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Analysis of a functionally graded nanocomposite sandwich beam considering porosity distribution on variable elastic foundation using DQM: Buckling and vibration behaviors

机译:考虑DQM可变弹性基础孔隙率分布的功能梯度纳米复合夹层光束分析:屈曲和振动行为

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In the present study, according to the important of porosity in low specific weight in comparison of high stiffness of carbon nanotubes reinforced composite, buckling and free vibration analysis of sandwich composite beam in two configurations, of laminates using differential quadrature method (DQM) is studied. Also, the effects of porosity coefficient and three types of porosity distribution on critical buckling load and natural frequency are discussed. It is shown the buckling loads and natural frequencies of laminate 1 are significantly larger than the results of laminate 2. When configuration 2 (the core is made of FRC) and laminate 1 ([O/90/0/45/90](s)) are used, the first natural frequency rises noticeably. It is also demonstrated that the influence of the core height in the case of lower carbon volume fractions is negligible. Even though, when volume fraction of fiber increases, the critical buckling load enhances smoothly. It should be noticed the amount of decline has inverse relationship with the beam aspect ratio. Investigating three porosity patterns, beam with the distribution of porosity Type 2 has the maximum critical buckling load and first natural frequency. Among three elastic foundations (constant, linear and parabolic), buckling load and natural frequency in linear variation has the least amount. For all kind of elastic foundations, when the porosity coefficient increases, critical buckling load and natural frequency decline significantly.
机译:在本研究中,根据碳纳米管的高刚度的孔隙率在碳纳米管的高刚度,夹层复合梁的高刚度,夹层复合梁两种配置中的孔隙率,研究了使用差分正交方法(DQM)的层压板。而且,讨论了孔隙率系数和三种类型的孔隙率分布对关键屈曲负荷和自然频率的影响。示出了屈曲载荷和层压板1的自然频率显着大于层压板2的结果2.当配置2(核心由FRC制成)和层压板1时([O / 90 / 0/45 / 90](S ))使用,第一自然频率明显上升。还证明核心高度在较低碳体积分数的情况下的影响可忽略不计。即使,当光纤的体积分数增加时,关键屈曲负荷增强平滑。应该注意到下降量与光束宽高比具有反向关系。研究三个孔隙率图案,具有孔隙型2的分布的梁具有最大的关键屈曲负载和第一自然频率。在三个弹性基础(恒定,线性和抛物线)中,线性变化中的屈曲负荷和固有频率最少。对于各种弹性基础,当孔隙率系数增加时,关键屈曲负荷和自然频率显着下降。

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