WO2020211315A1 - Système et dispositif sans combustion de type mixte - Google Patents

Système et dispositif sans combustion de type mixte Download PDF

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Publication number
WO2020211315A1
WO2020211315A1 PCT/CN2019/112070 CN2019112070W WO2020211315A1 WO 2020211315 A1 WO2020211315 A1 WO 2020211315A1 CN 2019112070 W CN2019112070 W CN 2019112070W WO 2020211315 A1 WO2020211315 A1 WO 2020211315A1
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WO
WIPO (PCT)
Prior art keywords
heating
matrix unit
aerosol
unit
combustion device
Prior art date
Application number
PCT/CN2019/112070
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English (en)
Chinese (zh)
Inventor
李丹
刘冰
陈义坤
刘华臣
刘磊
吴峤
Original Assignee
湖北中烟工业有限责任公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 湖北中烟工业有限责任公司 filed Critical 湖北中烟工业有限责任公司
Priority to EP19924648.9A priority Critical patent/EP3957196B1/fr
Priority to KR1020217037111A priority patent/KR102617687B1/ko
Publication of WO2020211315A1 publication Critical patent/WO2020211315A1/fr

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/30Devices using two or more structurally separated inhalable precursors, e.g. using two liquid precursors in two cartridges
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/46Shape or structure of electric heating means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/20Devices using solid inhalable precursors

Definitions

  • the invention belongs to the field of heating tobacco products, and in particular relates to a hybrid heating and non-combustion device and system.
  • the existing heat-not-burn cigarettes use electric heating devices to heat special cigarettes to above 300°C, thereby producing smoke similar to traditional cigarettes.
  • the problems with such products include: (1) The amount of smoke produced by the cigarettes Smaller; (2) The taste of the cigarette is simpler; (3) The heating temperature of the cigarette is higher, which produces more harmful substances.
  • the present application provides a hybrid heat-not-burn device and system, by combining the working principles of a liquid matrix unit (e-cigarette liquid) and a solid matrix unit (heat-not-burn cigarettes), It can significantly increase the amount of smoke, enrich the taste and reduce the heating temperature as needed.
  • a liquid matrix unit e-cigarette liquid
  • a solid matrix unit heat-not-burn cigarettes
  • the present invention provides the following solutions.
  • a hybrid heating and non-combustion device includes a shell, which is characterized in that:
  • the first containing space is used for placing the liquid matrix unit
  • one side of the second accommodating space is set as an opening, and the solid matrix unit is inserted into the second accommodating space through the opening of the second accommodating space;
  • a heating atomization unit for heating the liquid matrix unit to form a first aerosol, and heating the solid matrix unit to form a second aerosol;
  • the first aerosol formed by the liquid matrix unit is connected to the solid matrix unit, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit.
  • forming the heating atomization unit includes:
  • a liquid matrix atomizer arranged in the first containing space, for heating the liquid matrix unit to form the first aerosol
  • the solid substrate atomizer includes a heating element tip fixedly arranged inside the second containing space, and the solid substrate unit 200 is heated to form a second gas by inserting the solid substrate unit to the heating element tip Sol
  • liquid matrix atomizer and the solid matrix atomizer are arranged separately.
  • the housing is further provided with:
  • the first airway one end of which is connected to the top of the first containing space, and the other end of which is connected to the bottom of the second containing space, is used to conduct the first aerosol formed by the liquid matrix unit to the solid matrix unit.
  • the first accommodation space is arranged below the second accommodation space to reduce the length of the first airway.
  • the heating atomization unit includes:
  • a column the first end of the column extends into the first containing space for contacting the liquid matrix unit, and the second end of the column extends into the second containing space for inserting the solid matrix unit;
  • the first heating element is fixed on the side wall of the second end of the column by sintering, and is used for heating at least the solid matrix unit.
  • the column is partially or entirely configured as a porous structure, and the capillary force of the porous gap causes at least part of the liquid matrix unit to flow from the column to the first heating element 405 for heating.
  • the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit.
