Property | Value |
---|---|
Material | Fe-based nanocrystalline |
Grain Size | < 100 nanometers |
Saturation Magnetization | High |
Permeability | High |
Coercivity | Low |
Thermal Stability | -40 to 140°C |
Application | Specification |
---|---|
Transformer Cores | Low core loss, high permeability |
Inductors | Efficient energy consumption |
The manufacturing of Nanocrystalline 1K107 involves a critical process that includes rapid solidification followed by controlled annealing. This technique ensures the nanometer-scale grain structure essential for its enhanced magnetic properties. Scientific studies highlight that this process improves efficiency by tailoring grain boundaries and optimizing magnetic domain structures. The combination of specific alloy elements such as silicon and boron provides additional mechanical strength and corrosion resistance, making the material suitable for multiple industrial applications.
Nanocrystalline 1K107 is widely used in transformers, inverters, and electric vehicle systems. Its high permeability and low core loss reduce energy consumption in transformers, while its thermal stability supports applications in automotive sectors. Studies indicate its potential for enhancing sensor accuracy, providing reliable magnetic sensors for industrial electronics. Its application in power electronics is significant, with the ability to handle high-frequency operations efficiently, which is crucial for sustainable technology advancements.
Comprehensive support including warranty, technical assistance, and replacement policy covering manufacturing defects.
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