Operation process of intermittent high-shear lax vacuum emulsifying machine
Release time:
2019-07-11
1. Under the centrifugal force effect of the high-speed rotating rotor, the materials in the figure are sucked into the working cavity from the axial direction from the upper and lower feeding areas of the working head. 2. The weak centrifugal force throws the material from the radial direction into the narrow and precise gap between the stator and the rotor. Together by centrifugal kneading, impact and other effects of force, so that the initial dispersion of the material emulsification. 3. A linear velocity of at least 15 m/s or more occurs at the outer end of the high-speed rotating rotor, up to 40 m/s, and forms intense mechanical and hydraulic shearing, liquid layer friction, impact and tearing, so that the material is fully lax, emulsified, homogenized, broken, and ejected through the stator slot together.
1. Under the centrifugal force effect of the high-speed rotating rotor, the materials in the figure are sucked into the working cavity from the axial direction from the upper and lower feeding areas of the working head.
2. The weak centrifugal force throws the material from the radial direction into the narrow and precise gap between the stator and the rotor. Together by centrifugal kneading, impact and other effects of force, so that the initial dispersion of the material emulsification.
3. A linear velocity of at least 15 m/s or more occurs at the outer end of the high-speed rotating rotor, up to 40 m/s, and forms intense mechanical and hydraulic shearing, liquid layer friction, impact and tearing, so that the material is fully lax, emulsified, homogenized, broken, and ejected through the stator slot together.
4. The material is continuously ejected from the radial direction at high speed, and the flow direction is changed under the resistance of the material itself and the container wall. Together with this, under the effect of the upper and lower axial suction forces occurring in the rotor area, two intense turning turbulence are formed. After several cycles, the material ends the process of dispersion, emulsification and homogenization.
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