用于高可靠性超声波换能器的单晶Pb[(Zn/sub 1/3/Nb/sub 2/3/)/sub 0.93/Ti/sub 0.07/]O/sub 3/ (PZNT 93/7)

K. Harada, Y. Hosono, Y. Yamashita
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引用次数: 0

摘要

采用溶液布里奇曼法在PbO助熔剂下生长了直径为40 mm的Pb[(Zn/sub 1/3/Nb/sub 2/3/)/sub 0.93/Ti/sub 0.07/]O/sub 3/ (PZNT 93/7)的压电单晶。较Pb[(Zn/sub 1/3/Nb/sub 2/3/)/sub 0.91/Ti/sub 0.09/]O/sub 3/ (PZNT 91/9)]和ZnO的加入是PZNT 93/7单晶生长的先决条件。PZNT 93/7的焦绿石球团比PZNT 91/9的焦绿石球团更稳定。PZNT 93/7单晶的居里温度为155 ~ 175/spl℃,对应的温度为菱形-四方相变T/亚rt/大于100/spl℃。T/sub rt/对应机电耦合系数k/sub 33/的退化边界温度,也对应介电常数的退化边界温度。使用PZNT 93/7单晶的超声波换能器在高达约100/spl℃的高温下可以避免灵敏度下降。虽然PZNT 91/9单晶的压电性能很好,但在80/spl℃以上,机电耦合系数、k/sub 33/和其他性能明显下降。因此,我们的研究结果表明,PZNT 93/7在超声波换能器的批量生产中具有良好的应用潜力。
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Single-crystal Pb[(Zn/sub 1/3/Nb/sub 2/3/)/sub 0.93/Ti/sub 0.07/]O/sub 3/ (PZNT 93/7) for highly reliable ultrasonic transducers
Piezoelectric single crystals of Pb[(Zn/sub 1/3/Nb/sub 2/3/)/sub 0.93/Ti/sub 0.07/]O/sub 3/ (PZNT 93/7) 40 mm in diameter were grown with PbO flux by the solution Bridgman method. The prerequisites for the growth of PZNT 93/7 single crystals are higher melting temperature, a longer melting time than Pb[(Zn/sub 1/3/Nb/sub 2/3/)/sub 0.91/Ti/sub 0.09/]O/sub 3/ (PZNT 91/9), and the addition of ZnO. The pyrochlore pellets of PZNT 93/7 are more stable than those of PZNT 91/9. The Curie temperature is 155-175/spl deg/C and the temperature corresponds to the rhombohedral-tetragonal phase change, T/sub rt/, is higher than 100/spl deg/C for PZNT 93/7 single crystals. T/sub rt/ corresponds to the degradation boundary temperature of the electromechanical coupling coefficient, k/sub 33/, and also of the dielectric constant. The sensitivity degradation of ultrasonic transducers using PZNT 93/7 single crystals can be avoided up to a high temperature of about 100/spl deg/C. Although the piezoelectric properties of single crystals of PZNT 91/9 are excellent, it has become clear that the electromechanical coupling coefficient, k/sub 33/, and other properties degrade drastically above about 80/spl deg/C. Therefore, our results indicate that PZNT 93/7 has good potential for application in the mass production of ultrasonic transducers.
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