Magnetic Core Material With Ferro Silicon Magnesium
Ferrosilicon is an important alloy material, which is widely used in power industry. One of them is the magnetic core material used to make power transformers. The following two aspects of material properties and application examples to explain why ferrosilicon alloy can be used in the manufacture of power transformer core materials.
Description
Description
The high permeability of ferrosilicon alloy can reach the saturation magnetic induction intensity of 1.2T, so the conversion efficiency of power transformer can be greatly improved. At the same time, the ferrosilicon hysteresis loss is small, the response speed of magnetization and demagnetization is fast, which can reduce the energy loss of the power transformer and improve the stability and reliability of the transformer.
Ferroferroic alloys have low iron losses due to the large amount of silicon and magnesium in ferroferroic alloys, which prevent the growth of iron grains and the formation of magnetic domains, thus reducing the hysteresis and eddy current losses in the core. Therefore, the iron loss of ferrosilicon alloy is much lower than that of traditional silicon steel sheet, which can significantly improve the efficiency and energy-saving performance of power transformers.
Specification
Ferro Silicon Magnesium information
|
Brand |
Chemical Compositon (%) |
||||||
|
Mg |
Re |
Si |
Ca |
Al |
Fe |
||
|
FeSiMg8Re5 |
7.0-9.0 |
4.0-6.0 |
38-44 |
2.0-3.5 |
<1.0 |
Balance |
|
|
FeSiMg8Re7 |
7.0-9.0 |
6.0-8.0 |
38-44 |
2.0-3.5 |
<1.0 |
Balance |
|
|
FeSiMg10Re7 |
9.0-11.0 |
6.0-8.0 |
38-44 |
2.0-3.5 |
<1.0 |
Balance |
|
|
Support customized production according to customer requirements. |
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The stability of ferrosilicon alloy is good, can resist the influence of temperature, humidity, oxidation and other environmental factors, so it is suitable for the manufacturing of power transformer core materials.
At the same time, the magnetic core material of ferrosilicon alloy can withstand the stress under extreme working conditions such as high frequency current and high magnetic field intensity, and is not easy to deformation and thermal expansion, which can ensure the stability and reliability of the power transformer.
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