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Comparative study on performance of controlling geometric nonlinearity of laminated smart composite plate using piezoelectric fiber reinforced composite active fiber composite material

机译:用压电纤维增强复合材料和活性纤维复合材料控制层压智能复合板几何非线性性能的比较研究

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The present work highlights on comparative investigation for the performance of active constrained layer damping treatment using PFRC and AFC patch material for controlling the nonlinear transient vibrations of laminated composite plate. In this case for making the constraining layer of the ACLD treatment for PFRC and AFC patch material is used. For modelling of ACLD in the time domain Golla-Hughes-McTavish (GHM) method is used. The Von Kantian type non-linear strain displacement relations along with a simple first-order shear deformation theory are used for deriving this electromechanical coupled problem. A finite model in 3-dimensions has been developed for smart composite plate integrated with the ACLD treated patches of PFRC and AFC. The results of both the cases have been compared and it has been found that the improved performance of AFC patch over the PFRC in subsiding the transient nonlinear vibrations of symmetric cross ply laminated composite plate.
机译:本作应用突出了使用PFRC和AFC贴片材料性能约束层阻尼处理性能的比较研究,用于控制层压复合板的非线性瞬态振动。 在这种情况下,使用用于使PFRC和AFC贴剂材料的ACLD处理的约束层。 用于在时域中的ACLD建模,使用Golla-Hughes-McTavish(GHM)方法。 Von Kantian型非线性应变位移关系以及简单的一阶剪切变形理论用于导出该机电耦合问题。 为3维的有限型号已经开发了与PCRC和AFC的ACLD处理斑块一体化的智能复合板。 已经进行了比较了这种情况的结果,并且已经发现,在消除对称交叉层叠复合板的瞬态非线性振动时,AFC贴片在PFRC上改善了AFC贴剂的性能。

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