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A theory of flexoelectricity with surface effect for elastic dielectrics

机译:弹性电介质具有表面效应的柔电理论

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The flexoelectric effect is very strong for nanosized dielectrics. Moreover, on the nanoscale, surface effects and the electrostatic force cannot be ignored. In this paper, an electric enthalpy variational principle for nanosized dielectrics is proposed concerning with the flexoelectric effect, the surface effects and the electrostatic force. Here, the surface effects contain the effects of both surface stress and surface polarization. From this variational principle, the governing equations and the generalized electromechanical Young-Laplace equations are derived and can account for the effects of flexoelectricity, surface and the electrostatic force. Moreover, based on this variational principle, both the generalized bulk and surface electrostatic stresses can be obtained and are composed of two parts: the Maxwell stress corresponding to the polarization and strain and the remainder relating to the polarization gradient and the strain gradient. The theory developed in this paper provides the underlying framework for the analyses and computational solutions of electromechanical problems in nanodielectrics.
机译:对于纳米尺寸的电介质,柔电效应非常强。而且,在纳米尺度上,不能忽略表面效应和静电力。针对柔性电效应,表面效应和静电力,提出了纳米电介质的焓变原理。在此,表面效应包含表面应力和表面极化的影响。从这种变分原理中,导出了控制方程和广义的机电Young-Laplace方程,它们可以说明挠性电,表面和静电力的影响。而且,基于这种变分原理,可以获得广义的体应力和表面静电应力,并且它们由两部分组成:与极化和应变相对应的麦克斯韦应力以及与极化梯度和应变梯度有关的其余部分。本文开发的理论为纳米电介质中机电问题的分析和计算解决方案提供了基础框架。

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