Abstract:
An electrically heatable aerosol-generating system is provided, including: a heater element including a thermally conductive substrate including a non-stick coating applied over at least a portion of an outer surface of the thermally conductive substrate, the non-stick coating including a superhydrophobic material. A heater element for an electrically heated aerosol-generating system is also provided, the heater element including: a thermally conductive substrate including a non-stick coating applied over at least a portion of an outer surface of the thermally conductive substrate, the non-stick coating including a superhydrophobic material.
Abstract:
A cleaning tool for an aerosol-generating device is provided, the cleaning tool including an elongate body having a proximal end portion and a distal end portion, the distal end portion defining a recess configured to receive a heating element of an aerosol-generating device, the recess extending from an opening in a distal end face of the elongate body towards the proximal end portion of the elongate body, the distal end portion of the elongate body being provided with at least one protrusion inwardly projecting into the recess, and the elongate body further including a scraping surface at the distal end face of the elongate body.
Abstract:
An aerosol-generating device configured to heat an aerosol-forming substrate to form an inhalable aerosol is provided, the aerosol-generating device including a heating chamber configured to heat the aerosol-forming substrate, the heating chamber including a first end having an opening, a second end having a base, and a side wall extending between the opening and the base, a cavity being defined by inner surfaces of the base and the side wall, and a peripheral portion of the base being contoured to provide a chamfered or filleted intersection between the inner surfaces of the base and the side wall; a heating assembly; and a power supply.
Abstract:
An elongated aerosol-generating device configured to receive an aerosol-generating article is provided, including a heater extending longitudinally with respect to the device, being configured to heat the article and to penetrate an internal portion thereof; and an extractor configured to extract the article received in the device, being movably coupled to the device between operating and extraction positions, the operating position defined by the heater contacting the article, and the extraction position defined by the heater separated from the article, the extractor including a cavity to receive the article, a first aperture through an end-wall of the cavity and being configured to allow the heater to penetrate the cavity when the extractor is moved between the extraction and operating positions, wherein the extractor further defines an air-flow channel to allow air flow into the cavity, an inlet of the channel being positioned radially-outward of the first aperture.
Abstract:
An aerosol-generating device for an aerosol-generating article is provided, the device including: a receiving chamber to removably receive the article and having an inner surface and a center axis, along which the inner surface includes first and second axial portions, and an intermediate axial portion between the first and the second axial portions, the first and the second axial portions including a plurality of first and second protrusions, respectively, to contact first and second support elements of the article, respectively, and to retain the article in the chamber, the pluralities extending in a direction towards the center axis beyond the intermediate axial portion, the intermediate axial portion having a length of at least 20% of an overall length of the inner surface or of the chamber in the direction of the center axis and to surround a substrate element of the article when the article is received in the chamber.
Abstract:
An aerosol-generating device for generating an aerosol by inductive heating of an aerosol-forming substrate is provided, the device including a device housing including a cavity configured to receive the aerosol-forming substrate; an induction source including an induction coil configured to generate an alternating magnetic field within the cavity, the induction coil being arranged around at least a portion of the cavity; a flux concentrator arranged around the induction coil and configured to distort the alternating magnetic field of the induction source towards the cavity; and a bond layer firmly coupled to a least a portion of the flux concentrator, the bond layer including or consisting of a poly(p-xylylene) polymer. There is also provided an aerosol-generating system including an aerosol-generating device including and an aerosol-generating article for the device, the article including an aerosol-forming substrate to be heated.
Abstract:
An aerosol-generating system is provided, including an aerosol-generating device having a heating chamber configured to heat an aerosol-forming substrate, the heating chamber including a first end having an opening, a second end having a base, and a side wall extending between the opening and the base; and a residue collector removably insertable into the heating chamber and positionable at or near the second end, the heating chamber further including a first side opening in the side wall and a second side opening in the side wall, opposite the first side opening, and the residue collector being insertable into the heating chamber and removable from the heating chamber through the first and the second side openings.
Abstract:
An elongated aerosol-generating device to receive an aerosol-generating article is provided, including a heater extending longitudinally and to penetrate an internal portion of the article; and an extractor to extract the article and being slidable between first and second positions, the first being an operating position with the heater contacting the article, and the second being an extraction position with the heater separated from the article, the extractor being removable for cleaning and including a cavity to receive the article, a first aperture defined through an end-wall of the cavity for the heater to penetrate the cavity when the extractor is moved between the second and the first positions, the extractor defining an air-flow channel to allow air flow into the cavity, an inlet of the air-flow channel being radially-outward of the first aperture, and the first aperture and the air-flow channel arranged to retain debris from the article.
Abstract:
An elongated aerosol-generating device to receive an aerosol-generating article is provided, including: a heater to heat the article, to penetrate an internal portion of article, and extending longitudinally with respect to the device; and an extractor to extract the article received in the device, the extractor being slidable within the device and between an operating position with the heater in contact with the article, and an extraction position with the heater separated from article, the extractor being removable from the device and including a cavity to receive the article, a first aperture defined through an end-wall of the cavity to allow the heater to penetrate the cavity when the extractor is moved between the positions, in which the extractor further defines an air-flow channel to allow air flow into the cavity, an inlet of the air-flow channel being positioned radially-outward of the first aperture.
Abstract:
An electrically heated aerosol-generating system for receiving an aerosol-forming article is provide, including a tubular portion configured to receive the aerosol-forming article; and a heater element including an end face, the heater element being disposed proximate an end of the tubular portion so that the end face is proximate an end of the aerosol-forming article when the aerosol-forming article is inserted into the tubular portion, the system being configured to supply a first amount of electrical energy to the heater element to heat the heater element to a first temperature and to supply a second amount of electrical energy to the heater element to maintain the heater element at a second temperature, and wherein a difference between the first and second temperatures is at least about 100° C.