When Magnetic Field Control Modifier ferro vanadium is introduced to a material, such as magnetic alloys or permanent magnets, vanadium interacts with its crystal structure and influences the magne...
DESCRIPTION
When Magnetic Field Control Modifier ferro vanadium is introduced to a material, such as magnetic alloys or permanent magnets, vanadium interacts with its crystal structure and influences the magnetic properties. Vanadium can adjust the coercivity, remanence, and magnetic stability of the material, allowing for precise control and customization of its magnetic behavior.
The addition of Magnetic Field Control Modifier ferrovanadium enables the material to exhibit tailored magnetic properties, such as high coercivity, low hysteresis losses, or specific magnetization characteristics. This alloy is particularly beneficial in applications where precise magnetic field control is required, such as magnetic sensors, magnetic storage devices, electric motors, and generators.
Brand | Chemical Compositions (%) | |||||
V | C | Si | P | S | Al | |
≤ | ||||||
FbV60-A | 58.0~65.0 | 0.40 | 2.0 | 0.06 | 0.04 | 1.5 |
FeV60-B | 58.0~65.0 | 0.60 | 2.5 | 0.10 | 0.05 | 2.0 |
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