Segmented downstream structure combines low-resistance flow paths with a dedicated ventilation zone to cool aerosols without reducing nicotine delivery.
Separate air inlets and rotatable control ring ensure homogeneous airflow through aerosol substrate, improving heating efficiency.
A non-combustion flavor inhalation article uses a hollow cylindrical heater to heat a tobacco sheet roll between 80 and 140°C.
A compact aerosol-generating device uses a removable thermal insulating cover to manage surface temperature.
A reciprocating needle mechanism distributes cannabis into paper cones, eliminating THC separation caused by vibration while ensuring uniform distribution.
Non-glass fiber insulation separates the heat generation segment from the aerosol-generating segment, reducing thermal decomposition of tobacco material.
Segmented tobacco rods with phase change material manage temperature distribution, preventing rapid changes that cause uneven smoke release.
A telescopic filter adjuster modifies airflow passageway length to control vapour temperature.
Segmented resistance distribution cools aerosol without high-filtration elements, maintaining nicotine delivery while simplifying production.
A heating assembly uses a high-frequency control assembly to generate an electromagnetic field for rapid tobacco material heating.
Heat storage body absorbs thermal energy to maintain consistent temperature, preventing overheating and uneven distribution in aerosol-generating devices.
Segmented heaters manage separate substrate temperatures, preventing overheating and ensuring consistent aerosol generation.
Optical sensor detects wrapper discoloration from prior heating, preventing reuse and maintaining consistent aerosol flavor.
A hollow dried leaf tube houses a natural corn husk filter element and an embedded flavor capsule for smoking accessories.
Aminoalkylsilyl-modified mesoporous silicates react with cigarette smoke constituents to reduce harmful concentrations while preserving flavor.
A rotatable cigarette filter uses asymmetric air flow resistance units to change smoke entry points and adjust fragrance inhaling taste.
Twisted fins in a hollow tubular segment increase turbulence to lower mouthpiece temperature below discomfort thresholds.
A shape-changing element alters the exterior surface of an aerosol-generating device to provide tactile feedback based on detected states.
Integrating a hook section and introduction port into one forming step simplifies production while ensuring proper airflow control and flavor retention.
Profiled cellulose acetate grooves cool vapors while resolving PLA manufacturing limits and biodegradability trade-offs.
An aerosol generating article uses intermittent strips and elongate support elements wrapped in a non-conductive member to form a planar structure.
Segmented airflow channel restricts gas flow to generate consistent suction force, resolving variability caused by differing tobacco plug densities.
Segmenting the filter allows high opacity material paper to hide black absorbents without reducing tipping paper rigidity or causing wrinkles.
A smoking article filter integrates a flow restrictor with a downstream ventilation zone to manage airflow dynamics.
A dielectrically heated aerosol system uses spaced electrodes to form a capacitor for uniform substrate heating.
A heater coated with a luminescent material enables contactless temperature measurement via phosphorescence detection.
A machine for producing substantially cylindrical articles uses an intermittent conveyor system to transport tubular bodies and precise insertion mechanisms.
A variable-ventilation filter tip uses phase-change material to adjust airflow automatically.
Starch acetate blocks paper pores to increase self-extinguishing tendency without altering surface appearance.
Segmented filters combine activated carbon with sodium bicarbonate-treated fibers to neutralize acidic compounds while preserving subjective taste.
An apparatus applies a conductive layer to a tobacco web, enabling uniform inductive heating that resolves uneven evaporation of aroma ingredients.
Freeze-dried biopolymer foams create porous cigarette filter plugs that accelerate degradation rates to resolve environmental litter issues.
Segmented crimping density in a cellulose mouthpiece reduces mouthpiece temperature while maintaining flavor release.
Porous alginite in cigarette filters adsorbs reactive oxygen species and reduces tissue damage without increasing draw resistance.
Asymmetric susceptor projections enable secure embedding within aerosol material, resolving displacement risks during magnetic heating cycles.
Mechanical compression by the closing cover ensures uniform contact with dual-sided heaters, reducing preheating time and improving initial vapor taste.
An exothermic wrapper heats the medium segment, reducing preheating time and power consumption while preventing material leakage.
Segmented chamber walls with contact protrusions retain articles while non-contact zones reduce heat loss and condensate formation.
Rotating a consumable between positions selects different operations, resolving flexibility versus complexity trade-offs in aerosol devices.
Segmenting the mouthpiece allows a blocking segment with a freshener element to resolve the contradiction between draw resistance and freshening convenience.
Gluing a membrane to the inside circumferential face of combining paper closes the consumable end, preventing tobacco material from falling out during use.
Malleable containers with porous walls release volatilized components while magnetic heating prevents combustion through controlled induction.
Replacing aluminium hydroxide with calcium carbonate filler lowers free-air self-extinguishment values while maintaining required self-extinguishment rates.
Aerosol provision device identifies consumable type to restrict selectable operating states, preventing non-authentic usage.
Adjustable tipping paper controls airflow through a porous smoke extraction segment, resolving uneven mixing and inconsistent smoking quality.
A cigarette paper uses a monotonic burn additive concentration to control smoldering speed along the length.
High basis weight bridging element forms an insulating cavity to prevent filter burning.
Replacing cellulose acetate with polyhydroxyalkanoate fibres lowers water absorption while maintaining filtration efficiency and biodegradability.
A rotatable capture element moves an aerosol substrate in a spiral path relative to a heating element.