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首页> 外文期刊>CERAMICS INTERNATIONAL >Microwave dielectric properties, microstructure, and bond energy of Zn3-xCoxB2O6 low temperature fired ceramics
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Microwave dielectric properties, microstructure, and bond energy of Zn3-xCoxB2O6 low temperature fired ceramics

机译:Zn3-XcoxB2O6低温烧制陶瓷的微波介电性能,微观结构和粘合能

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摘要

Low temperature co-fired ceramics (LTCCs) technology plays an important role in modern wireless communication. Zn3-xCoxB2O6 (x = 0-0.25) low temperature fired ceramics were synthesized via traditional solid-state reaction method. Influences of Co2+ substitution on crystal phase composition, grain size, grain morphology, microwave dielectric properties, bond energy, and bond valence were investigated in detail. X-ray diffraction analysis indicated that the major phase of the ceramics was monoclinic Zn-3(BO3)(2). Solid solution was formed with Co2+ substituted for Zn2+ because no individual phase that contained Co was observed. An increase in the amount of Co2+ substitution changed average grain sizes, and regrowth of grains were observed with Co2+ substitution. Appropriate amount of Co2+ substitution improved densification. With changes in Co2+ substitution, bond energy of major phase and average bond valence of B-O were positively correlated to temperature coefficient of resonant frequency. The Zn2.927Co0.075B2O6 ceramic sintered at 875 degrees C for 4 h exhibited excellent microwave properties with epsilon(r) = 6.79, Q x f = 140,402 GHz, and tau(f) = - 87.42 ppm/degrees C. This ceramic is regarded as candidate for LTCC applications.
机译:低温共用陶瓷(LTCCS)技术在现代无线通信中起着重要作用。通过传统的固态反应方法合成Zn3-XcoxB2O6(X = 0-0.25)低温烧制陶瓷。详细研究了CO2 +取代对晶体相组成,晶粒尺寸,晶粒形态,微波介电性能,粘合能和键合价的影响。 X射线衍射分析表明陶瓷的主要相是单斜晶Zn-3(Bo3)(2)。用CO 2 +取代的固体溶液取代Zn2 +,因为没有观察到含有Co的个体相。 CO 2 +取代量的增加变为平均晶粒尺寸,并用CO2 +取代观察晶粒的再生。适量的CO2 +取代改善了致密化。随着CO2 +取代的变化,B-O的主要相和平均键合格的粘合能量与谐振频率的温度系数正相关。在875摄氏度下烧结4小时的Zn2.927Co0.075b2O6陶瓷用ε(r)= 6.79,q xf = 140,402gHz,Tau(f)= - 87.42 ppm / degresc.这陶瓷被认为是ε作为LTCC应用的候选者。

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