Abstract

Compared to conventional DC poling (DCP) treatment, in 2014 a novel technology, AC poling (ACP) treatment, was found to be a low-cost, time-saving and smart-process method to significantly enhance the properties of relaxor-PbTiO3 (PT) ferroelectric single crystal (SC) transducers. In total, over 35 papers have been reported since 2018 in which researchers achieved a piezoelectric coefficient of (d 33) > 4000 pC/N and electromechanical coupling factors of (k 33) > 96% for the ACP SCs. In this review, we introduce the history of ACP study on relaxor-PT SCs, and our research group’s ACP study during the past three years. In particular, we focus on ACP conditions and their mechanisms of binary (1-x)Pb(Mg1/3Nb2/3)O3-xPbTiO3 (PMN-PT) and ternary (1-x-y)Pb(In1/2Nb1/2)O3-yPb(Mg1/3Nb2/3)O3-xPbTiO3 (PIN-PMN-PT) SCs near the morphotropic phase boundary (MPB). Furthermore, we provide insight for further studies on optimal ACP conditions and the reduction of spurious-mode vibrations (SMVs). This work offers promising prospects and practical value for high-end ultrasonic imaging probe transducers.

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