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Silicon steel

  • COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION
  • COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION
  • COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION
  • COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION
  • COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION
COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION

COLD ROLLED GRAIN ORIENTED SILICON STEEL THICKNESS 0.20-0.27WITH LOW IRON LOSS AND HIGH MAGNET INDUCTION

Silicon Steel are ferritic alloys of iron and silicon that have magnetic properties which make them useful in motors and transformers. The silicon additions improve magnetic softness and increase the electrical resistivity. They also have the undesirable effects of decreasing the Curie temperature, reducing the saturation magnetization, and of embrittling the alloy when the silicon additions exceed about 2 wt.%. The embrittling effects of silicon make it difficult to produce silicon steels with more than about 3 wt.% silicon. The silicon steels are produced in two forms, highly textured grain-oriented alloys and alloys in which the grains are not oriented. Grain orientation is carried out to align the magnetic easy axis.

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