WO2017187545A1 - 香味吸引器用カートリッジ及び香味吸引器 - Google Patents
香味吸引器用カートリッジ及び香味吸引器 Download PDFInfo
- Publication number
- WO2017187545A1 WO2017187545A1 PCT/JP2016/063153 JP2016063153W WO2017187545A1 WO 2017187545 A1 WO2017187545 A1 WO 2017187545A1 JP 2016063153 W JP2016063153 W JP 2016063153W WO 2017187545 A1 WO2017187545 A1 WO 2017187545A1
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- WO
- WIPO (PCT)
- Prior art keywords
- cartridge
- flavor
- space
- atomizing
- lid member
- Prior art date
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Classifications
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/42—Cartridges or containers for inhalable precursors
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/10—Devices using liquid inhalable precursors
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/48—Fluid transfer means, e.g. pumps
- A24F40/485—Valves; Apertures
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F47/00—Smokers' requisites not otherwise provided for
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M11/00—Sprayers or atomisers specially adapted for therapeutic purposes
- A61M11/04—Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised
- A61M11/041—Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters
- A61M11/042—Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters electrical
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0028—Inhalators using prepacked dosages, one for each application, e.g. capsules to be perforated or broken-up
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/06—Inhaling appliances shaped like cigars, cigarettes or pipes
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F15/00—Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor
- A24F15/01—Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor specially adapted for simulated smoking devices or cigarettes therefor
- A24F15/015—Receptacles or boxes specially adapted for cigars, cigarettes, simulated smoking devices or cigarettes therefor specially adapted for simulated smoking devices or cigarettes therefor with means for refilling of liquid inhalable precursors
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0001—Details of inhalators; Constructional features thereof
- A61M15/0021—Mouthpieces therefor
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M15/00—Inhalators
- A61M15/0086—Inhalation chambers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/36—General characteristics of the apparatus related to heating or cooling
- A61M2205/3653—General characteristics of the apparatus related to heating or cooling by Joule effect, i.e. electric resistance
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/82—Internal energy supply devices
- A61M2205/8206—Internal energy supply devices battery-operated
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2209/00—Ancillary equipment
- A61M2209/04—Tools for specific apparatus
- A61M2209/045—Tools for specific apparatus for filling, e.g. for filling reservoirs
Definitions
- the present invention relates to a flavor aspirator cartridge and a flavor aspirator.
- a flavor inhaler for sucking a flavor without burning the material.
- an electronic cigarette is known as such a flavor inhaler.
- Electronic cigarettes supply aerosol generated by atomizing a liquid (aerosol source) containing flavor to the user's mouth, or aerosol generated by atomizing a liquid not containing flavor (for example, a tobacco source). ) Is passed through and aerosol is supplied to the user's mouth.
- Some electronic cigarettes include a tank for storing a liquid for generating an aerosol and an atomizing unit for atomizing the liquid.
- Some electronic cigarettes including the tank described above have a lid that partitions the tank and the atomization unit in order to supply the liquid in the tank to the atomization unit.
- the lid is configured to be openable and closable. For example, the user opens the lid when using the electronic cigarette, and closes the lid when the electronic cigarette is not used.
- a lid opening / closing mechanism for example, a mechanism is known in which a mouthpiece is rotated to push down a tube through which aerosol passes to open the lid (see Patent Documents 1 and 2). Also known is an electronic cigarette that opens a valve that partitions a reservoir for storing a liquid and an atomizer section by engaging a battery assembly with the atomizer assembly (see Patent Document 3 and Patent Document 4).
- An object of the present invention is to provide a new opening / closing mechanism for a lid that partitions between a reservoir space and an atomizing space.
- a cartridge for a flavor inhaler is provided.
- the flavor aspirator cartridge is movable so as to be able to open and close the housing having a reservoir space for containing the liquid and an atomizing space for atomizing the liquid, and the reservoir space and the atomizing space.
- a motion converting mechanism that converts the rotational motion of the rotating member in the circumferential direction into the linear motion of the lid member in the axial direction, and the lid member is connected to the motion converting mechanism.
- the motion converting mechanism moves the lid member in a direction approaching the rotating member by rotating the rotating member in the circumferential direction. Configured to communicate with the reservoir space and the atomizing space.
- the atomizing space includes an atomizing element for atomizing the liquid.
- the flavor inhaler cartridge has a moving member that moves in the axial direction together with the lid member, and the lid member is indirectly fixed to the motion conversion mechanism via the moving member,
- the motion conversion mechanism is configured to convert a rotational motion in the circumferential direction of the rotational member into a linear motion in the axial direction of the lid member and the moving member.
- the said motion conversion mechanism has the to-be-engaged part provided in the outer peripheral surface or inner peripheral surface of the said moving member, and the engaging part engaged with the said to-be-engaged part.
- Any one of the engaging portion and the engaged portion has a spiral protrusion having a helical surface, and the other of the engaging portion and the engaged portion slides on the helical surface. It has a sliding part.
- the spiral protrusion and the sliding portion are threads.
- the flavor inhaler cartridge has a suppressing member that suppresses leakage of the liquid in the reservoir space from the opening of the housing to the outside of the housing, and the opening includes A supply port for supplying liquid to the reservoir space is configured.
- At least a part of the suppressing member is made of a flexible material.
- the flavor inhaler cartridge has a partition member having a communication hole for communicating the reservoir space and the atomizing space, and the lid member opens and closes the communication hole, thereby The reservoir space and the atomizing space are partitioned to be opened and closed.
- the flavor inhaler cartridge has a moving member that moves in the axial direction together with the lid member, and the lid member is indirectly fixed to the motion conversion mechanism via the moving member,
- the motion conversion mechanism is configured to convert a rotational motion in the circumferential direction of the rotational member into a linear motion in the axial direction of the lid member and the movable member, and the movable member is at least in the aerosol flow path. It is a channel pipe which constitutes a part.
- the rotating member is configured to be rotatable in the circumferential direction about the central axis of the flow channel tube.
