What are the applications of the new plastic high-speed mixer?
What are the applications of the new plastic high-speed mixer?
The new plastic high-speed mixer series provides solutions for all applications that require mixing powder with powder, powder with granules, granules with granules, and liquids. Its applications are diverse:
A1: hard and soft, polyvinyl chloride, dry mixed materials
A2: pre-mixing of WPC building templates and door panels (wood plastic composite materials PVC/PP/PE, containing wood powder)
A3: pre-mixing of SPC floors and wall panels (PVC + high content of calcium carbonate)
A4: pre-mixing of medical soft PVC granulation
A5: pre-mixing of flame retardants
A6: pre-mixing of modified plastic granulation
A7: pre-mixing of epoxy plastic encapsulation materials and semiconductor packaging consumables
A8: pre-mixing of talcum powder and titanium dioxide
A9: pre-mixing of thermoplastic polymers (PVH, PC, POM, etc.)
A10: pre-mixing of plastic masterbatch granulation
A11: pre-mixing of powder coating raw materials



What is the working principle of the new high-speed mixer?
When the high-speed mixer is working, the high-speed rotating impeller uses the friction between the surface and the material and the thrust of the side on the material to make the material move tangentially along the impeller. At the same time, due to the action of centrifugal force, the material is thrown to the inner wall of the mixing chamber and rises along the wall.
When it rises to a certain height, it falls back to the center of the impeller due to gravity and then is thrown up again. The combination of this upward movement and tangential movement makes the material actually in a continuous spiral up and down movement state.
Due to the high speed of the impeller, the material movement speed is also very fast. The fast-moving particles collide and rub against each other, causing the agglomerates to break up, the material temperature to rise accordingly, and the cross-mixing to be carried out rapidly.
These effects promote the uniform distribution of components and the absorption of liquid additives. The baffles in the mixing chamber further disrupt the flow of the material, causing the material to form a random movement and causing a strong vortex near the baffles.

