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Measurements of acoustical physical constants for Ca3Nb(Ga0.75Al0.25)3Si2O14 single crystal using the ultrasonic microspectroscopy system

机译:Ca 3 Nb(Ga 0.75 Al 0.25 3 Si 2 <的声学物理常数的测量/ inf> O 14 单晶,使用超声显微光谱系统

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Acoustical physical constants were experimentally determined for Al-substituted CaNbGaSiO (CNGAS) single crystal for the first time. Several plate specimens of the X-, Y-, Z-, 40.24°Y-, and 144.98°Y-cut were prepared from a CNGAS single crystal ingot grown by Czochralski technique. Elastic constants, piezoelectric constants, and their temperature coefficients were determined from longitudinal wave and shear wave velocities measured for the CNGAS specimens at around room temperature using the ultrasonic micro-spectroscopy (UMS) system. Dielectric constants, density, and coefficients of thermal expansion were also measured. It was demonstrated that the determined constants could provide calculation accuracy within ±0.12% in leaky surface acoustic wave (LSAW) velocity.
机译:首次通过实验确定了Al取代的CaNbGaSiO(CNGAS)单晶的声学物理常数。从通过切克劳斯基技术生长的CNGAS单晶锭制备了X,Y,Z,40.24°Y和144.98°Y切割的几个板状样品。弹性常数,压电常数及其温度系数是由超声波谱(UMS)系统在室温附近对CNGAS样品测得的纵波和切波速度确定的。还测量了介电常数,密度和热膨胀系数。结果表明,确定的常数可以为泄漏声表面波(LSAW)速度提供±0.12%的计算精度。

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