Parameter | Value |
---|---|
Magnetic Permeability | High |
Coercivity | Low |
Core Loss | Minimal |
Specification | Detail |
---|---|
Width | 10-100 mm |
Thickness | 0.02-0.1 mm |
Length | Custom |
The manufacturing of nanocrystalline ribbons, according to recent papers by notable researchers, involves a rapid solidification process like melt spinning. This method allows the formation of ribbons with unique nanostructures, enhancing their magnetic and physical properties. The process requires precision in maintaining melting temperatures and cooling rates, often reaching a million degrees Celsius per second, ensuring the prevention of large crystal formations.
Research indicates widespread use of nanocrystalline ribbons in power transformers, inductors, and automotive sensors. Their superior electromagnetic properties allow efficient energy conversion and reduced losses, crucial in renewable energy sectors like solar and wind power. This versatility extends to electric vehicle components, where size and efficiency are paramount.
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