Abstract:
A filter part (1) for use in an aerosol generating article and a method of manufacturing the filter part (1). The filter part (1) includes an aerosol permeable core (11) surrounded by a sleeve (12). The sleeve (12) is formed of linear, axially oriented fibres and the core (11) is formed of expanded, randomly oriented fibres. The method includes forming two or more strips (2a, 2b) into segments surrounding a conveying path, bringing the segments together into a sleeve former (7) to form the sleeve (12) and introducing loose fibres (52) between the segments upstream of the sleeve former (7) such that they are drawn therein in a random orientation and compressed between the segments as they are brought together to form a filter rod (8) with an aerosol permeable core (11) within the sleeve (12). The filter rod (8) is then cut to form the filter part (1).
Abstract:
An aerosol-generating device for heating an aerosol-forming substrate is provided, the aerosol-generating device including: a heating element configured to heat the aerosol-forming substrate when the aerosol-forming substrate is received by the aerosol-generating device, the heating element including a plurality of metallic nanoparticles configured to receive light and to generate heat by surface plasmon resonance.
Abstract:
There is provided a multi-segment component for an aerosol generating article, the multi-segment component including a combustible heat source having at least one shaped recess on an outer surface thereof; an aerosol-forming substrate downstream of the combustible heat source; a wrapper circumscribing the combustible heat source along at least part of a length of the combustible heat source; and an inorganic glue located between the combustible heat source and the wrapper, the inorganic glue at least partially filling the at least one shaped recess.
Abstract:
A rupturing system for an aerosol-generating system is provided, the rupturing system including a first tube and a second tube being movable relative to each other along a first motion path from a first position to a second position, such that the defined volume is larger in the first position than in the second position; a rupturing member connected to one of the first tube and the second tube, the rupturing member being arranged such that in the first position the rupturing member is contained completely in the defined volume of the first tube and the second tube, and in the second position the rupturing member at least partially protrudes from the defined volume and is configured to rupture a container; and a first wrapper overlying at least a portion of the first tube and being attached to the first tube.
Abstract:
A blister capsule for an aerosol-generating system, and a container including blister capsules, are provided, the blister capsule including a blister shell; a tubular porous element disposed in the blister shell; a volatile liquid sorbed on the tubular porous element; and a film configured to seal the blister shell, the film and the blister shell being frangible, and the container including at least two of the blister capsules coupled together by a hollow tubular canister configured as a mixing chamber for the volatile liquids contained in each of the blister capsules.
Abstract:
A cartridge for an electrically operated aerosol-generating system is provided, including a liquid storage portion configured to store a liquid; a fluid permeable heating element, including a first surface and a second surface, the first surface being arranged in an upstream position configured to receive a liquid, and the second surface being arranged in a downstream position configured to release the liquid in vaporized form; and a capillary body having a first elongated end and a second end, the first elongated end extending into the liquid storage portion configured to contact the liquid, the second end contacting the first surface of the heating element, wherein a cross sectional area of the capillary body at the second end is greater than a cross sectional area of the capillary body at the first elongated end.
Abstract:
A container for an aerosol-generating substrate is provided, the container including a piercing area, wherein the electrically heated aerosol-generating device has a piercing element configured to pierce the piercing area; a casing; and a cap including the piercing area and a heater, the heater defining the boundary of the piercing area. An electrically heated aerosol-generating device is also provided, including a power supply; a cavity configured to receive a container containing an aerosol-forming substrate, electrical contacts connected to the power supply and configured to couple the power supply to the heater of the container through electrical contacts of the container; and means for piercing the piercing area of the container when the container is received in the cavity. A method of manufacturing a container including an aerosol-generating substrate is also provided.
Abstract:
A cartridge for an aerosol-generating device is provided, the cartridge including: a cover defining an inlet opening, an outlet opening, and a chamber between the inlet opening and the outlet opening, the inlet opening and the outlet opening being located on opposite ends of the cover; an aerosol-forming substrate within the chamber of the housing; and a heater embedded in the housing, the heater being at least partially positioned within the aerosol-forming substrate in the chamber.
Abstract:
An aerosol generating consumable (120) includes a liquid reservoir (122) configured to hold an aerosol generating liquid and defining a liquid outlet aperture (124) and a heating assembly (130) fixed to the liquid outlet aperture. The heating assembly includes a capillary body (132) defining a porous outer surface (133). The capillary body is configured to flow aerosol generating liquid from the liquid outlet aperture to the porous outer surface. An electrically resistive heating element (140) is fixed to the porous outer surface and a thermo-conductive polymeric element (150) is fixed to the porous outer surface. The electrically resistive heating element includes an electrical fuse portion (145) configured to stop current flow through the resistive heating element.
Abstract:
An aerosol-generating system is provided, including a main component and a cartridge that is removably coupled to the main component, the cartridge including a liquid storage portion containing a liquid aerosol-forming substrate and a fluid-permeable electric heater assembly, and the main component includes a power supply, the heater assembly including: an electrically insulating substrate, an aperture being formed in the substrate, and a heater element fixed to the substrate, the heater element spanning the aperture and including a plurality of electrically conductive filaments connected to first and second electrically conductive contact portions, the first and the second contact portions being disposed on opposite sides of the aperture to one another, the first and the second contact portions being configured to allow contact with the power supply, and the heater assembly being provided at an end of the cartridge that is opposite to a mouthpiece portion of the system.