Amin Ahmed, McLaughlin Elizabeth, Robinson Harold, Ewart Lynn
Sensors and Sonar Systems Department, Naval Undersea Warfare Center, Newport, RI 02841, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Jun;54(6):1090-5. doi: 10.1109/tuffc.2007.362.
Isothermal compression experiments on multidomain [001] oriented and poled ferroelectric rhombohedral PZN-0.07PT and PMN-0.30PT single crystals revealed elastic instabilities corresponding to zero field ferroelectric-ferroelectric phase transition under mechanical compression. The application of an appropriate dc bias field doubled the stability range of the ferroelectric rhombohedral state under uniaxial compression for both crystals and maintained a linear elastic response. Young's modulus as derived from the quasistatic, zero field stress-strain linear response agreed well with that derived from small signal resonance for the ferroelectric rhombohedral FR state of both PZN-PT and PMN-PT. Elastic compliances s(E)33 as determined from high temperature resonance revealed a monotonically decreasing Young's modulus as a function of temperature in the ferroelectric rhombohedral state with a sudden stiffening near the ferroelectric rhombohedral (FR)-ferroelectric tetragonal (FT) transition. The reversible ferroelectric-ferroelectric transition of morphotropic PZN-PT and PMN-PT single crystals as accessed by mechanical compression is discussed in terms of strain calculations from Devonshire's theory, domain unfolding, and morphotropic phase boundary shift with mechanical stress. The mechanically-induced and thermally-induced ferroelectric-ferroelectric transition trajectories are discussed in terms of the Devonshire theory. Implications of these observations for sound projectors are discussed. A single crystal tonpilz projector fabricated into a 16-element array and a segmented cylinder transducer demonstrated the outstanding capabilities of single crystals to achieve compact, broadband, and high-source level projectors when compared to conventional lead zirconate-titanate PZT8 projectors.
对多畴[001]取向且极化的铁电菱面体PZN - 0.07PT和PMN - 0.30PT单晶进行的等温压缩实验表明,在机械压缩下存在与零场铁电 - 铁电相变相对应的弹性不稳定性。施加适当的直流偏置场使两种晶体在单轴压缩下铁电菱面体状态的稳定范围翻倍,并保持线性弹性响应。从准静态零场应力 - 应变线性响应得出的杨氏模量与从PZN - PT和PMN - PT铁电菱面体FR状态的小信号共振得出的结果吻合良好。由高温共振确定的弹性柔顺系数s(E)33表明,在铁电菱面体状态下,杨氏模量随温度单调下降,在铁电菱面体(FR) - 铁电四方(FT)转变附近突然变硬。从德文希尔理论的应变计算、畴展开以及机械应力作用下的准同型相界移动等方面讨论了通过机械压缩实现的准同型PZN - PT和PMN - PT单晶的可逆铁电 - 铁电转变。根据德文希尔理论讨论了机械诱导和热诱导的铁电 - 铁电转变轨迹。讨论了这些观察结果对声投影仪的影响。与传统的锆钛酸铅PZT8投影仪相比,制成16元阵列和分段圆柱换能器的单晶Tonpilz投影仪展示了单晶在实现紧凑、宽带和高源级投影仪方面的卓越能力。