A hydrocyclone is one of the most widely used pieces of equipment for slurry classification and solid-liquid separation in the mining and mineral processing industries. It operates on the principle of centrifugal sedimentation. When a slurry enters the cyclone tangentially under pressure, it forms a high-speed swirling flow. Because particles differ in size, density, and mass, they experience different centrifugal and drag forces. Coarser and heavier particles move toward the cyclone wall and leave through the underflow, while finer and lighter particles migrate to the center and exit through the overflow. This simple yet efficient process enables hydrocyclones to achieve high-performance classification and separation.
Hydrocyclones can be classified by their applications and structural designs. Based on their position in the grinding circuit, they are divided into first-stage grading cyclones et second-stage grading cyclones. Based on their functions, they include classification, dewatering, desliming, desanding (slag removal), concentration, and special hydrocyclones for tailings dry discharge.
1. Fold a Segment of Grading Cyclone
Les folded-segment grading cyclone(first-stage classification cyclone) is widely used in various metal ores and non-metallic ore dressing plants with a daily processing capacity of more than 500 tons and forms a closed-circuit grinding and classification cycle with the first-stage ball mill. Cyclones can be arranged individually or in groups according to different processing capacities. In the case of higher ore feeding concentration, it has higher classification efficiency and finer overflow fineness; the overflow product is evenly promoted, and the separation efficiency is 5-10% higher than that of the commonly used spiral classifier, which is beneficial to the mill. The utilization factor is improved.
2. Folding Two-stage Classification Cyclone
Les folding two-stage classification cyclone(second-stage classification cyclone) Le cyclone est largement utilisé dans la deuxième phase d'inspection de divers minerais métalliques et non métalliques pour contrôler la classification. Les spécifications du cyclone vont de 75 mm à 660 mm, ce qui peut s'appliquer à des usines ayant différentes capacités de traitement et différentes exigences en matière de finesse de broyage. Le cyclone adopte une structure unique de sorte que la finesse de débordement du cyclone de deuxième étage peut être sélectionnée arbitrairement et ajustée de -200 mesh 75% à 95%.
3. Folding Dehydration Cyclone
Les folding dehydration cyclones(dewatering cyclones) sont principalement utilisés pour la déshydratation de diverses boues minérales. En fonction des différentes caractéristiques des matériaux et des différents produits et environnements d'installation, différentes conceptions structurelles sont adoptées, qui présentent les avantages d'une réduction de la pression, d'une grande capacité de traitement et d'une grande efficacité de déshydratation. Il est appliqué à une certaine opération de resélection, de dépulpage et de déshydratation des résidus. Lorsque la concentration du minerai est de 5-12% et que le contenu de la maille -200 est de 75%, la concentration moyenne du trop-plein du cyclone est contrôlée en dessous de 1,5%. Dans le cas de la déshydratation, la perte de minéraux utiles est évitée. Dans l'application d'une certaine opération de déshydratation du sable siliceux, la concentration du trop-plein du cyclone de déshydratation est inférieure à 0,5%, et le trop-plein est presque une boue fine non qualifiée, ce qui permet d'obtenir le double effet de la déshydratation et de la déslimination. Après décantation, il peut être réutilisé pour réduire les coûts.
4. Folding Desliming Cyclone
Les cyclone de désimprégnation à haut rendement is mainly used for desliming of various metal ores and non-metallic slurries. The high-efficiency desliming cyclone is based on absorbing foreign excellent results, and after several years of practice, the proportion and coordination of the main components of the high-efficiency desliming cyclone are determined, and the designed and produced high-efficiency desliming cyclone has a desliming efficiency. High, with less loss of useful minerals, saving user costs and improving production efficiency. Case: The discarded tailings of a silica sand mine accounted for 12.7% of the muddy minerals, the fineness of -325 mesh accounted for 39.3%, and almost all of the muddy minerals were stored in the -325 mesh level.
5. Folding Slag Cyclone
Les cyclone à scories is used in wet desulfurization in power plants, lime pulping, crude oil slag removal, tap water sand removal, sewage treatment, and other operations. It can effectively remove coarse sand, metal, and other particulate debris in the slurry, with high slag removal efficiency and minimal loss of useful slurry.
6. Cyclone concentrateur pliant
Cyclones de concentration à haut rendement are often used in conjunction with
thickeners,
filtres, etc., and are used for concentration before filtration of various minerals, mineral fine-grinding flotation, gold pulp cyanidation, etc. In conveying and other operations, the concentration of pulp is realized. After the concentration and dehydration of the cyclone, the increase in the underflow concentration creates good conditions for the dewatering screen operation, which can greatly increase the dewatering screen production capacity, and the reduction in the overflow concentration can effectively reduce the load of the thickener. With a unique structural design, it is widely used in various concentrators. In iron ore, even if the ore feeding concentration is about 8%, the underflow concentration can still be maintained above 70%, and the yield is above 75%.
Hydrocyclones are indispensable equipment in modern mineral processing because of their simple structure, high efficiency, and low operating cost. Different hydrocyclone designs are optimized for different tasks, including classification, dewatering, desliming, desanding, and pulp concentration. Selecting the appropriate hydrocyclone according to the characteristics of the slurry and the processing objective can significantly improve separation efficiency, reduce energy consumption, and enhance the overall performance of the processing plant. Understanding the strengths and applications of each hydrocyclone type is therefore essential for maximizing productivity and achieving stable, cost-effective mineral processing operations.