Two-phase washing method cleans centrifugal separator lamellar disks by dynamically switching overflow openings to direct fluid flow through separation zones.
A centrifugal separation chamber uses a flexible membrane to vary volume without sliding parts.
A one-piece thrust bearing secures to an umbilicus midsection and engages a liner for smooth rotation.
Sol-gel silicon oxide coating on centrifugal separator discs minimizes fouling while alumina particles enhance wear resistance in abrasive media.
Thickness-reduced parts in diverging branch arms alleviate stress concentration at holding pin bases, extending rotor lifespan under heavy centrifugal loads.
Air guides direct intake from the lower housing past heat-emitting components, preventing sample heating while cooling the motor.
A centrifuge unit dynamically changes the transfer order of processed samples to optimize downstream processing sequences.
A centrifuge control unit displays rotor acceleration time to streamline sample extraction workflows.
Radial recesses in the centrifuge bucket base body halt crack propagation, extending service life under high-speed mechanical stress.
A centrifugal separator uses diagonal particle guide troughs to direct separated solids toward the outlet.
Replacing compressor cooling with magnetocaloric materials eliminates rotor vibrations while maintaining precise temperature control.
A computing device determines tube weights and calculates optimal rotor positions to automate centrifuge loading.