Solid-state radio frequency arrays prevent hot spots and reduce energy consumption by dynamically controlling amplitude, frequency, and phase.
Segmenting illumination into two sources at co-located foci resolves the trade-off between intensity and uniformity in optical fiber curing.
A heating unit with two flow outlets generates recirculation air flows at different energy levels for vehicle body drying.
Thermal evaporation removes organic solvents from wet bagasse, lowering residue below 1% and enabling safe handling while recovering materials.
A mobile refractance window dryer system dries plant products at harvest locations using portable utility platforms.
Laminar air flow from a tear-shaped nozzle breaks up vegetable clumps, preventing undried interiors and reducing moisture content by 35%.
A drying device adjusts fluid flow based on container properties to optimize energy use.
A polarizer system marks and separates radiant energy from the source, eliminating noise interference that degrades temperature measurement accuracy.
A supercritical drying method treats semiconductor substrates using carbon dioxide fluid to remove alcohol residues from metal film surfaces.
A belt dryer circulates drying air in counterflow to polymer gel movement while maintaining internal negative pressure.
A heating roller uses segmented temperature detectors and independent sources to control drying zones dynamically.
Zernike polynomial decomposition extracts improvable in-plane tendency components from measured substrate line widths to calculate optimal regional temperature correction values.