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Microstructure and dielectric properties of Ag-BaTiO3 composite ceramics

机译:AG-BATIO3复合陶瓷的组织和介电性能

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Di-phase composite ceramics based on BaTiO3 with 5 vol% of Ag filler have been prepared by sintering the mixture of powders at temperatures above the silver melting point (1000 degrees C-1300 degrees C/2 h). As predicted by finite element calculations, the addition of metallic particles should produce a field concentration in some regions of the BaTiO3 matrix and therefore, an enhanced dielectric response with respect to pure BaTiO3. The role of oxygen vacancies on the dielectric relaxation mechanisms of Ag-BaTiO3 composites has been investigated. The sintering temperature of 1200 degrees C provided optimized ceramics with excellent dielectric properties, i.e. with low losses (tan delta 3%) and room temperature permittivity measured at 50 kHz exceeding 6500 (and above 13,000 at the Curie temperature), as result of a good densification (94% relative density) and a synergy effect of the metallic particles inclusions and ceramic grain size in the range of approximate to 1 mu m, where BaTiO3 has a well-known maximum of its permittivity.
机译:通过在高于银熔点(1000℃-1300℃/2h)的温度下烧结粉末混合物,制备了以BaTiO3为基料、银填充量为5 vol%的双相复合陶瓷。正如有限元计算所预测的,金属颗粒的添加应在BaTiO3基体的某些区域产生场集中,因此,相对于纯BaTiO3,增强了介电响应。研究了氧空位对Ag-BaTiO3复合材料介电弛豫机制的影响。1200℃的烧结温度提供了具有优异介电性能的优化陶瓷,即具有低损耗(tanδ;3%)和室温介电常数(在50 kHz下测得的介电常数超过6500(在居里温度下高于13000),由于良好的致密化(94%的相对密度),以及金属颗粒夹杂物和陶瓷晶粒尺寸在大约1μm范围内的协同效应,其中BaTiO3具有众所周知的最大介电常数。

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