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Characterization of PMN-29PT as a function of temperature and pressure

机译:PMN-29%PT随温度和压力变化的特征

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摘要

Piezoelectric single crystal relaxor materials, such as (x)Pb(Mg1/3Nb2/3)O3 − (1−x)PbTiO3 (PMN-PT) have higher performance for ultrasound applications than piezoelectric ceramics. However, phase transitions at relatively low temperatures and external pressures affect their behavior well within the range of operating conditions of underwater sonar and actuators and in non-destructive testing at elevated temperatures. Single crystals with compositions modified to reduce these problems are under development but application-oriented characterization needs attention to allow robust design practices. In this paper, we demonstrate an experimental system to carry out application-oriented characterization of piezoelectric materials for most ultrasonic applications. Variation in key material parameters with temperature, pressure and DC bias are presented for PMN-29%PT single crystal and results for PZ54 piezoceramic and PIN-PMN-PT single crystal are also included for comparison. Furthermore, the possibility of large signal characterization has been explored through analysis of self-heating of single crystal material.
机译:压电单晶弛豫材料,例如(x)Pb(Mg1 / 3Nb2 / 3)O3-(1-x)PbTiO3(PMN-PT),在超声应用中具有比压电陶瓷更高的性能。但是,在相对较低的温度和外部压力下的相变在水下声纳和执行器的工作条件范围内以及在高温下的无损检测中会很好地影响其性能。具有减少这些问题的改性成分的单晶正在开发中,但是面向应用的表征需要引起重视,以实现可靠的设计实践。在本文中,我们演示了一个实验系统,可以对大多数超声应用进行压电材料的面向应用的表征。给出了PMN-29%PT单晶的关键材料参数随温度,压力和直流偏置的变化,还提供了PZ54压电陶瓷和PIN-PMN-PT单晶的结果进行比较。此外,通过分析单晶材料的自热,探索了大信​​号表征的可能性。

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