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A comparative study on passive vibration damping in thin carbon nanotube based hybrid composite spherical shell panel

机译:薄碳纳米管混合动力复合球形壳板的无源振动阻尼比较研究

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The present article deals with the vibration problem associated with thin carbon fiber reinforced composite (CFRC) shell structures that can be mitigated by addition of carbon nanotubes (CNTs) in the polymer matrix phase of such CFRC structures. Mori-Tanaka in conjunction with strength of material method has been employed to obtain the elastic properties of such hybrid composite. Shell structure is discretized by eight noded shell element having five degree of freedom at each node where stress resultant-type Koiter's shell theory is applied. Impulse response using Duhamel integral and frequency response analysis have been carried out to analyze the damping phenomena of hybrid composite structure considering Raleigh damping. Results revealed that there are profound influence of carbon nanotube content on the dynamic response of the system. It is also found that the both the damping and stiffness of the structure is increased by the inclusion of carbon nanotubes.
机译:本文涉及与薄碳纤维增强复合物(CFRC)壳结构相关的振动问题,其可以通过在这种CFRC结构的聚合物基质阶段中加入碳纳米管(CNT)来减轻。已经采用了森林田纳卡与材料方法的强度相结合,以获得这种杂化复合材料的弹性性能。壳结构由八个点开的壳元件离散化,每个节点具有五度自由度,其中应用应力结果型Koiter的壳理论。已经进行了使用Duhamel积分和频率响应分析的脉冲响应,以分析朗格利阻尼的混合复合结构的阻尼现象。结果表明,碳纳米管含量对系统的动态响应存在深远的影响。还发现,通过包含碳纳米管来增加结构的阻尼和刚度。

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