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0.7CaTiO_3-0.3(La_xNd_(1–x))AlO_3微波介质陶瓷的研究
引用本文:梁飞,叶方平,吕文中,王志勇,万丰.0.7CaTiO_3-0.3(La_xNd_(1–x))AlO_3微波介质陶瓷的研究[J].电子元件与材料,2012(11):1-5.
作者姓名:梁飞  叶方平  吕文中  王志勇  万丰
作者单位:华中科技大学光学与电子信息学院;武汉虹信通信技术有限责任公司基配部
基金项目:国家自然科学基金资助项目(No.61172004);新一代宽带无线移动通信网国家科技重大专项资助项目(No.2009ZX03001-014-01)
摘    要:利用传统固相反应法制备了具有不同LaAlO3含量的0.7CaTiO3-0.3(LaxNd1–x)AlO3(以下简称CTLNA)系微波介质陶瓷,研究了所制CTLNA陶瓷的微观结构和微波介电性能。结果表明,用x=0.5的La3+取代Nd3+能有效促进样品晶粒的均匀分布,降低样品的气孔率。少量添加SrTiO3能进一步增加样品的致密度,提高CTLNA系微波陶瓷的介电性能。经原料组分及工艺优化,制备的0.7(Sr0.01Ca0.99)TiO3-0.3(La0.5Nd0.5)AlO3样品密度高、晶相均匀,其微波介电性能如下:εr=45.87,Q.f=41 612 GHz(4 GHz),τf=10×10–6/℃。

关 键 词:微波介质陶瓷  CaTiO3-NdAlO3  滤波器  SrTiO3掺杂

Study on 0.7CaTiO3-0.3(LaxNd1–x)AlO3 microwave dielectric ceramics
LIANG Fei,YE Fangping,Lü Wenzhong,WANG Zhiyong,WAN Feng.Study on 0.7CaTiO3-0.3(LaxNd1–x)AlO3 microwave dielectric ceramics[J].Electronic Components & Materials,2012(11):1-5.
Authors:LIANG Fei  YE Fangping  Lü Wenzhong  WANG Zhiyong  WAN Feng
Affiliation:1.School of Optical and Electronics Information,Huazhong University of Science and Technology,Wuhan 430074,China;2.Base Station Supporting Products Division,Wuhan Hongxin Telecommunication Technologies Co.,Ltd,Wuhan 430074,China)
Abstract:0.7CaTiO3-0.3(LaxNd(1–x))AlO3(CTLNA) ceramics with different contents of LaAlO3 were prepared by traditional solid state sintering.Microstructure and microwave dielectric properties of the prepared CTLNA ceramics were studied.The results show that the Nd2+ amount to x=0.5 which is substituted by La2+ overcomes the difficulty of getting compact ceramics.The influence of SrTiO3 on the sintering characters,dielectric properties and microstructure of CTLNA ceramics was also discussed.A little addition of SrTiO3 promotes the growth of the crystal grain,reduces the porosity of samples and improve the dielectric properties of the CTLNA ceramics.After optimization of raw material composition and preparation process,the prepared 0.7(Sr0.01Ca0.99)TiO3-0.3(La0.5Nd0.5)AlO3 samples show high density and a uniform grain structure with εr=45.87,Q?f = 41 612(at 4 GHz),τf =10×10–6/℃.
Keywords:microwave dielectric ceramics  CaTiO3-NdAlO3  wave filter  SrTiO3 doping
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