EP4604780A1 - Aerosol delivery systems and methods - Google Patents
Aerosol delivery systems and methodsInfo
- Publication number
- EP4604780A1 EP4604780A1 EP23800506.0A EP23800506A EP4604780A1 EP 4604780 A1 EP4604780 A1 EP 4604780A1 EP 23800506 A EP23800506 A EP 23800506A EP 4604780 A1 EP4604780 A1 EP 4604780A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- flow path
- baffle
- fluid
- aerosol
- subsystem
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- 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
- 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
Definitions
- Aerosol delivery systems such as electronic cigarettes (e-cigarettes) generally contain an aerosol generating material, such as a chamber of a source solid or liquid, which may contain an active substance and / or a flavour, from which an aerosol or vapour is generated for inhalation by a user, for example through heat vaporisation.
- an aerosol delivery system will typically comprise an aerosol generation area containing an aerosol generator, e.g. a heating element, arranged to vaporise or aerosolise a portion of precursor material to generate a vapour or aerosol in the aerosol generation area.
- Some electronic cigarettes may also include a flavour element in the air flow path through the device to impart additional flavours.
- WO 2016/012774 discloses electronic vapour provision systems comprising a collar around a housing for a user to adjust alignment between one or more air inlet holes of the housing and the collar, to provide different levels of ventilation to the system.
- WO 2017/046566 discloses an aerosol provision system with an airflow adjuster in the airflow path, downstream from the air inlet.
- an aerosol delivery system comprises functionality enabling operating characteristics of the system to be adjusted, preferably automatically, in order to target certain operating characteristics which may be desirable to a user.
- the term “delivery system” is intended to encompass systems that deliver at least one substance to a user in use, and includes: combustible aerosol provision systems, such as cigarettes, cigarillos, cigars, and tobacco for pipes or for roll-your-own or for make-your-own cigarettes (whether based on tobacco, tobacco derivatives, expanded tobacco, reconstituted tobacco, tobacco substitutes or other smokable material); non-combustible aerosol provision systems that release compounds from an aerosolgenerating material without combusting the aerosol-generating material, such as electronic cigarettes, tobacco heating products, and hybrid systems to generate aerosol using a combination of aerosolgenerating materials; and aerosol-free delivery systems that deliver the at least one substance to a user orally, nasally, transdermally or in another way without forming an aerosol, including but not limited to, lozenges, gums, patches, articles comprising inhalable powders, and oral products such as oral tobacco which includes snus or moist snuff, wherein the at least one substance may or may not
- a “combustible” aerosol provision system is one where a constituent aerosol-generating material of the aerosol provision system (or component thereof) is combusted or burned during use in order to facilitate delivery of at least one substance to a user.
- the delivery system is a combustible aerosol provision system, such as a system selected from the group consisting of a cigarette, a cigarillo and a cigar.
- the disclosure relates to a component for use in a combustible aerosol provision system, such as a filter, a filter rod, a filter segment, a tobacco rod, a spill, an aerosolmodifying agent release component such as a capsule, a thread, or a bead, or a paper such as a plug wrap, a tipping paper or a cigarette paper.
- a component for use in a combustible aerosol provision system such as a filter, a filter rod, a filter segment, a tobacco rod, a spill, an aerosolmodifying agent release component such as a capsule, a thread, or a bead, or a paper such as a plug wrap, a tipping paper or a cigarette paper.
- Non-Combustible Aerosol Provision System is one where a constituent aerosol-generating material of the aerosol provision system (or component thereof) is not combusted or burned in order to facilitate delivery of at least one substance to a user.
- the delivery system is a non-combustible aerosol provision system, such as a powered non-combustible aerosol provision system.
- the non-combustible aerosol provision system is an electronic cigarette, also known as a vaping device or electronic nicotine delivery system (END), although it is noted that the presence of nicotine in the aerosol-generating material is not a requirement.
- END electronic nicotine delivery system
- the non-combustible aerosol provision system is a hybrid system to generate aerosol using a combination of aerosol-generating materials, one or a plurality of which may be heated.
- Each of the aerosol-generating materials may be, for example, in the form of a solid, liquid or gel and may or may not contain nicotine.
- the hybrid system comprises a liquid or gel aerosol-generating material and a solid aerosol-generating material.
- the solid aerosolgenerating material may comprise, for example, tobacco or a non-tobacco product.
- the non-combustible aerosol provision system may comprise a non-combustible aerosol provision device and a consumable for use with the non-combustible aerosol provision device.
- the non-combustible aerosol provision system such as a non-combustible aerosol provision device thereof, may comprise a power source and a controller.
- the power source may, for example, be an electric power source or an exothermic power source.
