Segmented liquid delivery elements prevent leakage during storage while maintaining consistent draw resistance.
A single inductive coil divided into independently controlled segments heats an aerosol substrate through electromagnetic induction.
A segmented blank assembly method constructs conical filter bodies from predefined geometric strips using automated winding and adhesive bonding.
Opposing hollow channels in the tongue apply localized compression to maintain uniform filling density while minimizing tobacco loss during rod formation.
A non-combustible porous heat diffuser absorbs thermal energy from an electric element to distribute warmth evenly across an aerosol-forming substrate.
Periodically repeating subunits on the tipping eliminate seam mismatches without requiring precise registration during cutting.
A smoking article uses a combustible carbonaceous fuel element to generate heat for an aerosol-generating segment containing glycerin and flavors.
A detection system measures taggant amounts on aerosol components to reject non-genuine parts during manufacturing.
Laser ablation forms recesses and protrusions on smoking articles to create durable, machine-readable patterns that resist counterfeiting.
A compaction pin creates an empty column in a cone, and vibration collapses the smokeable product into that space to solve inefficient manual filling.
Aggregated particles in the wrapper maintain smoke interaction efficacy while masking discolouration from iron oxide catalysts.
Continuous laser ablation grafts filtration precursors onto filter fibers, eliminating bulk additive blending and reducing mainstream smoke contamination risks.
Weak organic acid in cigarette wrappers promotes complete combustion, reducing carbon monoxide and enhancing taste.
A butt seam joins wrapping paper inner faces to create a liquid impermeable layer for rod-shaped smoking articles.
Segmented coating layers with varying porosity resolve the trade-off between fire safety and taste preservation by optimizing oxygen flow in each section.
A tubular element with a folded end wall restricts aerosol substrate movement while maintaining unimpeded airflow through its empty cavity.
Replacing conventional fibers with at least 12 denier per filament shortens the filter segment, eliminating the need for complex aerosol-cooling elements.
An electrical connector links a heating element to aerosol generating material, preventing combustion while maintaining generation efficiency.
Varying cross-section airflow channels in an aerosol generating article redirect condensation to reduce residue buildup and improve delivery efficiency.
Pressure-sensitive adhesive bonds the tipping member without heating, preserving heat-unstable gelatin microcapsules and preventing leaching.
Tobacco-based blocking members contain aerosol-generating material to ensure consistent release while eliminating plastic waste.
Segmenting rigid charcoal support from flexible sealing prevents combustion by maintaining distance.
High conductivity carbon materials distribute heat evenly to resolve inconsistent aerosol generation in non-combustible systems.
A manufacturing apparatus cuts and transports electronic cigarette segments using parallel conveyors to ensure precise sequencing.
Merging the pipe and lighter eliminates separate components, resolving the contradiction between ease of operation and device complexity.
Non-crimped fibers on hollow tube inner surfaces restore printability and shine lost by crimped fibrous materials.
A conical rolling paper assembly uses reversed airflow to mix combustion resin with smoking material.
Optical sensors inspect cut ends against predefined models to adjust the cutting head, ensuring consistent shear surfaces for quality control.
Triangular wrapper sections on custom smoking paper enable stable hand rolling while preserving filler aroma.