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The effect of inter-granular constraints on the response of polycrystalline piezoelectric ceramics at the surface and in the bulk

机译:晶间约束对表面和整体中多晶压电陶瓷响应的影响

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The electro-mechanical coupling mechanisms in polycrystalline ferroelectric materials, including a soft PbZr_xTi_(1-x)O_3 (PZT) and lead-free 0.9375(Bi_(1/2)Na_(1/2))TiO_3-0.0625BaTiO_3 (BNT-6.25BT), have been studied using a surface sensitive low-energy (12.4keV) and bulk sensitive high-energy (73 keV) synchrotron X-ray diffraction with in situ electric fields. The results show that for tetragonal PZT at a maximum electric field of 2.8 kV/mm, the electric-field-induced lattice strain (ε_(111)) is 20% higher at the surface than in the bulk, and non-180° ferroelectric domain texture (as indicated by the intensity ratio I_(002)/I_(200)) is 16% higher at the surface. In the case of BNT-6.25BT, which is pseudo-cubic up to fields of 2kV/mm, lattice strains, ε_(111) and ε_(200), are 15% and 20% higher at the surface, while in the mixed tetragonal and rhombohedral phases at 5 kV/mm, the domain texture indicated by the intensity ratio, I_(111)/I_(111) and I_(002)/I_(200), are 12% and 10% higher at the surface than in the bulk, respectively. The observed difference in the strain contributions between the surface and bulk is suggested to result from the fact that surface grains are not constrained in three dimensions, and consequently, domain reorientation and lattice expansion in surface grains are promoted. It is suggested that the magnitude of property difference between the surface and bulk is higher for the PZT than for BNT-6.25BT due to the level of anisotropy in the strain mechanism. The comparison of the results from different methods demonstrates that the intergranular constraints have a significant influence on the electric-field-induced electro-mechanical responses in polycrystalline ferroelectrics. These results have implications for the design of higher performance polycrystalline piezoelectrics.
机译:多晶铁电材料中的机电耦合机制,包括软PbZr_xTi_(1-x)O_3(PZT)和无铅0.9375(Bi_(1/2)Na_(1/2))TiO_3-0.0625BaTiO_3(BNT-使用表面敏感的低能量(12.4keV)和体敏感的高能量(73 keV)同步加速器X射线衍射在原位电场中进行了研究。结果表明,对于最大电场为2.8 kV / mm的四方PZT,电场诱导的晶格应变(ε_(111))在表面处比在体中高20%,并且在非180°铁电介质中区域纹理(如强度比I_(002)/ I_(200)所示)在表面高出16%。在BNT-6.25BT的情况下,它是伪立方的,直到2kV / mm的场,晶格应变ε_(111)和ε_(200)在表面时分别高15%和20%在5 kV / mm的四方相和菱面体相,强度比I_(111)/ I_(111)和I_(002)/ I_(200)表示的畴纹理比表面高12%和10%分别散装。建议在表面和本体之间观察到的应变贡献差异是由于以下事实:表面晶粒在三个维度上均不受约束,因此,促进了表面晶粒的畴取向和晶格扩展。建议由于应变机制中的各向异性水平,PZT的表面和体积之间的性质差异的幅度大于BNT-6.25BT。不同方法结果的比较表明,晶间约束对多晶铁电体中电场感应的机电响应具有重大影响。这些结果对更高性能的多晶压电材料的设计有影响。

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  • 来源
    《Applied Physics Letters》 |2016年第9期|092905.1-092905.5|共5页
  • 作者单位

    School of Materials Science and Engineering, UNSW Australia, Sydney, New South Wales 2052, Australia;

    School of Materials Science and Engineering, UNSW Australia, Sydney, New South Wales 2052, Australia,Australian Synchrotron, 800 Blackburn Road, Clayton, Victoria 3168, Australia;

    School of Materials Science and Engineering, UNSW Australia, Sydney, New South Wales 2052, Australia,Department of Materials Science, University of Erlangen-Nuernberg, Erlangen 91058, Germany;

    Australian Synchrotron, 800 Blackburn Road, Clayton, Victoria 3168, Australia;

    NEXMAP, DTU Physics, Fysikvej, 2800 Kongens Lyngby, Denmark;

    School of Materials Science and Engineering, UNSW Australia, Sydney, New South Wales 2052, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:48

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