- the exothermic power source comprises a carbon substrate which may be energised so as to distribute power in the form of heat to an aerosol-generating material or to a heat transfer material in proximity to the exothermic power source.
- the non-combustible aerosol provision system may comprise an area for receiving the consumable, an aerosol generator, an aerosol generation area, a housing, a mouthpiece, a filter and/or an aerosol-modifying agent.
- the consumable for use with the non-combustible aerosol provision device may comprise aerosol-generating material, an aerosol-generating material storage area, an aerosolgenerating material transfer component, an aerosol generator, an aerosol generation area, a housing, a wrapper, a filter, a mouthpiece, and/or an aerosol-modifying agent.
- the delivery system is an aerosol-free delivery system that delivers at least one substance to a user orally, nasally, transdermally or in another way without forming an aerosol, including but not limited to, lozenges, gums, patches, articles comprising inhalable powders, and oral products such as oral tobacco which includes snus or moist snuff, wherein the at least one substance may or may not comprise nicotine.
- the substance to be delivered may be an aerosol-generating material or a material that is not intended to be aerosolised.
- either material may comprise one or more active constituents, one or more flavours, one or more aerosol-former materials, and/or one or more other functional materials.
- the substance to be delivered comprises an active substance.
- the active substance as used herein may be a physiologically active material, which is a material intended to achieve or enhance a physiological response.
- the active substance may for example be selected from nutraceuticals, nootropics, psychoactives.
- the active substance may be naturally occurring or synthetically obtained.
- the active substance may comprise for example nicotine, caffeine, taurine, theine, vitamins such as B6 or B12 or C, melatonin, cannabinoids, or constituents, derivatives, or combinations thereof.
- the active substance may comprise one or more constituents, derivatives or extracts of tobacco, cannabis or another botanical.
- the active substance comprises nicotine. In some embodiments, the active substance comprises caffeine, melatonin or vitamin B12.
- the active substance may comprise one or more constituents, derivatives or extracts of cannabis, such as one or more cannabinoids or terpenes.
- the active substance may comprise or be derived from one or more botanicals or constituents, derivatives or extracts thereof.
- botanical includes any material derived from plants including, but not limited to, extracts, leaves, bark, fibres, stems, roots, seeds, flowers, fruits, pollen, husk, shells or the like.
- the material may comprise an active compound naturally existing in a botanical, obtained synthetically.
- the material may be in the form of liquid, gas, solid, powder, dust, crushed particles, granules, pellets, shreds, strips, sheets, or the like.
- the active substance comprises or is derived from one or more botanicals or constituents, derivatives or extracts thereof and the botanical is tobacco. In some embodiments, the active substance comprises or derived from one or more botanicals or constituents, derivatives or extracts thereof and the botanical is selected from eucalyptus, star anise, cocoa and hemp.
- the flavour may comprise a sensate, which is intended to achieve a somatosensorial sensation which are usually chemically induced and perceived by the stimulation of the fifth cranial nerve (trigeminal nerve), in addition to or in place of aroma or taste nerves, and these may include agents providing heating, cooling, tingling, numbing effect.
- a suitable heat effect agent may be, but is not limited to, van illyl ethyl ether and a suitable cooling agent may be, but not limited to eucolyptol, WS-3.
- the aerosol-generating material may comprise one or more active substances and/or flavours, one or more aerosol-former materials, and optionally one or more other functional material. Aerosol-former material
- the aerosol-former material may comprise one or more constituents capable of forming an aerosol.
- the aerosol-former material may comprise one or more of glycerol, propylene glycol, diethylene glycol, triethylene glycol, tetraethylene glycol, 1 ,3-butylene glycol, erythritol, meso- Erythritol, ethyl vanillate, ethyl laurate, a diethyl suberate, triethyl citrate, triacetin, a diacetin mixture, benzyl benzoate, benzyl phenyl acetate, tributyrin, lauryl acetate, lauric acid, myristic acid, and propylene carbonate.
- the one or more other functional materials may comprise one or more of pH regulators, colouring agents, preservatives, binders, fillers, stabilizers, and/or antioxidants.
- a consumable is an article comprising or consisting of aerosol-generating material, part or all of which is intended to be consumed during use by a user.
- a consumable may comprise one or more other components, such as an aerosol-generating material storage area, an aerosol-generating material transfer component, an aerosol generation area, a housing, a wrapper, a mouthpiece, a filter and/or an aerosol-modifying agent.
- a consumable may also comprise an aerosol generator, such as a heater, that emits heat to cause the aerosol-generating material to generate aerosol in use.
- the heater may, for example, comprise combustible material, a material heatable by electrical conduction, or a susceptor.
- a susceptor is a material that is heatable by penetration with a varying magnetic field, such as an alternating magnetic field.
