The WSHT-SC Spiral Chute Concentrator is a gravity separation device that uses helical flow to separate heavy minerals from lighter gangue materials in mineral processing.
Detailed technical information, working principles and application scenarios. Custom configurations available based on your project requirements.
The WSHT-SC Spiral Chute Concentrator is a gravity separation device that uses helical flow to separate heavy minerals from lighter gangue materials in mineral processing....
The WSHT-SC Spiral Chute Concentrator is a gravity separation device that uses helical flow to separate heavy minerals from lighter gangue materials in mineral processing.
With multi-turn spiral configuration and adjustable splitter positions, the SC series provides efficient recovery of gold, iron ore, chromite, and other heavy minerals.
Gravity-based separation achieves high recovery of heavy minerals with minimal losses.
Simple design with no moving parts ensures reliable operation and low maintenance.
Single or multi-stage spirals can be configured for different feed grades.
Minimal operator attention required with stable and consistent performance.
| Model | Spiral Diameter (mm) | Turns | Power (kw) | Capacity (t/h) |
|---|---|---|---|---|
| SC-600 | 600 | 5-7 | 0 | 2-5 |
| SC-900 | 900 | 5-7 | 0 | 5-10 |
| SC-1200 | 1200 | 5-7 | 0 | 8-15 |
Concentration of alluvial and hard rock gold in gravity circuits.
Pre-concentration of iron ore before magnetic separation.
Gravity concentration of chromite sands and ores.
Processing of heavy mineral sands including zircon and rutile.
All WSHT WSHT-SC series equipment undergoes rigorous quality inspection and load testing before delivery. We provide comprehensive after-sales service including installation guidance, operator training, and 24/7 technical support.
Engineered for reliability, built for performance. Every WSHT product reflects our commitment to quality and innovation.
High-grade steel structure & precision CNC machining for long-term reliability in the harshest mining conditions.
Optimized chamber geometry and intelligent design deliver maximum output per hour with minimal downtime.
Advanced engineering reduces power consumption by up to 20% compared to conventional equipment designs.
On-site installation, commissioning, operator training and spare parts supply available worldwide.

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