Large Strain with Small Hysteresis at High Temperature of Bi0.5Na0.5TiO3-Bi0.5K0.5TiO3-BaZrO3 Lead-Free Piezoelectric Ceramic

被引:0
|
作者
Thi Hinh Dinh [1 ]
Vu Diem Ngoc Tran [2 ]
Le Vinh Van [3 ]
Thi Thao Nguyen [2 ]
机构
[1] Phenikaa Univ, Fac Mat Sci & Engn, Yen Nghia, Hanoi 12116, Vietnam
[2] Hanoi Univ Sci & Technol, Sch Mat Sci & Engn, Hanoi, Vietnam
[3] Phenikaa Univ, Fac Informat Technol, Hanoi 12116, Vietnam
关键词
Bi0.5Na0.5TiO3; ceramics matrix; composites; electronic materials; piezoceramics; Pb-free; relaxors; RELAXOR FERROELECTRICS; ELECTRICAL-PROPERTIES; FREE PIEZOCERAMICS; PERFORMANCE;
D O I
10.1007/s11665-024-09786-9
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study investigates the effects of temperature on the phase evolution and the electrical properties of the 0.77Bi(0.5)Na(0.5)TiO(3)-0.22Bi(0.5)K(0.5)TiO(3)-0.01BaZrO(3) lead-free piezoelectric ceramic. The ceramic is fabricated using a conventional solid-state reaction method. The crystal structure and microstructure of the sintered sample are analyzed at room temperature. The sample sintered at 1150 degrees C shows a single perovskite structure, dense microstructure, and a relative density of similar to 86%. The temperature-dependent electrical properties of the ceramic are studied in the temperature range of 25-125 degrees C. At room temperature, the 0.77Bi(0.5)Na(0.5)TiO(3)-0.22Bi(0.5)K(0.5)TiO(3)-0.01BaZrO(3) ceramic shows the nonergodic relaxor behavior with a tetragonal structure. A phase transition from a nonergodic relaxor to an ergodic relaxor phase happened in the 0.77Bi(0.5)Na(0.5)TiO(3)-0.22Bi(0.5)K(0.5)TiO(3)-0.01BaZrO(3) ceramic when the temperature increases above 116 degrees C. The electric-field-induced strain property of the 0.77Bi(0.5)Na(0.5)TiO(3)-0.22Bi(0.5)K(0.5)TiO(3)-0.01BaZrO(3) ceramic increases with a temperature coefficient of 0.367 pm/V/K. The thermal energy increases the maximum strain value and decreases the strain hysteresis of the 0.77Bi(0.5)Na(0.5)TiO(3)-0.22Bi(0.5)K(0.5)TiO(3)-0.01BaZrO(3) ceramic. At 125 degrees C, the ceramic shows a maximum electrostrain of similar to 505 pm/V with a minimum hysteresis of similar to 9%, suggesting a potential candidate for lead-free piezo-actuator applications.
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页数:8
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