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Application of Nomogram Method for the Analysis of Magnetoelectric Interactions in Magnetostrictive–Piezoelectric Composites
Physica Status Solidi (B) - Basic Solid State Physics ( IF 1.6 ) Pub Date : 2022-07-20 , DOI: 10.1002/pssb.202200138
Mirza I. Bichurin 1 , Oleg V. Sokolov 1 , Viktor S. Leontiev 1
Affiliation  

The magnetoelectric (ME) effect is beginning to be extensively studied. However, the main issue in the design of new ME devices is the evaluation and selection of the ME composite and the calculation of its ME voltage coefficients. As the calculation of ME voltage coefficients based on the generalized Hooke's law is a laborious task, the well-known method of nomograms is presented to simplify it. To attract the further interest of researchers in this field toward the nomogram method, this article presents a detailed method to obtain the ME voltage coefficients of two ME composites: nickel spinel (NFO)–lead zirconate titanate (PZT) and Terfenol-D–piezoquartz (X-cut) in the low-frequency range and the longitudinal mode of electromechanical resonance (EMR). The results confirm that the nomogram method, in contrast to the general method, allows a quicker and easier determination of the ME voltage coefficients with considerable accuracy.

中文翻译:

诺模图法在磁致伸缩-压电复合材料中磁电相互作用分析中的应用

磁电 (ME) 效应开始得到广泛研究。然而,新型ME器件设计的主要问题是ME复合材料的评估和选择及其ME电压系数的计算。由于基于广义胡克定律计算 ME 电压系数是一项艰巨的任务,因此提出了众所周知的列线图方法来简化它。为了吸引该领域研究人员对列线图方法的进一步兴趣,本文提出了一种详细的方法来获得两种 ME 复合材料的 ME 电压系数:镍尖晶石 (NFO)– 锆钛酸铅 (PZT) 和 Terfenol-D–压电石英(X 切)在低频范围和机电共振 (EMR) 的纵向模式。结果证实,诺模图方法与一般方法相比,
更新日期:2022-07-20
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