- the flavor inhaler cartridge has a stopper configured to limit the movement of the lid member, and the stopper moves a predetermined distance in a direction in which the lid member approaches the rotating member. When it does, it is comprised so that the said cover member may be contacted.
- the stopper is disposed in the reservoir space.
- the flavor inhaler cartridge has a moving member that moves in the axial direction together with the lid member, and the lid member is indirectly fixed to the motion conversion mechanism via the moving member,
- the motion conversion mechanism is configured to convert a rotational motion in the circumferential direction of the rotational member into a linear motion in the axial direction of the lid member and the moving member, and the flavor aspirator cartridge further includes the movement A stopper configured to limit movement of the member, and the stopper contacts the moving member directly or indirectly when the moving member moves a predetermined distance in a direction approaching the rotating member; Configured to do.
- the lid member includes a biasing member configured to bias the lid member toward the atomizing space.
- the flavor inhaler cartridge has a flow channel pipe that forms at least a part of the aerosol flow channel, and a reinforcing member that reinforces the flow channel tube, and the biasing member includes: It abuts directly or indirectly on the reinforcing member.
- the rotating member is a mouthpiece that forms at least a part of the aerosol flow path and is provided on the downstream side of the aerosol flow path with respect to the reservoir space.
- the mouthpiece is configured to restrict the movement of the mouthpiece in the axial direction toward the lid member in contact with the housing and the flow tube through which the aerosol flows. And having.
- the said flow pipe is hold
- the rotating member is disposed on the downstream side of the aerosol flow path with respect to the lid member.
- the flavor inhaler cartridge has a partition member having a communication hole for communicating the reservoir space and the atomizing space, and the lid member opens and closes the communication hole, thereby
- the reservoir space and the atomizing space are closably opened and closed
- the partition member has a plate-like portion having an opening that passes through the aerosol generated in the atomizing space and forms at least a part of the aerosol flow path.
- the communication hole is formed in the plate-like portion.
- the partition member has a cylindrical portion that is coupled to the plate-like portion and whose inside communicates with the opening of the plate-like portion.
- the lid member has a lid portion that contacts the plate-like portion along the entire circumference of the plate-like portion and closes the communication hole.
- the lid member includes a lid portion that partially contacts the plate-like portion along the periphery of the plate-like portion and closes the communication hole.
- the lid member is disposed in the reservoir space.
- the flavor inhaler cartridge is disposed in the atomizing space, and has an atomizing element for atomizing the liquid, and a communication hole for communicating the reservoir space and the atomizing space.
- the lid member is configured to open and close the reservoir space and the atomizing space by opening and closing the communication hole, and the atomizing element includes a heating wire,
- the heating wire is formed in a spiral shape around an axis substantially parallel to the longitudinal axis of the housing.
- the flavor inhaler cartridge has a first liquid holding member that holds the liquid supplied through the communication hole, and the first liquid holding member is disposed in the atomizer space. Is done.
- the first liquid holding member is formed in a substantially cylindrical shape and has an internal space, and at least a part of the heating wire is disposed in the internal space of the first liquid holding member.
- the heating wire of the atomizing element is formed in a spiral shape around the central axis of the substantially cylindrical first liquid holding member.
- the heating wire of the atomizing element contacts an inner wall of the first liquid holding member.
- the first liquid holding member is disposed in the atomizer space so as to cover the communication hole.
- the flavor inhaler cartridge is disposed in the atomizing space, and has an atomizing element for atomizing the liquid, and a communication hole for communicating the reservoir space and the atomizing space.
- the lid member is configured to open and close the reservoir space and the atomizing space by opening and closing the communication hole, and the atomizing element includes a heating wire,
- the heating wire is formed in a spiral shape around an axis substantially orthogonal to the longitudinal axis of the housing.
- the flavor inhaler cartridge has a flat plate-like first liquid holding member that holds the liquid supplied through the communication hole, and the first liquid holding member is the atomizer space. Placed inside.
- the first liquid holding member is disposed in the atomizer space so as to cover the communication hole.
- the flavor inhaler cartridge has a second liquid holding member that holds the liquid supplied through the communication hole, and the heating wire is wound around the second liquid holding member. It is done.
- the flavor inhaler cartridge has a flat plate-like first liquid holding member that holds the liquid supplied through the communication hole, and the first liquid holding member is the atomizer space. And the second liquid holding member is in contact with the first liquid holding member.
- a flavor inhaler includes any one of the cartridges for flavor suction devices described above.
- the flavor inhaler includes an atomizing element that is disposed in the atomizing space and atomizes the liquid, and a power supply unit that supplies electric power to the atomizing element.
- the power supply unit includes the rotating member.
- FIG. 1 It is a perspective view which shows the other structure of the mouthpiece which a flavor suction device has. It is sectional drawing which shows the other structure of the atomization part which a flavor suction device has. It is sectional drawing which shows the other structure of the cover member which a flavor suction device has. It is a figure which shows the other example of the motion conversion mechanism which a flavor suction device has. It is a figure which shows the other example of the motion conversion mechanism which a flavor suction device has. It is a figure which shows the other example of the motion conversion mechanism which a flavor suction device has. It is a figure which shows the other example of the motion conversion mechanism which a flavor suction device has.
- FIG. 1 is an overall perspective view of a flavor inhaler according to the present embodiment.
- FIG. 2 is an exploded perspective view of the flavor inhaler according to the present embodiment.
- the flavor suction device 10 has a mouthpiece 11, an atomizer unit 20, and a battery unit 50 (corresponding to an example of a power supply unit).
- the atomizer unit 20 atomizes the liquid containing the flavor containing components, such as nicotine, and supplies an aerosol.
- the battery unit 50 supplies power to the atomizer unit 20.
- the mouthpiece 11 guides the aerosol generated by the atomizer unit 20 to the user's mouth. After the flavor suction device 10 is used for a predetermined period, the mouthpiece 11 and the atomizer unit 20 can be exchanged.
- the portion obtained by removing the battery unit 50 from the flavor suction device 10 is a cartridge for the flavor suction device.
- the mouthpiece 11 has a silicon ring 12.
