Inward solid diversion via stationary scraper reduces energy loss and contamination in continuous centrifuge operation.
Spacing radial fins at least 3 mm from the drum wall enables liquid relative motion, resolving inadequate cleaning of the centrifuge space bottom and cover.
A sterile centrifugal separation unit rotates at high speeds to concentrate platelets from whole blood into a compact, single-use device.
Deflection device redirects liquid flow to prevent deposits and simplify cleaning.
Integrated weir and choke plates rotate together to reduce torsion moment while enabling precise liquid pond level control.
Rotating half-shells generate centrifugal force to clean the outer container automatically, eliminating manual dismantling and residue accumulation.
Stackable intermediate members adjust axial distances in separators, simplifying assembly and maintenance while improving cooling efficiency.
A centrifugal separator liquid outlet chamber uses a rotating member to pump separated oil back into the engine crankcase.
A centrifugal drum integrates a fluidic diode to regulate phase separation ratios, maintaining constant yeast concentration despite supply fluctuations.
Pressurized gas drives a non-intrusive piston to discharge solids, eliminating hermetic seal complexity and safety risks in supercentrifuges.
Transverse venting prevents air trapping in microfluidic channels, ensuring uniform filling and efficient plasma separation.