Magnetic Separation Machine

This machine uses the swivel vertical rotation, recoil concentrate, and pulsating bodies, which is a fundamental solution to the world technical problems that the magnetic media between the flat ring strong magnetic separation machine and the flat ring high gradient magnetic separation machine is prone to clogging.

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    Magnetic Separation Machine Advantages

  • large enriched ratio
  • Strong adaptability to the feeding size, concentration and taste.
  • It is also reliable and convenient to operate and maintain.
Model Roller size Magnetic intensity on surface mT Processing ability Drive power Roller rotary speed Weight
(Dia.×Length)
mm Geometric center average highest T/h m3/h Kw Kg
CTS(N,B)-46 400×600   130 160 1~3 5 1.1 45 600
CTS(N,B)-66 600×600   145 170 5~10 16 1.1 40 750
CTS(N,B)-69 600×900   145 170 8~15 24 1.1 40 830
CTS(N,B)-612 600×1200   145 170 10~20 32 2.2 40 990
CTS(N,B)-618 600×1800   145 170 15~30 48 2.2 40 1330
CTS(N,B)-712 750×1200 120 155 180 15~30 48 3 35 1500
CTS(N,B)-718 750×1800 120 155 180 20~45 72 3 35 2100
CTS(N,B)-918 900×1800 148 165 190 25~55 90 4 28 2900
CTS(N,B)-924 900×2400 148 165 190 35~70 110 4 28 3500
CTS(N,B)-1018 1050×1800 148 165 190 40~75 120 5.5 22 4000
CTS(N,B)-1021 1050×2100 148 165 190 45~88 140 5.5 22 4500
CTS(N,B)-1021 1050×2100 160 240 280 45~88 140 5.5 22 4500
CTS(N,B)-1024 1050×2400 148 165 190 52~100 160 5.5 22 5000
CTS(N,B)-1024 1050×2400 160 240 280 52~100 160 5.5 22 5000
CTS(N,B)-1030 1050×3000 160 240 280 65~125 200 7.5 22 6200
CTS(N,B)-1218 1200×1800 148 165 190 47~90 140 5.5 19 5800
CTS(N,B)-1218 1200×1800 160 240 280 47~90 140 5.5 19 5800
CTS(N,B)-1224 1200×2400 148 165 190 82~120 192 7.5 19 6200
CTS(N,B)-1224 1200×2400 160 240 300 82~120 192 7.5 19 6200
CTS(N,B)-1230 1200×3000 148 165 190 80~150 240 7.5 19 7200
CTS(N,B)-1230 1200×3000 160 240 280 80~150 240 7.5 19 7200
CTS(N,B)-1530 1500×3000 180 240 300 90~170 270 11 14 8100
CTS(N,B)-1540 1500×4000 180 240 300 115~220 350 11 14 9300

Applications Of High Gradient Magnetic Separation Machine

The applications of the machine are hematite, limonite, siderite, ilmenite, chromite, wolframite, tantalum and niobium ore, and other weakly magnetic minerals beneficiation; quartz, feldspar, nepheline, fluorite, sillimanite, spodumene and other non-metallic minerals to remove iron, and purification.

SBM has produced several thousand Low Intensity magnetic separators both dry and wet versions to the iron ore and others mining industry. SBM has (in close co-operation with the iron ore mining Industry) developed and designed the low intensity magnetic separators to meet the highest demands for capacity, metallurgical performance and mechanical availability.

Magnetic separation machine has the best performance in practice. It is equipped with the most technologically advanced high intensity magnetic separation equipment. This machine has reached the double advantages of high concentrate grade and high yield in separating magnetic ores.

Magnetic Separation Machine Working Principle

The heart of the magnetic separation machine is the magnetic drum assembly, which is composed of a stationary magnetic array mounted inside of a non-magnetic drum. During operation, the drum revolves around the magnetic assembly thereby transporting magnetically attracted material on the drum to the area designated for discharge.

The drum heads are normally cast from nonmagnetic aluminum alloy and the drum shell is manufactured from non-magnetic stainless steel. Drum shells are normally rubber or stainless steel covered against abrasion.

The magnetic system has alternating polarity and is comprised of six main poles and intermediate cross poles for maximizing the magnetic flux. Other systems for special applications are also available.

We can provide customers with ZGT Series High Gradient Magnetic separation machine s, which make full use of comprehensive force including magnetic force, pulsating fluid force and gravity to carry out separation work. Magnetic separation machines are mainly suitable for separating weak magnetic ores such as hematite, manganese ore, ilmenite, wolframite and tantalum-niobium ores, and de-ironing or purifying non-metallic materials like quartz, feldspar, nepheline, fluorite, sillimanite, spodumene and kaolin.

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