High Performance Ceramic Slurry Pump China Suppliers and Factory
The ACT (ZCT) Ceramic Slurry Pump is a high-performance industrial solution engineered for the most demanding environments. Utilizing advanced Silicon Carbide (SiC) ceramic technology, these pumps are specifically designed to handle highly abrasive and corrosive media that would rapidly degrade traditional metal or rubber-lined equipment. By integrating extreme hardness with chemical stability, the ACT series ensures unmatched durability in mining, metallurgy, and chemical processing industries.
Beyond its wear resistance, the ACT Ceramic Slurry Pump focuses on reducing the Total Cost of Ownership (TCO) by extending service intervals and maintaining high hydraulic efficiency. Whether transporting tailings in a mine or handling aggressive acids in a chemical plant, these pumps offer a superior alternative to imported and domestic alternatives, providing a seamless blend of shock resistance, high efficiency, and long-term operational reliability.
Detailed Parameters
| Pump Size | 1" to 18" | Max Capacity | 2-2800 m3/h |
|---|---|---|---|
| Maximum Head | 5-124 m | Handling Solids | 0-110 mm |
| Concentration | 0%-70% | Core Material | SiC Ceramic / Alumina / Zirconia |
| Temperature Range | -40°C to 110°C | Hardness Rank | Second only to diamond |
| Wear Resistance | 3.51x vs Cr30 Steel | Chemical Stability | High (Resists most acids/bases) |
Key Advantages
Extreme Wear Resistance
SiC ceramic structure is close to diamond tetrahedrons, providing abrasion resistance 3-5 times higher than high-chrome anti-wear steel.
Extended Service Life
Exceptional hardness and stability significantly reduce the frequency of part replacements and unscheduled downtime.
Superior Corrosion Shield
Highly inert against most inorganic acids, organic acids, and oxidizing media, ensuring integrity in aggressive chemical environments.
High Hydraulic Efficiency
The smooth surface of ceramic components reduces internal friction and energy loss, optimizing power consumption.
Robust Impact Resistance
Engineered to withstand the impact of large particles and steel balls without structural cracking or failure.
Low Total Cost (TCO)
Lower maintenance costs and energy savings make it a more economical choice over the pump's lifecycle than rubber/metal options.
Product Gallery
Application Sectors
Mineral Processing
Ideal for Cyclone feed pumps, Tailing pumps, and Flotation/Concentration circuits.
Power Generation
Perfect for FGD desulfurizing slurry-circling and Gypsum discharge pumps.
Steelmaking & Metallurgy
Used in hydrometallurgy slurry pumping and mill slurry transport.
Chemical Industry
Specifically designed for salt chemical engineering and corrosive process pumps.
Tailings Management
Ensures efficient transportation of high-density mineral tailings with minimal wear.
Acid Slurry Handling
Optimized for highly corrosive acid slurries that degrade standard metal pumps.
Investment Return Comparison
| Feature | Rubber Lined | Metal Lined | Ceramic Lined (ACT) |
|---|---|---|---|
| Wear Resistance | Moderate | High | Extreme (Highest) |
| Corrosion Resistance | Good | Moderate | Excellent (Chemical Inert) |
| Service Interval | Short | Medium | Very Long |
| Energy Efficiency | Medium | Medium | High (Smooth Surface) |
| Total Cost (TCO) | High (Maintenance) | Medium | Lowest (Lifecycle) |
Frequently Asked Questions
Ceramic pumps offer significantly higher hardness and chemical stability. While rubber is good for moderate abrasion and shock absorption, ceramics are essential for highly abrasive ore and corrosive chemicals, leading to a much longer service life.
Yes, Silicon Carbide (SiC) ceramic is chemically inert and resists most inorganic acids, organic acids, and bases. The only major exception is hydrofluoric acid and hot concentrated caustic.
Ceramic components provide a smoother internal surface compared to cast metals. This reduces friction loss and turbulence, allowing the pump to maintain higher hydraulic efficiency over a longer period.
While ceramics are generally rigid, our SiC ceramic pumps are engineered for shock resistance, allowing them to handle the impact of large particles and steel balls commonly found in mining slurries.
Our ceramic pumps are versatile and can be operated long-term between -40°C and 90°C, with peak resistance capabilities up to 110°C.
Absolutely. We can customize impeller design, casing configurations, and ceramic thickness to match your site-specific slurry density, head requirements, and flow rates.














