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首页> 外文期刊>Journal of intelligent material systems and structures >Size-dependent electromechanical bending, buckling, and free vibration analysis of functionally graded piezoelectric nanobeams
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Size-dependent electromechanical bending, buckling, and free vibration analysis of functionally graded piezoelectric nanobeams

机译:功能梯度压电纳米束的尺寸依赖性机电弯曲,屈曲和自由振动分析

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摘要

In this article, by applying the Euler-Bernoulli model and using the consistent size-dependent theory, the nonlinear formulation of functionally graded piezoelectric material nanobeam is developed. In this formulation, the nonlinear geometric effect resulting from mid-plane stretching for the nanobeam behavior is taken into account, and the nonlinear governing equations of the functionally graded piezoelectric material nanobeam are derived using Hamilton's principle and the variational method. The power-law distribution rule is assumed for the mechanical properties in beam thickness. Afterwards, in the special case, analysis of nanobeam under mechanical and electrical loading for the clamped-clamped and cantilever functionally graded piezoelectric material nanobeams are investigated, and the effects of electrical force, mechanical force, and material properties of functionally graded piezoelectric material beam on the static responses, buckling, and free vibrations are discussed and some significant results are obtained.
机译:在本文中,通过应用Euler-Bernoulli模型并使用一致的尺寸依赖理论,开发了功能梯度压电材料纳米束的非线性配方。在此公式中,考虑了中平面拉伸对纳米束行为的非线性几何效应,并使用汉密尔顿原理和变分方法推导了功能梯度压电材料纳米束的非线性控制方程。假定幂律分布规则是针对梁厚度的机械性能。然后,在特殊情况下,研究了在机械和电负载下对夹钳式和悬臂式功能梯度压电材料纳米束进行的纳米束分析,并分析了电力,机械力和功能梯度压电材料束对材料的影响。讨论了静响应,屈曲和自由振动,并获得了一些有意义的结果。

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