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个人信息Personal Information
教授 博士生导师
性别:男
学历:博士研究生毕业
学位:工学博士学位
入职时间:2005-04-01
办公地点:电子科技大学5号科研楼
Microstructure and electromagnetic properties of microwave sintered NiCuZn+CCTO composites materials for application in LTCC devices
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所属单位:[1] State Key Laboratory of Electronic Thin Film and Integrated Devices, University of Electronic Science and Technology of China, Chendu 610054, Sichuan, China
发表刊物:IEEE Transactions on Magnetics
关键字:Copper compounds - Sintering - Calcium compounds - Ferromagnetic materials - Nickel compounds - Zinc compounds - Ferroelectricity - Iron compounds - Titanium compounds - Microwave heating - Microwaves
摘要:In this paper, microwave sintering (MS) technology has been applied in the preparation of ferromagnetic-ferroelectric composites. The Ni 0.3Zn0.6Cu0.1Fe2O 4(NiCuZn})+15%(wt}.)CaCu3Ti4O 12(CCTO) composites have been fabricated by both MS technology and conventional sintering (CS) technology, respectively. We found that the fabricating time and sintering temperature were 22 h and 1100°C for the CS process and 2 h and 900°C for the MS process. Experiments show that MS treated NiCuZn-CCTO composites possess both excellent ferromagnetic and ferroelectric properties. For the composites of NiCuZn+15% CCTO, the real part of permittivity is larger than 360 when the frequency is lower than 1.2 MHz, and the real part of dielectric constant is larger than 2000 when the frequency is lower than 1.0 MHz. Our results indicate that the MS method is a potential important technique in LTCC technology. ? 2013 IEEE.
文献类型:Journal article (JA)
卷号:49
期号:7
页面范围:4204-4206
ISSN号:00189464
是否译文:否
