WOUND CORE
A wound core includes a thin strip formed of a nanocrystalline material, having an oxidized surface, and wound in multiple layers. In the wound core, the thin strip has an oxidation degree at a central portion in a width direction of the thin strip that is different from an oxidation degree at end portions located on both sides of the central portion in the width direction of the thin strip.
1 . A wound core comprising:
a thin strip formed of a nanocrystalline material, having an oxidized surface, and wound in multiple layers, wherein
the thin strip has an oxidation degree at a central portion in a width direction of the thin strip that is different from an oxidation degree at end portions located on both sides of the central portion in the width direction of the thin strip.
2 . The wound core according to claim 1 , wherein the thin strip has a higher oxidation degree at the end portions than at the central portion.
3 . The wound core according to claim 1 , wherein opposite surfaces in a thickness direction of the thin strip each have an oxide film thickness of 5 nm or greater and 350 nm or less, and,
in each of the opposite surfaces of the thin strip in the thickness direction, a representative value of the oxide film thickness at the central portion is different from a representative value of the oxide film thickness at the end portions.
4 . The wound core according to claim 1 , wherein, in each of opposite surfaces of the thin strip in a thickness direction, a color at the central portion is different from a color at the end portions.
5 . The wound core according to claim 1 , wherein an outermost thin strip and an innermost thin strip of the thin strip in multiple layers each have a larger representative value of an oxide film thickness than an intermediate thin strip located between the outermost thin strip and the innermost thin strip.