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首页> 外文期刊>International journal for simulation and multidisciplinary design optimization >Design and simulation of multilayer hybrid foam material for acoustic application
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Design and simulation of multilayer hybrid foam material for acoustic application

机译:声学应用多层混合泡沫材料的设计与仿真

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摘要

New acoustic multilayer absorber fabricated by coupling closed-cell metallic foam and open-cell polymeric foam, which aimed to develop a practical use of metallic foam in the noise control application. In prior, the individual sound absorption coefficient of both foam materials with different thicknesses measured by the impedance tube method as per ASTM E-1050. Using inverse characterization technique, the intrinsic properties needed for five parameter models in a numerical study are predicted. The measured characteristic impedance, complex wave propagation, and sound absorption coefficient of the individual foams are in close agreement with the prediction. Subsequently, a different configuration of multilayer absorber is modeled using obtained properties, and their acoustic performance is evaluated. The result indicates that the coupling of polymeric foam with metallic one exhibits enhanced sound absorption and usage of closed-cell metallic foam in noise control material. Furthermore, the result demonstrates that absorption capability entirely relies on the placement of polymeric foam in the configuration. The proposed hybrid multilayer absorber coupled with test bench car for interior acoustic study, where 5–30?dB is reduction is noticed in 1/3rd octave plot.
机译:通过联接闭合细胞金属泡沫和开孔聚合物泡沫制造的新型声学多层吸收器,其旨在在噪声控制应用中产生实际使用金属泡沫。在现有的情况下,通过根据ASTM E-1050的阻抗管方法测量具有不同厚度的泡沫材料的个体吸收系数。使用逆表征技术,预测了数值研究中五个参数模型所需的内在特性。单个泡沫的测量特征阻抗,复杂波传播和声音吸收系数与预测密切一致。随后,使用得到的性质建模多层吸收器的不同配置,并评估它们的声学性能。结果表明,聚合物泡沫与金属泡沫的偶联表现出噪声控制材料中闭孔金属泡沫的增强的吸声和使用。此外,结果表明,吸收能力完全依赖于在构型中的聚合物泡沫的放置。所提出的混合多层吸收器与用于内部声学研究的测试台式汽车相结合,其中5-30℃下降1/3倍波图中被注意到。

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