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Etude des propriétés acoustiques et comportement à l'impact de matériaux poreux de type mousses métalliques homogènes et inhomogènes

机译:研究均质和非均质金属泡沫等多孔材料的声学特性和冲击行为

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摘要

This work is concerned with the theoretical and experimental study of the acoustical properties of macroscopically homogenous and inhomogeneous porous media as well as their mechanical response to impacts. The model of Johnson - Champoux - Allard appeared adapted for the acoustical modeling. This model, associated with a recently developed approach involving the concept of parallel transfer matrices has lead to a new approach of macroscopically inhomogeneous porous materials based on “mixtures of materials”. Furthermore, a parametric study of the absorption coefficient as a function of porosity and frequency has been proposed. The maximums of absorption as well as the envelop of the absorption curves have been studied as functions of porosity. First, a theoretical material with independent parameters has been studied. Real materials with nonindependent parameters were then investigated with the help of a model relating their properties to the porosity. Finally, a comparison between the acoustical and mechanical properties has been initiated in view of determining an objective criterion that will allow to propose a trade off between the two fields.
机译:这项工作涉及宏观上均匀和不均匀的多孔介质的声学特性及其对撞击的机械响应的理论和实验研究。 Johnson-Champoux-Allard的模型似乎适用于声学建模。该模型与最近开发的涉及并行转移矩阵概念的方法相关,导致了一种基于“材料混合物”的宏观上不均匀的多孔材料的新方法。此外,已经提出了对吸收系数作为孔隙率和频率的函数的参数研究。已经研究了最大吸收率以及吸收曲线的包络率与孔隙率的关系。首先,研究了具有独立参数的理论材料。然后借助一个将其特性与孔隙率相关的模型来研究具有非独立参数的真实材料。最后,鉴于确定一个客观标准,将在声学和机械性能之间进行比较,该客观标准将允许在两个领域之间进行权衡。

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