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Hydrocyclone

Hydrocyclones utilize centrifugal force to classify coarse and fine materials. Because the material is conveyed under pressure, a relatively large power is required. However, they offer advantages such as low cost, small footprint, high classification rate, and large throughput, and are mainly used as classification equipment in secondary grinding processes.

  • Applicable Materials
  • Metal Ores: Grinding, classification, desliming, and tailings treatment in the beneficiation processes of iron, copper, gold, lead-zinc ores, etc.
  • Non-metallic Minerals: Purification and classification of quartz sand, kaolin, feldspar, phosphate rock, etc.
  • Coal Industry: Coal slime water treatment, clean coal recovery from coal washing plants
  • Environmental Protection: Wastewater treatment, oil removal from oily wastewater, and sludge dewatering
  • Chemical and Food Industries: Catalyst separation, starch extraction, liquid-liquid separation, etc.
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Hydrocyclone arrays are efficient and simple-structured classification and separation devices widely used in mining, chemical, environmental protection, and petroleum industries, playing a crucial role, especially in closed-circuit grinding systems in mineral processing plants. By operating multiple small hydrocyclones in parallel, they achieve a balance between high throughput and fine classification, making them one of the core pieces of equipment for solid-liquid separation and particle classification in modern industry.

Working Principle

水力旋流器组工作原理

Hydrocyclone arrays operate based on the principle of centrifugal sedimentation. The slurry or mixture enters the hydrocyclone tangentially under pressure, creating a high-speed rotating flow field within the cylinder. Due to the different centrifugal forces experienced by particles of different sizes or densities, coarse particles or heavy phase materials are thrown against the wall and spiral downwards along the cone, exiting from the bottom outlet; while fine particles or light phase materials concentrate in the central region and are discharged from the top overflow pipe with the upward flow from the inner layer, thus achieving particle classification or liquid-solid separation.

When the processing capacity of a single hydrocyclone is insufficient, multiple units are connected in parallel to form a "hydrocyclone array," sharing the feed pipe, overflow tank, and sedimentation tank, which both increases production capacity and ensures classification accuracy.

Product Structure

水力旋流器组产品结构

A hydrocyclone assembly mainly consists of the following components:

  1. Multiple unit hydrocyclones: Installed in parallel, typically FX series (e.g., FX-125, FX-150), with diameters ranging from 50–660 mm.
  2. Feed system: Includes a feed pump, distribution box, and feed pipeline, ensuring uniform material distribution to each unit.
  3. Overflow box: Collects overflow from the top of each hydrocyclone, centrally outputting fine-particle product.
  4. Settling box (underflow box): Collects coarse-particle material discharged from the bottom.
  5. Support frame and piping system: Secures the overall structure and connects the various components.
  6. Wear-resistant lining: The inside of the hydrocyclone is often lined with materials such as polyurethane, high-alumina ceramic, silicon carbide, or rubber to improve service life.

Product Advantages

  1. High throughput: By connecting multiple units in parallel, the overall processing capacity is significantly improved, making it suitable for large-scale production.
  2. High classification efficiency: Classification efficiency can reach 80%–90%, and overflow particle size is controllable, meeting the needs of fine classification.
  3. Simple structure, no moving parts: Stable operation, low maintenance cost, and small footprint.
  4. Modular design: The number of units can be flexibly increased or decreased to adapt to different working conditions.
  5. High degree of automation: Can be equipped with an automatic control system to adjust pressure, concentration, and flow rate in real time, ensuring classification stability.
  6. Wide application: Not only used for slurry classification, but also for desliming, dewatering, thickening, and tailings dry discharge.
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Model Feed Inlet (mm) Sand Discharge Port (mm) Cone Angle
(°)
Overflow particle size (mm) Pulp Concentration (%) Pulp Handling Capacity (m³/h) Overall Dimensions (L×W×H) (mm)
Φ125 25×10 Φ15-30 20 0.025~0.25 50-60 2.4-15 320×260×646
Φ150 45×20 Φ12, Φ17 20 0.025~0.25 50-60 4.8-54 612.5×380×899
Φ250 50×20 Φ25 20 0.025~0.25 50-60 6.5-61.2 570×540×1172
Φ300 45×60 Φ50 20 0.025~0.25 50-60 24-60 575×550×1172
Φ350 80×35 Φ25 20 0.025~0.25 50-60 24-90 695×690×1510
Φ500 140×20 Φ17-68 20 0.025~0.25 50-60 24-108 1370×775×2170

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