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Micro-Computed Tomography and Finite Element Method Study of Open-Cell Porous Materials

机译:开孔多孔材料的微计算机断层扫描和有限元方法研究

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In the present paper the characterization of structure and properties of open-cell porous materials by high-resolution x-ray micro-computed tomography (μCT) and finite element method (FEM) is addressed. The unique properties of open porosity foams make them interesting in a range of applications in science and engineering such as energy absorbers, lightweight construction materials or heat insulators. Consequently, a detailed knowledge of structure as well as mechanical properties (i.e. Young’s Modulus, Poisson’s Ratio) of such foams is essential. The resulting pixel size of the μCT was 40 μm, which enabled satisfactory visualization of the complex foam structure and quantitative characterization. Foam morphology was studied on post-processed computed tomography images, while mechanical properties were analyzed with use of the finite element method on numerical model obtained from μCT results.
机译:在本文中,通过高分辨率x射线微计算机断层扫描(μCT)和有限元方法(FEM)表征了开孔多孔材料的结构和性能。开孔泡沫的独特性能使其在科学和工程领域的许多应用中引起人们的兴趣,例如能量吸收器,轻质建筑材料或隔热材料。因此,对此类泡沫的结构和机械性能(即杨氏模量,泊松比)的详细了解至关重要。 μCT的最终像素大小为40μm,从而能够令人满意地显示复杂的泡沫结构并进行定量表征。在后处理的计算机断层扫描图像上研究了泡沫形态,同时在基于μCT结果的数值模型上使用有限元方法分析了力学性能。

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