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首页> 外文期刊>Journal of the European Ceramic Society >Macroporous alumina scaffolds consisting of highly microporous hollow filaments using three-dimensional ceramic/camphene-based co-extrusion
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Macroporous alumina scaffolds consisting of highly microporous hollow filaments using three-dimensional ceramic/camphene-based co-extrusion

机译:由高微孔空心丝组成的大孔氧化铝支架,使用三维陶瓷/基于坎普的共挤塑

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摘要

This study proposes a novel type of macroporous ceramic scaffolds, which are comprised of hollow tubular filaments with a highly microporous structure, using 3-dimensional ceramic/camphene-based co-extrusion (3D-CoEx). The use of an initial feedrod, comprised of a camphene core and an alumina/camphene shell, enabled the construction of hollow tubular frameworks and micropores through the removal of the camphene phase. The produced scaffolds showed 3-dimensionally interconnected macropores with dimensions of similar to 250-300 mu m x 400-550 mu m, which were surrounded by hollow alumina filaments (similar to 500 mu m in diameter) featuring a number of micropores (several tens of microns in size). This unique macro/micro-porous structure could achieve a combination of both the reasonably high compressive strength of similar to 5.4 MPa and very high porosity of 86 vol%. In addition, the final mechanical properties and overall porosity of the porous alumina scaffolds could be fine-tuned by adjusting initial alumina content in the alumina/camphene. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一种新型的大孔陶瓷支架,该支架由具有高度微孔结构的空心管状细丝组成,使用3D陶瓷/基于坎皮的共挤出(3D-CoEx)。使用由feed烯核和氧化铝/ camp烯壳组成的初始进料杆,可以通过去除the烯相来构建空心管状框架和微孔。产生的支架显示3维互连的大孔,其尺寸类似于250-300μmx 400-550μm,被具有许多微孔(数十个数十个)的空心氧化铝丝(直径约500μm)包围微米)。这种独特的大孔/微孔结构既可以实现类似于5.4 MPa的相当高的抗压强度,又可以实现86 vol%的超高孔隙率。另外,多孔氧化铝支架的最终机械性能和整体孔隙率可以通过调节氧化铝/碳烯中的初始氧化铝含量来进行微调。 (C)2015 Elsevier Ltd.保留所有权利。

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