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An analytical study of sound transmission through stiffened double laminated composite sandwich plates

机译:加强双层复合夹层板传声的解析研究

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The main objective of this research work is focused on sound transmission loss analysis of stiffened double laminated composite sandwich plate structures subjected to plane sound wave excitation, wherein the laminated composite plates are composed of perfectly bonded functionally graded carbon nanotubes (CNTs) reinforced composite layers, and in each layer, the carbon nanotubes is uniform or functionally graded along with the thickness direction of structures, and three types of the CNTs distributions are studied. The extended rule of mixture is employed to determine the properties of the composite material. The compatibility of displacements on the interface between the plate and the stiffeners is employed to derive the governing equation of each stiffener. Then fluid-structure coupling is considered by imposing velocity continuity condition at fluid-structure interfaces. By using the space harmonic approach and virtual work principle, the sound transmission loss is described analytically. Since no existing results of sound insulation can be found for such composite material plate structure, comparison studies can only be made with the isotropic and laminated case. Good agreement is found from these comparison studies. Based on the developed theoretical mode, the influences of the volume fractions of CNTs, distribution type of CNTs, structural damping, lamination angle and the number of layers on sound transmission loss are subsequently presented. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:这项研究工作的主要目标是对经过平面声波激发的加劲双层层压复合夹层板结构的传声损失分析,其中层压复合板由完美结合的功能梯度碳纳米管(CNTs)增强复合层组成,并且在每一层中,碳纳米管沿着结构的厚度方向是均匀的或功能梯度的,并且研​​究了三种类型的CNT分布。扩展的混合规则用于确定复合材料的性能。板和加劲肋之间的界面位移的相容性可用来推导每个加劲肋的控制方程。然后通过在流固界面施加速度连续性条件来考虑流固耦合。利用空间谐波法和虚拟工作原理,对声传输损失进行了解析描述。由于无法找到这种复合材料板结构的隔音效果,因此只能对各向同性和叠层情况进行比较研究。从这些比较研究中发现了很好的一致性。在此基础上,提出了碳纳米管的体积分数,碳纳米管的分布类型,结构阻尼,层合角和层数对传声损失的影响。 (C)2018 Elsevier Masson SAS。版权所有。

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