  • the heating atomization unit further includes:
  • the fixed base which is fixedly connected to the column, is arranged at the boundary between the first end and the second end, and is used to fix the heating atomization unit inside the housing;
  • the first heating element is fixed on the fixed base by sintering
  • the first end of the column and the fixed base are partially or integrally arranged as a porous structure, and the capillary force of the porous gap causes at least part of the liquid matrix unit to flow from the first end to the second heating element of the fixed base Heating at the place to form the first aerosol.
  • the housing further includes:
  • the second air passage is arranged between the second heating element and the second containing space, so that the first aerosol formed at the second heating element flows into the solid matrix unit through the second air passage, thereby forming the liquid matrix unit The first aerosol is conducted to the solid matrix unit.
  • the second end of the cylinder is formed of a dense ceramic material, and is set in a sharp shape for inserting the solid matrix unit.
  • the first heating element and/or the second heating element are formed of any one or more of resistance paste, metal resistance sheet, or metal resistance wire.
  • the solid substrate unit is a low-temperature cigarette, which is formed of any one or more of tobacco particles, tobacco shreds, and longitudinal bundle columnar flakes.
  • the liquid matrix unit is an e-cigarette liquid, which is formed of propylene glycol and/or glycerin.
  • it further includes: an electronic cigarette device, the first containing space and at least part of the heating and atomizing unit are arranged in the electronic cigarette device, and the electronic cigarette device is detachably arranged inside the casing.
  • a hybrid heating and non-combustion system comprising a liquid matrix unit, a solid matrix unit, and a hybrid heating and non-combustion device as described above, characterized in that:
  • the liquid matrix unit is placed in the first containing space of the hybrid heating and non-combustion device and heated by the heating atomization unit of the hybrid heating and non-combustion device to form a first aerosol;
  • the solid matrix unit is inserted into the second accommodation space by the opening of the second accommodation space of the hybrid heating and non-combustion device, and is heated by the heating atomization unit of the hybrid heating and non-combustion device to form a second aerosol;
  • the first aerosol formed by the liquid matrix unit is connected to the solid matrix unit, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit.
  • the solid substrate unit is a low-temperature cigarette, which is formed of any one or more of tobacco particles, tobacco shreds, and longitudinal bundle columnar flakes.
  • the liquid matrix unit is an e-cigarette liquid, which is formed of propylene glycol and/or glycerin.
  • the above-mentioned at least one technical solution adopted in the embodiments of this application can achieve the following beneficial effects: Since the atomization temperature of the e-cigarette liquid is about 200°C, the heating and atomization temperature of the cigarette generally must reach 300°C or more, and the electronic cigarette is atomized.
  • the aerosol particles formed by the e-cigarette liquid flow through the cigarette, which can carry a large amount of aroma substances inside the solid matrix unit, which can reduce the heating and atomization temperature of the solid matrix unit and increase the amount of smoke.
  • the electronic cigarette liquid has many flavors, which can maximize the richness Taste.
  • Figure 1 is a schematic structural diagram of a hybrid heating and non-combustion device according to the first embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a hybrid heating and non-combustion device according to the second embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a hybrid heating and non-combustion device according to the third embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a hybrid heating and non-combustion device according to the fourth embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a hybrid heating and non-combustion device according to the fifth embodiment of the present invention.
  • FIG. 1 shows a schematic diagram of a hybrid heating and non-combustion device provided by Embodiment 1 of the present invention, including: a housing 300.
  • the housing 300 is provided with:
  • the first accommodating space 301-A provided inside the housing is used to place the liquid matrix unit 100, such as e-cigarette liquid.
  • the second accommodating space 302-A opened on the side of the housing 300 is used for accommodating a solid substrate unit 200, such as cigarettes, and one side of the second accommodating space 302-A is set as an opening.
  • the opening of the second receiving space 302-A is inserted into the second receiving space 302-A.
  • the heating atomization unit 400-A is used to heat the liquid matrix unit 100 to form a first aerosol, and heat the solid matrix unit 200 to form a second aerosol.
  • the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit 200, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit 200. Since the atomization temperature of the e-cigarette liquid is about 200°C, the heating and atomization temperature of the cigarette should generally reach 300°C or higher.
  • the heating and atomization temperature of the cigarette should generally reach 300°C or higher.
