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High-frequency magnetic properties and core loss of carbonyl iron composites with easy plane-like structures
Authors:Guo-Wu Wang  Chun-Sheng Guo  Liang Qiao  Tao Wang  Fa-Shen Li
Affiliation:(Key Laboratory for Magnetism and Magnetic Materials of MOE,Lanzhou University,Lanzhou 730000,China;Guangzhou Newlife Magnet Electricity Co.,Ltd.,Guangzhou 511356,China;Key Laboratory of Special Function Materials and Structure Design(Ministry of Education),Lanzhou University,Lanzhou 730000,China)
Abstract:To fully release the potential of wide bandgap(WBG) semiconductors and achieve high energy density and efficiency,a carbonyl iron soft magnetic composite(SMC) with an easy plane-like structure is prepared. Due to this structure, the permeability of the composite increases by 3 times(from 7.5 to 21.5) at 100 MHz compared with to the spherical carbonyl iron SMC, and the permeability changes little at frequencies below 100 MHz. In addition, the natural resonance frequency of the composite shifts to higher frequencies at 1.7 GHz. The total core losses of the composites at 10, 20, and 30 m T are80.0, 355.3, and 810.7 m W/cm3, respectively, at 500 k Hz. Compared with the spherical carbonyl iron SMC, the core loss at500 k Hz is reduced by more than 60%. Therefore, this kind of soft magnetic composite with an easy plane-like structure is a good candidate for unlocking the potential of WBG semiconductors and developing the next-generation power electronics.
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