Different manifold orifice sizes balance filling and emptying in unequal spreader tanks, reducing mold variety and weight imbalance.
Moving perforated plates break up salt clumps inside the spreader housing, improving distribution uniformity without slowing application.
A control unit tracks de-icer timing by runway section, triggering reapplication to balance friction uniformity and consumption.
Segmented rigid containers prevent salt bridging while maintaining transport efficiency and reducing worker injury risks.
A railway spray device uses a vegetation detector to control selective spraying of nozzles on a motor vehicle.
A vehicle-mounted spreader controller adjusts conveyor and spinner speeds based on real-time load sensor data to regulate material flow.
An adjustable partition wall inside a gritting device tank bag actively controls internal geometry, compensating for liquid surges that cause mechanical stress.
Dynamic auxiliary engine control matches hydraulic power to spreading density and vehicle speed, eliminating overheating risk and reducing fuel consumption.
A gritting device uses a pivoting partition wall to position tank bags above lateral tanks, maximizing solid material storage capacity.
Forward-mounted camera modules enable high-speed rail weed control by providing sufficient computation time for accurate detection before herbicide application.
A compressed salt projectile disperses ice melting chemicals upon impact to melt frozen surfaces.
A gritting device uses an adjustable partition wall to modify tank bag geometry and optimize internal volume.
Angled nozzle outlets on a rotating dispenser create pre-impulse acceleration that widens lateral spread patterns while preventing atomization.