- the atomizer unit 20 includes a screw portion 24, a housing 21, a flow channel 22 (corresponding to an example of a moving member), a lid member 23, a first O-ring 34, a second O-ring 35, and a partition member. 30 and an atomizing section 40 (corresponding to an example of an atomizing element).
- the atomization unit 40 includes a first liquid holding member 41, a heating wire 42, an outer housing 43, an electrode 44, an insulating ring 45, and a supporter 46.
- FIG. 3 is a cross-sectional view of the flavor inhaler in a state where the reservoir space and the atomizing space are partitioned.
- a space in which aerosol is generated upstream from the partition member 30 is referred to as an atomizer space
- a space in which the liquid in the housing 21 is stored downstream from the partition member 30 is referred to as a reservoir space.
- the upstream side and the downstream side mean the upstream side and the downstream side of the air flow path in the flavor inhaler 10.
- the upstream side corresponds to the mouth side on which the mouthpiece 11 is arranged, and the downstream side means the opposite side.
- a liquid can be accommodated in a reservoir space.
- the liquid (aerosol source) may be a liquid containing a flavor source such as nicotine, or may be a liquid not containing a flavor source such as nicotine.
- the battery unit 50 includes a battery housing 51, a light source 52 such as a light emitting diode, a control unit 53, and a battery 54.
- the battery housing 51 houses the light source 52, the control unit 53, and the battery 54, and a screw 51 a that engages with the outer housing 43 of the atomizer unit 20 is formed on the outer peripheral surface of the downstream end of the battery housing 51.
- the control unit 53 includes, for example, an electronic circuit board and an airflow sensor.
- the electronic circuit board controls the electronic circuit so that the battery 54 supplies power not only to the heating wire 42 of the atomizing unit 40 but also to the light source 52.
- the airflow sensor detects a change in air pressure or an airflow that occurs in the flavor inhaler 10 when the user sucks air from the mouthpiece 11.
- the electronic circuit board supplies power from the battery 54 to the heating wire 42 and the light source 52.
- the battery 54 is connected to a positive terminal 54 a that is connected to the electrode 44 of the atomizing unit 40. By connecting the battery housing 51 to the outer housing 43 of the atomizing section 40, the battery 54 comes into contact with the electrode 44 through the positive terminal 54a and is electrically connected. Further, the battery 54 is connected to a negative electrode terminal (not shown), and the negative electrode terminal is electrically connected to the supporter 46 by connecting the battery housing 51 to the outer housing 43 of the atomizing portion 40. Yes.
- the first liquid holding member 41 of the atomizing unit 40 is made of cotton, glass fiber, porous ceramic or the like, and is configured to hold a liquid for generating an aerosol. Specifically, the first liquid holding member 41 is disposed in the atomizer space so as to cover a later-described communication hole 31a of the partition member 30, and holds the liquid supplied from the reservoir space through the communication hole 31a. In addition, since the 1st liquid holding member 41 contacts with the heating wire 42 so that it may mention later, it is preferable to form from the glass fiber or porous ceramic which is a material excellent in heat resistance.
- the first liquid holding member 41 is formed in a substantially cylindrical shape and has an internal space. At least a part of the heating wire 42 is disposed in this internal space.
- the first liquid holding member 41 may have a multilayer structure by overlapping substantially cylindrical members having different diameters. Specifically, for example, a portion constituting the internal space in which the heating wire 42 is disposed is a first layer liquid holding member, and the second layer liquid holding member is disposed so as to be in contact with the outer peripheral side thereof. Good. In such a case, each member can be composed of different materials.
- the heating wire 42 is formed in a spiral shape around an axis substantially parallel to the longitudinal axis of the housing 21, and is configured to heat and atomize the liquid held by the first liquid holding member 41 to generate an aerosol.
- the heating wire 42 is configured to contact the inner wall (inner peripheral surface) of the first liquid holding member 41.
- the heating wire 42 may be formed in a spiral shape around the central axis of the cylindrical first liquid holding member 41.
- the heating wire 42 has a lead wire on the positive electrode side and a lead wire on the negative electrode side. Specifically, the lead wire on the positive electrode side of the heating wire 42 is sandwiched between the electrode 44 and the insulating ring 45 and is kept in contact with the electrode 44.
- the lead wire on the negative electrode side of the heating wire 42 passes through the outside of the first liquid holding member 41 and is sandwiched between the supporter 46 and the insulating ring 45.
- the lead wire on the positive electrode side and the lead wire on the negative electrode side of the heating wire 42 may be connected to the electrode 44 and the supporter 46 by welding or soldering, respectively.
- the outer housing 43 has a screw 43a that engages with the screw 51a of the battery housing 51 on the inner peripheral surface of the upstream end.
- An air hole 60 that communicates the outside and the inside of the flavor inhaler 10 is provided in a screw engagement portion between the outer housing 43 and the battery housing 51.
- the air hole 60 can be provided at any position of the outer housing 43 and the battery housing 51 that are located closer to the battery unit 50 than the supporter 46.
- the supporter 46 is electrically connected to a lead wire on the negative electrode side of the heating wire 42 and a negative electrode terminal (not shown) connected to the battery 54.
- the supporter 46 is a conductive member, is fixed in the outer housing 43, and supports the heating wire 42, the electrode 44, and the insulating ring 45. Since the supporter 46 is electrically connected to the negative electrode terminal connected to the battery 54 and is connected to the lead wire on the negative electrode side of the heating wire 42, the supporter 46 is a negative electrode that supplies power from the battery unit 50 to the heating wire 42. Acts as an electrode.
- the lead wire on the negative electrode side of the heating wire 42 may be configured to directly contact a negative electrode terminal (not shown) connected to the battery 54.
- the supporter 46 can be made of an insulating member.
- the positive / negative relationship of the electrodes may be reversed.
- the insulating ring 45 is provided such that the lead wire on the negative electrode side of the heating wire 42 is electrically connected to the supporter 46, and the lead wire on the positive electrode side of the heating wire 42 is electrically connected to the electrode 44.
