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Effect of nano-sized TiO2 powder addition on characteristics of silver-palladium electrodes

机译:纳米TiO2粉体添加量对银钯电极性能的影响

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This study presents the sintering behavior of silver/palladium electrode powders to which have been added TiO2 nanoparticles, and the effect this additive has on the ability of the electrode to match the characteristics of piezoelectric ceramics, Pb(Zr, Ti)O-3. The densification (shrinkage) of the electrodes was investigated as a function of sintering temperature, and the reaction between the ceramic matrix and the electrodes was studied. The densification of the TiO2-enhanced electrode paste during the sintering process was explained with reference to a solid-state diffusion mechanism which integrated the TiO2 into the ceramic. Reactions occurred between the ceramic and electrode layers, resulting in reduced internal stress and enhanced mechanical adhesion. Based on these results, it is clear that high adhesive strength and good electrical conductivity of more than 10(4)/Omega cm can be obtained in multilayer ferroelectric devices composed of stacks of ceramic and electrode layers provided the contain these nanoparticles. In the sintering process, interfacial diffusion of TiO2 occurred and, as a consequence, coarse grains of PZT were formed at the interface.
机译:这项研究介绍了已添加TiO2纳米粒子的银/钯电极粉的烧结行为,以及该添加剂对电极与压电陶瓷Pb(Zr,Ti)O-3的特性匹配的能力的影响。研究了电极的致密化(收缩)与烧结温度的关系,并研究了陶瓷基体与电极之间的反应。参考将TiO2集成到陶瓷中的固态扩散机制,说明了TiO2增强电极糊在烧结过程中的致密化。陶瓷层和电极层之间发生反应,从而降低了内部应力并增强了机械附着力。根据这些结果,很明显,在由陶瓷和电极层的叠层构成的多层铁电器件中,如果包含这些纳米颗粒,则可以获得高的粘合强度和超过10(4)/Ωcm的良好电导率。在烧结过程中,发生了TiO2的界面扩散,结果在界面处形成了PZT的粗大晶粒。

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