Integrated Magnetics has 60 years of magnetic design expertise, use our magnet design guide for design, engineering manufacturing considerations. 1 800 421 6692. All. Home; ... Examples of applications that utilize this are magnetic separators, holding devices, magnetic torque drivers and magnetic bearings.
A charged particle moving with a velocity not in the same direction as the magnetic field. The velocity component perpendicular to the magnetic field creates circular motion, whereas the component of the velocity parallel to the field moves the particle along a straight line. The pitch is the horizontal distance between two consecutive circles.
The magnetic charge model assumes that the magnetic forces between magnets are due to magnetic charges near the poles. This model works even close to the magnet when the magnetic field becomes more complicated, and more dependent on the detailed shape and magnetization of the magnet than just the magnetic dipole contribution. Formally, the field can be expressed as a multipole
The SI magnetic induction unit B is tesla : 1 T = 1 Wb/m 2 = 1 Vs/m 2. Mathematically, magnetic field with density of 1 T generates one newton of force per ampere of current per meter of conductor. When the fields generated by currents pass through some materials they can produce magnetization in the direction of the applied field.
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cubic meter . gram kilogram ... metric ton '> kilogram/meter Example : Convert 10 centimeters to inches 10 x 0.4 = 4 in This same format is used throughout this metrication guide. The above conversion factors are derived from the following factors: ... number notation is made by separating digits into groups of ...
A typical eddy current separator will handle between 1 to 20 tons per hour per foot of width; PET is 3/4 TPH/F, commingled MRF residue is 1 to 2 TPH/F, and glass cullet is 5 to 8 TPH/F. Product size, density or pounds per cubic foot, size and percentage of metals, and recovery required all affect eddy current separator capacity.
08/09/2013· It may be calculated in several different ways, depending on the data available. By assays f, c and t only: R = 100 c /f = recovery %. By K plus assays f and c. R = 100 c/Kf = recovery %. By weights F and C, plus assays c and t. R = 100 Cc / ) = recovery %. A copper concentrator is milling 15,000 tons/day of a ...
Compressor di splacement, cu f t/min Volu me of g as entering c omp ressor, cu f t/lb Ne t refrigerating effect, Btu/lb Compression horsepower 42.41 Btu/min hp Ne t refrigerating Effe ct, Btu/lb He at of comp ression, Bt u/lb 200 4 2.41 = 4 .716 X X X X X X X X R eference: F luo rocarbon R efrigerants H andbook E nthalpy R 134a e r ...
So, for each 10 tons of feed, the plant would produce 1 ton of concentrate. Using the example data from Table 1, the % Cu recovery calculated from weights and assays is: % Cu Recovery = /·100 = 95.7% Feed f = 2.09% Cu F = 100% Wt Concentrate c = 20% Cu C = 10% Wt Tailings t = 0.1% Cu T = 900% Wt
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