- the outer housing 43 has a screw 43b that engages with the screw 21a of the housing 21 on the outer peripheral surface of the downstream end.
- the partition member 30 includes a plate-like portion 31, a tubular portion 32 coupled to the downstream surface of the plate-like portion 31, and a tubular extension portion 33 extending to the upstream side of the plate-like portion 31. , Defining the boundary between the reservoir space and the atomizing space.
- the plate-like portion 31 has a plurality of communication holes 31a that allow the reservoir space and the atomizing space to communicate with each other.
- the plate-like portion 31 has an opening that forms at least a part of the aerosol flow path through which the aerosol generated in the atomizing space passes at the center.
- the inside of the cylindrical part 32 communicates with the opening of the plate-like part 31 to constitute at least a part of the aerosol flow path, and has a groove 32a in which the first O-ring 34 is fitted on the outer peripheral surface thereof.
- the first O-ring 34 seals between the partition member 30 and the lid member 23.
- the extension portion 33 extends from the outer peripheral portion of the plate-like portion 31 to the upstream side, and has a groove 33a in which the second O-ring 35 is fitted on the outer peripheral surface thereof.
- the second O-ring 35 seals between the partition member 30 and the housing 21.
- the flow path tube 22 is housed inside the housing 21 and configured to be movable in the axial direction thereof.
- the channel tube 22 constitutes at least a part of the aerosol channel and supplies aerosol generated in the atomizing space to the mouthpiece 11.
- a lid member 23 is fixed that partitions the reservoir space and the atomizing space so as to be openable and closable.
- the lid member 23 is configured to be movable in the axial direction together with the flow path tube 22, and is disposed in the reservoir space on the downstream side of the partition member 30.
- the lid member 23 contacts the plate-like portion 31 of the partition member 30 and opens and closes the communication hole 31 a of the partition member 30.
- a cylindrical threaded portion 24 having a thread 24a (corresponding to an example of an engaged portion) formed on the outer peripheral surface is fixed to the downstream side of the flow channel tube 22.
- the lid member 23 is formed in a substantially cylindrical shape as a whole and is attached to the outer peripheral surface of the flow path tube 22.
- the lid member 23 has a disk-shaped lid portion 23a that abuts along the entire circumference of the plate-like portion 31 of the partition member 30 and closes the communication hole 31a.
- the aerosol generated by the heating wire 42 passes and forms part of the aerosol flow path.
- a spiral spring 28 (corresponding to an example of a biasing member) is provided on the outer periphery of the flow path tube 22.
- One end of the spring 28 is supported by the lid member 23 and is configured to urge the lid member 23 toward the atomizing space. Therefore, the spring 28 normally biases the lid member 23 so that the lid member 23 closes the communication hole 31 a of the partition member 30. The other end of the spring 28 contacts the upstream surface of the restraining member 26.
- the housing 21 has a pair of ribs 27 extending in the axial direction on the inner surface thereof.
- the rib 27 is disposed in the reservoir space.
- the rib 27 plays a role of a stopper that abuts the lid member 23 when the lid member 23 moves downstream, and restricts the movement of the lid member 23.
- the housing 21 has a pair of reinforcing members 25 extending in the radial direction on the inner surface downstream of the ribs 27.
- the reinforcing member 25 abuts on the outer peripheral surface of the flow channel tube 22 and reinforces the flow channel tube 22 so as to suppress displacement and deformation of the flow channel tube 22.
- a suppressing member 26 that suppresses leakage of the liquid in the reservoir space from the opening 21a of the housing 21 to the outside of the housing 21 is disposed.
- the restraining member 26 is fixed in the housing 21 by being sandwiched between the spring 28 and the reinforcing member 25.
- the suppression member 26 has a hole through which the flow path tube 22 passes, and at least a part thereof is made of a flexible material such as silicon.
- the spring 28 is in contact with the reinforcing member 25 indirectly.
- the spring 28 may be configured to directly contact the reinforcing member 25.
- the suppression member 26 may be disposed on the downstream side of the reinforcing member 25.
- the mouthpiece 11 has a flow tube 11a through which the aerosol generated by the atomizer unit 20 flows, and a cylindrical body 11b (corresponding to an example of a restricting member) coupled to the flow tube 11a.
- a silicon ring 12 is disposed inside the cylindrical body 11b. The silicon ring 12 prevents the liquid in the reservoir space from leaking.
- a thread 14 (corresponding to an example of an engagement part) that can be engaged with a thread 24a of a thread part 24 fixed to the flow path pipe 22 is formed on the inner peripheral surface on the upstream side of the flow pipe 11a.
- the screw thread 14 of the flow pipe 11a and the screw thread 24a of the screw portion 24 have a general screw thread shape having the shape of a spiral protrusion having a spiral surface. Further, the screw thread 14 and the screw thread 24a constitute a sliding portion that slides on the spiral surface of each other. Therefore, the thread 14 can be threadedly engaged with the thread 24a. As shown in FIG. 3, the screw thread 14 of the mouthpiece 11 contacts the screw thread 24 a of the screw part 24 in a state where the cylindrical body 11 b is in contact with the housing 21.
- a motion conversion mechanism that converts a linear motion in a direction is configured.
- the central axis of the flow pipe 11a of the mouthpiece 11 and the central axis of the flow path pipe 22 coincide. Therefore, the mouthpiece 11 is configured to be rotatable in the circumferential direction around the central axis of the flow path tube 22.
- FIG. 4 is a cross-sectional view of the flavor inhaler in a state where the reservoir space and the atomizing space communicate with each other.
- the screw thread 14 of the mouthpiece 11 is screw-engaged with the screw thread 24 a of the screw part 24, the screw part 24, the channel tube 22, and the lid member 23 move in a direction approaching the mouthpiece 11. Then, the lid member 23 opens the communication hole 31 a of the partition member 30. Thereby, the reservoir space and the atomizing space communicate with each other. Further, the lid member 23 moved by a predetermined distance in the direction approaching the mouthpiece 11 contacts the rib 27, and further movement is restricted.
