TY - JOUR
T1 - Effects of Nb 2O 5 addition on the microstructure, electrical, and mechanical properties of PZT/ZnO nanowhisker piezoelectric composites
AU - Wang, Da Wei
AU - Yuan, Jie
AU - Li, Hong Bo
AU - Lu, Ran
AU - Zhao, Quan Liang
AU - Zhang, De Qing
AU - Cao, Mao Sheng
PY - 2012/3
Y1 - 2012/3
N2 - Nb 2O 5-modified PZT/ZnO nanowhisker (denoted as PZT/ZnO w-Nb 2O 5) piezoelectric composites were prepared by a solid state sintering technique. Effects of Nb 2O 5 addition on the microstructure, electrical, and mechanical properties of the PZT/ZnO w composites were investigated. With increasing Nb 2O 5 content, the grain size of the composites was reduced and the fracture mode changed from intergranular to intragranular gradually. Compared with the PZT/ZnO w composites, the dielectric, piezoelectric, and ferroelectric properties of the PZT/ZnO w-Nb 2O 5 composites were improved significantly, while mechanical properties were enhanced slightly. The optimum electrical and mechanical properties were achieved for the PZT/ZnO w composites modified with 0.75 wt% Nb 2O 5 sintered at 1150 °C, with dielectric permittivity ε r, piezoelectric coefficient d 33, planar electromechanical coupling k p, remnant polarization P r, fracture toughness K IC, and flexural strength σ f being on the order of 4930, 600 pC/N, 0.63, 29.2 μC/cm 2, 1.56 MPa m 1/2 and 130 MPa, respectively. The Nb 2O 5-modified PZT/ZnO w piezoelectric composites, with comparable electrical properties and improved mechanical properties than those of commercial PZT-5H ceramics, are promising candidates for further applications.
AB - Nb 2O 5-modified PZT/ZnO nanowhisker (denoted as PZT/ZnO w-Nb 2O 5) piezoelectric composites were prepared by a solid state sintering technique. Effects of Nb 2O 5 addition on the microstructure, electrical, and mechanical properties of the PZT/ZnO w composites were investigated. With increasing Nb 2O 5 content, the grain size of the composites was reduced and the fracture mode changed from intergranular to intragranular gradually. Compared with the PZT/ZnO w composites, the dielectric, piezoelectric, and ferroelectric properties of the PZT/ZnO w-Nb 2O 5 composites were improved significantly, while mechanical properties were enhanced slightly. The optimum electrical and mechanical properties were achieved for the PZT/ZnO w composites modified with 0.75 wt% Nb 2O 5 sintered at 1150 °C, with dielectric permittivity ε r, piezoelectric coefficient d 33, planar electromechanical coupling k p, remnant polarization P r, fracture toughness K IC, and flexural strength σ f being on the order of 4930, 600 pC/N, 0.63, 29.2 μC/cm 2, 1.56 MPa m 1/2 and 130 MPa, respectively. The Nb 2O 5-modified PZT/ZnO w piezoelectric composites, with comparable electrical properties and improved mechanical properties than those of commercial PZT-5H ceramics, are promising candidates for further applications.
UR - http://www.scopus.com/inward/record.url?scp=84857648250&partnerID=8YFLogxK
U2 - 10.1007/s10853-011-6094-3
DO - 10.1007/s10853-011-6094-3
M3 - Article
AN - SCOPUS:84857648250
SN - 0022-2461
VL - 47
SP - 2687
EP - 2694
JO - Journal of Materials Science
JF - Journal of Materials Science
IS - 6
ER -