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  • 9.23GK085.JPG

23GK085 grain-oriented silicon steel

High Magnetic Induction: Under a given magnetic field intensity, the 23-085 grain-oriented silicon steel can generate a relatively strong magnetic induction intensity.

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  • 产品描述
  • Performance Features

    1. Excellent Magnetic Properties

    • High Magnetic Induction: Under a given magnetic field intensity, the 23-085 grain-oriented silicon steel can generate a relatively strong magnetic induction intensity. When it is used in electromagnetic equipment such as motors and transformers, it can effectively enhance the magnetic field strength of the equipment and thus improve the working efficiency of the equipment. For example, in a transformer, a stronger magnetic induction intensity helps to improve the voltage conversion efficiency and enables the iron core to be smaller in size and lighter in weight while ensuring performance.

    Certificate Of Product Quality

    • High Permeability: This silicon steel has a high permeability, just like an efficient "magnetic field channel", which allows the magnetic flux to be transmitted smoothly in the iron core and reduces magnetic hysteresis. This helps the magnetic field energy to be transferred more effectively in the equipment, thereby optimizing the performance of the equipment and improving the energy conversion efficiency.

    • Low Iron Loss: In an alternating magnetic field, the energy loss generated when magnetic domains reverse is relatively low. For equipment such as transformers, low iron loss is of vital importance. A lower iron loss means that the equipment has less energy loss when operating under no-load or load conditions, which can effectively reduce operating costs and improve the energy utilization efficiency of the equipment.

    • Good Magnetic Stability: Whether under different magnetic field intensities or within a certain range of working temperature changes, the 23-085 grain-oriented silicon steel can maintain stable magnetic properties. This stability ensures that the equipment can operate reliably under various working conditions and reduces equipment failures caused by fluctuations in magnetic properties.

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