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Liquid phase effect of Bi2O3 additive on densification, microstructure and microwave dielectric properties of Mg2TiO4 ceramics

机译:Bi2O3添加剂对Mg2TiO4陶瓷致密化,微观结构和微波介电性能的液相效应

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摘要

Bi2O3 added Mg2TiO4 (MTO) ceramics were prepared by conventional solid-state reaction method. The effect of Bi2O3 on the densification, microstructure and microwave dielectric properties of MTO ceramics was investigated. The Bi2O3 addition significantly lowered the densification temperature of MTO ceramics from 1450 degrees C to 1250 degrees C, which is attributed to the liquid phase effect and smaller initial particle sizes. The dielectric constant (er) was not significantly changed; while the Q x f(o) was tremendously influenced with Bi2O3 content. A fine combination of microwave dielectric properties (Q x f(o) = 160,500 GHz, (at 10.48 GHz) and epsilon(r) = 13.2) were obtained for the 1 wt.% Bi2O3 added MTO sample, sintered at 1250 degrees C. Further, the microwave dielectric properties of the MTO ceramics showed significant dependent on relative density, average grain size and oxygen vacancies.
机译:通过常规固态反应方法制备Bi2O3加入Mg2TiO4(MTO)陶瓷。 研究了Bi2O3对MTO陶瓷的致密化,微观结构和微波介电性能的影响。 Bi2O3的添加显着降低了MTO陶瓷的致密化温度从1450℃至1250℃,归因于液相效应和较小的初始颗粒尺寸。 介电常数(ER)没有显着变化; 虽然q x f(o)受到BI2O3内容的巨大影响。 得到微波介电性能的精细组合(Q XF(O)= 160,500GHz,(1048GHz)和ε(R)= 13.2)获得1重量%的Bi2O3加入MTO样品,在1250℃下烧结 ,MTO陶瓷的微波介电性质显示出显着的依赖性,依赖于相对密度,平均晶粒尺寸和氧空位。

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