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Explicit formulas for effective piezoelectric coefficients of ferroelectric 0-3 composites based on effective medium theory

机译:基于有效介质理论的铁电0-3复合材料有效压电系数的显式公式

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摘要

Explicit formulas were derived for the effective piezoelectric stress coefficients of a 0–3 composite of ferroelectric spherical particles in a ferroelectric matrix which were then combined to give the more commonly used strain coefficients. Assuming that the elastic stiffness of the inclusion phase is sufficiently larger than that of the matrix phase, the previously derived explicit expressions for the case of a low volume concentration of inclusion particles [C. K. Wong, Y. M. Poon, and F. G. Shin, Ferroelectrics 264, 39 (2001); J. Appl. Phys. 90, 4690 (2001)] were "transformed" analytically by an effective medium theory (EMT) with appropriate approximations, to suit the case of a more concentrated suspension. Predictions of the EMT expressions were compared with the experimental values of composites of lead zirconate titanate ceramic particles dispersed in polyvinylidene fluoride and polyvinylidene fluoride-trifluoroethylene copolymer, reported by Furukawa [IEEE Trans. Electr. Insul. 24, 375 (1989)] and by Ng et al. [IEEE Trans. Ultrason. Ferroelectr. Freq. Control 47, 1308 (2000)] respectively. Fairly good agreement was obtained. Comparisons with other predictions, including the predictions given by numerically solving the EMT scheme, were also made. It was found that the analytic and numeric EMT schemes agreed with each other very well for an inclusion of volume fraction not exceeding 60%.
机译:对于铁电基体中铁电球形颗粒的0-3复合材料的有效压电应力系数,得出了明确的公式,然后将其组合起来,得出更常用的应变系数。假设夹杂物相的弹性刚度比基体相的弹性刚度足够大,则对于体积分数低的夹杂物颗粒[C。 W.Wong,Y.M. Poon和F.G.Shin,《铁电学》 264,39(2001); J.应用物理90,4690(2001)]通过有效的介质理论(EMT)在适当的近似值下进行“转化”,以适应更浓缩的悬浮液。将EMT表达的预测与分散在聚偏二氟乙烯和聚偏二氟乙烯-三氟乙烯共聚物中的锆钛酸铅钛酸盐陶瓷颗粒复合物的实验值进行比较,该方法由Furukawa报道[IEEE Trans。电器。 s子24,375(1989)]和Ng等人。 [IEEE Trans。 Ultrason。铁电体。频率对照47,1308(2000)]。获得了相当好的协议。还与其他预测进行了比较,包括通过对EMT方案进行数值求解得出的预测。发现分析和数字EMT方案非常吻合,因为体积分数不超过60%。

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  • 作者

    Wong, CK; Poon, YM; Shin, FG;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 en
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