ELECTROMAGNETIC COUPLING OF PIEZOELECTRIC/FERRITE COMPOSITE WITH INITIAL STRESS STATE

Q3 Materials Science
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引用次数: 0

Abstract

A mathematical model of electromagnetic thermoelasticity for an initial-stressed transversal-isotropic composite with piezoelectric magnetostrictive phases has been developed. To solve the related boundary value problem of electromagnetic thermoe-lasticity, the Green function method was used as part of a generalized singular approximation of the statistical mechanics of composites, taking into account the initial stress state of the representative domain of the composite at micro- and macro-levels. The solution of the problem of "effective module" for tensors of effective elastic, piezomechanical, magnetostrictive properties, dielectric permittivity and magnetic permit-tivity, temperature, pyroelectric, pyromagnetic coefficients and (which appeared only at the macro level) electromagnetic and magnetoelectric couplings of a quasi-periodic composite with an initial electromagnetic elastic state was obtained. The solutions for the desired tensors of effective properties of the quasi-periodic composite are presented in the form of analytical formulas of simple linear decompositions by solutions for tensors of effective properties of the periodic structure and statistical mixture, decomposition coefficients are the coefficient of "periodicity" (correlation of quasi-periodic and periodic structures) p and "disordering" 1-p, respectively. Results of calculation of all independent components of tensors of effective coefficients of electromagnetic and magnetoelectric couplings of different structures (periodic, quasi-periodic and statistical mixture) are presented in unidirectional direction of fibrous composite "PZT-4/ferrite" with axisymmet-ric tensor of initial macrostrain of composite. For a quasi-periodic composite (with initial macrostrain), the significantly non-monotonic nature of the dependencies of relative (to values in the absence of an initial stress state) values of effective coefficients of electromagnetic and magnetoelectric couplings from the volume fraction of ferrite fibers was revealed. It was revealed that we have an increase in the absolute values of the electromagnetic and magnetoelectric coupling coefficients of composite at negative values of its initial axisymmetric axial macrostrains. The most significant effect is the initial comprehensive macrostrain in the transversal plane on the coefficients of the transversal magnetoelectric coupling of the composite.
初始应力状态下压电/铁氧体复合材料的电磁耦合
建立了具有压电磁致伸缩相的初始应力横向各向同性复合材料的电磁热弹性数学模型。为了求解相关的电磁热塑性边值问题,将Green函数法作为复合材料统计力学广义奇异近似的一部分,在微观和宏观水平上考虑了复合材料代表域的初始应力状态。得到了具有初始电磁弹性状态的准周期复合材料的有效弹性张量、压电力学张量、磁致伸缩性能张量、介电常数和磁介电常数张量、温度张量、热释电系数、热释磁系数张量以及电磁和磁电耦合的“有效模量”问题的解。拟周期复合材料有效性质期望张量的解以周期结构和统计混合物有效性质张量解的简单线性分解解析公式的形式给出,分解系数分别为“周期性”(拟周期和周期结构的相关性)系数p和“无序”系数1-p。给出了纤维复合材料“PZT-4/铁氧体”的初始大应变轴对称张量在单向方向上不同结构(周期、准周期和统计混合)的电磁和磁电耦合有效系数的所有独立分量的计算结果。对于具有初始大应变的准周期复合材料,铁素体纤维的体积分数与电磁和磁电耦合有效系数的相对(相对于没有初始应力状态时的值)的依赖关系具有显著的非单调性。结果表明,当初始轴对称轴向大应变为负值时,复合材料的电磁和磁电耦合系数绝对值增大。横向面上的初始综合大应变对复合材料横向磁电耦合系数的影响最为显著。
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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