• Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table
  • Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table
  • Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table
  • Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table
  • Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table
  • Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table

Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table

Type: Beneficiation Machinery
Weight: 780kg
Certificate: ISO9001:2008, Ce
Application: for Ore Processing
Motor: 1.1kw
Mining Object: Metallic and Non-Metallic Ore Excavator
Customization:
Diamond Member Since 2009

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Basic Info.

Model NO.
6-S
Transport Package
Standard Packing or as Your Requirement
Specification
ISO9001: 2008
Trademark
HC
Origin
Gongyi City, Henan Province, China
Production Capacity
50sets/Month

Product Description

Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table

Mining 6s shaking table:
Shaking table is one of the main gravity separation equipments, which is widely applied to separate tungsten, tin, tantalum, niobium and other rare metal, noble metal as well. It can also concentrate iron, manganese and coal, etc. It owns the features of high concentration ratio and sorting efficiency, easy management and adjustment, achieving the final concentrate and tailings in one time.

Main Features and Benefits of Gold Shaking Table:
(1) Shaking table in reality it is more like 20-30 times more efficient than a gold pan.

(2) In gold and mineral applications, a full sized gravity table, like the No. 6 Deister Table, will handle 1 ton per hour of sand feed, and less for slime feed, sometimes only 1/2 TPH.

Working Principle of Gold Shaking Table:
Gravity Separation Wet Tungsten/ Tin/ Tantalum/ Ore/ Gold Shaking Table

The table is comprised of a deck, in somewhat of a rectangular shape, covered with riffles (raised bars running perpendicular to the feed side of the table), mounted in a near flat position, on a supporting frame that allows the table to slide along the long axis of the table.
On a table, with particles of mixed densities, layers of material form, a particle in suspension will be subjected to a greater force the nearer it is to the surface of the water, and will cause it to tumble over those at greater distances from the surface. The combination of the particles tumbling and sliding, the flowing stream with differing velocities, will cause the bed of solids to dilate, and will allow high SG particles to find their way down through the bed of light SG particles, and eventually the low SG particles will work their way to the top, where they will be carried along by the swifter flowing water. In all gravity separations, a difference in specific gravity of the materials needs to be significant, at 1 or greater. I. E., a 2.2 SG material will usually separate from a 3.2 SG material.

Model

Bed Size

Max. Input Size

 
Stroke

Water Consumption

Area

Bed Fracture Shape

Power

Weight(kg)

Length

Head Width

End Width

Unit

mm

mm

mm

mm

mm

t/d

m2

 

Kw

Kg

Coarse Sand

4450

1855

1546

2

16-22

80-150

7.6

Rectangle

1.1

780

Fine Sand

4450

1855

1546

0.5

11-16

30-60

7.6

Sawtooth

1.1

780

Slime Sand

4450

1855

1546

0.15

8-16

10-17

7.6

Triangular

1.1

780

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