- the susceptor may be an electrically-conductive material, so that penetration thereof with a varying magnetic field causes induction heating of the heating material.
- the heating material may be magnetic material, so that penetration thereof with a varying magnetic field causes magnetic hysteresis heating of the heating material.
- the susceptor may be both electrically-conductive and magnetic, so that the susceptor is heatable by both heating mechanisms.
- the device that is configured to generate the varying magnetic field is referred to as a magnetic field generator, herein.
- aerosol delivery systems (which may also be referred to as vapour delivery systems) such as nebulisers or e-cigarettes.
- e- cigarette or “electronic cigarette” may sometimes be used, but it will be appreciated this term may be used interchangeably with aerosol delivery system I device and electronic aerosol delivery system I device.
- aerosol delivery systems such as nebulisers or e-cigarettes.
- vapour delivery systems such as nebulisers or e-cigarettes.
- e- cigarette or “electronic cigarette” may sometimes be used, but it will be appreciated this term may be used interchangeably with aerosol delivery system I device and electronic aerosol delivery system I device.
- aerosol and vapour and related terms such as “vaporise”, “volatilise” and “aerosolise” may generally be used interchangeably.
- Cartridges are electrically and mechanically coupled to the control unit for use, for example using a screw thread, bayonet, or magnetic coupling with appropriately arranged electrical contacts.
- the cartridge may be removed from the reusable part and a replacement cartridge attached in its place.
- Systems and devices conforming to this type of two-part modular configuration may generally be referred to as two-part systems/devices.
- certain embodiments of the disclosure are based on aerosol delivery systems which are operationally configured to provide functionality in accordance with the principles described herein and the constructional aspects of systems configured to provide the functionality in accordance with certain embodiments of the disclosure is not of primary significance.
- the present invention provides an aerosol delivery subsystem for an aerosol delivery system, comprising: an inlet; an outlet; and a baffle configured to move and thereby modify fluid flow along a flow path between the inlet and the outlet in use, in response to fluid being drawn along the flow path.
- the present invention also provides a method of manufacturing an aerosol delivery subsystem, comprising providing: an inlet; an outlet; and a baffle configured to move and thereby modify fluid flow along a flow path between the inlet and the outlet in use, in response to fluid being drawn along the flow path.
- the present invention also provides a method of modifying fluid flow along a flow path between an inlet and an outlet of an aerosol delivery subsystem, the method comprising: moving a baffle in response to fluid being drawn along the flow path.
- the present invention also provides preferred embodiments as claimed in the dependent claims.
- the claimed invention generally provides a sub-assembly or subsystem suitable for use in an aerosol delivery system, or configured for use in an aerosol delivery system.
- the subsystem may generally form part of an aerosol delivery system and in particular may form part of the reusable device and/or the consumable cartridge.
- Figure 1 is a schematic cross-section view of an aerosol delivery system in accordance with some embodiments of the disclosure
- Figure 2a is a schematic cross-section view of the air inlet region of the aerosol delivery system of Figure 1 (shown dashed in Figure 1), showing an aerosol delivery subsystem in accordance with some embodiments of the disclosure;
- Figure 3i is a schematic perspective view of the collar shown in Figure 3h.
- FIG. 1 is a cross-sectional view through an example aerosol delivery system 1 in accordance with certain embodiments of the disclosure.
- the aerosol delivery system 1 comprises two main components, namely a reusable part 2 and a replaceable I disposable consumable cartridge part 4. In normal use, the reusable part 2 and the cartridge part 4 are releasably coupled together at an interface 6.
- the cartridge part 4 When the cartridge part 4 is exhausted or the user simply wishes to switch to a different cartridge part 4, the cartridge part 4 may be removed from the reusable part 2 and a replacement cartridge part 4 attached to the reusable part 2 in its place.
- the interface 6 provides a structural, electrical and airflow path connection between the two parts 2, 4 and may be established in accordance with conventional techniques, for example based around a screw thread, magnetic or bayonet fixing with appropriately arranged electrical contacts and openings for establishing the electrical connection and airflow path between the two parts 2, 4 as appropriate.
- the specific manner by which the cartridge part 4 mechanically mounts to the reusable part 2 is not significant to the principles described herein, but for the sake of a concrete example is assumed here to comprise a magnetic coupling (not represented in Figure 1).
- the interface 6 in some implementations may not support an electrical and I or airflow path connection between the respective parts 2, 4.
- an aerosol generator may be provided in the reusable part 2 rather than in the cartridge part 4, or the transfer of electrical power from the reusable part 2 to the cartridge part 4 may be wireless (e.g. based on electromagnetic induction), so that an electrical connection between the reusable part 2 and the cartridge part 4 is not needed.
- the airflow through the electronic cigarette might not go through the reusable part 2, so that an airflow path connection between the reusable part 2 and the cartridge part 4 is not needed.
