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首页> 外文期刊>Journal of intelligent material systems and structures >Effect of carbon nanotube waviness on smart damping of geometrically nonlinear vibrations of fuzzy-fiber reinforced composite plates
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Effect of carbon nanotube waviness on smart damping of geometrically nonlinear vibrations of fuzzy-fiber reinforced composite plates

机译:碳纳米管波纹度对模糊纤维增强复合材料板几何非线性振动智能阻尼的影响

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摘要

In this article, we present a finite element model for the three-dimensional analysis of smart constrained layer damping of geometrically nonlinear vibrations of laminated fuzzy-fiber reinforced composite plates. The three-dimensional fractional derivative constitutive relation is implemented for the viscoelastic layer. The constraining layer of the smart constrained layer damping treatment is composed of the vertically/obliquely reinforced 1–3 piezoelectric composites. The von Kármán–type nonlinear strain–displacement relations are used to incorporate the geometric nonlinearity in the model. The main aim of this article is to numerically investigate the effect of carbon nanotube waviness on the nonlinear smart damping. Several thin laminated substrate fuzzy-fiber reinforced composite plates with straight carbon nanotubes and wavy carbon nanotubes with different waviness in different planes are considered with various boundary conditions and stacking sequences to numerically compute their effect on smart damping. The performance of the obliquely reinforced 1–3 piezoelectric composites is discussed and the efficacy of the present smart finite element model in terms of active control authority is also presented.
机译:在本文中,我们提供了一个有限元模型,用于对模糊纤维增强复合材料板的几何非线性振动的智能约束层阻尼进行三维分析。对粘弹性层实现三维分数阶本构关系。智能约束层阻尼处理的约束层由垂直/倾斜增强的1-3压电复合材料组成。 vonKármán型非线性应变-位移关系用于将几何非线性纳入模型中。本文的主要目的是数值研究碳纳米管波纹度对非线性智能阻尼的影响。考虑了在不同平面上具有不同波纹度的直碳纳米管和波纹碳纳米管的几种薄层基板模糊纤维增强复合板的边界条件和堆叠顺序,以数值计算其对智能阻尼的影响。讨论了斜向增强的1-3压电复合材料的性能,并给出了基于主动控制权限的本智能有限元模型的功效。

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