Stability & Durability
Adapts the most advanced global technologies to ensure long-term stable operation under demanding conditions.
Modular Structure
Stationary modular design allows for fast assembly and easy installation at the project site.
High Efficiency
Equipped with a high-performance twin-shaft mixer for excellent mixing quality and high productivity.
Intelligent Control
Double computers with synchronized controls for easy operation and system redundancy.
Our horizontal twin-shaft compulsory mixer provides strong mixing ability with uniform output. The admixtures are thoroughly blended by the shafts to reach the best proportional ratio efficiently.
The shafts utilize anti-binding technology to prevent cement buildup. Multi-sealed structures effectively prevent slurry leakage, while outboard-designed bearings ensure easy replacement and durability.
Paddles, arms, and blades are constructed from high chromium and high manganese alloy materials, significantly reducing wear and maintenance costs.
Frequently Asked Questions
What makes the mixing system so efficient?
The horizontal twin-shaft compulsory mixer ensures strong, uniform mixing. Its anti-binding technology prevents cement from sticking to the shafts, maintaining peak performance.
How does the plant handle environmental concerns?
The design includes an advanced dust collection system and anti-noise features to ensure the plant meets strict environmental protection standards.
Is the maintenance process complicated?
No. The system uses outboard designed bearings and a central greasing system that automatically lubricates points at fixed times and quantities, simplifying daily maintenance.
What happens if there is an accidental power failure?
The machine is equipped with an emergency hydraulic discharging function, allowing the gate to be opened manually to discharge remaining materials safely.
What materials are used for the wear parts?
Mixing paddles, arms, and blades are made of special high chromium and high manganese alloy, which provides exceptional wear resistance and durability.