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Fabrication and properties of bismuth sodium titanium oxide based ferroelectric ceramics with low levels of B-site additives.

机译:含少量B-位添加剂的铋钠钛氧化物基铁电陶瓷的制备和性能。

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摘要

Three different B-site additives, Mg1/3Nb2/3, Zr 4+, and Cu1/2W1/2, were added to BNT ceramics in varying concentrations. These were abbreviated as BNMN, BNZ, and BNCW, respectively. The compositions were calcined to form a perovskite structure, ground to a fine powder, pressed into tablets and sintered to form dense ceramics. XRD analysis confirmed the formation of the perovskite phase. The electro-mechanical properties of the ceramics were evaluated.;The conductivity of the BNT ceramics was reduced with very small concentrations (0.25 to 0.5%) of each of the additives. This reduction was maintained at the higher concentrations of the additives, which allowed for higher electric fields to be applied during both the poling process and the strain measurements. Improvements of approximately 30% in the d33 values were found at concentrations of 0.5% of each of the additives, but higher concentrations of the additives degraded the d33 values.;The coercive field was affected by the additions to BNT. Increasing concentrations of BNMN reduced the coercive field in bipolar strain measurements. This was accompanied by a reduction in the remanent strain. Small additions (0.5 to 1.5%) of BNZ resulted in an increase in the coercive field by about 12%, followed by a 25% decrease at 5% BNZ. The remanent strain followed the same pattern. All concentrations of BNCW studied reduced the coercive field by about 12%. The remanent strain increased by 25% at 0.5% BNCW, and decreased by 42% at 2.5% BNCW.;The electro-mechanical results for the BNMN and BNZ additives were compared to the behaviours of their lead-based counterparts, PMN and PZ. There was no consistent trend in the response of the electromechanical properties to the additions between the current lead-free and the lead-based systems.;There were improvements in the low-field room temperature dielectric constant of 30% with 25% BNMN, 13% with 10% BNZ, and 16% with 2% BNCW. Higher concentrations of the additives degraded the dielectric performance.
机译:将三种不同的B位置添加剂Mg1 / 3Nb2 / 3,Zr 4+和Cu1 / 2W1 / 2以不同的浓度添加到BNT陶瓷中。它们分别缩写为BNMN,BNZ和BNCW。将该组合物煅烧以形成钙钛矿结构,研磨成细粉,压制成片剂并烧结以形成致密陶瓷。 XRD分析证实钙钛矿相的形成。评估了陶瓷的机电性能。BNT陶瓷的电导率因每种添加剂的浓度非常低(0.25至0.5%)而降低。在添加剂的较高浓度下可保持这种降低,这允许在极化过程和应变测量期间施加较高的电场。每种添加剂的浓度为0.5%时,d33值可提高约30%,但更高浓度的添加剂会使d33值降低。;矫顽场受到BNT添加的影响。 BNMN浓度的增加会降低双极应变测量中的矫顽场。这伴随着剩余应变的减少。少量添加BNZ(0.5至1.5%)会导致矫顽力场增加约12%,然后在5%BNZ时降低25%。剩余应变遵循相同的模式。研究的所有BNCW浓度都将矫顽场降低了约12%。在BNCW为0.5%时,残余应变增加了25%,在BNCW为2.5%时,残余应变降低了42%。;将BNMN和BNZ添加剂的电机械性能与铅基添加剂PMN和PZ的行为进行了比较。机电性能对当前无铅和基于铅的系统之间添加的响应没有一致的趋势。;在25%BNMN的情况下,低场室温室温介电常数提高了30%,13 BNZ为10%时为%,BNCW为2%时为16%。较高浓度的添加剂降低了介电性能。

著录项

  • 作者

    McLaughlin, Shona Rae.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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