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X-ray Computed Tomography for Characterization of Expanded Polystyrene (EPS) Foam

机译:X射线计算机断层扫描技术表征发泡聚苯乙烯(EPS)泡沫

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摘要

Expanded polystyrene (EPS) foam is widely used in building and construction applications for thermal and acoustic insulation. This material is nearly transparent for X-rays, making it difficult to characterize its pore structure in 3D with X-ray tomography. Because of this difficulty, the pore network is often not investigated and is, thus, poorly known. Since this network controls different physical properties, such as the sound absorption, it is crucial to understand its overall structure. In this manuscript, we show how to reveal the pore network of EPS foams through the combination of high resolution X-ray tomography (micro-CT) and saturation techniques. The foams were saturated with CsCl-brine, which acts as a contrasting agent in X-ray micro-CT imaging. This allowed us to separate the beads, making up the foam, from the pore network. Based on the 3D micro-CT results, we were able to assess a representative elementary volume for the polystyrene, which allows for calculating the acoustical parameters from the Johnson–Champoux–Allard (JCA) model, the pore and bead size distribution. The 3D data was also used as input to simulate sound absorption curves. The parametric study showed that an increase in the bead size influenced the sound absorption of the material. We showed that, by doubling the diameter of beads, the absorption coefficient was doubled in certain ranges of frequency.
机译:发泡聚苯乙烯(EPS)泡沫广泛用于建筑和建筑应用中的隔热和隔音。这种材料对X射线几乎是透明的,因此很难通过X射线断层扫描来表征其3D孔结构。由于该困难,经常不研究孔网络,因此知之甚少。由于此网络控制着不同的物理属性,例如吸声,因此了解其整体结构至关重要。在这份手稿中,我们展示了如何通过高分辨率X射线断层扫描(micro-CT)和饱和技术相结合来揭示EPS泡沫的孔网络。泡沫用CsCl盐水饱和,在X射线微CT成像中它用作造影剂。这使我们能够从孔隙网络中分离出组成泡沫的珠子。基于3D微型CT结果,我们能够评估聚苯乙烯的代表性基本体积,从而可以根据Johnson-Champoux-Allard(JCA)模型计算声学参数,孔和微珠尺寸分布。 3D数据也用作模拟吸声曲线的输入。参数研究表明,磁珠尺寸的增加会影响材料的吸声效果。我们发现,通过将珠子的直径加倍,在一定频率范围内吸收系数增加了一倍。

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