不同Ti和Nb取代的pszt95 /5陶瓷的加工与性能

Eric W. Neuman, Nicholas Anselmo, Amber Meyer, Sophie Grier, Christopher B. Diantonio, Mark A. Rodriguez, Rose Torres, Brian Brane, James G. Griego
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引用次数: 0

摘要

采用22+1因子设计(x = 0.05, 0.07, y = 0.0155, 0.0195),在pzt95 /5正方晶型AFE -菱形FE晶界Pb1-0.5y(Zr0.865-xTixSn0.135)1- ynbyo3附近制备了掺铌铅锡锆钛酸盐陶瓷。采用传统的固态合成方法制备陶瓷,并在1250°C下烧结至接近满密度6小时。所有成分的密度为~ 98%,x射线衍射未检测到二次相。陶瓷呈等轴晶粒,晶粒间孔隙率高,晶粒尺寸为~ 5µm,随着铌的取代而减小。组分的剩余极化值为~ 32µC/cm2,随Ti取代量的增加而增加。静水压力诱导FE-AFE相变的去极化受到Ti和Nb取代量变化的显著影响,分别以113 MPa/1% Ti和21 MPa/1% Nb的速率增加。总退极化输出对Ti和Nb取代量的变化不敏感,PSZT陶瓷的退极化输出为~ 32.8µC/cm2。R3c-R3m和R3m-Pm3m在加热时的相变温度分别为90 ~ 105℃和183 ~ 191℃。Ti取代使R3c和R3m相稳定到较高温度,而Nb取代使Pm3m相稳定到较低温度。在陶瓷中还观察到相变的热滞后,冷却时的转变温度降低了10°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Processing and properties of PSZT 95/5 ceramics with varying Ti and Nb substitution

Processing and properties of PSZT 95/5 ceramics with varying Ti and Nb substitution

Niobium doped lead-tin-zirconate-titanate ceramics near the PZT 95/5 orthorhombic AFE – rhombohedral FE morphotropic phase boundary Pb1-0.5y(Zr0.865-xTixSn0.135)1-yNbyO3 were prepared according to a 22+1 factorial design with x = 0.05, 0.07 and y = 0.0155, 0.0195. The ceramics were prepared by a traditional solid-state synthesis route and sintered to near full density at 1250°C for 6 h. All compositions were ∼98% dense with no detectable secondary phases by X-ray diffraction. The ceramics exhibited equiaxed grains with intergranular porosity, and grain size was ∼5 µm, decreasing with niobium substitution. Compositions exhibited remnant polarization values of ∼32 µC/cm2, increasing with Ti substitution. Depolarization by the hydrostatic pressure induced FE-AFE phase transition was drastically affected by variation of the Ti and Nb substitution, increasing at a rate of 113 MPa /1% Ti and 21 MPa/1% Nb. Total depolarization output was insensitive to the change in Ti and Nb substitution, ∼32.8 µC/cm2 for the PSZT ceramics. The R3c-R3m and R3m-Pm3m phase transition temperatures on heating ranged from 90 to 105°C and 183 to 191°C, respectively. Ti substitution stabilized the R3c and R3m phases to higher temperatures, while Nb substitution stabilized the Pm3m phase to lower temperatures. Thermal hysteresis of the phase transitions was also observed in the ceramics, with transition temperature on cooling being as much as 10°C lower.

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