Segmented induction heating cells adapt to non-planar workpiece geometries, resolving the trade-off between manufacturing simplicity and heating efficiency.
Optimized conductor cross-section stabilizes heating temperature and increases power for flue-cured tobacco induction devices.
Crown and skirt inductors modulate magnetic fields to heat rail heads uniformly.
Segmented susceptor design reduces heat loss from the heating region to the holder, improving aerosol generation efficiency.
An induction heating device uses airflow channels to homogenize heat across tobacco shreds, resolving uneven temperature distribution.
Cycling working coils prevents intermediate body absorption, maintaining efficiency for magnetic and non-magnetic containers.
Segmented pulse welding coils isolate high stress zones, enabling quick replacement of fatigued bridge sections while retaining the durable support structure.
A movable heater contacts a battery to maintain optimal temperature, preventing overheating damage while eliminating extra components.
A magnetic flux concentrator shapes induction fields to heat tubular material ends, resolving electromagnetic end effects that cause under-heated zones.
Soft magnetic end wall portions cover induction heating coil ends to concentrate magnetic flux, reducing extreme heat generation at coil extremities.