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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Modeling and analysis of the static bending of piezoelectric nanowires with the consideration of surface effects
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Modeling and analysis of the static bending of piezoelectric nanowires with the consideration of surface effects

机译:考虑表面效应的压电纳米线静态弯曲建模与分析

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In this paper, the Euler-Bernoulli beam model was used to analyze the influence of surface effect on the bending of piezoelectric nanowires based on surface energy density theory. The governing equations and boundary conditions of fixed-fixed nanowire and cantilever nanowire are derived in detail using the principle of minimum potential energy. The analytical solutions for the deflection, effective bending stiffness and induced charge are obtained. The results show that compared with the classical elastic beam theory, due to the influence of surface effect, the cantilever nanowires soften and the induced charges increase, while the fixed nanowires strengthen and the induced charges decrease. This research has a certain guiding significance for the design of piezoelectric wire-based nano-devices and the characterization of the mechanical properties of nanowires.
机译:本文基于表面能密度理论,采用欧拉-伯努利束模型分析了表面效应对压电纳米线弯曲的影响。利用最小势能原理,详细推导了固定-固定纳米线和悬臂纳米线的控制方程和边界条件.得到了挠度、有效弯曲刚度和感应电荷的解析解。结果表明,与经典弹性梁理论相比,受表面效应的影响,悬臂纳米线软化,感应电荷增加,而固定纳米线增强,感应电荷减少;本研究对压电线纳米器件的设计和纳米线力学性能的表征具有一定的指导意义。

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