• Journal of Inorganic Materials
  • Vol. 36, Issue 12, 1270 (2021)
Chang DONG*, Ruihong LIANG, Zhiyong ZHOU, and Xianlin DONG
DOI: 10.15541/jim20210146 Cite this Article
Chang DONG, Ruihong LIANG, Zhiyong ZHOU, Xianlin DONG. Piezoelectric Property of PZT-based Relaxor-ferroelectric Ceramics Enhanced by Sm Doping[J]. Journal of Inorganic Materials, 2021, 36(12): 1270 Copy Citation Text show less

Abstract

Lead zirconate titanate (PZT)-based piezoelectric ceramics are a type of functional material with a wide range of applications, which can be used in ultrasound transducers, piezomotor, medical ultrasound transducer, and surface acoustic wave filter, etc. Improving the piezoelectric property of PZT-based piezoelectric ceramics through modification has always been a research hotspot in this field. In this work, Sm-0.25PMN-0.75PZT piezoelectric ceramics near the morphotropic phase boundary (MPB) were fabricated by conventional solid-phase reaction method, and its microstructure and macroscopic property were systematically studied. The research results show that introduction of Sm3+ can enhance the local structural heterogeneity of piezoelectric ceramics, accelerate the dielectric response, and improve the piezoelectric performance. When Sm3+ is excessively introduced, the long- range continuity of ferroelectric polarization is interrupted in a large area while the piezoelectric performance decreases. The performance of the optimal composition piezoelectric ceramic obtained in this experiment is: high voltage electric coefficient (d33~824 pC/N), high voltage electric voltage constant (g33~27.1×10-3 m2/C), and relatively high Curie temperature (TC~178 ℃). The electrostrain is less than 5% in the range of room temperature to 150 ℃, with relatively good temperature stability. Therefore, this PET-based relaxor-ferrelectric ceramic is a high- performance piezoelectric material with great application prospects.
Chang DONG, Ruihong LIANG, Zhiyong ZHOU, Xianlin DONG. Piezoelectric Property of PZT-based Relaxor-ferroelectric Ceramics Enhanced by Sm Doping[J]. Journal of Inorganic Materials, 2021, 36(12): 1270
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