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Finite element analysis of a multilayer piezoelectric actuator taking into account the ferroelectric and ferroelastic behaviors

机译:考虑铁电和铁弹性行为的多层压电致动器的有限元分析

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Ferroelasticity and ferroelectricity are the non linear behaviors exhibited by piezoceramics, especially in the case of high electric field or stress. Many studies have focused on the role of ferroelastic and ferroelectric switching in fracture of actuators. However, engineering reliability analyzes are carried out with tools like finite element software that do not take into account these non linear phenomena. To overcome such a problem, a simplified phenomenological constitutive law describing the non linear behavior of piezoceramics has been developed and implemented in the commercial software ABAQUS. This finite element tool is used to study the effects of applied voltage on the electroelastic field concentrations ahead of electrodes in a multilayer piezoelectric actuator. The study lies on the experimental observations made by Shindo et al.. Electroelastic analysis on piezoceramics with surface electrode showed that high values of stress and electric displacement arose in the neighbourhood of the electrode tip. Thus, the strain, stress and electric displacement concentrations were calculated and the numerical results showed that ferroelectric switching arose in the area of the electrode tip, causing a change in remnant polarization and remnant strain.
机译:铁弹性和铁电是压电陶瓷表现出的非线性行为,尤其是在高电场或高应力的情况下。许多研究集中在铁弹性和铁电转换在致动器断裂中的作用。但是,工程可靠性分析是使用诸如有限元软件之类的工具进行的,这些工具没有考虑这些非线性现象。为了克服这个问题,已经开发了描述压电陶瓷非线性行为的简化现象学本构律,并在商业软件ABAQUS中实现。该有限元工具用于研究施加电压对多层压电致动器中电极前面的电弹性场浓度的影响。该研究基于Shindo等人的实验观察。对带有表面电极的压电陶瓷的电弹性分析表明,在电极尖端附近产生了很高的应力和电位移值。因此,计算了应变,应力和电位移浓度,数值结果表明,在电极头的区域出现了铁电开关,引起残余极化和残余应变的变化。

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