  • the heating atomization unit 400-A may include a liquid matrix atomizer 401-A and a solid matrix atomizer 402-A that are separately arranged, and the liquid matrix atomizer 401-A is at least partially immersed in
  • the liquid matrix unit 100 is used to heat the liquid matrix unit 100 to form a first aerosol;
  • the solid matrix atomizer 402-A includes a heating element tip fixedly arranged inside the second containing space 302-A, The solid matrix unit 200 is inserted into the tip of the heating element inside the second accommodating space 302-A, so that the solid matrix unit 200 is heated to form a second aerosol.
  • the second accommodating space 302-A and the second accommodating space 302-A are arranged side by side, and a first air passage 500- is provided between the first accommodating space 301-A and the second accommodating space 302-A.
  • A. One end of the first air passage 500-A is connected to the top of the first accommodating space 301-A, and the other end is connected to the bottom of the second accommodating space, so that the first aerosol can flow through more fully
  • the solid matrix unit 200 connects the first containing space and the second containing space through the air channel structure to realize a hybrid heating and non-combustion device, with minor changes to the original design, simple structure, and easy implementation.
  • the first aerosol formed by the liquid matrix unit 100 flows into the solid matrix unit 200 through the first air passage 500-A.
  • the first aerosol can carry a large amount of aroma substances inside the solid matrix unit 200, and
  • the second aerosol formed by mixing with the solid substrate unit 200 is discharged from the opening of the second containing space 302-A, and the first aerosol and the second aerosol can enter the oral cavity of the consumer together.
  • the liquid matrix unit 100 includes, but is not limited to, an e-cigarette liquid containing propylene glycol and/or glycerin; the solid matrix unit 200 includes, but is not limited to, low-temperature cigarettes formed from tobacco particles, shredded tobacco, longitudinal beams of cylindrical flakes, or other tobacco products.
  • the device may also include a power supply device 600-A for supplying energy to the liquid substrate atomizer 401-A and the solid substrate atomizer 402-A.
  • a power supply device may also be used to provide energy to the liquid substrate.
  • the atomizer 401-A and the solid substrate atomizer 402-A provide energy, and multiple power devices can also provide energy to the liquid substrate atomizer 401-A and the solid substrate atomizer 402-A. There are no specific restrictions.
  • FIG. 2 shows a schematic diagram of a hybrid heating and non-combustion device provided in the second embodiment of the present invention, including: a housing 300.
  • the housing 300 is provided with:
  • the first accommodating space 301-B provided inside the casing is used to place the liquid matrix unit 100, such as e-cigarette liquid.
  • the second accommodating space 302-B opened on the side of the housing 300 is used for accommodating the solid substrate unit 200, such as cigarettes, and one side of the second accommodating space 302-B is set as an opening.
  • the opening of the second receiving space 302-B is inserted into the second receiving space 302-B.
  • the heating atomization unit is used to heat the liquid matrix unit 100 to form a first aerosol, and heat the solid matrix unit 200 to form a second aerosol.
  • the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit 200, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit 200.
  • the heating atomization unit includes a separate liquid matrix atomizer 401-B and a solid matrix atomizer 402-B, which are the same as or similar to the heating atomization unit 400-A described in the above embodiment; the device may also include The power supply device 600-B that supplies energy to the liquid substrate atomizer 401-B and the solid substrate atomizer 402-B will not be repeated here.
  • the first accommodating space 301-B is arranged below the second accommodating space 302-B.
  • a first air passage 500-B is provided between the first accommodating space 301-B and the second accommodating space 302-B, and the first aerosol formed by the liquid matrix unit 100 flows into the solid matrix unit through the first air passage 500-B Inside 200, under external inhalation, the first aerosol can carry a large amount of aroma substances inside the solid matrix unit 200, and is mixed with the second aerosol formed by the solid matrix unit 200 and discharged from the solid matrix unit 200, and then the second aerosol The first aerosol and the second aerosol can enter the consumer's mouth together.
  • one end of the first air passage 500-B is usually connected to the top of the first receiving space 301-B, and the other end is connected to the second receiving space 302-B
  • the arrangement of the air passage can be simplified, the length of the first air passage 500-B can be reduced, and the first air passage 500-B formed by the liquid matrix unit can be reduced.
