SM-DTR Nano Bead Mill (Turbine-Pin Rotor/Rotative Screen)

SM-DTR Nano Bead Mill (Turbine-Pin Rotor/Rotative Screen)

Nano horizontal agitator bead mill with turbine+pin-type rotor and rotatvie screen from 90 to 600 L

Rotative screen mounted on the central shaft substituted the traditional Fixed sieve on the rear avoids the clogging trouble effectively .

The turbine rotor generates a powerful axial flow and intense shear forces, acting as a highly efficient pre-mixer and disperser, rapidly breaking up agglomerated powders and performing preliminary dispersion and mixing.

The subsequent pin rotor generates extremely high shear forces and collision rates, grinding any remaining coarse particles or aggregates to extremely fine levels.

How it works

The slurry flows horizontally through the bead mill from the inlet on the motor side of the grinding chamber.

The turbine rotor generates powerful axial flow and intense shear forces, acting as a highly efficient premixer and disperser, quickly breaking up agglomerated powders and completing preliminary dispersion and mixing.

The following pin rotor generates extremely high shear forces and collision rates, grinding the remaining coarse particles or aggregates to extremely fine levels.

The product of target particle size flows through the rotative sieve mounted on the central shaft and flows through the special designed hollow shaft and finally exists from the bead mill.

Features:

Grinding the materials to nano-level (1μm-200 nm)

Used in the processing of almost all of the product that need to be ground to ultra-fine level and suitable for almost every viscosity.

Using grinding media of zirconia from 0.1 mm to 2.0 mm and several types of solvent, depending the product properties.

Various materials for product-wetted components to meet the different requirements, such as zirconia, polyurethane, alloy steel for rotor and polyurethane, zirconia, silicon carbide, stainless steel for inside layer of grinding chamber.

Optimized cooling layer equipped outside the grinding chamber, cooling coil beneath the sieve and the cooling device for the mechanical seal to control the temperature rise below 20 degrees.

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