- a portion of the airflow path may be defined at the interface between portions of the reusable part 2 and cartridge part 4 when these are coupled together for use.
- the cartridge I consumable part 4 may in accordance with certain embodiments of the disclosure be broadly conventional.
- the cartridge part 4 comprises a cartridge housing 42 formed of a plastics material.
- the cartridge housing 42 supports other components of the cartridge part 4 and provides the mechanical interface 6 with the reusable part 2.
- the cartridge housing 42 is generally circularly symmetric about a longitudinal axis along which the cartridge part 4 couples to the reusable part 2.
- the cartridge part 4 has a length of around 4 cm and a diameter of around 1 .5 cm.
- the specific geometry, and more generally the overall shapes and materials used, may be different in different implementations.
- the reservoir 44 stores a supply of liquid aerosol generating material.
- the liquid reservoir 44 has an annular shape with an outer wall defined by the cartridge housing 42 and an inner wall that defines an airflow path 52 through the cartridge part 4.
- the reservoir 44 is closed at each end with end walls to contain the aerosol generating material.
- the reservoir 44 may be formed in accordance with conventional techniques, for example it may comprise a plastics material and be integrally moulded with the cartridge housing 42.
- electrical power may be supplied to the aerosol generator 48 to vaporise an amount of aerosol generating material (aerosol generating material) drawn to the vicinity of the aerosol generator 48 by the wick 46. Vaporised aerosol generating material may then become entrained in air drawn along the cartridge airflow path from the vaporisation region towards the mouthpiece outlet 50 for user inhalation.
- aerosol generating material aerosol generating material
- the reusable part 2 comprises an outer housing 12 having with an opening that defines an air inlet 28 for the e-cigarette, a power source 26 (for example a battery) for providing operating power for the electronic cigarette, control circuitry I controller 22 for controlling and monitoring the operation of the electronic cigarette, a first user input button 14, a second user input button 16, and a visual display 24.
- a power source 26 for example a battery
- the air inlet 28 connects to an airflow path 51 through the reusable part 2.
- the reusable part airflow path 51 in turn connects to the cartridge airflow path 52 across the interface 6 when the reusable part 2 and cartridge part 4 are connected together.
- air is drawn in through the air inlet 28, along the reusable part airflow path 51 , across the interface 6, through the aerosol generation area in the vicinity of the aerosol generator 48 (where vaporised aerosol generating material becomes entrained in the air flow), along the cartridge airflow path 52, and out through the mouthpiece opening 50 for user inhalation.
- the power source 26 in this example is rechargeable and may be of a conventional type, for example of the kind normally used in electronic cigarettes and other applications requiring provision of relatively high currents over relatively short periods.
- the power source 26 may be recharged through a charging connector in the reusable part housing 12, for example a USB connector.
- First and/or second user input buttons 14, 16 may be provided, which in this example are conventional mechanical buttons, for example comprising a spring mounted component which may be pressed by a user to establish an electrical contact.
- the input buttons may be considered input devices for detecting user input and the specific manner in which the buttons are implemented is not significant.
- the buttons may be assigned to functions such as switching the aerosol delivery system 1 on and off, and adjusting user settings such as a power to be supplied from the power source 26 to the aerosol generator 48.
- the inclusion of user input buttons is optional, and in some embodiments buttons may not be included.
- a display 24 may be provided to give a user with a visual indication of various characteristics associated with the aerosol delivery system, for example current power setting information, remaining power source power, and so forth.
- the display may be implemented in various ways.
- the display 24 comprises a conventional pixilated LCD screen that may be driven to display the desired information in accordance with conventional techniques.
- the display may comprise one or more discrete indicators, for example LEDs, that are arranged to display the desired information, for example through particular colours and I or flash sequences. More generally, the manner in which the display 24 is provided and information is displayed to a user using the display is not significant to the principles described herein.
- some embodiments may not include a visual display and/or may include other means for providing a user with information relating to operating characteristics of the aerosol delivery system, for example using audio signalling, or may not include any means for providing a user with information relating to operating characteristics of the aerosol delivery system.
- the controller 26 may comprise an application specific integrated circuit (ASIC) or microcontroller, for controlling the aerosol delivery device.
- ASIC application specific integrated circuit
- the microcontroller or ASIC may include a CPU or micro-processor.
- the operations of a CPU and other electronic components are generally controlled at least in part by software programs running on the CPU (or other component).
- software programs may be stored in nonvolatile memory, such as ROM, which can be integrated into the microcontroller itself, or provided as a separate component.
- the CPU may access the ROM to load and execute individual software programs as and when required.
- the reusable part 2 comprises an airflow sensor 30 which is electrically connected to the controller 22.
