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Electromechanical properties of Pb(In1∕2Nb1∕2)O3–Pb(Mg1∕3Nb2∕3)O3–PbTiO3 single crystals

机译:Pb(In1 ∕ 2Nb1 ∕ 2)O3-Pb(Mg1 ∕ 3Nb2 ∕ 3)O3-PbTiO3单晶的机电性能

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摘要

The Pb(In1∕2Nb1∕2)O3–Pb(Mg1∕3Nb2∕3)O3–PbTiO3 (PIN-PMN-PT) crystals were studied as function of phase and orientation. The properties, including the Curie temperature TC, ferroelectric-ferroelectric phase transition temperature TR∕O-T, coercive field, and piezoelectric∕dielectric responses, were systematically investigated with respect to the composition of PIN-PMN-PT crystals. The Curie temperature TC was found to increase from 160 to 220 °C with ferroelectric-ferroelectric phase transition temperature TR-T and TO-T being in the range of 120–105 °C and105–50 °C, respectively. The piezoelectric activity of PIN-PMN-PT crystals was analyzed by Rayleigh approach. The ultrahigh piezoelectric response for domain engineered [001] (1600–2200 pC∕N) and [011] (830–1550 pC∕N) crystals was believed to be mainly from the intrinsic contribution, whereas the enhanced level of piezoelectric and dielectric losses at the compositions around morphotropic phase boundaries (MPBs) was attributed to the phase boundaries motion.
机译:研究了Pb(In1 ∕ 2Nb1 ∕ 2)O3-Pb(Mg1 ∕ 3Nb2 ∕ 3)O3-PbTiO3(PIN-PMN-PT)晶体的相和取向。关于PIN-PMN-PT晶体的组成,系统地研究了居里温度TC,铁电-铁电相变温度TR ∕ O-T,矫顽场和压电∕电响应等特性。发现铁电-铁电相变温度TR-T和TO-T分别在120–105°C和105–50°C范围内时,居里温度TC从160升高到220°C。 PIN-PMN-PT晶体的压电活性通过瑞利方法进行分析。人们认为,域设计的[001](1600–2200 pC ∕ N)和[011](830–1550 pC ∕ N)晶体的超高压电响应主要来自于内在贡献,而压电和介电损耗的提高相变相界(MPB)周围的组分的相变归因于相界运动。

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