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Effect of domain wall motion and phase transformations on nonlinear hysteretic constitutive behavior in ferroelectric materials.

机译:畴壁运动和相变对铁电材料非线性滞后本构行为的影响。

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摘要

The primary focus of this research is to investigate the non-linear behavior of single crystal and polycrystalline relaxor ferroelectric PMN-x PT and PZN-xPT through experimentation and modeling.; Characterization of single crystal and polycrystalline specimens with similar compositions was performed. These data give experimental insight into the differences that may arise in a polycrystal due to local interaction with inhomogeneities. Single crystal specimens were characterized with a novel experimental technique that reduced clamping effects at the boundary and gave repeatable results. The measured experimental data was used in conjunction with electromechanical characterizations of other compositions of single crystal specimens with the same crystallographic orientation to study the compositional effects on material properties and phase transition behavior.; Experimental characterization provided the basis for the development of a model of the continuous phase transformation behavior seen in PMN- xPT single crystals. In the modeling it is assumed that a spatial chemical and structural heterogeneity is primarily responsible for the gradual phase transformation behavior observed in relaxor ferroelectric materials. The results are used to simulate the effects of combined electrical and mechanical loading.; An improved rate-independent micromechanical constitutive model based on the experimental observations of single crystal and polycrystalline specimens under large field loading is also presented. This model accounts for the non-linear evolution of variant volume fractions. The micromechanical model was calibrated using single crystal data. Simulations of the electromechanical behavior of polycrystalline ferroelectric materials are presented. These results illustrate the effects of non-linear single crystal behavior on the macroscopic constitutive behavior of polycrystals.
机译:该研究的主要重点是通过实验和建模研究单晶和多晶弛豫铁电PMN-x PT和PZN-xPT的非线性行为。对具有相似组成的单晶和多晶样品进行了表征。这些数据提供了对由于与不均匀性的局部相互作用而在多晶中可能出现的差异的实验性认识。单晶样品的特征在于其新颖的实验技术,该技术可降低边界处的钳位效应并提供可重复的结果。所测得的实验数据与具有相同晶体学取向的单晶样品的其他成分的机电特性结合使用,以研究成分对材料性能和相变行为的影响。实验表征为开发PMN-xPT单晶中的连续相变行为模型提供了基础。在建模中,假定空间化学和结构异质性是导致弛豫铁电材料中观察到的逐步相变行为的主要原因。该结果用于模拟电气和机械组合载荷的影响。基于单晶和多晶试样在大场载荷下的实验观察,提出了一种改进的速率无关的微机械本构模型。该模型说明了变体体积分数的非线性演变。使用单晶数据校准微机械模型。提出了多晶铁电材料的机电行为的仿真。这些结果说明了非线性单晶行为对多晶宏观本构行为的影响。

著录项

  • 作者

    Webber, Kyle Grant.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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