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Vibration damping characteristics of carbon nanotubes-based thin hybrid composite spherical shell structures

机译:基于碳纳米管的薄杂交复合球形壳体结构的振动阻尼特性

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The present work deals with the evaluation of elastic properties and dynamic analyses of thin hybrid composite shell structures, which consist of conventional carbon fiber as the reinforcing phase and multiwalled carbon nanotubes-based polymer as the matrix phase. The Mori-Tanaka and strength of material method has been implemented to determine the elastic properties of such hybrid composite structures without and with considering agglomerations. An eight-noded shell element, which considers stress resultant-type Koiter's shell theory and transverse shear effect as per Mindlin's hypothesis having five degrees of freedom at each node, has been utilized for discretizing and analysis of such hybrid shell structures. The Rayleigh damping model has been implemented in order to study the effect of carbon nanotubes (CNTs) on damping capacity of such hybrid composite shell structures. Different types of spherical shell panels have been analyzed in order to study the time and frequency responses. Results show that the elastic properties as well as damping properties of such hybrid composite structures improved with the addition of CNTs as compared to conventional carbon fiber reinforced composites laminates; effects of some important parameters on the vibration characteristic of such hybrid composite shell structures have also been presented. The effects of agglomeration parameters on the elastic properties and their influences on the dynamic responses considering different layers and stacking sequences have also been investigated.
机译:本工作涉及评估弹性性能和薄杂化复合壳结构的动态分析,其包括以常规的碳纤维作为增强相和多壁碳纳米管为基基聚合物作为基质相。已经实施了MORI-Tanaka和材料方法的强度,以确定这种混合复合结构的弹性性能,无需考虑聚集。一种八点点壳体元件,其认为应力结果型Koiter的壳理论和横向剪切效果在每个节点处具有五个自由度的心态假设,用于离散和分析这种混合壳结构。已经实施了瑞利阻尼模型,以研究碳纳米管(CNT)对这种混合复合壳结构的阻尼能力的影响。已经分析了不同类型的球形壳板以研究时间和频率响应。结果表明,与传统的碳纤维增强复合材料层压板相比,弹性性能以及这种混合复合结构的阻尼性能改善了CNT;还提出了一些重要参数对这种混合复合壳结构的振动特性的影响。还研究了附聚参数对考虑不同层和堆叠序列的动态响应的弹性性能及其影响。

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