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On sound insulation of pyramidal lattice sandwich structure

机译:金字塔格构夹层结构的隔声

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Pyramidal lattice sandwich structure (PLSS) exhibits high stiffness and strength-to-weight ratio which can be effectively utilized for designing light-weight load bearing structures for ranging from ground to aerospace vehicles. While these structures provide superior strength to weigh ratio, their sound insulation capacity has not been well understood. The aim of this study is to develop numerical and experimental methods to fundamentally investigate the sound insulation property of the pyramidal lattice sandwich structure with solid trusses (PLSSST). A finite element model has been developed to predict the sound transmission loss (STL) of PLSSST and simulation results have been compared with those obtained experimentally. Parametric studies are then performed using the validated finite element model to investigate the effect of different parameters in pyramidal lattice sandwich structure with hollow trusses (PLSSHT), revealing that the pitching angle, the uniform thickness and the length of the hollow truss and the lattice constant have considerable effects on the sound transmission loss. Finally a design optimization strategy has been formulated to optimize PLSSHT in order to maximize STL while meeting mechanical property requirements. It has been shown that STL of the optimal PLSSHT can be increased by almost 10% at the low-frequency band. The work reported here provides useful information for the noise reduction design of periodic lattice structures.
机译:金字塔形格状夹层结构(PLSS)具有高刚度和强度重量比,可以有效地用于设计轻型承重结构,适用于从地面到航空航天飞机的各种结构。尽管这些结构提供了优异的强度重量比,但其隔音能力尚未得到很好的理解。这项研究的目的是发展数值和实验方法,以从根本上研究具有固体桁架的金字塔格状夹心结构的隔音性能。已经开发了有限元模型来预测PLSSST的声传输损耗(STL),并将仿真结果与通过实验获得的结果进行了比较。然后使用经过验证的有限元模型进行参数研究,以研究不同参数对带有空心桁架的金字塔格子夹层结构(PLSSHT)的影响,揭示空心桁架的俯仰角,均匀厚度和长度以及晶格常数对声音的传输损失有相当大的影响。最后,制定了设计优化策略来优化PLSSHT,以便在满足机械性能要求的同时最大化STL。已经表明,最佳PLSSHT的STL在低频范围内可以提高近10%。此处报道的工作为周期性晶格结构的降噪设计提供了有用的信息。

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