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Electromechanical Analysis of Flexoelectric Nanosensors Based on Nonlocal Elasticity Theory

机译:基于非识别弹性理论的柔性纳米传感器机电分析

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摘要

Flexoelectric materials have played an increasingly vital role in nanoscale sensors, actuators, and energy harvesters due to their scaling effects. In this paper, the nonlocal effects on flexoelectric nanosensors are considered in order to investigate the coupling responses of beam structures. This nonlocal elasticity theory involves the nonlocal stress, which captures the effects of nonlocal and long-range interactions, as well as the strain gradient stress. Based on the electric Gibbs free energy, the governing equations and related boundary conditions are deduced via the generalized variational principle for flexoelectric nanobeams subjected to several typical external loads. The closed-form expressions of the deflection and induced electric potential (voltage) values of flexoelectric sensors are obtained. The numerical results show that the nonlocal effects have a considerable influence on the induced electric potential of flexoelectric sensors subjected to general transverse forces. Moreover, the induced electric potential values of flexoelectric sensors calculated by the nonlocal model may be smaller or larger than those calculated by the classical model, depending on the category of applied loads. The present research indicates that nonlocal effects should be considered in order to understand or design basic nano-electromechanical components subjected to various external loads.
机译:由于它们的缩放效果,柔性电材料在纳米级传感器,执行器和能量收割机中起着越来越重要的作用。在本文中,考虑了对荧光型纳米传感器的非局部效应以研究光束结构的耦合响应。该非局部弹性理论涉及非局部应力,其捕获非局部和远程相互作用以及应变梯度应力的影响。基于电动吉布斯自由能,通过对经受几种典型外部载荷进行几种典型外部载荷的柔性纳米芯片的广义变分原理推导出控制方程和相关边界条件。获得偏转和感应电位(电压)值的挠度电感器的闭合表达。数值结果表明,非识别效应对经受一般横向力的柔性电感器的感应电位具有相当大的影响。此外,由非本种模型计算的柔性电感器的感应电位值可以小于或大于经典模型计算的那些,这取决于所施加的负载的类别。本研究表明,应考虑非局部效应,以便理解或设计经受各种外部载荷的基本纳米机电组件。

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