邓联文
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冯则坤
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黄小忠
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周克省
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杨兵初
无机材料学报
doi:10.3724/SP.J.1077.2008.00669
为改善MgCuZn铁氧体的低温烧结特性并提高其软磁性能, 采用传统氧化物法制备MgCuZn铁氧体材料, 研究了Bi-Mo复合掺杂对其烧结特性和软磁性能的影响. 结果表明: 复合掺杂Bi2 O3和MoO3适量时(分别为0.6wt%和0.1wt%), 在较低的烧结温度(1020℃)就能获得较高的烧结密度(<4.75g/cm3), 起始磁导率可达1240, 且具有较高的品质因数(100kHz下为33.8). 通过主成分优选、有效的掺杂技术及工艺条件可以提高MgCuZn铁氧体的综合性能, 使其可应用于多层片式电感中.
关键词:
MgCuZn铁氧体
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Bi-Mo co-oping
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low sintering temperature
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initial permeability
ZHANG Xiangyi
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ZHANG Jingwu and ZHENG Yangzeng(Department of Materials Engineering
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Yanshan University
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Qinhuangdao 066004
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China)Mannscript received 4 September 1995
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in revised form 8 April 1996
金属学报(英文版)
The nanocrystalline structure of annealed Fe73.5 Cu1 W3Si13.5B9 alloy has been investigated by using the XRD and the TEM methods. The relation between the initial permeability and the microstructure of the annealed alloy has been discussed. The crystalline phase in annealed Fe73.5 Cu1 W3Si13.5B9 alloy is the α-Fe(Si) phase with DO3 superstructure. The volume fraction, Si content and degree of order of the αFe(Si) phase increase with increasing annealing temperature. In the temperature range of 490-570℃, the α-Fe(Si) phase has a size of 13 nm, and its grain number increases as the annealing temperature is increased. The DO3 ordered region in the α-Fe(Si) grain is spherical approximately, and its size increases as the annealing temperature increases. The size of the DO3 ordered region is 12.8 nm at the temperature of 570℃,which is close to that of the α-Fe(Si) grain. There is obvious change in the structure of the residual amorphous phase during annealing, and the nearest atomic distance and the short-range order of residual amorphous phase reach maximum and minimum at 530℃, respectively. The initial permeability of annealed Fe73.5 Cu1 W3Si13.5 B9 alloy is not only dependent on the size, volume fraction and Si content of the α-Fe(Si) phase but also related to the structure state of the residual amorphous phase.
关键词:
: Fe_(73.5)Cu_1 W_3Si_(13.5)B_9 alloy
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