Magnetic Separation Machine

Magnetic separation is generally a low cost method of recovery, unless high intensity separators are required. The electro-magnetic high intensity separators that produce 20,000 gauss; the rare earth magnetic separators are relatively inexpensive and can produce magnetic fields around 6,000 gauss. To different kinds of mineral ores, the application of magnetic separation machine is quite different.Magnetic particles in a magnetic field magnetic separator, except by the magnetic force, but also by the role of competitiveness. Competitiveness can be defined as the direction opposite to the magnetic force of all mechanical forces, including gravity, centrifugal force, inertial force and the hydrodynamic resistance and the like. In the magnetic separation process, the magnetic force of the magnetic particles is a collector, the collector also called magnetic force; competitiveness of the magnetic particles from the magnetic force, also known from the force. Clearly, a necessary condition for the magnetic particles and non-magnetic particles are separated magnetic particles is greater than the magnetic force suffered competitiveness. To make two kinds of different magnetic particle separation, the necessary condition is that the stronger the magnetic particles should be greater than the magnetic force suffered competitiveness suffered weak magnetic magnetic particles should be less than competitive. It should be noted, in practice, there can be magnetic magnetic absolutely pure products and non-magnetic product, in addition to the living body is not dissociated monomers affect the product purity, a number of magnetic particles mixed with the monomer in non-magnetic products, some monomeric non-magnetic particles mixed with magnetic product. In the former case, resulting in the recovery of the magnetic component is decreased, mainly due to the particle size of these magnetic particles is too small, the magnetic force is insufficient to overcome fluid resistance and other competitive; the latter case leads to decreased quality magnetic products, the most likely cause of the particles there is a strong interaction between the force, the finer the particle size, the greater the concentration of slurry, the more obvious the interactions between the particles.

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  • 1. High intensity. High garden, high power rare earth magnets.
  • 2. Available with flanges to suit square and round chutes.
  • 3. Available with angle deflectors above and between the tubes for heavy contamination.
  • 4. Direct access to magnets in chute.
  • 5. Easily installed and extremely easy to clean.
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

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