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Vibration Analysis of Magneto-Electro-Thermo NanoBeam Resting on Nonlinear Elastic Foundation Using Sinc and Discrete Singular Convolution Differential Quadrature Method

机译:基于Sinc和离散奇异卷积差分求积法的非线性弹性地基上的电磁热纳米束振动分析

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Magneto-Electro-Thermo nanobeam resting on a nonlinear elastic foundation is presented. This beam is subjected to the external electric voltage and magnetic potential, mechanical potential and temperature change. Also, we added the new material PTZ-5H-COFe2O4. The governing equations and boundary conditions are derived using Hamilton principle. These equations are discretized by using three differential quadrature methods and iterative quadrature technique to determine the natural frequencies and mode shapes. Numerical analysis is introduced to explain the influence of computational characteristics of the proposed schemes on convergence, accuracy and efficiency of the obtained results. The obtained results agreed with the previous analytical and numerical ones. A detailed parametric study is conducted to investigate the influences of different boundary conditions, various composite materials, nonlinear elastic foundation, nonlocal parameter, the length-to-thickness ratio, external electric and magnetic potentials, axial forces, temperature and their effects on the vibration characteristics of Magneto-Electro-Thermo-Elastic nanobeam.
机译:提出了基于非线性弹性基础的磁电热纳米束。该光束受到外部电压和磁势,机械势和温度的变化。此外,我们添加了新材料PTZ-5H-COFe2O4。利用汉密尔顿原理导出控制方程和边界条件。通过使用三种差分正交方法和迭代正交技术离散化这些方程,以确定固有频率和模态形状。数值分析被引入以解释所提出的方案的计算特性对所获得的结果的收敛性,准确性和效率的影响。所得结果与先前的分析和数值结果一致。进行了详细的参数研究,以研究不同的边界条件,各种复合材料,非线性弹性基础,非局部参数,长宽比,外部电势和磁势,轴向力,温度及其对振动的影响的影响。磁电热弹性纳米束的特性

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