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基于PIN-PMN-PT弛豫铁电单晶和PZT-4压电陶瓷的高功率特性研究。

Investigation of High-Power Properties of PIN-PMN-PT Relaxor-Based Ferroelectric Single Crystals and PZT-4 Piezoelectric Ceramics.

作者信息

Li Guo, Tian Fenghua, Gao Xiangyu, Tian Hao, Qiao Liao, Liu Jinfeng, Li Fei, Xu Zhuo

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Aug;67(8):1641-1646. doi: 10.1109/TUFFC.2020.2979217. Epub 2020 Mar 9.

Abstract

We developed a high-power piezoelectric characterization system that was used to study the high-field properties of (1-x-y)Pb(InNb)O-yPb(MgNb) O-xPbTiO (PIN-PMN-PT) relaxor ferroelectric single crystals and PZT-4 piezoelectric ceramics. The impedance spectrum of 31 modes was measured under constant voltage by the high-power piezoelectric system. From measuring the resonance and antiresonance frequencies, the high-field behaviors of the electromechanical coupling coefficients, elastic compliances, and piezoelectric coefficients of the PIN-PMN-PT crystals were determined and compared with commercial PZT ceramics. By fitting the equivalent circuit parameters under large electric fields, the mechanical quality factors of the PIN-PMN-PT single crystals and PZT-4 ceramics were calculated as well. The results showed that the mechanical quality factor of the PZT-4 is higher than that of PIN-PMN-PT, and the mechanical quality factors of the PZT-4 and PIN-PMN-PT both decrease sharply first and then decrease slowly with increasing the electric field. The tensile strengths of PIN-PMN-PT crystals and PZT-4 ceramics were also determined by the impedance method, where we found that the tensile strengths of PIN-PMN-PT crystal and PZT-4 ceramic were 19.6 and 76.4 MPa, respectively. The 31-mode vibrators of PIN-PMN-PT crystals and PZT-4 ceramics can be driven by the largest electric field of 33 and 65 V/mm under resonance frequency, respectively.

摘要

我们开发了一种高功率压电特性表征系统,用于研究(1-x-y)Pb(InNb)O-yPb(MgNb)O-xPbTiO(PIN-PMN-PT)弛豫铁电单晶和PZT-4压电陶瓷的高场特性。通过该高功率压电系统在恒定电压下测量了31模的阻抗谱。通过测量共振和反共振频率,确定了PIN-PMN-PT晶体的机电耦合系数、弹性柔顺系数和压电系数的高场行为,并与商用PZT陶瓷进行了比较。通过拟合大电场下的等效电路参数,还计算了PIN-PMN-PT单晶和PZT-4陶瓷的机械品质因数。结果表明,PZT-4的机械品质因数高于PIN-PMN-PT,且PZT-4和PIN-PMN-PT的机械品质因数均随电场增加先急剧下降,然后缓慢下降。还通过阻抗法测定了PIN-PMN-PT晶体和PZT-4陶瓷的拉伸强度,发现PIN-PMN-PT晶体和PZT-4陶瓷的拉伸强度分别为19.6和76.4MPa。PIN-PMN-PT晶体和PZT-4陶瓷的31模振动器在共振频率下分别可由33和65V/mm的最大电场驱动。

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