TY - JOUR
T1 - Electromechanical properties of [001]-textured Mn-PMN-PZT ceramics under hydrostatic pressure
AU - Tang, Mingyang
AU - Hu, Liqing
AU - Wu, Yue
AU - Wang, Yike
AU - Liu, Xin
AU - Ren, Xiaodan
AU - Zheng, Shuguang
AU - Wang, Sanhong
AU - Xu, Zhuo
AU - Geng, Liwei
AU - Yan, Yongke
N1 - Publisher Copyright:
© 2023 The American Ceramic Society.
PY - 2024/2
Y1 - 2024/2
N2 - The electromechanical properties of [001]-textured Mn-PMN-PZT ceramics are characterized under a hydrostatic pressure of up to 400 MPa. The dielectric constant of textured ceramics increases first and then decreases as pressure increases. A comparison of the electromechanical constants sij, kij, and dij (i, j = 1, 3) obtained by the method of direct calculation and admittance fitting is displayed in this work. The results show that the two methods can obtain similar results at lower pressures. When the pressure is relatively high, the loss cannot be ignored, and the results of the two methods are quite different. The admittance fitting method gives a more accurate piezoelectric constant. Under 400 MPa, textured ceramics have k31 = 0.55, d31 = 321 pC/N, k33 = 0.89, and d33 = 702 pC/N, while random ceramics have k31 = 0.33, d31 = 92 pC/N, k33 = 0.71, and d33 = 230 pC/N. The large piezoelectric properties of textured ceramics under high pressure make them potential underwater transducers.
AB - The electromechanical properties of [001]-textured Mn-PMN-PZT ceramics are characterized under a hydrostatic pressure of up to 400 MPa. The dielectric constant of textured ceramics increases first and then decreases as pressure increases. A comparison of the electromechanical constants sij, kij, and dij (i, j = 1, 3) obtained by the method of direct calculation and admittance fitting is displayed in this work. The results show that the two methods can obtain similar results at lower pressures. When the pressure is relatively high, the loss cannot be ignored, and the results of the two methods are quite different. The admittance fitting method gives a more accurate piezoelectric constant. Under 400 MPa, textured ceramics have k31 = 0.55, d31 = 321 pC/N, k33 = 0.89, and d33 = 702 pC/N, while random ceramics have k31 = 0.33, d31 = 92 pC/N, k33 = 0.71, and d33 = 230 pC/N. The large piezoelectric properties of textured ceramics under high pressure make them potential underwater transducers.
KW - Mn-PMN-PZT
KW - electromechanical constants
KW - hydrostatic pressure
KW - textured ceramics
UR - https://www.scopus.com/pages/publications/85174305231
U2 - 10.1111/jace.19501
DO - 10.1111/jace.19501
M3 - 文章
AN - SCOPUS:85174305231
SN - 0002-7820
VL - 107
SP - 1042
EP - 1051
JO - Journal of the American Ceramic Society
JF - Journal of the American Ceramic Society
IS - 2
ER -