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SGB Series Wet Belt Strongly Magnetic Separator

Short Description:

It is used for iron removal and purification of non-metallic minerals in wet processing, especially for wet iron removal of non-metallic minerals such as quartz sand, potassium feldspar, and soda feldspar.In addition, it has a good separation performance for weak magnetic minerals such as hematite, limonite, specularite, siderite, manganese ore, and tantalum-niobium ore.


Product Detail

Product Tags

Application

It is used for iron removal and purification of non-metallic minerals in wet processing, especially for wet iron removal of non-metallic minerals such as quartz sand, potassium feldspar, and soda feldspar.In addition, it has a good separation performance for weak magnetic minerals such as hematite, limonite, specularite, siderite, manganese ore, and tantalum-niobium ore.

SGB Wet Belt Strongly Magnetic Separator is a new type of magnetic separation equipment developed by Huate Company, which summarizes the advantages and disadvantages of traditional magnetic separation equipment and breaks the conventional design concept.Integrating magnetic separation and gravity separation,it has the advantages of high magnetic field strength, significant iron reduction effect, large processing capacity, energy-saving, water-saving, and simple operation.This equipment has applied for a national patent.

Technical Characteristics

◆ High magnetic filed intensity:The magnetic system is made up of the rare earth Nd-Fe B magnets with high performance. It has a very wide poly pole face, lots of magnetic poles. It’s with a very high magnetic induction ability and a very high magnetic gradient. The magnetic intensity in some part can reach 17000 Gs.

◆ Big magnetic system area:At present, the largest width for the magnetic system is 2500 mm, and its largest length is 3000 mm.

◆ Even  material distribution:Double-layer orifice plate is used for material distribution, which is stable and uniform, and the material depth is small.

◆ Thorough iron discharge: There’re various belts specially designed to remove the iron for the customer’s choice. Made by the compound materials with high quality, the belt can serve for a long lifetime and remove the iron remarkably.

◆ Energy and water saving:Driven by one motor with small power, it’s very energy-saving. With the special controllable design of water system, water is greatly saved.

◆ Protect the WHIMS:Used in conjunction with the WHIMS to reach the limit level of magnetic separation iron removal!

SGB Series Wet Belt Strongly Magnetic Separator-2
SGB Series Wet Belt Strongly Magnetic Separator-3

Working Principle

SGB Wet Belt Strongly Magnetic Separator is suitable for the purification of various minerals.

 MainTechnical Parameters:

Model

 

Width of magnetic system (mm)

 

Length of magnetic system(mm)

 

Magnetic field intensity (Gs)

 

Feed concentration (%)

 

Water supply pressure (Mpa)

 

Feed size (mm)

 

Processing capacity (t/h)

 

Motor power(kW)

Installed   power(kW)

SGB-0815

800

1500

 

 

 

 

5-8

1.11.5)

SGB-1020

1000

2000

 

 

 

 

8-12

1.52.1)

SGB-1220

1200

2000

 

 

 

 

10-15

2.23)

SGB-1525

1500

2500

 

 

 

 

15-20

2.23)

SGB-2025

2000

2500

9000 ~ 12000

20 ~ 25

≥ 0 .2

-1

20-25

34)

SGB-2030

2000

3000

 

 

 

 

20-25

34)

SGB-2525

2500

2500

 

 

 

 

25-30

45.5)

SGB-2530

2500

3000

 

 

 

 

25-30

45.5)

Note: This technical parameter table is for reference only. When processing different materials, it can be selected according to the actual situation. The red parameter is the motor power when processing metallic ores.

Structural Diagram And Installation Dimensions

No. Model A(mm) B(mm) H(mm) A1(mm) H1(mm)
1 SGB-0815 3640 1320   2000  
2 SGB-1020 4140 1520   2500  
3 SGB-1220 4140 1720   2500  
4 SGB-1525 4640 2020   3000  
5 SGB-2025 4640 2520 1850 3000 98
6 SGB-2030 5140 2520   3055  
7 SGB-2525 4640 3100   3000  
8 SGB-2530 5140 3100   3055  

Note: Please provide ore samples for equipment selection, so as to determine the best separation parameters through magnetic separation experiments.


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