Fodamon

Shaking Table

Shaking Table

Applied Materials:

Gold ore, iron ore, copper ore, lead ore, molybdenum ore, zinc ore, aluminum ore, pyrrhotite, hematite, limonite, coal, etc.


Applications:

Production industries such as cement, silicate products, new building materials, refractory materials, fertilizers, black and non-ferrous metal beneficiation, and glass ceramics.

Description

The shaking table of gravity beneficiation equipment used for the separation of fine materials is mainly used for different beneficiation operations such as roughing, cleaning and scavenging of 2-0.02mm ore sand and slime grade non-ferrous metals such as iron, manganese, gold, tungsten, lead, tin, chromium, titanium, bismuth, tantalum, ferrous metals and rare and precious metal minerals; in addition, pyrite of 4-0.02mm is also selected; the type of bed bar is changed appropriately After the separation of fine coal and slime, as well as separation of other mixed materials with sufficient specific gravity difference and particle size composition, separation of coarse sand, fine sand, slime and other materials with different particle sizes.

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Fodamon has experienced the development history of the shaker, from the initial straight bed surface shaker to the single curved bed surface shaker, and then to the double curved bed surface shaker, Fodamon has been striving for innovation and research. For example, the treatment capacity, recovery rate and concentration ratio of the new type of shaker produced by Fodamon are quite high.

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Structure of Shaking table

The shaking table is mainly composed of eight parts: head of bed, motor, slope regulator, bed surface, ore tank, water tank, rewinding and lubrication system.
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Working principle

The ore dressing process of the shaking table is carried out on the inclined bed surface with multiple strips. The ore particles are fed into the ore feeding trough at the upper corner of the bed surface, and at the same time the water is supplied by the water feeding trough for horizontal flushing. Therefore, the ore particles are stratified according to specific gravity and particle size under the action of inertia and friction force caused by the reciprocating asymmetric movement of the bed surface, and move longitudinally and incline along the bed surface of the shaking table The inclined bed surface moves laterally. Therefore, the ore particles with different specific gravity and particle size gradually flow from side a to side B in fan-shaped flow along their respective moving direction, and are discharged from different areas of concentrate end and tailings side respectively, and are divided into concentrate, medium ore and tailings. The shaker has the advantages of high ore ratio, high separation efficiency, easy care and easy adjustment of stroke. When the cross slope and stroke are changed, the running balance of the bed surface can still be maintained. The spring is placed in the box, the structure is compact, and the concentrate and tailings can be obtained in turn.
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Shaking Table Technical Parameter

Name

Grit concentrator table

Fine sand concentrator table

Sludge concentrator table

Bed surface 
Dimensions

Length (mm)

4450

4450

4450

Driving 
part Width (mm)

1855

1855

1855

Concentrate 
part Width (mm)

1546

1546

1546

Max.feeding size(mm)

2

0.5

0.15

Feeding amount (t/d)

30-60

10-20

15-25

Feeding thickness (%)

25-30

20-25

15-25

Stroke (mm)

16-22

11-16

8-16

Frequency (f)

45-48

48-53

50-57

Bed surface water quantity (t/d)

80-150

30-60

10-17

Bed surface horizontal obliquity(°)

2.5-4.5

1.5-3.5

1-2

Bed surface portrait obliquity (%)

1.4

0.92

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Table board corner(°)

32-42

40

42

Concentrating area(㎡)

7.6

7.6

7.6

Bed surface length ratio

2.6

2.6

2.6

Shape of side-bed surface

Rectangle

Zigzag

Triangle

Motor power (kw)

1.1

1.1

1.1

Transmission device

Eccentricity

Note:This is just reference. Please contact us to get suitable solution and competitive price.

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