- a step portion 13 is formed on the inner peripheral surface of the flow tube 11a of the mouthpiece 11, and the screw portion 24 fixed to the flow channel tube 22 moved by a predetermined distance in the direction approaching the mouthpiece 11 includes the step portion. 13 is contacted and further movement is restricted.
- the flavor suction device 10 of this embodiment is provided with the rib 27 and the step part 13, you may have only any one.
- the liquid in the reservoir space moves to the first liquid holding member 41, and the first liquid holding member 41 holds the liquid.
- the air flow sensor of the control unit 53 detects a change in air pressure or air flow due to air flowing from an air hole (not shown), and the electronic circuit board of the control unit 53 receives power from the battery 54. Electric power is supplied to the heat ray 42 and the light source 52. When electric power is supplied to the heating wire 42, the heating wire 42 generates heat, atomizing the liquid held by the first liquid holding member 41, and generating an aerosol.
- the flavor inhaler 10 shown in FIGS. 1 to 4 rotates the mouthpiece 11 to move the lid member 23 in a direction approaching the mouthpiece 11, so that the reservoir space and the atomizer 10 are moved. It is possible to communicate with the Ising space. Moreover, in this flavor suction device 10, since the cover member 23 can be arrange
- the screw thread 14 is provided on the mouthpiece 11.
- the present invention is not limited to this, and any screw that rotates in the circumferential direction around an axis parallel to the moving direction of the lid member 23 may be screwed.
- a mountain 14 can be provided.
- the lid member 23 is connected to the threaded portion 24 via the flow channel tube 22.
- the present invention is not limited to this, and the lid member 23 may be directly connected to the screw portion 24 via any member that can move in the axial direction.
- the flavor inhaler 10 shown in FIGS. 1 to 4 has the screw thread 14 on the inner peripheral surface of the flow pipe 11a and the screw thread 24a on the outer peripheral surface of the screw portion 24.
- the screw thread 14 may be formed on the outer peripheral surface of the flow pipe 11 a and the screw thread 24 a may be formed on the inner peripheral surface of the screw portion 24.
- the housing 21 also serves as a liquid tank. Instead, a housing for a liquid tank may be provided in the housing 21.
- the portion excluding the battery unit 50 from the flavor suction device 10 is described as a replaceable cartridge of the flavor suction device 10.
- the cartridge of the flavor inhaler 10 only needs to include at least a reservoir space (liquid tank) portion for storing the liquid. That is, the flavor suction device 10 of the present embodiment may be configured so that at least the reservoir space (liquid tank) portion can be replaced.
- the flavor suction device 10 of this embodiment was demonstrated as what can replace
- FIG. 5 is a perspective view showing another configuration of the partition member 30 included in the flavor inhaler 10.
- the partition member 30 has ribs 36 extending upward from the plate-like portion 31.
- the rib 36 is also fixed to the outer peripheral surface of the cylindrical portion 32.
- the lid member 23 shown in FIGS. 1 to 4 is configured to have grooves corresponding to the ribs 36.
- the screw part 24, the flow path tube 22, and the lid member 23 may rotate in the circumferential direction.
- the partition member 30 includes the ribs 36, the ribs 36 are inserted into the grooves provided in the lid member 23 when the lid member 23 contacts the partition member 30 so as to close the communication hole 31a. Thereby, it can prevent reliably that the cover member 23, the flow-path pipe
- FIG. 6 is a cross-sectional view showing another configuration of the mouthpiece 11 included in the flavor inhaler 10.
- the mouthpiece 11 is configured by separating a flow tube 11a and a cylindrical body 11b.
- the cylindrical body 11b is fixed to the housing 21 by screw engagement.
- a seal holding member 16 composed of a ring having a substantially L-shaped cross section and a ring having a rectangular cross section is fixed to the outer peripheral surface of the flow pipe 11a.
- An O-ring 17 is disposed between the seal holding member 16 and the cylindrical body 11b, and outside air is prevented from leaking from between the flow pipe 11a and the cylindrical body 11b. Thereby, the flow pipe 11a is hold
- the flow pipe 11a of the mouthpiece 11 is rotated in the circumferential direction.
- the cylindrical body 11b is fixed to the housing 21 and does not rotate, and the flow pipe 11a and the seal holding member 16 rotate.
- the lid member 23 can be opened and closed while the mouthpiece 11 is attached to the housing 21.
- a part of the reinforcing member 25 penetrates the suppressing member 26 and extends upstream.
- the spring 28 directly contacts the reinforcing member 25.
- FIG. 7A is a perspective view showing another configuration of the channel tube 22 of the flavor inhaler 10.
- FIG. 7B is a perspective view which shows the other structure of the mouthpiece 11 which the flavor suction device 10 has.
- the screw portion 24 provided on the upstream side of the flow channel tube 22 includes a spiral protrusion 24b having a spiral surface 24c instead of the screw thread 24a.
- the mouthpiece 11 includes a sliding portion 18 having a spiral surface 18 a instead of the screw thread 14.
- the spiral surface 18a of the sliding portion 18 is screwed by rotating the mouthpiece 11 in the circumferential direction. Sliding along the spiral surface 24c of the spiral projection 24b of the portion 24, the sliding portion 18 and the spiral projection 24b are engaged. Thereby, the flow path tube 22 and the lid member 23 integrated with the screw portion 24 move in a direction approaching the mouthpiece.
- FIG. 8 is a cross-sectional view showing another configuration of the atomizing section 40 of the flavor inhaler 10.
- the heating wire 42 is formed in a spiral shape in the horizontal direction.
- the heating wire 42 is formed in a spiral shape around an axis substantially orthogonal to the longitudinal axis of the housing 21 shown in FIGS. 1 to 4.
- the atomization part 40 has the cylindrical 2nd liquid holding member 47 for hold
- the second liquid holding member 47 is made of glass fiber or the like.
- the heating wire 42 is wound around the second liquid holding member 47 and formed in a spiral shape.
- the first liquid holding member 41 is formed in a flat plate shape and is arranged in the atomizer space so as to cover the communication hole 31a of the partition member 30.
