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Nonlinear vibration of the piezoelectric nanobeams based on the nonlocal theory

机译:基于非局部理论的压电纳米束的非线性振动

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This paper investigates the nonlinear vibration of the piezoelectric nanobeams based on the nonlocal theory and Timoshenko beam theory. The piezoelectric nanobeam is subjected to an applied voltage and a uniform temperature change. The nonlinear governing equations and boundary conditions are derived by using the Hamilton principle and discretized by using the differential quadrature (DQJ method. A direct iterative method is employed to determine the nonlinear frequencies and mode shapes of the piezoelectric nanobeams. A detailed parametric study is conducted to study the influences of the nonlocal parameter, temperature change and external electric voltage on the size-dependent nonlinear vibration characteristics of the piezoelectric nanobeams.
机译:本文基于非局部理论和Timoshenko束理论研究压电纳米束的非线性振动。压电纳米束受到施加的电压和均匀的温度变化。利用汉密尔顿原理导出非线性控制方程和边界条件,并利用微分求积法(DQJ)离散化非线性控制方程和边界条件,采用直接迭代法确定压电纳米束的非线性频率和模态,并进行了详细的参数研究。研究非局部参数,温度变化和外部电压对压电纳米束尺寸相关的非线性振动特性的影响。

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