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Preparation of cellular alumina ceramics via biological foaming with yeast and its microstructural characterization via stereological relations

机译:酵母生物发泡制备多孔氧化铝陶瓷及其立体关系表征

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The preparation of highly porous (cellular) alumina ceramics via biological foaming with yeast is described and its microstructure is characterized via image analysis using stereological relations. The ceramics prepared usually have total porosities in the range 78-84% and the porosities related to large pores (volume fraction of foam bubbles) are usually in the range 58-75%. The mean chord length and Jeffries size, i.e. pore size measures related to the interface density and the mean curvature integral density, respectively, are rather close to each other (usually 0.8-1.4 and 0.8-1.2 mm) with a ratio close to unity (0.9-1.4), and the mean surface-to-surface distance gives a realistic picture of the average wall thickness (usually 0.46-0.69 mm). Using a special processing variant (excess ethanol addition) it is possible to obtain microstructures with lower porosity (total porosity 68-70%, foam bubble volume fractions 50-56%) and smaller pore size (approx. 0.5 mm). (C) 2014 Elsevier Ltd. All rights reserved.
机译:描述了通过用酵母生物发泡制备高孔隙度(多孔)氧化铝陶瓷的方法,并通过使用立体关系的图像分析来表征其微结构。所制备的陶瓷的总孔隙率通常在78-84%的范围内,与大孔有关的孔隙率(泡沫气泡的体积分数)通常在58-75%的范围内。平均弦长和Jeffries大小(即分别与界面密度和平均曲率积分密度相关的孔径大小)彼此相当接近(通常为0.8-1.4和0.8-1.2 mm),比率接近于1( 0.9-1.4),并且平均表面间距离给出了平均壁厚(通常为0.46-0.69 mm)的真实图片。使用特殊的加工方法(添加过量的乙醇),可以获得孔隙率较低(总孔隙率68-70%,泡沫气泡体积分数为50-56%)和较小的孔径(约0.5毫米)的微观结构。 (C)2014 Elsevier Ltd.保留所有权利。

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