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Novel Fe-based amorphous magnetic powder cores with ultra-low core losses 被引量:5
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作者 ZHANG Liang LI DeRen +6 位作者 LU ZhiChao LU CaoWei liu TianCheng GUO Feng liu kaihuang WANG Jun ZHOU ShaoXiong 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第5期1290-1293,共4页
Amorphous magnetic alloy powders were prepared from bulk metallic glasses Fe74Cr2Mo2Sn2P10Si4B4C2 with supercooled liq-uid region of 32 K by water atomization.Amorphous magnetic powder core precursor was produced from... Amorphous magnetic alloy powders were prepared from bulk metallic glasses Fe74Cr2Mo2Sn2P10Si4B4C2 with supercooled liq-uid region of 32 K by water atomization.Amorphous magnetic powder core precursor was produced from a mixture of the amorphous alloy powder with addition of insulation and bonding materials by mold compacting at room temperature.After annealing the core precursor,the amorphous magnetic core exhibits superior magnetic properties as compared with molypermalloy powder core.The initial permeability up to 1 MHz was about 80,the flux density at 300 Oe was 1.06 T and the core loss at 100 kHz for Bm=0.1 T was only 329 kW/m3.The ultra-low core loss is attributed to the combination of relatively high resistivity and the amorphous structure of the Fe-based amorphous powder.Besides the outstanding magnetic properties,the Fe-based amorphous magnetic powder core had a much lower cost which renders the powder cores a potential candidate for a variety of industrial applications. 展开更多
关键词 Fe-based amorphous powder water atomization amorphous powder core ultra-low core loss
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High frequency complex permeability of flake-shaped Fe_(74)Cr_2Mo_2Sn_2P_(10)Si_4B_4C_2 particle composite material 被引量:1
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作者 liu kaihuang liu TianCheng +5 位作者 LI JianLiang ZHANG Liang ZHANG HongHao LI DeRen LU ZhiChao ZHOU ShaoXiong 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第4期1056-1059,共4页
A composite consisting of flake-shaped Fe74Cr2Mo2Sn2P10Si4B4C2 particles was prepared.The flake-shaped particles included in the composite were prepared by planetary ball milling.The complex permeability of the compos... A composite consisting of flake-shaped Fe74Cr2Mo2Sn2P10Si4B4C2 particles was prepared.The flake-shaped particles included in the composite were prepared by planetary ball milling.The complex permeability of the composite material was measured at frequency range from 10 MHz to 8.5 GHz.The permeability of the composite containing flake-shaped particles was much higher than that of the spherical particles.The permeability of particles was improved by means of heat-treatment.In contrast to the random-spatial-distributed flake-shaped particle composites,the oriented-distributed ones had a higher effective permeability.A model was proposed considering the orientation ratio,and our calculation agreed well with the experimental data. 展开更多
关键词 complex permeability composite materials flake-shaped electromagnetic wave absorber
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