The conical wall section of a hydrocyclone that creates centrifugal forces for solid-liquid separation.
The cone wall is the tapered cylindrical component of a hydrocyclone that forms the separation chamber where centrifugal acceleration occurs. Its geometry determines the velocity profile, residence time, and separation efficiency by converting pressure energy into rotational motion. The wall's angle and length are critical design parameters affecting cut size and throughput.
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Wear depends on particle hardness, slurry concentration, flow velocity, and material properties. Abrasive slurries require ceramic or polyurethane liners.
Steeper angles (15-20°) increase centrifugal force for finer separation but reduce capacity; shallower angles (10-15°) improve throughput with coarser cuts.
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