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Fully interconnected porous Al2O3 scaffolds prepared by a fast cooling freeze casting method

机译:通过快速冷却冷冻铸造法制备的全互连多孔Al2O3支架

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摘要

A fast cooling freeze casting (FCFC) method was developed for preparation of porous Al2O3 scaffolds with improved interconnectivity, unidirectional pore channels and dendritic walls. As estimated using the Archimedes method and mercury porosimetry, total porosity 64.5-68.5 vol% and the closed porosity <0.6 vol% reveal that most pores are open. The bimodal pore size distribution shifted to larger diameters with increasing sodium-hexametaphosphate (SHMP) concentration from 0.1% to 0.5%. Scanning electronic microscope (SEM) images of the resultant porous Al2O3 showed clear transformation from lamellae to dendrite structures with increasing polyvinyl alcohol (PVA) concentration from 1% to 3%. To discover the mechanism, the freezing curve of the Al2O3 slip was achieved, showing its supercooling point at about -10 degrees C where most isolated water solidifies at an average ice front velocity of 0.42 mu m/s. Together with the PVA effects on the microstructure transformation, the underlying mechanism could be ascribed to both the supercooling and PVA effects. The lamellae ice front was initially formed under this velocity, but with increasing PVA, the ceramic slurry got more viscous and the rearrangement of ceramic particles was hindered, hence the ice front growth in the preferred a direction was limited whereas the growth in the c direction was promoted. Meanwhile under the effects of the applied thermal gradient, the lamellae were transformed into dendrite structures. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:开发了一种快速冷却冷冻铸造(FCFC)方法,以制备具有改善的互连性,单向孔道和树枝状壁的多孔Al2O3支架。如使用阿基米德法和汞孔隙率法所估计的,总孔隙度为64.5-68.5%(体积),封闭孔隙度<0.6%(体积)表明大多数孔隙是开放的。随着六偏磷酸钠(SHMP)浓度从0.1%增加到0.5%,双峰孔径分布转移到更大的直径。所得多孔Al2O3的扫描电子显微镜(SEM)图像显示,随着聚乙烯醇(PVA)浓度从1%增加到3%,从薄片状转变为枝状结构。为了发现机理,获得了Al2O3滑移的冻结曲线,显示了其在约-10摄氏度的过冷点,其中大多数孤立水以0.42μm/ s的平均冰锋速度凝固。连同PVA对微观结构转变的影响,其潜在机理可归因于过冷和PVA效应。片状冰锋最初是在该速度下形成的,但是随着PVA的增加,陶瓷浆料变得更加粘稠,并且阻碍了陶瓷颗粒的重排,因此,在优选的a方向上的冰锋生长受到限制,而在c方向上的生长受到限制。被提升。同时,在施加的热梯度的影响下,片晶转变为枝晶结构。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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