- the airflow sensor 30 comprises a so-called “puff sensor”, in that the airflow sensor 30 is used to detect when a user is puffing on the device.
- the airflow sensor 30 comprises a switch in an electrical path providing electrical power from the power source 26 to the aerosol generator 48.
- the airflow sensor 30 generally comprises a pressure sensor configured to close the switch when subjected to a particular range of pressures, enabling current to flow from the power source 26 to the aerosol generator 48 once the pressure in the vicinity of the airflow sensor 30 drops below a threshold value.
- the airflow sensor 30 is mounted to a printed circuit board 31 as described further herein, but this is not essential.
- the airflow sensor 30 may comprise any sensor which is configured to determine a characteristic of airflow in an airflow path 51 disposed between air inlet 28 and mouthpiece opening 50, for example a pressure sensor or transducer (for example a membrane or solid-state pressure sensor), a combined temperature and pressure sensor, or a microphone (for example an electret-type microphone), which is sensitive to changes in air pressure, including acoustical signals.
- the airflow sensor 30 is situated within a sensor cavity 32, which comprises the interior space defined by one or more chamber walls 34.
- the sensor cavity 32 may also be referred to herein as a sensor chamber 32 (these terms may be used interchangeably), and comprises a region internal to one or more chamber walls 34 in which an airflow sensor 30 can be fully or partially situated.
- the airflow sensor 30 is mounted to a printed circuit board (PCB) 31 , which comprises one of the chamber walls of a sensor housing comprising the sensor chamber I cavity 32.
- PCB printed circuit board
- a deformable membrane is disposed across an opening communicating between the sensor cavity 32 containing the sensor 30, and a portion of the airflow path disposed between air inlet 28 and mouthpiece opening 50.
- the deformable membrane covers the opening, and is attached to one or more of the chamber walls according to approaches described further herein.
- the aerosol delivery system 1 comprises communication circuitry configured to enable a connection to be established with one or more further electronic devices (for example, a storage I charging case, and / or a refill I charging dock) to enable data transfer between the aerosol delivery system 1 and further electronic device(s).
- the communication circuitry is integrated into controller 22, and in other embodiments it is implemented separately (comprising, for example, separate application-specific integrated circuit(s) I circuitry I chip(s) I chipset(s)).
- the communication circuitry may comprise a separate module to the controller 22 which, while connected to controller 22, provides dedicated data transfer functionality for the aerosol delivery device.
- the communication circuitry is configured to support communication between the aerosol delivery system 1 and one or more further electronic devices over a wireless interface.
- the communication circuitry may be configured to support wireless communications between the aerosol delivery system 1 and other electronic devices such as a case, a dock, a computing device such as a smartphone or PC, a base station supporting cellular communications, a relay node providing an onward connection to a base station, a wearable device, or any other portable or fixed device which supports wireless communications.
- other electronic devices such as a case, a dock, a computing device such as a smartphone or PC, a base station supporting cellular communications, a relay node providing an onward connection to a base station, a wearable device, or any other portable or fixed device which supports wireless communications.
- the baffle 60 is shown to be internal, within the inlet 28, flush with the reusable part 2 and consumable part 4, but in other embodiments the baffle 60 may be more generally positioned anywhere suitable for modifying the fluid flow, such as proximal to the air inlet 28, including external to and upstream of the air inlet 28, or alternatively generally within or proximal to the flow path 52, i.e. downstream from the air inlet 28 in the flow path 52.
- the proximity to the air inlet 28 or flow path 52 must be such that the baffle 60 impacts the air flow therethrough and includes, but is not limited to being, adjacent thereto. Various such other arrangements are described later with reference to Figures 3a-3h.
- the flexible, resilient nature of the membrane 60 allows the baffle 60 to move by temporarily deflecting and/or deforming, altering the size of the aperture 61 when fluid is drawn along the flow path 52, e.g. when the user inhales (or exhales) on the outlet 50. When inhaling occurs, this reduces the fluid pressure in the flow path 52 and thus draws air in through the air inlet 28 via the aperture 61 in the baffle 60 and draws aerosol to the user.
- the baffle 60 comprises a flexible membrane 60 as here, then when the user inhales, the drop in pressure in the flow path 52 creates a pressure differential from ambient pressure across the flow path 52 and causes the baffle 60 to be sucked into the air inlet 28, stretching the membrane and thereby opening the aperture 61 further, increasing the effective cross-sectional area of the flow path 52 and reducing the restriction/obstruction of air flow into the air inlet 28, thus altering the ventilation and hence fluid flow through the air inlet 28 and along the flow path 52 to the outlet 50.
- the resilient nature of the membrane 60 means that it returns to its original, non-deformed shape when the pressure differential is removed.
