le besoin de transporter et de remplacer la cartouche de fumée pendant l'utilisation d'une cigarette électronique existante. De plus, les espaces entre les fibres de la présente invention peuvent être ajustés et commandés dans une direction tridimensionnelle, ce qui facilite la commande de l'atomisation et du guidage d'e-liquide.
PCT/CN2018/110736 2018-09-17 2018-10-18 Corps de stockage d'e-liquide à réseau tridimensionnel inorganique, dispositif d'atomisation et cigarette électronique WO2020056827A1 (fr)

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CN201811079177.X 2018-09-17
CN201811079177.XA CN108887755A (zh) 2018-09-17 2018-09-17 无机三维网络储油体、雾化装置及电子烟

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WO2021051245A1 (fr) * 2019-09-16 2021-03-25 深圳雾芯科技有限公司 Dispositif d'atomisation

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CN203633502U (zh) * 2013-10-15 2014-06-11 深圳市合元科技有限公司 电子烟用雾化器及电子烟
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US20170119040A1 (en) * 2015-10-30 2017-05-04 Lunatech, Llc Water-based vaporizable liquids, methods and systems for vaporizing same

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