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Micromechanical Analysis of Dynamic Behavior of Conventional and Negative Poisson's Ratio Foams

机译:常规和负泊松比泡沫动态行为的微力学分析

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摘要

Both conventional and negative Poisson's ratio foams exhibit dispersion of acoustic waves, as well as cut-off frequencies, at which the group velocity tends to zero. This macroscopic behavior is attributed to micro-vibration of the foam cell ribs. The purpose of this article is to develop a micromechanical model of the cut-off frequency. This model is based on the resonance of ribs which may be straight, curved, or convoluted. As foam cell ribs become more curved, the cut-off frequency decreases. Therefore foams with curved or convoluted ribs are expected to provide superior performance in applications involving the absorption of sound.
机译:常规和负泊松比泡沫均表现出声波的分散以及截止频率,在该频率处群速趋于零。这种宏观行为归因于泡沫孔肋的微振动。本文的目的是建立截止频率的微机械模型。该模型基于可能是直的,弯曲的或弯曲的肋的共振。随着泡沫孔肋变得更弯曲,截止频率降低。因此,具有弯曲或弯曲的肋的泡沫被期望在涉及声音吸收的应用中提供优异的性能。

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