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The effect of nature of porous material on diffuse field acoustic transmission of the sandwich aerospace composite doubly curved shell

机译:多孔材料的性质对夹芯航空复合材料双曲壳扩散场声传输的影响

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This paper investigates a diffuse acoustic field to analyze the wave propagation on infinite doubly curved laminated composite shell sandwiching a porous material which is extensively used in aerospace structures. In fact, the main goal is to study the influence of embedded porous core on Sound Transmission Loss (STL) of the structure. Accordingly, Biot's theory is employed to model the poroelastic material which considers three types of wave propagation including two compression and one shear terms. In addition, Shear Deformation Shallow Shell Theory (SDSST) is applied to derive the wave propagation through double-walled laminated composite shell. Moreover, a numerical process is prepared to investigate a random incidence STL in a diffuse acoustic field which results in presenting the Limiting angle of incidence in which no incident wave is transmitted through structure. Then, in order to show the accuracy and the reliability of the present results, some comparisons are made between the achieved results and those of analytical as well as experimental results available in literature. Besides, the importance of using porous material as a core has been presented. Finally, some effective parameters have been studied in numerical results to inspect the insulation property of the current composite structure. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:本文研究了一个弥散声场,以分析在夹有多孔材料的无限双曲层压复合壳上的波传播,该材料广泛用于航空航天结构。实际上,主要目的是研究嵌入式多孔核对结构的声传输损耗(STL)的影响。因此,采用毕奥特的理论对多孔弹性材料进行建模,该材料考虑了三种波传播类型,包括两个压缩项和一个剪切项。此外,应用剪切变形浅壳理论(SDSST)推导了通过双层叠层复合材料壳的波传播。此外,准备了一个数值过程来研究扩散声场中的随机入射STL,从而得出没有入射波通过结构传播的入射极限角。然后,为了显示当前结果的准确性和可靠性,对所获得的结果与文献中的分析结果和实验结果进行了一些比较。此外,已经提出了使用多孔材料作为芯的重要性。最后,在数值结果中研究了一些有效参数,以检查当前复合结构的绝缘性能。 (C)2018 Elsevier Masson SAS。版权所有。

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