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无铅1-3型复合材料中的各向异性因子与机电耦合

Anisotropy Factors and Electromechanical Coupling in Lead-Free 1-3-Type Composites.

作者信息

Topolov Vitaly Yu, Bowen Christopher R, Isaeva Ashura N

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Jul;65(7):1278-1286. doi: 10.1109/TUFFC.2018.2833856.

Abstract

The effective electromechanical properties and anisotropy factors of novel lead-free 1-3-type composites are studied to demonstrate their large piezoelectric anisotropy and considerable level of electromechanical coupling. The composites studied contain two single-crystal (SC) components and a polymer component. The first piezoactive component is a domain-engineered [001]-poled SC based on ferroelectric alkali niobates-tantalates, and this component is in the form of a system of long rods that are parallel to the poling axis . The second SC component is a system of spheroidal piezoelectric LiBO inclusions aligned in a continuous and relatively large polymer matrix. The SC rods are surrounded by an SC/polymer matrix, and the connectivity of the composite is 1-0-3. It is shown that the conditions , which indicates a large degree of anisotropy of the piezoelectric coefficients, and and , which indicate a large anisotropy of the electromechanical coupling factors (ECFs), can be achieved simultaneously in specific ranges of the component volume fractions and inclusion aspect ratios. Moreover, in the same volume-fraction and aspect-ratio ranges, large ECFs ( -0.9) are also achieved. In this context, the important role of the elastic properties of the continuous anisotropic matrix is discussed. The properties and anisotropy factors of the lead-free 1-3-type composites are compared to the similar parameters of conventional lead-containing piezoelectric materials, and the advantages of the composite system studied are described.

摘要

研究了新型无铅1-3型复合材料的有效机电性能和各向异性因子,以证明其具有较大的压电极化各向异性和相当水平的机电耦合。所研究的复合材料包含两个单晶(SC)组分和一个聚合物组分。第一个压电活性组分是基于铁电碱金属铌酸盐 - 钽酸盐的畴工程化[001]极化单晶,该组分呈平行于极化轴的长棒系统形式。第二个SC组分是在连续且相对较大的聚合物基体中排列的球状压电LiBO包裹体系统。SC棒被SC/聚合物基体包围,复合材料的连通性为1-0-3。结果表明,在组分体积分数和包裹体纵横比的特定范围内,可以同时实现表示压电系数具有很大各向异性的条件 ,以及表示机电耦合因子(ECF)具有很大各向异性的条件 和 。此外,在相同的体积分数和纵横比范围内,还实现了较大的ECF(-0.9)。在此背景下,讨论了连续各向异性基体弹性性能的重要作用。将无铅1-3型复合材料的性能和各向异性因子与传统含铅压电材料的类似参数进行了比较,并描述了所研究复合体系的优势。

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