A heating element uses segmented surface structures to heat aerosol article portions at different temperatures.
A single assembly wheel fills both ends of a filter tube by transferring it to a flipping wheel for inversion and return.
A manufacturing machine uses a single filter rod to produce multi-segment smoking articles with distinct mouth-side and distal filter sections.
A winnower system bonds tobacco crumbs using humidification and adhesive application to reclaim material waste.
A hydroentangled nonwoven filter material uses cellulose fibers to create segments with improved plastic deformability.
A smoking article filter incorporates an insertable unit with adsorbents and flavorants to customize the smoke profile without redesigning the base structure.
Ventilation hole discharges remaining aerosol, preventing liquid condensation contamination of electronic components in the main body.
Segmenting the vaporizer and capsule reduces production costs while maintaining aerosol generation reliability.
Porous absorbent material fills the delivery passage to capture liquid condensate and maintain aerosol flow integrity.
Segmented mouthpiece channels separate aerosol flow from ambient air intake, reducing visible plume while maintaining flavor concentration.
Plant fiber gum wrappers replace aluminum to eliminate health risks while providing convenient smoking paper storage.
High-rigidity paper wrapper achieves ventilation without holes, preventing acetic acid odor.
Dynamic focal adjustment compensates for distance variations, ensuring reliable data reading in compact aerosol devices.
Optical taggant detection identifies aerosol article characteristics via spectroscopic signatures, preventing unsafe device operation.
Segmented lid apertures maintain substrate freshness while enabling airflow for shisha cartridges.
Independent heating units manage sequential temperature zones to prevent burning and maintain fresh material for extended sessions.
Rotating filter segments with intermediary sealing components resolve air leakage trade-offs during ventilation adjustment.
Slitted elastomeric mouthpiece segments absorb insertion forces to retain fragile capsules without damaging their integrity.
A flexible conduit and textured outer wrapper simulate traditional cigarette tactile feel.
Two induction heating units coordinate to reach maximum temperature within 20 seconds, preventing charring while ensuring consistent aerosol quality.
A cigarette cooling segment uses a porous fiber bundle to form longitudinal air channels for aerosol heat exchange.
Segmented tipping material enables smokers to remove an outer layer, altering visual and organoleptic attributes while maintaining structural integrity.
A segmented aerosol-forming article uses a larger downstream diameter to create an airflow passage that guides heat along the substrate surface.
Air-impermeable cellophane over-tipping band circumscribes filter interface to block oxygen supply.
A heating element with a threaded arrangement secures aerosol-generating articles in the heating zone.
A flat-shaped heating chamber uses varying wall distances to compress tobacco substrate for efficient aerosol generation.
Covalently bonded hydrophobic groups reduce moisture absorption, preventing sticking and structural degradation in humid environments.
High plasticizer fibrous material creates a moisture-resistant mouth end cavity that prevents deformation during smoking.
Rotatable filter segments align perforations and apertures to vary air dilution, resolving limited user control over tar delivery.
A flat tobacco article uses a substrate gap to receive a heating blade directly.
An aerosol permeable core within an integrally formed sleeve creates a discrete gap between consecutive filter elements to reduce draw resistance.
A loop-gap resonator generates alternating electromagnetic fields to heat aerosol-generating substrates.
Metal salt scavengers in the wrapper chemically react with hydrogen sulphide to reduce malodors by 30% to 70% during pre-heating.
Weakness formations in the wrapper rupture to form a ventilation zone, resolving air supply restrictions while retaining the combustible heat source.
Absorbent material embedded in the consumable captures wall condensate, preventing insertion friction and maintaining heating efficiency.
A barrier layer between segments prevents tobacco substrate displacement into the support element, ensuring consistent heat transfer and taste.
An adapter element fills air gaps between the heating chamber and smaller aerosol articles, eliminating thermal losses while maintaining secure fit.
A machine assembly compresses smoking material in die block cavities using top and bottom punch assemblies to form uniform products.
Outer wrapper surface roughness below 2.0 µm combined with 60% compression recovery after 2.5 N load improves mouthpiece holding comfort.
An aerosol-generating article uses an air channelling element to cool inhaled aerosol through dedicated peripheral flow paths.
A consumable sealing element shifts position to open or block atmospheric air flow through the support structure.
A cigarette customization apparatus uses a segmented feeder unit to position as-formed cigarettes for precise alphanumeric or graphical imprinting.
Nesting the heating portion inside the tubular substrate reduces device length while maintaining heat transfer efficiency for improved aerosol quality.
An elongate temperature sensor penetrates the aerosol-forming substrate to measure internal heat directly.
Segmented cartridges with hermetic seals prevent tobacco drying and molasses demixing while ensuring regulatory compliance.
A portable smoking device uses a hollow insulated shell to minimize heat transfer from the internal heater.
A cigarette filter uses natural plant granules with HPMC binder to absorb smoke odors.
A self-sealing airflow barrier seals aerosol articles until insertion, while an inductively heatable susceptor generates heat for the substrate.