The high gradient PTMS electromagnetic separator has 74 sorting rooms in double rows
dry magnetic separator
PTMS magnetic separation
how to separate two magnets ?
High gradient PTMS electromagnetic separator is a kind of strong magnetic separator used for screening weakly magnetic minerals. It is a new type of high intensity magnetic equipment developed on the basis of general high intensity magnetic separator. High gradient PTMS electromagnetic separator is suitable for separating weakly magnetic minerals, such as hematite, limonite, siderite, ilmenite, chromite, wolfram, tantalum-niobium, red mud, etc. Iron removal and purification of nonmetallic minerals. Such as: quartz, nepheline, feldspar, fluorite, lithium pyroxene, silica, kaolin and so on. High gradient PTMS electromagnetic separator is suitable for wet magnetic separation of magnetite, calcined ore, pyrrhotite, ilmenite and other materials with particle size less than 3 mm. It is also used for iron removal of coal, non-metallic ore, building materials and other materials.
The high gradient PTMS electromagnetic separator mainly consists of pulsation mechanism, excitation coil, iron yoke and rotary ring. The rotary ring is a double row of 74 sorting rooms consisting of 1 central plate, 2 side ring plates and 74 trapezoidal partitions processed by ordinary stainless steel. Each sorting room is formed by alternating overlapping of 1.0mm×4mm×12mm magnetic stainless steel plate mesh and 0.7mm×10mm×25mm ordinary stainless steel large hole mesh to form magnetic medium reactor. The filling rates of the magnetic mesh and the large hole mesh are respectively 12% and 3.2%. During the separation operation, the revolving ring rotates clockwise, and the slurry is fed from the hopper and flows through the revolving ring along the gap of the iron yoke. The magnetic particles in the slurry are adsorbed on the surface of the magnetic medium, and then from the revolving ring to the top of the non-magnetic field area, the flushing water is flushed into the concentrate hopper. Non-magnetic particles flow into the tailings hopper along the lower iron yoke gap and are carried away.
Which ore is used in magnetic separation method?
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