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Silicon steel core refers to a type of electrical steel used in the cores of transformers, electric motors, and other electromagnetic devices. It is made from a combination of iron and silicon, with the silicon content typically ranging from 1% to 4.5%. The addition of silicon to iron improves several key properties:
Magnetic Properties: Silicon steel has enhanced magnetic permeability, meaning it can conduct magnetic flux more efficiently. This reduces energy losses due to magnetic hysteresis and eddy currents.
Reduced Core Losses: The silicon content helps in reducing core losses, which are the energy losses that occur in the core material due to alternating magnetic fields. Lower core losses translate to higher efficiency in electrical devices.
Improved Electrical Resistivity: Silicon steel has higher electrical resistivity compared to pure iron, which helps in minimizing eddy current losses. Eddy currents are loops of electric current induced within the core material by changing magnetic fields, and reducing these currents is crucial for efficient operation.
Enhanced Mechanical Properties: Silicon steel also has better mechanical properties, such as increased hardness and wear resistance, which can be beneficial in various applications.
Silicon steel cores are widely used in the manufacturing of electrical transformers, induction motors, and generators, where efficient magnetic flux conduction and minimal energy losses are critical.
Our ability to tailor the composition and specific heat treatments according to our know-how enables us to design alloys with unique properties for specific customer needs.