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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Optimizing the Piezoelectric and Dielectric Properties of Pb(In1/2Nb1/2)O₃-PbTiO₃ Ferroelectric Crystals via Alternating Current Poling Waveform
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Optimizing the Piezoelectric and Dielectric Properties of Pb(In1/2Nb1/2)O₃-PbTiO₃ Ferroelectric Crystals via Alternating Current Poling Waveform

机译:优化Pb的压电和介电性能(在<亚> 1/2 Nb 1/2 )O₃-pbtio₃铁电晶体通过交流电流波形

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摘要

The alternating current poling (ACP) method has been attracting significant attention because of the enhanced piezoelectric and dielectric properties of relax-or-based ferroelectric (FE) crystals with advantages of high-efficiency, time-savings, and ease of operation. The most commonly used poling waveform is the bipolar triangle. Other waveforms have been seldom applied in ACP. However, the waveform plays a significant influence on the fatigue performance of FE materials. Therefore, optimizing the ACP waveform to gain high piezoelectric performance and decrease dielectric loss factors is technologically essential. Here, the effects of ACP waveforms on the piezoelectric and dielectric properties of [001] c-oriented 0.66 PIN-0.34PT FE crystals were studied. The highest piezoelectric coefficient d(33) (1450 pC/N) and dielectric permittivity epsilon(T)(33)/epsilon(0) (3180) were obtained using the sesquipolar triangle waveform while the lowest dielectric loss factors tan delta (0.99%) was obtained using the unipolar triangle waveform. FE hysteresis loop measurements revealed that the lower coercive field and current density are beneficial for higher piezoelectric performance. Domain analysis showed that ACP samples exhibit a regular domain structure and high density 109 degrees domain walls, which are the critical reasons for enhanced piezoelectric performance. This work provides guidance in designing an ACP waveform to achieve higher performance.
机译:交流抛光(ACP)方法已经吸引了显着的关注,因为具有高效率,节省时间和易于操作的优点的增强的压电和介电性能。最常用的极化波形是双极三角形。其他波形很少应用于ACP。然而,波形对Fe材料的疲劳性能产生了显着影响。因此,优化ACP波形以获得高压电性能,并且降低介电损耗因子在技术上是必需的。这里,研究了ACP波形对压电和电介质性能的影响[001] C取向0.66销0.34pt Fe晶体。使用Sesquipolar三角波形获得最高压电系数d(33)(1450pc / n)和介电介电常ε(3)/ε(0)(3180),而最低介电损耗因子TAN DELTA(0.99% )使用单极三角形波形获得。 FE滞后回路测量显示,较低的矫顽场和电流密度有利于更高的压电性能。域分析表明,ACP样品呈现常规结构域结构和高密度109度域壁,这是增强压电性能的批判原因。这项工作提供了设计ACP波形以实现更高性能的指导。

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    Chinese Acad Sci Fujian Inst Res Struct Matter Key Lab Optoelect Mat Chem & Phys Fuzhou 350002 Peoples R China|Univ Chinese Acad Sci Fujian Coll Beijing 100049 Peoples R China;

    Chinese Acad Sci Fujian Inst Res Struct Matter Key Lab Optoelect Mat Chem & Phys Fuzhou 350002 Peoples R China;

    Chinese Acad Sci Fujian Inst Res Struct Matter Key Lab Optoelect Mat Chem & Phys Fuzhou 350002 Peoples R China;

    Chinese Acad Sci Fujian Inst Res Struct Matter Key Lab Optoelect Mat Chem & Phys Fuzhou 350002 Peoples R China|Univ Chinese Acad Sci Fujian Coll Beijing 100049 Peoples R China;

    Chinese Acad Sci Fujian Inst Res Struct Matter Key Lab Optoelect Mat Chem & Phys Fuzhou 350002 Peoples R China|Univ Chinese Acad Sci Fujian Coll Beijing 100049 Peoples R China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Alternating current poling (ACP); domain engineering; ferroelectric (FE); FE crystals;

    机译:交流电流(ACP);域工程;铁电(Fe);Fe晶体;

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