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首页> 外文期刊>International journal of mechanics and materials in design >Active damping of geometrically nonlinear vibrations of laminated composite shallow shells using vertically/ obliquely reinforced 1-3 piezoelectric composites
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Active damping of geometrically nonlinear vibrations of laminated composite shallow shells using vertically/ obliquely reinforced 1-3 piezoelectric composites

机译:垂直/倾斜增强1-3压电复合材料对叠层复合材料浅壳的几何非线性振动的主动阻尼

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摘要

This paper addresses the analysis of active constrained layer damping (ACLD) of geometrically nonlinear transient vibrations of laminated thin composite cylindrical shallow shells using vertically reinforced 1-3 piezoelectric composite (PZC). The constraining layer of the ACLD treatment is considered to be made of this 1-3 PZC material. The Golla-Hughes-McTavish (GHM) method has been implemented to model the constrained viscoelastic layer of the ACLD treatment in time domain. The Von Karman type non-linear strain displacement relations and the first-order shear deformation theory (FSDT) are used for deriving this electromechanical coupled problem. A three dimensional finite element (FE) model of smart composite shallow shells integrated with a patch of such ACLD treatment has been developed to demonstrate the performance of the patch on enhancing the damping characteristics of thin laminated cylindrical shells, in controlling the geometrically nonlinear transient vibrations. The numerical results indicate that the ACLD patch significantly improves the damping characteristics of the shells for suppressing the geometrically nonlinear transient vibrations of the shells. The effect of variation of fiber orientation in the PZC material on the control authority of the ACLD patch has also been investigated.
机译:本文研究了使用垂直增强1-3压电复合材料(PZC)的层状复合材料圆柱薄壳的几何非线性瞬态振动的主动约束层阻尼(ACLD)分析。 ACLD处理的约束层被认为是由这种1-3 PZC材料制成的。已经采用Golla-Hughes-McTavish(GHM)方法在时域中对ACLD处理的约束粘弹性层进行建模。冯·卡曼(Von Karman)型非线性应变位移关系和一阶剪切变形理论(FSDT)用于推导该机电耦合问题。已经开发了一种智能复合材料浅壳的三维有限元(FE)模型,并集成了经过此类ACLD处理的贴片,以展示该贴片在控制薄层圆柱壳的阻尼特性,控制几何非线性瞬态振动方面的性能。 。数值结果表明,ACLD贴片可显着改善壳体的阻尼特性,从而抑制壳体的几何非线性瞬态振动。还研究了PZC材料中纤维取向变化对ACLD贴片控制权限的影响。

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