A minimal lubrication device uses a modular flow regulator to precisely control oil quantity delivered via compressed air.
Segmented fluid dispensing devices use a piston to separate flows and a plunger to establish charges, preventing backflow while reducing complexity.
A lubricant injector piston moves axially via differential fluid pressure to meter precise delivery volumes without mechanical springs.
Segmented oil chambers with independent pumps resolve lubrication reliability trade-offs.
A lubricant injector piston divides an elongated bore into separate chambers to enable precise fluid delivery.
An indented rim on the plug allows fluid bypass, preventing blockage and ensuring complete lubrication delivery to bearings.
A motor-driven piston pump lubricator uses a swash plate to convert rotational motion into reciprocating discharge.
A variable displacement scavenge pump adjusts flow to generate suction and create a partial vacuum in the engine compartment.
Segmented return springs increase residual pressure to about 90 bar while maintaining low minimum operating pressure for reliable series connection.
A rotary flow meter uses a movable throttle to adapt its measurement range dynamically.
Active vacuum distribution replaces capillary action to ensure consistent lubricant coverage on valve components.
Segmented debris capture devices localize contamination sources in gas turbine engines, replacing inefficient single-point magnetic detectors.
A lubricant dispenser controller adjusts gas generator current levels to shift a piston and express lubricant from an outlet port.