A single-vessel concentrator merges centrifugation and filtration to process blood components rapidly.
Inclined drainage channels deflect exiting liquid radially to recover energy while preventing product deposits that cause imbalance.
A conical separator drum uses a settable annular throttle device to adjust the outflow cross-section for the heavier liquid phase.
External tubular elements distribute feed across axial height, resolving instability from base-integrated designs.
Automated light scanning components monitor oil water phase separation in test bottles.
A centrifugal separator casing uses a partitioned flange to separate discharge areas and prevent phase re-mixing.
A centrifugal separator bowl uses an upward-tilted outlet conduit to force air out through the heavy phase discharge.
A centrifugal separator detects trapped gas by measuring pressure increase intervals after closing outlet passages.
Skirted volume creates air seal protecting spindle bearings from extraction fluid damage, enabling standard bearing use and reducing manufacturing costs.
A split rotor centrifuge design integrates bearing components within the drive part to enable simple axial connection and disconnection of the dirt trapping section.
A rotating throttle plate with restricted openings builds pressure in clarification gaps to optimize liquid-solid separation.
A decanter centrifuge supplies dilution solvent to the discharge path during operation.
Partial channels in centrifuge rotor cores enable linear scale separation, maintaining gradient stability while increasing processing capacity.
Centrifugal condensation of toner slurry maintains temperature near the glass transition point to prevent adhesiveness deterioration during cooling.
A conveyor screw with two intertwined flights uses distinct pitch angles to move slurry and spread solids.
Magnetic levitation eliminates dynamic seals in this disposable centrifuge, maintaining sterility during continuous cell separation.
A centrifuge control system adjusts rotation speed and outlet pressure based on real-time acoustic sensor data.
Segmented plastic rotor parts joined by welding resolve mechanical strength and balance trade-offs in engine oil centrifuges.
A centrifuge piston slide closing chamber design with circumferential recesses increases the emptying stroke for rapid solids discharge.
A centrifugal separator integrates a vibrating half-drum unit to agitate solid phases during rotation.
Carbon fiber reinforcement restricts swing bucket deflection, extending rotor service life under centrifugal forces.
Magnetic bearings suspend the rotating drum within a stationary housing, eliminating liquid interference that limits speed in conventional separators.
A disc-type centrifuge recirculates sealing water via a motor-driven pump to maintain seal integrity without external purification.
Independent piston valves decouple intermediate phase discharge from solid removal, preventing contamination and minimizing substance loss.
Adjustable spacing elements enable multiple axial gaps in identical disc stacks, eliminating tooling costs for varied production.
A disposable plastic separator insert simplifies centrifugal processing by enabling rapid unit exchange.
A centrifuge casing uses elliptical holes to enhance liquid discharge efficiency.
A swing rotor bucket rotates about its longitudinal axis to distribute centrifugal contact forces across the rotor body surface.
Segmenting the closing chamber into parallel and conical portions with distinct outflow channels reduces drainage time for rapid emptying.
Acoustic energy enhances mineral stratification in a rotating centrifuge, recovering low-concentration materials from tailings.
Longitudinal ribs on the inner housing surface capture and condense oil droplets, preventing discharge with high-speed target gas.
Modular wear-resistant sleeves cover extension lugs to enable 360° solid discharge without increasing bowl diameter or maintenance complexity.
Hydrocarbon solvent extraction reduces water consumption and contamination by separating bitumen from oil sands via agitation and high-G centrifugation.
Concentric additive feeds transform the drying zone into a mixing area, eliminating downstream equipment.
Triangular spot-formed spacing members prevent thin disc flexing under centrifugal forces to ensure uniform interspace height.
A centrifuge filter captures separated components into a storage unit while smaller substances return to the rotary chamber.
Tungsten carbide wear inserts with nested clearance paths prevent solids escape while external mounting simplifies maintenance.
Detachable overload lever arm constrains transmission input shaft to enable torque monitoring via load cell.
Centrifugal rotation accelerates separation speed while variable control maintains structural simplicity for efficient manure processing.