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Evaluation of a hybrid TMM-SEA method for prediction of sound transmission loss through mechanically coupled aircraft double-walls

机译:评估通过机械耦合飞机双壁传声损失的混合TMM-SEA方法的评估

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This paper presents a detailed experimental validation of a hybrid TMM (transfer matrix method)/SEA (statistical energy analysis) method to predict the sound transmission through mechanically coupled aircraft double-walls. The accuracy of the model is investigated using lightweight structures representative of a composite aircraft fuselage cross-section over a large frequency band. The studied structure is composed of a thick composite sandwich panel representative of primary structure, lined with an acoustic insulation layer (glass wool), and structurally connected via vibration isolators to a thin composite sandwich lining panel representative of an interior trim panel. Three types of vibration isolators are considered: a soft, stiff and rigid mechanical links. Results show that the transfer matrix model is able to predict changes in the overall transmission caused by different structural couplings. Modelling limitation is mainly traced to the uncertainties in the measurement of the dynamic stiffness of vibration isolators which are directly propagated to the coupling loss factor and, therefore, to the transmission loss. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种混合TMM(传递矩阵法)/ SEA(统计能量分析)方法的详细实验验证,该方法可预测通过机械耦合的飞机双壁传输的声音。使用代表大频带上复合飞机机身横截面的轻型结构,研究了模型的准确性。所研究的结构由代表主要结构的厚复合夹芯板组成,衬有隔音层(玻璃棉),并通过隔振器在结构上连接至代表内部装饰板的薄复合夹芯板。考虑了三种类型的隔振器:软的,刚性的和刚性的机械连接。结果表明,传递矩阵模型能够预测由不同结构耦合引起的整体传输的变化。建模的局限性主要归因于振动隔离器动态刚度测量的不确定性,该不确定性直接传播到耦合损耗因子,进而传播到传输损耗。 (C)2016 Elsevier Ltd.保留所有权利。

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