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研究了V2O5对Mg4Nb2O9陶瓷的烧结温度、相结构和微波介电性能的影响.结果表明,添加1%~8%的V2O5,能使该陶瓷的烧结温度降低到1000~1050℃而对其微波介电性能的影响很小,材料的主晶相为有序型刚玉结构的Mg4 Nb2O9,存在Mg4Nb2O6和Mg5Nb4O15杂相而没有检测到V2O5的存在.陶瓷的密度对微波介电性能起着决定性作用,介电常数e1与密度成线性关系(在99.99%的置信限内,其相关系数为0.98252),Q·f值与密度的关系较复杂.添加1%的v2O5,将Mg4Nb2O9陶瓷的烧结温度降低到了1050℃,得到了εr=12.72,Q·f=151040GHz的优异性能.

参考文献

[1] Dong Guo;Zhiyuan Ling;Xing Hu .Low Temperature Sintering Ba_3Ti_5Nb_6O_(28) Ceramics with Tunable Temperature Coefficient of Dielectric Constant[J].Key engineering materials,2008(p.1):170-172.
[2] Qin CB.;Yue ZX.;Gui ZL.;Li LT. .Low-fired (PbCa) (FeNb)O-3 ceramics for multilayer microwave filter applications[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2003(1/3):286-289.
[3] Akinori Kan;Hirotaka Ogawa .Low-temperature synthesis and microwave dielectric properties of Mg_4Nb_2O_9 ceramics synthesized by a precipitation method[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2004(1/2):247-249.
[4] Kim DW.;Chung JH.;Hong KS.;Park B. .Mixture behavior and microwave dielectric properties in the low-fired TiO2-CuO system[J].Japanese journal of applied physics,2000(5A):2696-2700.
[5] 刘鹏,E.S.Kim,姚熹.中温烧结Ca[(Li1/3Nb2/3),Ti]O3-δ微波介质陶瓷[J].科学通报,2002(06):412-414.
[6] 苏未安,边小兵,刘鹏.Mg4Nb2O9的合成及其微波性能[J].硅酸盐通报,2005(01):48-50.
[7] Albina Borisevich;Peter K. Davies .Microwave dielectric properties of Li_(1+x-y)M_(1-x-3y)Ti_(x+4y)O_3 (M =Nb~(5+), Ta~(5 +)) solid solutions[J].Journal of the European Ceramic Society,2001(10/11):1719-1722.
[8] Lee YC.;Lin CH.;Lin IN. .Bi-Zn-Nb-O microwave dielectric materials for multilayer filter application[J].Materials Chemistry and Physics,2003(2/3):124-128.
[9] Cheng-Liang Huang;Min-Hang Weng .Low-fire BiTaO_4 dielectric ceramics for microwave applications[J].Materials Letters,2000(1/2):32-35.
[10] 苏未安,刘鹏.添加TiO2对Mg4Nb2O9陶瓷的结构与性能的影响[J].硅酸盐通报,2006(03):52-57.
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