- the end portion of the second liquid holding member 47 is disposed so as to contact the first liquid holding member 41.
- the liquid held in the first liquid holding member 41 moves to the second liquid holding member 47 by capillary action.
- the heating wire 42 By supplying electric power to the heating wire 42 in a state where the second liquid holding member 47 holds the liquid, the liquid is heated by the heating wire 42 and aerosol is generated.
- FIG. 9 is a cross-sectional view showing another configuration of the lid member 23 of the flavor inhaler 10.
- the lid member 23 has a plurality of plate-like lid portions 23 b that project in the radial direction.
- the lid member 23 has a number of lid portions 23 b corresponding to the number of communication holes 31 a of the partition member 30.
- the lid portion 23b partially abuts on the plate-like portion 31 along the periphery of the plate-like portion 31 of the partition member 30, and closes the communication hole 31a.
- FIG.10 and FIG.11 is a figure which shows the other example of the motion conversion mechanism which the flavor suction device 10 has.
- FIG. 10 shows a state in which the reservoir space and the atomizing space are partitioned
- FIG. 11 shows a state in which the reservoir space and the atomizing space communicate with each other.
- some components of the flavor suction device 10 are abbreviate
- the housing 21 of the flavor suction device 10 has the notch 21b formed in the outer peripheral surface over less than 360 degrees.
- the flavor suction device 10 has a rotating member 61 that is screw-engaged with a thread 24 a formed on the outer peripheral surface of the flow channel tube 22.
- the rotating member 61 has a screw thread 61a corresponding to the screw thread 24a on its inner peripheral surface.
- a lever 62 partially connected to the outside of the housing 21 from the notch 21 b is connected to the rotating member 61.
- the lever 62 When the user uses the flavor inhaler 10, the lever 62 is operated to rotate the rotating member 61 in the circumferential direction. As a result, the flow path tube 22 and the lid member 23 move in a direction approaching the rotating member 61. That is, the screw thread 61a of the rotating member 61 and the screw thread 24a of the flow channel tube 22 cause the rotating member 61 to rotate in the circumferential direction around the axis parallel to the moving direction of the cover member 23.
- the motion conversion mechanism which converts into 23 linear motions in the axial direction is configured.
- FIG. 12 is a diagram showing another example of the motion conversion mechanism of the flavor inhaler 10.
- the battery unit 50 is disposed between the mouthpiece 11 and the housing 21.
- the internal configuration of the battery unit 50 is shown in a simplified manner.
- the battery unit 50 includes a rotating member 61 that is screw-engaged with a screw thread 24 a formed on the outer peripheral surface of the flow channel tube 22.
- the inside of the rotating member 61 forms a part of the flow path through which the aerosol supplied from the flow path pipe 22 passes.
- the battery unit 50 has an aerosol flow path 55 through which the aerosol supplied from the rotating member 61 passes.
- the battery housing 51 of the battery unit 50 is rotated in the circumferential direction.
- the flow path tube 22 and the lid member 23 move in a direction approaching the rotating member 61. That is, the screw thread 61a of the rotating member 61 and the screw thread 24a of the flow channel tube 22 cause the rotating member 61 to rotate in the circumferential direction around the axis parallel to the moving direction of the cover member 23.
- the motion conversion mechanism which converts into 23 linear motions in the axial direction is configured.
