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Sonar Self-noise and Acoustic Transmission of Acoustic Window Made from Functionally Gradient Materials

机译:基于功能梯度材料的声学窗的声呐自噪声与声学传输

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Abstract The sonar self-noise characteristics of an acoustic window made from multilayer functionally gradient materials (FGMs) under external turbulent pulsating pressure excitation were theoretically modeled using the multilayer plate (MLP) transfer function method and the turbulent pulsating pressure wavenumber–frequency spectrum. An MLP transfer matrix was used to determine acoustic transmission loss of the multilayer FGM plate under plane wave excitation. The theoretical model was verified by the finite element method. The FGM was fabricated from rubber and fiberglass-reinforced plastics (FRP)/carbon fiber. The acoustical transmission loss of the multilayer FGM plate and noise reduction patterns of the multilayer FGM acoustic windows were assessed at different gradients. The acoustic effect of the window on external sound waves and its spatial filtering effect on external turbulent fluctuation excitations can be adjusted by regulating the proportions of rubber and FRP, which changes the gradient variation pattern.
机译:摘要 采用多层板(MLP)传递函数法和湍流脉动压力波数-频谱,理论上模拟了多层功能梯度材料(FGM)声窗在外湍流脉动压力激励作用下的声呐自噪声特性。采用MLP传递矩阵测定了多层FGM板在平面波激励下的声传输损耗。采用有限元方法验证了理论模型的正确性。女性生殖器切割由橡胶和玻璃纤维增强塑料(FRP)/碳纤维制成。评估了多层FGM板的声传输损耗和多层FGM声窗在不同梯度下的降噪模式。通过调节橡胶和FRP的比例,可以调节窗口对外界声波的声学效应及其对外界湍流波动激励的空间滤波作用,从而改变梯度变化模式。

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