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Modeling of Hysteretic Behavior in Ferroelectric Polymers

机译:铁电聚合物中的磁滞行为建模

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摘要

Controlling the polarization state of ferroelectric materials, and more particularly piezoelectric polymers, is critical to ensure good operation of actuators or sensors using such energy conversion mechanisms. More specifically, the modeling and prediction of the hysteretic behavior of such materials is a critical aspect for the fabrication of robust and accurate devices. The purpose of this article is to present a model based on mathematical functions describing hysteretic behavior as a sum of elementary polarizations arising from combined avalanche and saturation physical effects. Predicted responses show good agreement with experimental measurements, and extension of the model for taking into account electric field-induced crystallization during operations is presented. Finally, the proposed model is simple to implement and does no require heavy computational and memory requirements, as it relies on pure mathematical functions and only requires unidimensional distribution of elementary polarizations. (c) 2015 Wiley Periodicals, Inc.
机译:控制铁电材料,尤其是压电聚合物的极化状态,对于确保使用这种能量转换机构的致动器或传感器的良好运行至关重要。更具体地说,这种材料的滞后行为的建模和预测是制造坚固而精确的设备的关键方面。本文的目的是提供一个基于数学函数的模型,该模型将磁滞行为描述为由雪崩和饱和物理效应共同引起的基本极化的总和。预测的响应表明与实验测量结果吻合良好,并提出了模型的扩展,以考虑操作过程中电场诱导的结晶。最后,该模型易于实现,并且不需要大量的计算和存储需求,因为它依赖于纯数学函数,并且只需要基本极化的一维分布。 (c)2015年威利期刊有限公司

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