TY - JOUR
T1 - Fe76Si9.6B8.4P6 glassy powder soft-magnetic cores with low core loss prepared by spark-plasma sintering
AU - Li, Xue
AU - Makino, Akihiro
AU - Kato, Hidemi
AU - Inoue, Akihisa
AU - Kubota, Takeshi
N1 - Funding Information:
One of the authors (XL) wishes to acknowledge the financial support from the Global COE Program “Materials Integration (International Center of Education and Research), Tohoku University,” MEXT, Japan.
PY - 2011/9/15
Y1 - 2011/9/15
N2 - Large glassy alloy discs (12 mm diameter, 1 mm thickness) of high relative density (∼98%) were prepared by spark plasma sintering. The bulk magnetic cores (12 mm outer diameter, 6 mm inner diameter, 1 mm thickness) exhibit good soft magnetic properties: saturation magnetization is 1.44 T, coercivity is 31 A/m, and effective permeability at 1 kHz is 1320. They also exhibit much lower loss than a silicon steel core; core loss at 10 kHz and maximum induction of 0.2 T is only 81.7 W/kg.
AB - Large glassy alloy discs (12 mm diameter, 1 mm thickness) of high relative density (∼98%) were prepared by spark plasma sintering. The bulk magnetic cores (12 mm outer diameter, 6 mm inner diameter, 1 mm thickness) exhibit good soft magnetic properties: saturation magnetization is 1.44 T, coercivity is 31 A/m, and effective permeability at 1 kHz is 1320. They also exhibit much lower loss than a silicon steel core; core loss at 10 kHz and maximum induction of 0.2 T is only 81.7 W/kg.
KW - Core loss
KW - Fe-based bulk glassy alloy
KW - Soft magnetic core
KW - Spark plasma sintering
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U2 - 10.1016/j.mseb.2011.06.017
DO - 10.1016/j.mseb.2011.06.017
M3 - Article
AN - SCOPUS:80052035514
SN - 0921-5107
VL - 176
SP - 1247
EP - 1250
JO - Materials Science and Engineering B: Solid-State Materials for Advanced Technology
JF - Materials Science and Engineering B: Solid-State Materials for Advanced Technology
IS - 15
ER -