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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Semi-infinite optimization formulation to obtain accurate phenomenological models for all phases of ferroelectric-ferroelastic crystals
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Semi-infinite optimization formulation to obtain accurate phenomenological models for all phases of ferroelectric-ferroelastic crystals

机译:半无限优化公式以获得铁电-铁弹性晶体各相的精确现象学模型

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摘要

A formulation based on semi-infinite optimization is proposed to obtain accurate thermodynamic phenomenological models over all phases of ferroelectric and ferroelastic materials. The formulation is illustrated with barium titanate (BaTiO/sub 3/) single crystals. Analogous to the Devonshire theory, the elastic Gibbs function is expressed as a truncated Taylor series in terms of the polarization vector components, whose coefficients are unknown functions of temperature. Employing a methodology based on semi-infinite optimization, the unknown coefficients are determined using experimental measurements. In contrast to all existing methods in the literature, the methodology proposed herein yields models that accurately predict the ferroelectric properties such as phase transitions, spontaneous polarization, and permittivity over a large temperature range. The objective function-which is a measure of the relative error in the phenomenological model-for the optimal model shows a difference of more than 500% over the models obtained using previously proposed methods.
机译:提出了基于半无限优化的公式,以在铁电和铁弹性材料的所有阶段获得准确的热力学现象学模型。用钛酸钡(BaTiO / sub 3 /)单晶说明了该配方。类似于德文郡理论,弹性吉布斯函数以极化矢量分量的形式表示为截断的泰勒级数,其系数是温度的未知函数。使用基于半无限优化的方法,使用实验测量确定未知系数。与文献中所有现有方法相比,本文提出的方法产生的模型可以准确预测铁电特性,例如在大温度范围内的相变,自发极化和介电常数。对于最佳模型,目标函数(作为现象学模型中相对误差的度量)显示出与使用先前提出的方法获得的模型相比,相差超过500%。

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