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Processing of porous alumina substrate for multilayered ceramic filter

机译:用于多层陶瓷过滤器的多孔氧化铝基材的加工

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The present paper reports results of an initial study related to the fabrication of multilayered ceramic filters with a gradient in porosity for efficient cleaning of liquid medium containing undesired particles/impurities. This study involves the fabrication of a porous ceramic substrate to support the intermediate and top layers. The choice of the support material and its properties in terms of porosity, pore distribution and structural quality are critical for effective performance of the multilayered filter. These properties need to be optimized to achieve proper integration of intermediate layer onto the support structure and to eliminate disturbances in the flow at the interface of the support and intermediate layer. Different ceramic materials including α-alumina, zirconia, and SiO_2 or a combination of these materials with a range of initial particle sizes are being studied for their suitability as support structures, although only results related to a-alumina are presented in this work. Disc shaped ceramic supports were fabricated by uni-axial compaction of powders followed by sintering in a tube furnace in air atmosphere. The effect of compacting pressure on the green density of the ceramic compacts was evaluated. After sintering at 1400℃ for 2 h, the fabricated a-alumina ceramic support was characterized using X-ray diffraction, scanning electron microscopy and mercury porosimetry techniques to determine the nature of phases formed, crystallinity, morphology, pore size and pore size distribution. The structural integrity/strength of the substrate was measured using diametral compression test.
机译:本论文报告了与多层陶瓷过滤器的制造有关的初步研究结果,该多层陶瓷过滤器的孔隙率具有梯度,可以有效地清洗含有不良颗粒/杂质的液体介质。这项研究涉及多孔陶瓷基板的制造,以支撑中间层和顶层。支撑材料及其在孔隙率,孔分布和结构质量方面的性能的选择对于多层过滤器的有效性能至关重要。这些特性需要被优化以实现中间层到支撑结构上的适当整合,并消除在支撑和中间层的界面处的流动扰动。研究了包括α-氧化铝,氧化锆和SiO_2在内的不同陶瓷材料或这些材料的组合(具有一定范围的初始粒度)作为支撑结构的适用性,尽管在这项工作中仅提出了与α-氧化铝有关的结果。通过将粉末单轴压紧,然后在空气气氛下的管式炉中进行烧结来制造盘状陶瓷载体。评价了压实压力对陶瓷压坯的生坯密度的影响。在1400℃烧结2 h后,使用X射线衍射,扫描电子显微镜和水银孔隙率技术对制备的a-氧化铝陶瓷载体进行表征,以确定所形成的相的性质,结晶度,形态,孔径和孔径分布。使用直径压缩试验测量基材的结构完整性/强度。

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