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Assessment of dynamic properties of hybrid ribbon reinforced multifunctional composite sandwich plates: Numerical and experimental investigation

机译:混杂带增强多功能复合夹芯板动力特性评估:数值和实验研究

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摘要

This study investigates numerically and experimentally the effect of longitudinal ribbon reinforcement in conventional honeycomb structure on the various dynamic characteristics of a hybrid composite sandwich plate. Longitudinal strips are considered to be embedded along the transverse directions at various locations of a honeycomb core material without and with carbon nanotubes (CNT) reinforcement in a composite sandwich plate. The governing differential equations of motion of the various hybrid honeycomb composite sandwich plate configurations with strips inserted in conventional honeycomb structures as core layer having top and bottom face composite layers are derived using higher order shear deformation theory (HSDT) and solved numerically using a four noded rectangular finite element. Further, experimental investigations are performed by fabricating the various strips embedded hybrid honeycomb core material with and without CNT reinforcement to evaluate the shear and loss moduli using the alternative dynamic approach. The efficacy of the developed finite element formulation is demonstrated by comparing the experimental and numerical results obtained in terms of natural frequencies and loss factors for the various prototypes of honeycomb composite sandwich plates. Also, the effect of variation in CNT content and thickness of longitudinal ribbon reinforcement in conventional honeycomb core material and ply orientation of the face sheets on the various dynamic properties of hybrid composite structures are studied under various end conditions. This study proposes that the ribbon reinforcement location and the addition of CNTs in honeycomb core materials strongly influence the stiffness, damping and transverse vibration displacements of the ribbon reinforced hybrid composite sandwich plates.
机译:这项研究在数值和实验上研究了常规蜂窝结构中纵向带状筋的增强对混合复合夹芯板各种动力学特性的影响。纵向带被认为是沿横向方向嵌入蜂窝芯材料的各个位置,在复合夹层板中不加碳纳米管(CNT)增强和不加碳纳米管(CNT)增强。使用高阶剪切变形理论(HSDT)推导了各种混合蜂窝复合材料夹心板配置的运动控制微分方程,其中带材插入了常规蜂窝结构作为具有顶面和底面复合层的芯层,并使用四节点数值求解矩形有限元。此外,通过制造具有和不具有CNT增强的各种条状嵌入的混合蜂窝状芯材来进行实验研究,以使用替代动态方法评估剪切模量和损耗模量。通过比较在蜂窝复合材料夹心板的各种原型的固有频率和损耗因子方面获得的实验和数值结果,证明了开发的有限元配方的功效。此外,研究了在各种最终条件下,常规蜂窝芯材料中CNT含量和纵向带状增强材料厚度的变化以及面板的层取向对混合复合结构各种动态性能的影响。这项研究提出,蜂窝蜂窝芯材料中的碳带增强位置和碳纳米管的添加强烈影响碳带增强混合复合夹芯板的刚度,阻尼和横向振动位移。

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