- the flow path tube 22 and the lid member 23 move in a direction approaching the rotating member 61, and the lid member 23 is connected to the communication hole 31 a of the partition member 30. Is released. Thereby, the reservoir space and the atomizing space communicate with each other. According to the flavor suction device 10 shown in FIG. 12, the lid member 23 can be opened and closed while the mouthpiece 11 is attached to the housing 21.
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Abstract
Description
11…マウスピース
11a…流通管
11b…筒状体
13…段部
14…ねじ山
18…摺動部
18a…螺旋面
20…アトマイザユニット
21…ハウジング
21a…開口部
22…流路管
23…蓋部材
23a…蓋部
23b…蓋部
24…ねじ部
24a…ねじ山
24b…螺旋状突起部
24c…螺旋面
25…補強部材
26…抑制部材
27…リブ
30…仕切り部材
31…板状部
31a…連通孔
32…筒状部
40…霧化部
41…第1液体保持部材
42…電熱線
47…第2液体保持部材
50…バッテリユニット
51…バッテリハウジング
61…回動部材
61a…ねじ山
Claims (38)
- 液体を収容するためのリザーバ空間と前記液体を霧化するためのアトマイジング空間とを有するハウジングと、
前記リザーバ空間と前記アトマイジング空間と開閉可能に仕切るように移動可能な蓋部材と、
前記液体の霧化によって生じるエアロゾルを、前記アトマイジング空間から前記ハウジングの外部に供給するエアロゾル流路と、
前記蓋部材の移動方向と平行な軸を中心として周方向に回動可能な回動部材と、
前記回動部材の周方向の回動運動を前記蓋部材の軸方向の直線運動に変換する運動変換機構と、を有し、
前記蓋部材は、前記運動変換機構に直接的又は間接的に固定され、
前記運動変換機構は、前記回動部材が周方向に回動することにより、前記蓋部材を前記回動部材に近づく方向に移動させ、前記リザーバ空間と前記アトマイジング空間とを連通させるように構成される、香味吸引器用カートリッジ。 - 請求項1に記載された香味吸引器用カートリッジにおいて、
前記アトマイジング空間は、内部に前記液体を霧化するための霧化要素を備える、香味吸引器用カートリッジ。 - 請求項1又は2に記載された香味吸引器用カートリッジにおいて、
前記蓋部材と共に軸方向に移動する移動部材を有し、
前記蓋部材は、前記移動部材を介して前記運動変換機構に間接的に固定され、
前記運動変換機構は、前記回動部材の周方向の回動運動を前記蓋部材及び前記移動部材の軸方向の直線運動に変換するように構成される、香味吸引器用カートリッジ。 - 請求項3に記載された香味吸引器用カートリッジにおいて、
前記運動変換機構は、
前記移動部材の外周面又は内周面に設けられた被係合部と、
前記被係合部と係合する係合部と、を有し、
前記係合部及び前記被係合部のいずれか一方は、螺旋面を備えた螺旋状突起を有し、前記係合部及び前記被係合部の他方は、前記螺旋面を摺動する摺動部を有する、香味吸引器用カートリッジ。 - 請求項4に記載された香味吸引器用カートリッジにおいて、
前記螺旋状突起及び前記摺動部は、ねじ山である、香味吸引器用カートリッジ。 - 請求項1から5のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記リザーバ空間内の前記液体が前記ハウジングの開口部から前記ハウジングの外部に漏洩するのを抑制する抑制部材を有し、
前記開口部は、前記液体を前記リザーバ空間に供給するための供給口を構成する、香味吸引器用カートリッジ。 - 請求項6に記載された香味吸引器用カートリッジにおいて、
前記抑制部材の少なくとも一部は、可撓性材料から構成される、香味吸引器用カートリッジ。 - 請求項1から7のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記リザーバ空間と前記アトマイジング空間とを連通させる連通孔を有する仕切り部材を有し、
前記蓋部材は、前記連通孔を開閉することにより、前記リザーバ空間と前記アトマイジング空間と開閉可能に仕切る、香味吸引器用カートリッジ。 - 請求項1から8のいずれか一項に記載された非加熱型香味吸引器において、
前記蓋部材と共に軸方向に移動する移動部材を有し、
前記蓋部材は、前記移動部材を介して前記運動変換機構に間接的に固定され、
前記運動変換機構は、前記回動部材の周方向の回動運動を前記蓋部材及び前記移動部材の軸方向の直線運動に変換するように構成され、
前記移動部材は、前記エアロゾル流路の少なくとも一部を構成する流路管である、香味吸引器用カートリッジ。 - 請求項9に記載された香味吸引器用カートリッジにおいて、
前記回動部材は、前記流路管の中心軸を中心として周方向に回動可能に構成される、香味吸引器用カートリッジ。 - 請求項1から10に記載された香味吸引器用カートリッジにおいて、
前記蓋部材の移動を制限するように構成されたストッパを有し、
前記ストッパは、前記蓋部材が前記回動部材に近づく方向に所定距離移動したときに、前記蓋部材と接触するように構成される、香味吸引器用カートリッジ。 - 請求項11に記載された香味吸引器用カートリッジにおいて、
前記ストッパは、前記リザーバ空間内に配置される、香味吸引器用カートリッジ。 - 請求項1から10のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記蓋部材と共に軸方向に移動する移動部材を有し、
前記蓋部材は、前記移動部材を介して前記運動変換機構に間接的に固定され、
前記運動変換機構は、前記回動部材の周方向の回動運動を前記蓋部材及び前記移動部材の軸方向の直線運動に変換するように構成され、
前記香味吸引器用カートリッジは、さらに、
前記移動部材の移動を制限するように構成されたストッパを有し、
前記ストッパは、前記移動部材が前記回動部材に近づく方向に所定距離移動したときに、前記移動部材と直接的又は間接的に接触するように構成される、香味吸引器用カートリッジ。 - 請求項1から13のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記蓋部材を前記アトマイジング空間側に付勢するように構成される付勢部材を有する、香味吸引器用カートリッジ。 - 請求項14に記載された香味吸引器用カートリッジにおいて、
前記エアロゾル流路の少なくとも一部を構成する流路管と、
前記流路管を補強する補強部材と、を有し、
前記付勢部材は、前記補強部材に直接的又は間接的に当接する、香味吸引器用カートリッジ。 - 請求項1から15のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記回動部材は、前記エアロゾル流路の少なくとも一部を構成し且つ前記リザーバ空間よりもエアロゾル流路の下流側に設けられたマウスピースである、香味吸引器用カートリッジ。 - 請求項16に記載された香味吸引器用カートリッジにおいて、
前記マウスピースは、
前記エアロゾルが流通する流通管と、
前記ハウジングと接触して前記マウスピースの前記蓋部材に向かう軸方向の移動を制限するように構成された制限部材と、を有する、香味吸引器用カートリッジ。 - 請求項17に記載された香味吸引器用カートリッジにおいて、
前記流通管は、周方向に回動可能に前記制限部材に保持され、
前記運動変換機構は、前記流通管の周方向の回動運動を前記蓋部材の軸方向の直線運動に変換するように構成される、香味吸引器用カートリッジ。 - 請求項1から18のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記回動部材は、前記蓋部材よりも前記エアロゾル流路の下流側に配置される、香味吸引器用カートリッジ。 - 請求項1から19のいずれか一項記載された香味吸引器用カートリッジにおいて、
前記リザーバ空間と前記アトマイジング空間とを連通させる連通孔を有する仕切り部材を有し、
