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Active damping of geometrically nonlinear vibrations of smart composite shells using elliptical smart constrained layer damping treatment with fractional derivative viscoelastic layer

机译:分数阶导数粘弹性层的椭圆形智能约束层阻尼处理对智能复合材料壳体几何非线性振动的主动阻尼

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摘要

In this article, the performance of elliptical smart constrained layer damping treatments on active damping of geometrically nonlinear vibrations of doubly curved smart laminated composite shells is analyzed. The constraining layers of the smart constrained layer damping treatments comprised vertically/obliquely reinforced 1-3 piezoelectric composites, while the constrained layers of isotropic viscoelastic materials are modeled using the three-dimensional fractional order derivative model. A mesh-free model of the smart composite shells is developed for analyzing their nonlinear transient responses within the framework of a layerwise shear and normal deformation theory considering the von Karman-type geometric nonlinearity. Thin, doubly curved laminated composite shells integrated with elliptical/rectangular smart constrained layer damping patches with different stacking sequences and boundary conditions are considered for presenting the numerical results. The numerical analyses demonstrate the higher effectiveness of the elliptical smart constrained layer damping treatments over the rectangular ones in attenuating the nonlinear vibrations of laminated composite shells.
机译:本文分析了椭圆智能约束层阻尼处理对双曲智能层合复合壳的几何非线性振动主动阻尼的影响。智能约束层阻尼处理的约束层包括垂直/倾斜增强的1-3压电复合材料,而各向同性粘弹性材料的约束层则使用三维分数阶导数模型建模。研究了智能复合材料壳的无网格模型,该模型在考虑von Karman型几何非线性的分层剪切和法向变形理论框架内分析了它们的非线性瞬态响应。考虑与椭圆/矩形智能约束层阻尼贴片集成在一起的薄,双曲层压复合壳,它们具有不同的堆叠顺序和边界条件,以给出数值结果。数值分析表明,椭圆形智能约束层阻尼处理在矩形复合壳的非线性振动衰减方面要优于矩形阻尼。

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