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Free vibration analysis of smart laminated carbon nanotube-reinforced composite cylindrical shells with various boundary conditions in hygrothermal environments

机译:湿热环境下不同边界条件的智能层压碳纳米管增强复合圆柱壳的自由振动分析

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摘要

Free vibration analysis is carried out for piezoelectric coupled carbon nanotube (CNT)-reinforced composite cylindrical shells with the influences of various boundary conditions and hygrothermal environmental conditions for the first time. A simple and effective non-iterative mathematical method is used to calculate the natural frequencies. The equilibrium equations of motion are obtained based on the first-order shear deformation shell theory with the coupling effects of piezoelectricity, temperature, and moisture, respectively based on the Maxwell equation, the Fourier heat conduction equation, and the Fickian moisture diffusion equation. The MoriTanaka micromechanics model is used to estimate the resulting material properties for a composite shell reinforced with CNTs. Presented methodology and attained results are validated with the existing results in the literature. The effects of the boundary conditions, lamination stacking sequence, volume fraction and orientation of CNTs, piezoelectricity, and geometry of the shell on the natural frequencies of the shell are investigated. A moderate effect of temperature/moisture variation on the natural frequencies is also observed. It is found that the influence of structural boundary conditions is more significant at higher CNT volume fractions and for thicker and shorter shells, and the piezoelectricity effect is more obvious at higher circumferential mode. The model and results presented in this study can be utilized to determine vibration characteristics of smart CNT-reinforced composites subjected to hygrothermal loading as well as mechanical loading.
机译:首次在各种边界条件和湿热环境条件的影响下,对压电耦合碳纳米管(CNT)增强复合圆柱壳进行了自由振动分析。一种简单有效的非迭代数学方法用于计算固有频率。基于一阶剪切变形壳理论,分别基于麦克斯韦方程,傅里叶热传导方程和菲克水分扩散方程,分别基于压电,温度和水分的耦合效应,得出运动的平衡方程。 MoriTanaka微力学模型用于估计碳纳米管增强的复合材料壳的材料性能。提出的方法和获得的结果与文献中已有的结果进行了验证。研究了边界条件,叠层堆叠顺序,碳纳米管的体积分数和取向,压电性以及壳的几何形状对壳的固有频率的影响。还观察到温度/湿度变化对固有频率的适度影响。发现在较高的CNT体积分数下以及对于较厚和较短的壳,结构边界条件的影响更为显着,而在较高的圆周模式下,压电效应更为明显。这项研究中提出的模型和结果可用于确定承受湿热负荷和机械负荷的智能CNT增强复合材料的振动特性。

著录项

  • 来源
    《Thin-Walled Structures》 |2020年第4期|106500.1-106500.25|共25页
  • 作者

  • 作者单位

    Univ Manitoba Dept Mech Engn Winnipeg MB R3T 5V6 Canada|Bauhaus Univ Weimar Inst Struct Mech Marienstr 15 Weimar 99423 Germany;

    Univ Manitoba Dept Mech Engn Winnipeg MB R3T 5V6 Canada;

    Duy Tan Univ Inst Res & Dev Da Nang Vietnam;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composite shell; Carbon nanotubes; Frequency; Piezoelectric; Vibration;

    机译:复合壳;碳纳米管;频率;压电振动;

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