首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >A MULTI-AXIAL ELECTROMECHANICALLY-COUPLED HOMOGENIZED ENERGY MODEL FOR FERROELECTRIC MATERIALS
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A MULTI-AXIAL ELECTROMECHANICALLY-COUPLED HOMOGENIZED ENERGY MODEL FOR FERROELECTRIC MATERIALS

机译:铁电材料的多轴电耦合均质能量模型

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In this paper, we discuss the development and implementation of a 3-D electromechanically coupled homogenized energy model (HEM) for ferroelectric materials. A stochastic-based methodology is introduced and applied to problems involving large scale switching of ferroelectric and ferroelastic materials. Switching criteria for polarization variants are developed using density distributions in three dimensions to accommodate both electrical and mechanical loading and their coupled response. The theory accommodates non-proportional loading and major/minor loop hysteresis. Such formulations are known to accelerate computations for real-time control of nonlinear and hysteretic actuators. The proposed formulation maintains superior computational efficiency in the three dimensional case through the application of density formulations that are based on internal distributions of stress and electric field to produce a distribution of polarization switching events over a range of applied fields and stresses.
机译:在本文中,我们讨论了用于铁电材料的3-D机电耦合均化能量模型(HEM)的开发和实现。引入了一种基于随机的方法,并将其应用于涉及铁电和铁弹性材料的大规模转换的问题。极化变体的切换标准是使用三维密度分布来开发的,以适应电气和机械负载及其耦合响应。该理论适用于非比例负载和主要/次要环路磁滞。已知这样的公式可以加速用于非线性和磁滞致动器的实时控制的计算。所提出的公式通过基于应力和电场的内部分布的密度公式的应用,在三维情况下保持了优异的计算效率,从而在一系列施加的电场和应力范围内产生了极化切换事件的分布。

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