- the baffle 60 may be configured to modify a fluid pressure differential between a fluid pressure in the flow path 52 and ambient, the differential being about 98- 1961 Pa (10-200 mm H2O), preferably about 294-981 Pa (30-100 mm H2O), more preferably about 294-686 Pa (30-70 mm H 2 O), 588-785 Pa (60-80 mm H 2 O), 588-883 Pa (60-90 mm H 2 O), 686-883 Pa (70-90 mm H 2 O), 785-981 Pa (80-100 mm H 2 O) or 686-785 Pa (70-80 mm H 2 O).
- the membrane material may be chosen to provide desirable movement / fluid pressure differential by deflection and/or deformation and said movement may be proportional to the fluid pressure differential caused by the user inhaling or exhaling on the outlet.
- the material may be sufficiently stiff to move only when the pressure differential exceeds a threshold.
- variable ventilation can also be used to adjust the draw resistance of the e-cigarette.
- Figure 2c is a schematic top-down view of the aperture 61 in the flexible membrane baffle 60 in Figures 2a-2b and illustrates how the aperture 61 may deform, enlarging as pressure in the flow path 52 decreases (or increases) when the user inhales (or exhales) on the outlet 50.
- the aperture 61 is variable in size due to the flexible nature of the membrane baffle 60.
- the nominal diameter do of the flow path through the aperture 61 is within the ranges 0.1-2.0mm, 0.25-1 ,5mm or 0.5-1 .0mm in diameter.
- the membrane baffle 60 may be suitably flexible to move by deflecting or deforming to provide a design maximum enlarged aperture diameter ds (e.g. when a pressure differential across the aperture 61 is equal to ambient pressure) within the ranges 0.5-5.0mm, 0.75- 2.5mm, 1 .0-2.0mm or 1 .5-2.0mm.
- the nominal to enlarged diameter range (do- ds) is 0.5-2.0 mm.
- the baffle 60 may comprise one or more slits 62 instead of, or in addition to, one or more apertures 61 .
- a slit beneficially allows greater deformation under pressure than an aperture, thus allowing more cross-sectional area variation for the same pressure differential range, and greater air flow therethrough when under pressure.
- a slit may also be used to substantially seal the inlet at ambient pressure, e.g. when the device is not in use, preventing debris entering, but still allow deformation and hence air flow when under pressure.
- Figure 2c illustrates two perpendicular, horizontal and vertical ‘crosshair’ slits 62 across the aperture 61 , to aid deformation. In other embodiments, any other slit arrangements may be used.
- FIGS 3a-3h are schematic cross-section views of the air inlet region of the aerosol delivery system 1 of Figure 1 (shown dashed in Figure 1), showing various baffles 60 in different forms to the flexible membrane baffle 60 of Figures 1 -2b, with the other details of the subsystem (and optional wider system) not shown for clarity.
- the baffle 60 may generally comprise a resilient element, a flexible membrane, a flap, an adjustable diaphragm of overlapping flaps (akin to a camera aperture opening), a valve, a biasing element, telescoping elements, a slider and/or a collar.
- the baffle 60 may comprise a biasing element 63 to bias the baffle 60 into a predetermined configuration such as open, closed or anything in between.
- the baffle 60 moves by translating or rotating to alter the obstruction to the flow path and the effective diameter / cross-sectional area of the air inlet 28 or the flow path 52, rather than by deflection I deformation as in Figures 1-2c.
- the same ranges for the effective diameter / cross-sectional area of the air inlet 28 or the flow path 52 outlined above for the flexible membrane baffle 60 may also apply here.
- the rigid baffle 60 can be configured to move to increase the effective cross-sectional area of the flow path 52 and reduce the restriction/obstruction of air flow into the air inlet 28 when the user inhales, as per the flexible membrane embodiment, or conversely to decrease the effective cross-sectional area of the flow path 52.
- FIG. 3d illustrates two baffles 60a, 60b, one on each of the reusable part 2 and the consumable part 4.
- the baffles 60 may be configured to move independently or collectively and this provides greater freedom of movement.
- the baffles 60 may be moved to alter the flow path towards the reusable part 2 and away from the consumable part 4, or vice versa, or moved cooperatively to reduce or enlarge a central aperture formed between the baffles
- FIG. 3e illustrates the baffle 60 comprising a hinged flap, with a biasing element 63.
- the baffle 60 moves by pivoting (rotating) to modify the fluid flow, and the baffle 60 is biased into a partially open configuration by the biasing element 63, to allow air flow into the inlet 28 and down the flow path 52 even when there is lower than ambient pressure in the flow path 52 (which might otherwise force the baffle 60 to close and fully obstruct the air inlet 28).
- other or additional biasing elements 63 may be provided, for example to limit opening of the baffle 60, or to bias the baffle 60 into a closed position.
