Physics Research Institute, Southern Federal University, Rostov-on-Don, Russia.
IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Jul;58(7):1492-507. doi: 10.1109/TUFFC.2011.1968.
A comprehensive review of porosity origin, microstructure peculiarities, fabrication methods, and mathematical models, as well as systematic experimental data for different porous piezoceramics with 3-0/3-3 connectivity is presented. New families of porous piezoceramics based on lead zirconate titanate (PZT), lead titanate, lead metaniobate, and sodiumpotassium niobate compositions, with properties combining better parameters of PZT, PN-type ceramics, and 1-3 composites are introduced. Piezoelectric resonance analysis methods for automatic iterative evaluation of complex material parameters and the full sets of complex constants for different porous piezoceramics are presented. Numerical FEM calculations were critically compared with the results of various approximated formulas, unit cell models, and experimental data for different porous piezoceramics. Microstructural and physical mechanisms of losses and dispersion in porous piezoceramics, as well as technological aspects of their large-scale manufacture and application in ultrasonic devices were considered. The results of SEM microstructure analysis and microstructure-properties interrelations were discussed. Recent advances in fabrication methods for nano- and microporous piezoceramics and ceramic piezocomposites were discussed.
本文全面回顾了多孔压电陶瓷的起源、微观结构特点、制备方法和数学模型,以及具有 3-0/3-3 连通性的不同多孔压电陶瓷的系统实验数据。介绍了基于锆钛酸铅(PZT)、钛酸铅、偏铌酸铅和钠钾铌酸盐组成的新型多孔压电陶瓷家族,其性能结合了 PZT、PN 型陶瓷和 1-3 复合材料的更好参数。提出了用于自动迭代评估复杂材料参数的压电共振分析方法,以及不同多孔压电陶瓷的完整复杂常数集。对数值有限元计算结果与不同多孔压电陶瓷的各种近似公式、单元模型和实验数据进行了严格比较。考虑了多孔压电陶瓷中的损耗和色散的微观结构和物理机制,以及其在超声设备中的大规模制造和应用的技术方面。讨论了 SEM 微观结构分析和微观结构-性能关系的结果。讨论了纳米和微孔压电陶瓷以及陶瓷压电器件复合材料的最新制造方法进展。