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Research on Vibration and Sound Radiation from Submarine Functionally Graded Material Nonpressure Cylindrical Shell

机译:潜艇振动和声辐射研究潜艇功能梯度材料不压圆柱壳

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In this paper, we establish the finite element(FEM) and boundary element(BEM) models of a submarine section, and study the underwater sound radiation field of three different non-pressure shells made of steel, steel with anechoic tile, and the functionally graded materials (FGM) separately using a method combining of FEM and BEM. Research shows that the combination of FEM and BEM can address the acoustic radiation calculation problem of FGM, and in comparison with steel and anechoic tile laying submarine section, the weight of FGM non-pressure shell reduces 1600kg, and the sound radiation power decreases 4db and 2.5db respectively, thus having better performance in vibration and noise reduction.
机译:在本文中,我们建立了潜艇部分的有限元(FEM)和边界元件(BEM)模型,研究了三种不同非压力壳的水下声辐射领域,钢制钢制钢,钢铁砖,以及功能使用FEM和BEM的方法分别分别分别进行分级材料(FGM)。研究表明,有限元和BEM的组合可以解决FGM的声学辐射计算问题,与钢和高压瓷砖铺设潜艇部分相比,FGM非压力壳的重量减少了1600kg,声辐射功率降低了4dB和2.5db分别,从而具有更好的振动和降噪性能。

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