high-speed Mixer

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2x mixing efficiency Insulation sleeve (cool/heat/insulate) Special-shaped rotating blades

Product Introduction

The main shaft is directly driven by the electric motor through the belt pulley and gearbox. The special-shaped rotating blades installed on the main shaft rotate accordingly. Under centrifugal force, material rises along the conical wall of the fixed mixing tank and enters a rotary motion state, forming a swirling vortex motion. This mechanism easily mixes materials of different densities evenly in a short time — mixing efficiency is more than twice that of a general mixer.

Key advantage: Efficient mixing of different density materials — no segregation, uniform distribution.

Drive System

 Electric motor → Belt pulley → Gearbox → Main shaft

 Special-shaped rotating blades

 Conical mixing tank wall

Key Features & Advantages

2x Mixing Efficiency

Outperforms general mixers by more than double — reduces processing time significantly.

Centrifugal Vortex Motion

Material rises along conical wall, creating swirling vortex for thorough mixing.

Different Density Compatibility

Easily mixes materials of varying densities evenly — no stratification.

Short Mixing Time

Rapid homogenization achieved in minimal time cycles.

Insulation Sleeve

Cool, heat, or insulate materials — meets specific material mixing requirements.

Top Inlet & Side Discharge

Raw materials and binders feed through upper inlet; mixed materials discharge from side port.

Working principle of high-speed mixer
The main shaft is directly driven to rotate by the electric motor through the belt pulley and gearbox. The rotating blades with special shapes installed on the main shaft rotate accordingly. Under the action of centrifugal force, the material rises along the conical wall of the fixed mixing tank and is in a rotary motion state, forming a swirling motion. It is easy to mix materials of different densities evenly in a short time, and the mixing efficiency is more than twice that of a general mixer. The various raw materials and binders involved in the mixing are fed into the upper inlet, and the mixed materials are discharged from the side discharge port of the mixing tank. To meet the mixing requirements of certain materials, the equipment is equipped with insulation sleeves that can cool, heat, and insulate the materials.

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