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mineral separator

AM30 jig concentrator

The AM30 jig concentrator is a heavy-duty gravity separation machine specifically designed for coarse particle mineral recovery in the 8–30 mm size range.

Unlike JT sawtooth wave jigs developed for fine particle stratification, the AM30 is optimized for coarse mineral separation under thick bed conditions. It is widely used in manganese ore, hematite, chromite, and metallurgical slag recovery applications where strong bed loosening and coarse particle penetration are required.

AM30 jig concentrator

Applications of AM30 Jig Concentrators

Widely used for gravity concentration of coarse manganese oxide ores.

Suitable for coarse hematite and limonite pre-concentration circuits.

Applied in recovery of metallic particles from industrial slags.

Suitable for separation of coarse liberated barite and fluorite minerals.

Optimized Coarse Particle Stratification

Jigging system optimized for coarse particles — The AM30 is not designed for ultra-fine particle recovery. Its primary purpose is to solve the stratification problem of coarse heavy minerals under thick bed conditions.

In coarse particle gravity separation, insufficient bed loosening often prevents high-density particles from penetrating effectively into the concentrate layer, resulting in poor stratification and concentrate contamination. The AM30 uses a larger stroke and stronger pulsation regime to create a more fully dilated bed, allowing coarse heavy minerals to migrate downward more efficiently.

Side-moving mechanical structure — The AM30 adopts a side-moving jigging mechanism rather than a conventional vertical pulsation structure.

This design provides greater water displacement and improved mechanical stability under high-capacity operating conditions, making it better suited for continuous jigging of thick-bed coarse materials. Compared with conventional structures, the side-moving mechanism performs particularly well in coarse ore and metallurgical slag recovery applications where stronger particle movement is required.

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Frequently Asked Questions

FAQ for AM30 jig concentrator

Jigging performance is mainly influenced by stroke length, stroke frequency, feed rate and density, bed thickness, supplementary water volume, and operational management. Proper coordination of these parameters ensures effective stratification and stable separation, significantly improving concentrate grade and recovery. Optimal parameters are normally determined through experimental testing.
Stroke length determines pulsation intensity, while frequency affects the bed pulsation rate. Coarse, high-density minerals require longer stroke and lower frequency; fine particles perform better with shorter stroke and higher frequency. Both parameters must be coordinated to ensure adequate bed loosening and sufficient stratification time.
Bed thickness directly impacts stratification speed and concentrate quality. A bed that is too thin may cause particle jumping and concentrate contamination, while an overly thick bed hinders proper layering and discharge. Generally, coarse particles need a slightly thicker bed, while fine particles perform better with a thinner bed to achieve higher concentrate grade.
When issues such as boiling, dead bed, or excessive looseness occur, inspect stroke length, frequency, water addition and feed uniformity. If the bed is too thin or concentrate impure, slightly increase the stroke or water supply. If the bed is too loose or overflow excessive, reduce the stroke or feed concentration. Continuously monitor and fine-tune the parameters for stable operation.

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Technical Data of AM30 jig concentrator

Model Feed Size (mm) Capacity (t/h) Jigging Area (m²) Stroke (mm) Stroke Frequency (r/min) Power (kW)
AM30 8-30 10-15 2.574 0-25 0-90 4

Note: Specifications are subject to change without notice due to ongoing product improvement.

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