  • the condensation of aerosols in the airway reduces condensate.
  • FIG. 3 shows a schematic diagram of a hybrid heating and non-combustion device provided in the third embodiment of the present invention, including: a housing 300.
  • the housing 300 is provided with:
  • the first accommodating space 301-C provided inside the casing is used to place the liquid matrix unit 100, such as e-cigarette liquid.
  • the second accommodating space 302-C opened on the side of the housing 300 is used for accommodating the solid substrate unit 200, such as cigarettes, and one side of the second accommodating space 302-C is set as an opening.
  • the opening of the second receiving space 302-C is inserted into the second receiving space 302-C.
  • the heating atomization unit is used to heat the liquid matrix unit 100 to form a first aerosol, and heat the solid matrix unit 200 to form a second aerosol.
  • the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit 200, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit 200.
  • the heating atomization unit is formed as an integrated structure.
  • the heating atomization unit may include:
  • the column 407-C, the column 407-C can be divided into a first end 403-C and a second end 404-C, and the first end 403-C of the column 407-C can be extended into the first end 403-C.
  • a receiving space 301-C it is at least partially infiltrated into the interior of the liquid matrix unit 100; the second end 404-C of the column 407-C can be extended into the second receiving space 302-C, and the The second end 404-C of the column 407-C is arranged in a sharp shape to facilitate the insertion of the solid matrix unit 200, so that the user can insert the solid substrate unit 200 (such as a cigarette) into the second end of the column 407-C Two ends 404-C;
  • the first heating element 405-C is fixed on the side wall of the second end 404-C of the column 407-C, and is used to heat at least the solid substrate unit 200.
  • the resistance slurry can be coated on the pillar 407-C by sintering to form the first heating element 405-C.
  • the first heating element 405-C can be formed of any one or more of resistance paste, metal resistance sheet, or metal resistance wire, which is not specifically limited in this application.
  • the heating and atomizing unit may further include a fixed base 406-C, which is fixedly connected to the column 407-C, and may be specifically arranged at the first end 403-C and the second end 404-C By fixing the fixed base 406-C to the inside of the housing 300, the heating and atomizing unit can be fixed inside the housing 300, and the power supply device 600-C can be provided to connect the first heating element 405-C Provide electricity.
  • a fixed base 406-C which is fixedly connected to the column 407-C, and may be specifically arranged at the first end 403-C and the second end 404-C
  • the pillar 407-C may be partially or entirely configured as a porous structure, and the porous structure may be formed of porous ceramics or other materials with capillary structures, which is not specifically limited in this application.
  • the capillary force of the porous gap in the column 407-C part of the liquid in the liquid matrix unit 100 flows from the first containing space 301-C into the column 407-C, and further flows along the column 407-C to the first heating At the element 405-C, the first heating element 405-C heats it, so that the liquid matrix unit 100 is atomized to form a first aerosol and diffuse inside the solid matrix unit 200.
  • the solid substrate unit 200 is also heated by the first heating element 405-C and atomized to form a second aerosol.
  • the first heating element 405-C can be arranged at the proximal end of the solid matrix unit 200 along the longitudinal direction of the heating atomization unit, so as to promote the first aerosol formed by the liquid matrix unit 100 to enter the solid matrix unit 200 as much as possible .
  • the heating atomization unit With the above-mentioned integrated structure, only one heating element is required to heat the atomized liquid matrix unit 100 and the solid matrix unit 200 at the same time, and there is no need to install a liquid matrix unit heating atomizer, and there is no need to install a gas Road, the structure is simple, the cost is reduced, and the thermal efficiency is higher.
  • FIG. 4 shows a schematic diagram of a hybrid heating and non-combustion device provided in the fourth embodiment of the present invention, including: a housing 300.
  • the housing 300 is provided with:
  • the first accommodating space 301-D provided inside the housing is used to place the liquid matrix unit 100, such as e-cigarette liquid.
  • the second accommodating space 302-D opened on the side of the housing 300 is used for accommodating a solid substrate unit 200, such as a cigarette, and one side of the second accommodating space 302-D is set as an opening, and the solid substrate unit 200 is The opening of the second receiving space 302-D is inserted in the second receiving space 302-D.