前記蓋部材は、前記連通孔を開閉することにより、前記リザーバ空間と前記アトマイジング空間と開閉可能に仕切り、
前記仕切り部材は、
前記アトマイジング空間で生じるエアロゾルが通過し、前記エアロゾル流路の少なくとも一部を構成する開口を有する板状部を有し、
前記連通孔は、前記板状部に形成される、香味吸引器用カートリッジ。 - 請求項20に記載された香味吸引器用カートリッジにおいて、
前記仕切り部材は、前記板状部と結合し、その内部が前記板状部の開口と連通する筒状部を有する、香味吸引器用カートリッジ。 - 請求項20又は21に記載された香味吸引器用カートリッジにおいて、
前記蓋部材は、前記板状部の全周に沿って前記板状部と当接して前記連通孔を閉止する蓋部を有する、香味吸引器用カートリッジ。 - 請求項20又は21に記載された香味吸引器用カートリッジにおいて、
前記蓋部材は、前記板状部の周囲に沿って前記板状部と部分的に当接して前記連通孔を閉止する蓋部を有する、香味吸引器用カートリッジ。 - 請求項1から23のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記蓋部材は、前記リザーバ空間内に配置される、香味吸引器用カートリッジ。 - 請求項1から24のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記アトマイジング空間内に配置され、前記液体を霧化するための霧化要素と、
前記リザーバ空間と前記アトマイジング空間とを連通させる連通孔を有する仕切り部材と、を有し、
前記蓋部材は、前記連通孔を開閉することにより、前記リザーバ空間と前記アトマイジング空間と開閉可能に仕切り、
前記霧化要素は、電熱線を有し、
前記電熱線は、前記ハウジングの長手方向軸と略平行の軸を中心に螺旋状に形成される、香味吸引器用カートリッジ。 - 請求項25に記載された香味吸引器用カートリッジにおいて、
前記連通孔を介して供給される前記液体を保持する第1液体保持部材を有し、
前記第1液体保持部材は、前記アトマイザ空間内に配置される、香味吸引器用カートリッジ。 - 請求項26に記載された香味吸引器用カートリッジにおいて、
前記第1液体保持部材は、略筒状に形成されて内部空間を有し、
前記電熱線の少なくとも一部は、前記第1液体保持部材の前記内部空間に配置される、香味吸引器用カートリッジ。 - 請求項27に記載された香味吸引器用カートリッジにおいて、
前記電熱線は、略筒状の前記第1液体保持部材の中心軸を中心に螺旋状に形成される、香味吸引器用カートリッジ。 - 請求項27又は28に記載された香味吸引器用カートリッジにおいて、
前記霧化要素の前記電熱線は、前記第1液体保持部材の内壁に接触する、香味吸引器用カートリッジ。 - 請求項26から29のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記第1液体保持部材は、前記連通孔を覆うように前記アトマイザ空間内に配置される、香味吸引器用カートリッジ。 - 請求項1から24のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記アトマイジング空間内に配置され、前記液体を霧化するための霧化要素と、
前記リザーバ空間と前記アトマイジング空間とを連通させる連通孔を有する仕切り部材と、を有し、
前記蓋部材は、前記連通孔を開閉することにより、前記リザーバ空間と前記アトマイジング空間と開閉可能に仕切り、
前記霧化要素は、電熱線を有し、
前記電熱線は、前記ハウジングの長手方向軸と略直交する軸を中心に螺旋状に形成される、香味吸引器用カートリッジ。 - 請求項31に記載された香味吸引器用カートリッジにおいて、
前記連通孔を介して供給される前記液体を保持する平板状の第1液体保持部材を有し、
前記第1液体保持部材は、前記アトマイザ空間内に配置される、香味吸引器用カートリッジ。 - 請求項32に記載された香味吸引器用カートリッジにおいて、
前記第1液体保持部材は、前記連通孔を覆うように前記アトマイザ空間内に配置される、香味吸引器用カートリッジ。 - 請求項31から33のいずれか一項に記載された香味吸引器用カートリッジにおいて、
前記連通孔を介して供給される前記液体を保持する第2液体保持部材を有し、
前記電熱線は、前記第2液体保持部材に巻きつけられる、香味吸引器用カートリッジ。 - 請求項34に記載された香味吸引器用カートリッジにおいて、
前記連通孔を介して供給される前記液体を保持する平板状の第1液体保持部材を有し、
前記第1液体保持部材は、前記アトマイザ空間内に配置され、
前記第2液体保持部材は、前記第1液体保持部材と接触する、香味吸引器用カートリッジ。 - 請求項1から35に記載された香味吸引器用カートリッジを備えた香味吸引器。
- 請求項36に記載された香味吸引器において、
前記アトマイジング空間内に配置され、前記液体を霧化するための霧化要素と、
前記霧化要素に電力を供給する電力供給ユニットを備える、香味吸引器。 - 請求項37に記載された香味吸引器において、
前記電力供給ユニットは、前記回動部材を含む、香味吸引器。
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EP16900417.3A EP3437495B1 (en) | 2016-04-27 | 2016-04-27 | Flavor inhaler cartridge and flavor inhaler |
PCT/JP2016/063153 WO2017187545A1 (ja) | 2016-04-27 | 2016-04-27 | 香味吸引器用カートリッジ及び香味吸引器 |
CA3022310A CA3022310C (en) | 2016-04-27 | 2016-04-27 | Flavor inhaler cartridge and flavor inhaler |
JP2018514011A JP6644134B2 (ja) | 2016-04-27 | 2016-04-27 | 香味吸引器用カートリッジ及び香味吸引器 |
CN201680084997.0A CN109152416B (zh) | 2016-04-27 | 2016-04-27 | 香味吸入器用烟弹及香味吸入器 |
EA201892437A EA036681B1 (ru) | 2016-04-27 | 2016-04-27 | Картридж для ароматического ингалятора и ароматический ингалятор |
KR1020187033776A KR102225226B1 (ko) | 2016-04-27 | 2016-04-27 | 향미 흡인기용 카트리지 및 향미 흡인기 |
TW106108141A TWI649041B (zh) | 2016-04-27 | 2017-03-13 | 香味吸嚐器用筒匣及香味吸嚐器 |
US16/168,376 US10993477B2 (en) | 2016-04-27 | 2018-10-23 | Flavor inhaler cartridge and flavor inhaler |
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KR102225226B1 (ko) | 2021-03-08 |
CA3022310A1 (en) | 2017-11-02 |
JP6644134B2 (ja) | 2020-02-12 |
TWI649041B (zh) | 2019-02-01 |
US10993477B2 (en) | 2021-05-04 |
EA201892437A1 (ru) | 2019-04-30 |
JPWO2017187545A1 (ja) | 2019-01-24 |
CA3022310C (en) | 2021-07-27 |
US20190053544A1 (en) | 2019-02-21 |
CN109152416B (zh) | 2021-07-20 |
EA036681B1 (ru) | 2020-12-08 |
CN109152416A (zh) | 2019-01-04 |
KR20180135046A (ko) | 2018-12-19 |
EP3437495B1 (en) | 2021-02-17 |
EP3437495A4 (en) | 2019-12-11 |
EP3437495A1 (en) | 2019-02-06 |
TW201737817A (zh) | 2017-11-01 |
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