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Augmented constrained layer damping in plates through the optimal design of a 0-3 viscoelastic composite layer

机译:通过0-3粘弹性复合层的最佳设计增强约束层阻尼板中的阻尼

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In this work, a new 0-3 viscoelastic composite (VEC) layer is presented for augmented constrained layer damping of plate vibration. The 0-3 VEC layer comprises a rectangular array of the thin rectangular graphite-wafers embedded within the viscoelastic matrix. The inclusions of graphite-wafers in the constrained 0-3 VEC layer confine the motion of the viscoelastic phase for its reasonable in-plane strains along with the enhanced transverse shear strains. This occurrence of coincidental shear and extensional strains within the viscoelastic phase is supposed to cause augmented damping capacity of the constrained layer, and it is investigated by integrating the constrained 0-3 VEC layer over the top surface of a substrate plate. A finite element (FE) model of the overall plate is developed based on the layer-wise shear deformation theory. Using this FE model, first, a bending analysis of the overall plate is performed to investigate the mechanisms of damping in the use of 0-3 VEC layer. Next, the damping in the overall plate is quantified for different sets of values of the geometrical parameters of the 0-3 VEC layer. These results reveal significant improvement of damping in the plate due to the inclusions of graphite-wafers within the constrained viscoelastic layer. But, the augmentation of damping indicatively depends on the geometrical parameters in the arrangement of the graphite-wafers. So, the 0-3 VEC layer is configured appropriately through an optimization algorithm, and finally, the forced frequency responses of the overall plate are evaluated to demonstrate the augmented attenuation of vibration-amplitude via the inclusions of graphite-wafers within the constrained viscoelastic layer in an optimal manner.
机译:在这项工作中,提出了一种新的0-3粘弹性复合(VEC)层,用于增强的板振动的受限层压。 0-3 Vec层包括嵌入在粘弹性矩阵内的薄矩形石墨晶片的矩形阵列。在约束的0-3 VEC层中的石墨晶片的夹杂物限制了粘弹性相对于其合理的面内菌株以及增强的横向剪切菌株的运动。这种发生的粘弹性相位内的巧合剪切和延伸菌株应该引起约束层的增强阻尼能力,并且通过将受约束的0-3 Vec层在基板板的顶表面上积分来研究。基于层面剪切变形理论,开发了整体板的有限元(FE)模型。首先使用该FE模型,进行整体板的弯曲分析,以研究使用0-3 VEC层的阻尼机制。接下来,对于0-3 VEC层的几何参数的不同值,量化整体板中的阻尼。这些结果揭示了由于约束粘弹性层内的石墨晶片的夹杂物而在板中阻尼的显着改善。但是,阻尼的增强术语依赖于石墨晶片布置中的几何参数。因此,通过优化算法适当地配置0-3 Vec层,最后,评估整个板的强制频率响应以证明通过约束粘弹层内的石墨晶片的夹杂物的夹杂物的增强振动衰减以最佳的方式。

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