  • the heating atomization unit is used to heat the liquid matrix unit 100 to form a first aerosol, and heat the solid matrix unit 200 to form a second aerosol. Wherein, the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit 200, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit 200.
  • the heating atomization unit is formed as an integral structure.
  • the heating atomization unit may include: a column 407-D and a first heating element 405-D.
  • the column 407-D and the first heating element 405-D in this embodiment The description of a heating element 405-D is the same as or similar to the description of the cylinder 407-C and the first heating element 405-C in the foregoing embodiment 3, and will not be repeated here.
  • the heating atomization unit further includes:
  • the fixed base 406-D is fixedly connected to the column 407-D, which can be specifically arranged at the boundary between the first end 403-D and the second end 404-D, by connecting the fixed base 406-D It is fixedly connected to the inside of the housing 300, and the heating and atomizing unit can be fixed inside the housing 300.
  • the second heating element 408 is fixed on the fixed base 406-D for heating the liquid matrix unit 100.
  • the resistance slurry can be coated on the fixed base 406-D by sintering to form the second heating element 408.
  • the second heating element 408 can be formed of any one or more of resistance paste, metal resistance sheet, or metal resistance wire, which is not specifically limited in this application.
  • the first end 403-D of the column 407-D and the fixed base 406-D are partially or wholly arranged as a porous structure.
  • the porous structure may be formed of porous ceramics or other
  • the material formation of the capillary structure is not specifically limited in this application.
  • the second end 404-D of the column is formed of a dense ceramic material, and is set in a sharp shape that facilitates the insertion of the solid matrix unit.
  • a power supply device 600-D for providing energy to the first heating element 405-D and the second heating element 408 is also provided.
  • the housing 300 may further include: a second air passage disposed between the second heating element 408 and the second receiving space 302-D, specifically, one end of the second air passage Connected to the upper end of the second heating element 408 on the fixed base 406-D, and the other end connected to the bottom end of the second receiving space 302-D, so that the first aerosol formed at the second heating element 408 passes through the second air passage 501 flows into the solid matrix unit 200, so that the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit 200 and diffused in the solid matrix unit 200.
  • the solid matrix unit 200 is also heated by the first heating element 405-D and atomized to form a second aerosol.
  • the first aerosol is mixed with the second aerosol, it is inhaled into the mouth of the consumer through the cigarette.
  • the second air passage By providing the second air passage, leakage during gas flow can be avoided, and the length and design complexity of the air passage are further reduced, thereby further reducing the condensation of the first aerosol in the air passage and reducing condensate.
  • FIG. 5 shows a schematic diagram of a hybrid heating and non-combustion device provided in the fifth embodiment of the present invention, including: a housing 300.
  • the housing 300 is provided with:
  • the first accommodating space 301-E provided inside the housing is used to place the liquid matrix unit 100, such as e-cigarette liquid.
  • the second accommodating space 302-E opened on the side of the housing 300 is used for accommodating the solid substrate unit 200, such as cigarettes, and one side of the second accommodating space 302-E is set as an opening.
  • the opening of the second receiving space 302-E is inserted in the second receiving space 302-E.
  • the heating atomization unit is used to heat the liquid matrix unit 100 to form a first aerosol, and heat the solid matrix unit 200 to form a second aerosol.
  • the first aerosol formed by the liquid matrix unit 100 is conducted to the solid matrix unit 200, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit 200.
  • the difference from the above embodiment is that in this embodiment, it further includes an electronic cigarette device 700, the first containing space 301-E and at least part of the heating and atomizing unit are provided in the electronic cigarette device, and the electronic cigarette The device 700 is detachably disposed inside the housing.
  • the above-mentioned electronic cigarette device 700 may be an independent liquid e-cigarette, which is used to atomize the liquid of the electronic cigarette for the user to use the electronic cigarette device 700 alone; further, the electronic cigarette device 700 is assembled to the heating After the non-burning device, the e-cigarette liquid can be atomized and discharged into the heating non-burning cigarette, and then used by the user in combination.