- the cross-sectional area of the flow path can be modified similarly to the preceding ‘slider’ examples.
- Figure 3f illustrates the baffle 60 comprising multiple telescoping elements 60. This arrangement provides a compact baffle 60 that can be readily extended/contracted to adjust fluid flow along the flow path 52. Although not shown, in some embodiments these elements 60 may comprise one or more apertures 61 to permit air flow therethrough even when the elements span the inlet 28.
- Figure 3g illustrates the baffle 60 comprising a simple valve, having a T flow path therethrough, where the horizontal path of the T effectively provides two inlet apertures 28 which are adjustable in size (vertical height) as the baffle 60 moves vertically as shown.
- An actuator 64 is shown for opening and closing the baffle 60 in response to fluid being drawn along the flow path 52.
- the collar 60 comprises multiple apertures 61 which are azimuthally spaced around the circumference of the collar 60.
- Each aperture 61 allows air to flow through the collar in a radial direction, i.e. from outside the collar 60 to inside the collar 60, and the collar 60 is rotatable to vary alignment between the apertures 61 in the collar 60 and the air inlets 28.
- the multiple apertures 61 can be arranged on the collar 60 so that in various predetermined positions of the collar 60 with respect to the housing 12, none, any subset of or all air inlets 28 are blocked or open. A similar arrangement is detailed further in WO 2016/012774, which is incorporated herein by reference.
- apertures 61 may vary in size or taper, so that more granular variation and modification of air flow can be provided. Similar such arrangements are detailed further in WO 2017/046566, which is incorporated herein by reference. Protection may be sought for any features disclosed in any one or more published documents referenced herein in combination with the present disclosure.
- the collar 60 itself has no apertures 61 and moves only axially to vary coverage of the air inlet(s) 28.
- the system can be configured to operate in a similar fashion to the Figure 1 embodiment, in which when the user inhales, the baffle 60 moves to increase the effective cross-sectional area of the flow path 52 and reduce the restriction I obstruction of air flow into the air inlet 28, thus altering the air flow through the air inlet 28 and along the flow path 52.
- the baffle 60 may instead be configured to move to decrease the effective cross-sectional area of the flow path 52 and increase the restriction I obstruction of air flow into the air inlet 28, thus altering the air flow through the air inlet 28 and along the flow path 52 in the opposite manner to the membrane arrangement of Figure 1 , which may be desirable for some users.
- the system may be configurable to operate in either manner, or any manner in between, such as providing a first effective cross-sectional area of the flow path 52 for a first predetermined period of time after detecting fluid flow or whilst a first property of the fluid flow (e.g. pressure) is below (or above) a first threshold, and thereafter increasing or decreasing the effective cross-sectional area, optionally for a second predetermined period of time or whilst the first or another property of the fluid is above (or below) a second threshold, to suit individual user preferences.
- a first property of the fluid flow e.g. pressure
- the fluid properties (the same or differing for each stage), thresholds (first and second being the same or differing), predetermined periods of time (first and second being the same or differing), ‘above’/’below’ and ‘increasing’/’decreasing’ conditions may be used, and may be configurable on the system by the user.
- the baffle 60 and any associated aperture(s) 61 or slit(s) 62 may be of any shape.
- the baffle 60 may comprise a curved or square rib, an edge feature such as a chamfered or bevelled edge and/or protrusions/recesses to further modify fluid flow.
- the baffle 60 is interchangeable and/or replaceable by the user, for example to allow switching between different baffles 60 having different features such as materials with different properties (e.g. stiffness, porosity), geometries (e.g. length, width, edge features, aperture size, aperture number, aperture shape or aperture arrangement) etc. to alter the user experience.
- materials with different properties e.g. stiffness, porosity
- geometries e.g. length, width, edge features, aperture size, aperture number, aperture shape or aperture arrangement
- flow path diameter / cross-sectional area adjustments may be configured to be practically instantaneous, or configured to be steadily increasing/decreasing over a short period of time, such as the time for a user to take a partial puff, a single puff or a few puffs (e.g. 0.1 -0.5 seconds, 0.1-1 second, 0.5-3 seconds, 0.5-5 seconds, 1-3 seconds, 1-30 seconds).
- the baffle 60 may be configured to provide periodic (e.g. every 0.5s, 1s, 2s, effectively for each puff) or continuous temporal adjustment, e.g. dependent on sensed parameters (fluid properties), and I or may provide continuously variable position adjustment or position adjustment between two or more predetermined positions only.
- Various embodiments of the invention may suitably comprise, consist of, or consist essentially of, appropriate combinations of the disclosed elements, components, features, parts, steps, means, etc., other than those specifically described herein.
- this disclosure may include other inventions not presently claimed, but which may be claimed in future.
