A series of (Ag0.9Li0.1)(Nb1-yTay)O3 ceramic powders were prepared by an aque-chemical method. The optimized calcination temperature, time and crystal lattice were studied by TG-DTA, IR, XRD and TEM. The results show that the optimized conditions were calcination of the precursor at 800 ℃ for 2 h. The ceramic powder thus prepared was rhombohedral with the average grain size of 48 nm.
Stabilized ZnTiO4 was prepared by doping magnesium oxide through traditional solid state reaction. The experimental results indicate that zinc titanate crystals doped with magnesium oxide grow well and the decomposition into Zn2TiO4 and TiO2 is restrained through traditional solid state reaction, By adjusting molar ratio of MgO, better properties can be obtained The dielectric properties of the ceramics doped with 30% MgO( molar percentage) sintered at 1060℃ are as follows:the value of quality factor is greater than 20000(6.5 GHz ), the temperature coefficient of resonance frequency is about 2 ± 10^-6 /℃,the dielectric constant ranges from 180 to 22.Besides,it is proved that heat treatment can optimize microstructure and the value of quality factor, which increases from 23833.93 to 47584.00 after 2h of heat treatment at 1040℃.
以氧化钴及钛酸钙作为添加剂对Mg Si Ti高频低介陶瓷系统进行离子掺杂,并运用扫描电镜和X射线衍射对钴、钙离子的改性机理以及两添加剂的最佳配比进行分析.研究表明:适量的钴离子作为晶粒抑制剂和矿化剂,减少了系统缺陷,使系统微观结构排列整齐、致密,显著地使损耗从11 3×10-4降低至0 15×10-4,同时使烧结温度降低了近40℃。适量的钙离子掺杂在保证了其他介电性能的前提下可以有效地优化系统介电常数和电容量温度性能.该瓷料特别适于制成片式多层陶瓷电容器用于航空、航天、国防军事等尖端技术领域.