MANUFACTURING METHOD OF POWDER MAGNETIC CORE
PROBLEM TO BE SOLVED: To provide a powder magnetic core having a property superior in DC superposition with a smaller loss.SOLUTION: The powder magnetic core is constituted of Fe-based amorphous alloy, a ribbon of which is crushed into a powder and molded, and which is subjected to a heat treatment....
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Zusammenfassung: | PROBLEM TO BE SOLVED: To provide a powder magnetic core having a property superior in DC superposition with a smaller loss.SOLUTION: The powder magnetic core is constituted of Fe-based amorphous alloy, a ribbon of which is crushed into a powder and molded, and which is subjected to a heat treatment. A bcc-Fe phase is deposited by the heat treatment. Assuming the (110) peak intensity of the bcc-Fe crystal in the vicinity of 2 =45° as Ic; and assuming the intensity of a main halo peak of the amorphous phase as Ia, the intensity ratio Ic/Ia of the powder magnetic core is 1.1≤Ic/Ia≤3.6. The crushed powder has an average thickness 30-60 μm, and is preferably coated with silica coating film formed thereover.SELECTED DRAWING: Figure 1
【課題】 より低損失で優れた直流重畳特性を有する圧粉磁心を提供する。【解決手段】 Fe基アモルファス合金薄帯を粉砕した粉砕粉を成形し、熱処理してなる圧粉磁心において、前記熱処理によりbcc-Fe相を析出させ、2θ= 45?付近の前記bcc-Fe結晶の(110)ピークの強度をIcとし、アモルファス相のメインのハローピークの強度をIaとした時、強度比Ic / Iaが1.1 ≦ Ic / Ia ≦ 3.6である圧粉磁心。前記粉砕粉は、平均厚み30μm〜60μmで、シリカ皮膜を形成したものであることが望ましい。【選択図】 図1 |
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