Landscapes
- Medicinal Preparation (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| GBGB2215358.9A GB202215358D0 (en) | 2022-10-18 | 2022-10-18 | Aerosol delivery systems and methods |
| PCT/GB2023/052689 WO2024084198A1 (en) | 2022-10-18 | 2023-10-17 | Aerosol delivery systems and methods |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4604780A1 true EP4604780A1 (en) | 2025-08-27 |
Family
ID=84818270
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23800506.0A Pending EP4604780A1 (en) | 2022-10-18 | 2023-10-17 | Aerosol delivery systems and methods |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4604780A1 (en) |
| GB (1) | GB202215358D0 (en) |
| WO (1) | WO2024084198A1 (en) |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB201215282D0 (en) * | 2012-08-28 | 2012-10-10 | Kind Consumer Ltd | An inhaler |
| GB201412954D0 (en) | 2014-07-22 | 2014-09-03 | Nicoventures Holdings Ltd | Electronic vapour provision system |
| CN107847696B (en) * | 2014-09-10 | 2020-11-06 | 方特慕控股第一私人有限公司 | Method and apparatus for regulating gas flow in a delivery device |
| GB2542376A (en) | 2015-09-16 | 2017-03-22 | Nicoventures Holdings Ltd | Aerosol provision system with variable airflow |
| WO2020182585A1 (en) * | 2019-03-08 | 2020-09-17 | Philip Morris Products S.A. | Aerosol-generating system and article for use therewith |
| TW202142136A (en) * | 2020-05-12 | 2021-11-16 | 瑞士商傑太日煙國際股份有限公司 | Aerosol generation device with adjustable rtd and rtd-based automatic power control |
-
2022
- 2022-10-18 GB GBGB2215358.9A patent/GB202215358D0/en active Pending
-
2023
- 2023-10-17 WO PCT/GB2023/052689 patent/WO2024084198A1/en not_active Ceased
- 2023-10-17 EP EP23800506.0A patent/EP4604780A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| GB202215358D0 (en) | 2022-11-30 |
| WO2024084198A1 (en) | 2024-04-25 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| US20210084982A1 (en) | Component for an aerosol-generating apparatus | |
| WO2025027282A1 (en) | Electronic circuitry and controllers for aerosol delivery systems | |
| WO2024084200A1 (en) | Aerosol delivery systems and methods | |
| US20260137128A1 (en) | Aerosol delivery systems and methods | |
| WO2024084198A1 (en) | Aerosol delivery systems and methods | |
| EP4658118A2 (en) | Aerosol delivery systems and methods | |
| WO2024161125A2 (en) | Aerosol delivery systems and methods | |
| EP4681565A1 (en) | Aerosol provision system and method | |
| US20250325044A1 (en) | Aerosol delivery subsystem | |
| WO2025074089A1 (en) | Aerosol delivery system | |
| WO2025074105A1 (en) | Aerosol provision system comprising an ion source | |
| WO2025093850A1 (en) | Electronic aerosol provision system | |
| WO2025027281A1 (en) | Electronic circuitry and controllers for aerosol delivery systems | |
| WO2025093853A1 (en) | Electronic aerosol provision system | |
| EP4694717A1 (en) | Aerosol delivery controller with puff parameter detection | |
| WO2024213871A1 (en) | Controller of power supply for an aerosol delivery system | |
| EP4680060A1 (en) | Aerosol delivery controllers, systems and methods | |
| WO2024189222A1 (en) | Aerosol delivery controllers, systems and methods | |
| WO2024189044A1 (en) | Aerosol delivery controllers, systems and methods | |
| WO2025109303A1 (en) | Aerosol delivery controllers, systems and methods | |
| WO2026008962A1 (en) | Aerosol generators and delivery systems | |
| WO2024213872A1 (en) | Controller of power supply for an aerosol delivery system | |
| WO2024084194A1 (en) | Aerosol delivery subsystem | |
| EP4680061A1 (en) | Aerosol delivery controllers, systems and methods | |
| WO2025191256A1 (en) | Aerosol provision system with adjustable airflow and aerosol provision method |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: UNKNOWN |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE |
|
| PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
Free format text: ORIGINAL CODE: 0009012 |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE |
|
| 17P | Request for examination filed |
Effective date: 20250504 |
|
| AK | Designated contracting states |
Kind code of ref document: A1 Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC ME MK MT NL NO PL PT RO RS SE SI SK SM TR |
|
| DAV | Request for validation of the european patent (deleted) | ||
| DAX | Request for extension of the european patent (deleted) | ||
| P01 | Opt-out of the competence of the unified patent court (upc) registered |
Free format text: CASE NUMBER: UPC_APP_0009082_4604780/2026 Effective date: 20260309 |