inquiry
Leave Your Message
China Shaking Table Gravity Separation Machine for Beneficiation - Suppliers & Factory for High-Efficiency Gold Recovery
Hot Products

China Shaking Table Gravity Separation Machine for Beneficiation - Suppliers & Factory for High-Efficiency Gold Recovery

Introducing the ASCEND Shaking Table, a highly efficient gravity separation machine designed for the beneficiation of precious metals, rare metals, and non-metallic minerals. Manufactured in China, our shaking table is a preferred choice among suppliers and factories due to its robust design and superior performance, The shaking table comprises a table head, electric motor, gradient adjusting device, table surface, ore chute, water chute, and lubrication system, making it ideal for rough concentrating, scavenging processes, and separating various particle sizes of rough sand, fine sand, and ore mud. Additionally, when integrated with equipment like the wet pan mill and gold kacha, our shaking table forms a complete production line for gold separation, Choose ASCEND's shaking table for its high recovery rates, low production costs, and exceptional efficiency, and experience the best in mineral processing technology directly from a leading manufacturer in China

    Working principle

    Beneficiation of shaking table is a process that the mineral particles are loosened, layered, and banded on the inclined bed surface by the combined action of mechanical asymmetric reciprocating motion and thin-layer inclined water flow. The minerals can be sorted according to density.

    First, add materials into the ore chute. The table surface is inclined, and many parallel riveting bars or grooves is nailed on the table surface along the longitudinal direction. There is a transmission mechanism installed at the end of the shaking table, which drives the bed surface to shake asymmetrically in the longitudinal direction. The bed surface is tilted toward the tailings side at a horizontal angle of 1.5 to 5 degrees. Then the slurry and flushing water are fed from the side with a higher slope of the bed surface. By impact of the fluid and the differential reciprocating force of the transmission device on the shaking table, the mineral particles are layered according to density and particle size and move along the bed surface in different directions, showing regular fan-shaped banding. At last they are discharged from different areas with separating into concentrate, middlings, and tailings by separate collection.

    shaking table detail1

    Main technical parameters

    Model Stroke (mm) Time/min Surface size of table (mm) Motor (kw) Overall dimensions (mm) Surface weight of table (kg)
    6-S 10-30 240-360 152x1825x4500 1.1 5454x1825x1242 1012
    Material Type Feed size (mm) Mine density (%) Flushing water (t/h) Capacity (t/h)
    Coarse sand 2.0-2.5 20-30 0.7-1.0 1.0-1.8
    Fine sand 0.5-0.074 18-25 0.7-1.0 0.5-1.0
    Ore mud -0.074 15-20 0.4-0.7 0.3-0.5

    Frequently Asked Questions

    What is the working principle of a shaking table?

    The shaking table separates minerals by density. Mineral particles are loosened, layered, and banded on an inclined bed surface through the combined action of mechanical asymmetric reciprocating motion and thin-layer inclined water flow.

    What is the inclination angle of the shaking table surface?

    The bed surface of the shaking table is tilted toward the tailings side at a horizontal angle of 1.5 to 5 degrees.

    What are the specifications of the 6-S model shaking table?

    The 6-S model has a stroke of 10-30 mm, a frequency of 240-360 times/min, a table surface size of 152x1825x4500 mm, a 1.1 kw motor, and a table surface weight of 1012 kg.

    How does particle size affect the processing capacity of the shaking table?

    Processing capacity varies by material size: Coarse sand (2.0-2.5 mm) has a capacity of 1.0-1.8 t/h, Fine sand (0.5-0.074 mm) has a capacity of 0.5-1.0 t/h, and Ore mud (-0.074 mm) has a capacity of 0.3-0.5 t/h.

    What is the required flushing water volume for different mineral feeds?

    For both coarse and fine sand, the flushing water requirement is 0.7-1.0 t/h, while for ore mud, the flushing water requirement is 0.4-0.7 t/h.