  • a third accommodating space 303 may be provided in the housing 300, the electronic cigarette device is detachably installed in the third accommodating space 303, and the electronic cigarette device 700 is provided with a first accommodating space 301 for accommodating the liquid matrix unit -E, in the electronic cigarette device 700, a through hole for connecting to the flue is opened outward from the first accommodating space, and at least part of the heating and atomizing unit is separately provided, and for atomizing the at least part of the heating An electronic cigarette power supply unit 601 that provides energy.
  • the electronic cigarette device 700 may also be a detachable cartridge for accommodating the liquid matrix unit 100, and the user only needs to replace the liquid matrix unit 100 when replacing or supplementing the liquid matrix unit 100 in the hybrid heating non-combustion device.
  • the cartridge that is detachably installed inside the device is sufficient.
  • the electronic cigarette device by detachably installing the electronic cigarette device in the heating and non-combustion device, it is possible to provide users with a variety of different experience; if the electronic cigarette device is an independent e-cigarette, when combined with a heating and non-combustion device, The taste effect of the combustion device is better, and the electronic cigarette device is more portable when used alone; if the electronic cigarette device is a cartridge, it has the effect of more convenient replacement of the liquid matrix unit (e-cigarette liquid).
  • the technical solution provided by the present embodiment can be improved based on the existing electronic cigarette device, that is, it is only necessary to design and produce the contents other than the electronic cigarette device in the hybrid heating non-combustion device. The cost is greatly saved, and there is no need for users to repeat purchases.
  • the sixth embodiment of the present invention provides a hybrid heating and non-combustion system, including:
  • liquid matrix unit the solid matrix unit, and the hybrid heating and non-combustion device described in the above embodiment, wherein the working principle of the system is to use the hybrid heating and non-combustion device described in the above embodiment to treat the liquid matrix unit Heating with solid substrate unit.
  • the liquid matrix unit is placed in the first containing space of the hybrid heating and non-combustion device and heated by the heating atomization unit of the hybrid heating and non-combustion device to form a first aerosol;
  • the solid matrix unit is inserted into the second accommodation space by the opening of the second accommodation space of the hybrid heating and non-combustion device, and is heated by the heating atomization unit of the hybrid heating and non-combustion device to form a second aerosol;
  • the first aerosol formed by the liquid matrix unit is connected to the solid matrix unit, so that the first aerosol and the second aerosol are mixed and discharged from the solid matrix unit.
  • the solid substrate unit is a low-temperature cigarette, which is formed of any one or more of tobacco particles, tobacco shreds, and longitudinal bundles of columnar flakes.
  • the liquid matrix unit is an e-cigarette liquid, formed of propylene glycol and/or glycerin.

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Abstract

L'invention concerne un dispositif et un système sans combustion de type mixte. Le dispositif comprend une coque (300), la coque comportant : un premier espace de réception (301-A) pour avoir une unité de substrat liquide (100) placée en son sein ; un second espace de réception (302-A), un côté du second espace de réception (302-A) étant pourvu d'une ouverture, et une unité de substrat solide (200) étant insérée dans le second espace de réception (302-A) à travers l'ouverture du second espace de logement (302-A) ; et une unité d'atomisation de chauffage (400A) utilisée pour chauffer l'unité de substrat liquide (100) pour former un premier aérosol et chauffer l'unité de substrat solide (200) pour former un second aérosol. Au moyen de l'introduction du premier aérosol formé par l'unité de substrat liquide (100) dans l'unité de substrat solide (200), le premier aérosol et le second aérosol sont mélangés puis déchargés à partir de l'unité de substrat solide (200). La quantité de vapeur d'une cigarette électronique peut être augmentée, et le goût est enrichi.
PCT/CN2019/112070 2019-04-15 2019-10-20 Système et dispositif sans combustion de type mixte WO2020211315A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP19924648.9A EP3957196B1 (fr) 2019-04-15 2019-10-20 Dispositif sans combustion de type mixte
KR1020217037111A KR102617687B1 (ko) 2019-04-15 2019-10-20 혼합형 비연소-가열식 장치 및 시스템

Applications Claiming Priority (2)

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CN201910299956.9 2019-04-15
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