首页> 外文期刊>Steel & Composite Structures: An International Journal >Dynamic instability region analysis of sandwich piezoelectric nano-beam with FG-CNTRCs face-sheets based on various high-order shear deformation and nonlocal strain gradient theory
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Dynamic instability region analysis of sandwich piezoelectric nano-beam with FG-CNTRCs face-sheets based on various high-order shear deformation and nonlocal strain gradient theory

机译:基于各种大阶剪切变形和非本谱应变梯度理论

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摘要

In this research, the dynamic instability region (DIR) of the sandwich nano-beams are investigated based on nonlocal strain gradient elasticity theory (NSGET) and various higher order shear deformation beam theories (HSDBTs). The sandwich piezoelectric nano-beam is including a homogenous core and face-sheets reinforced with functionally graded (FG) carbon nanotubes (CNTs). In present study, three patterns of CNTs are employed in order to reinforce the top and bottom face-sheets of the beam. In addition, different higher-order shear deformation beam theories such as trigonometric shear deformation beam theory (TSDBT), exponential shear deformation beam theory (ESDBT), hyperbolic shear deformation beam theory (HSDBT), and Aydogdu shear deformation beam theory (ASDBT) are considered to extract the governing equations for different boundary conditions. The beam is subjected to thermal and electrical loads while is resting on Visco-Pasternak foundation. Hamilton principle is used to derive the governing equations of motion based on various shear deformation theories. In order to analysis of the dynamic instability behaviors, the linear governing equations of motion are solved using differential quadrature method (DQM). After verification with validated reference, comprehensive numerical results are presented to investigate the influence of important parameters such as various shear deformation theories, nonlocal parameter, strain gradient parameter, the volume fraction of the CNTs, various distributions of the CNTs, different boundary conditions, dimensionless geometric parameters, Visco-Pasternak foundation parameters, applied voltage and temperature change on the dynamic instability characteristics of sandwich piezoelectric nano-beam.
机译:在该研究中,基于非本质应变梯度弹性理论(NSGET)和各种高阶剪切变形光束理论(HSDBT)研究了夹层纳米梁的动态不稳定性区域(DIR)。夹层压电纳米梁包括均匀的芯和面部纸张,其用功能梯度(FG)碳纳米管(CNT)加强。在目前的研究中,采用了三种CNT模式以加强梁的顶部和底部面板。此外,不同的高阶剪切变形光束理论如三角剪切变形光束理论(TSDBT),指数剪切变形光束理论(ESDBT),双曲线剪切变形光束理论(HSDBT)和Aydogdu剪切变形光束理论(ASDBT)是考虑提取不同边界条件的控制方程。梁经受热和电荷,同时在Visco-Pasternak基础上搁置。汉密尔顿原则用于基于各种剪切变形理论导出运动的控制方程。为了分析动态不稳定行为,使用差分正交方法(DQM)解决了运动的线性控制方程。通过验证参考验证后,提出了综合的数值结果,以研究重要参数,如各种剪切变形理论,非局部参数,应变梯度参数,CNT的体积分数,CNT的各种分布,不同边界条件,无量纲的影响夹层压电纳米梁动态不稳定特性的几何参数,Visco-Pasternak基础参数,施加电压和温度变化。

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