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Porous Alumina Ceramics Obtained by Particles Self-Assembly Combing Freeze Drying Method

机译:通过颗粒自组装梳理冷冻干燥方法获得多孔氧化铝陶瓷

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摘要

An innovative approach for fabricating porous alumina ceramics is demonstrated in this paper. The distinguished feature is that the construction of the porous structure stems from the interaction between ceramic particles, which is a poorly explored area. By tailoring the Derjaguin-Landau-Verwey-Overbeek (DLVO) interaction energy to the second minimum, the dilute ceramic slurry would be gelled by the weakly assembled particle network, and the assembled structure is conserved via a freeze drying strategy. The DLVO theoretical analyses revealed that the second minimum of interaction energy could be obtained when the counter-ion concentration in colloidal suspension is 1.5 × 10−2 mol/L. The properties of the as-assembled samples were compared with one produced by the conventional freeze drying method. Results showed that the self-assembly of alumina particles has a positive influence on micro structures. Unlike the laminar pores generated by the traditional freeze drying procedure, the assembled samples show homogeneously interconnected and hierarchical open pores which were stable even after a 24 h dwell time at 950 °C (open porosity is 79.19% for the slurry of vol 20% solid loading). Particularly, after sintering at 1550 °C for 2 h, open porosity (67.01%) of the assembled samples was significantly greater than that of their un-assembled counterparts (39.97%). Besides, the assembled sample shows a narrower pore size distribution and a relatively higher cumulative pore volume.
机译:本文证实了一种制造多孔氧化铝陶瓷的创新方法。杰出特征是,多孔结构的构造源于陶瓷颗粒之间的相互作用,这是一个探索众不可少的区域。通过将Derjaguin-landau-Verwey-Verwey-Verwey-Verwey-Verwey-verwey-verwey-verwey-verwey-verwey-verwey-verwey-verwey-verwey - 稀释陶瓷浆料将被弱组装的粒子网络凝胶化,并且通过冷冻干燥策略保守组装结构。 DLVO理论分析显示,当胶体悬浮液中的反离子浓度为1.5×10-2mol / L时,可以获得第二个相互作用能量。将组装样品的性质与通过常规冷冻干燥方法产生的样品进行比较。结果表明,氧化铝颗粒的自组装对微结构具有正影响。与由传统冷冻干燥过程产生的层孔不同,组装的样品表现出均匀互连的和等级开孔,即使在950℃下的24小时停留时间后,也稳定(开放孔隙率为79.19%,对于20%固体的浆液为79.19%装载)。特别是,在1550℃下烧结2小时后,开放孔隙率(67.01%)组装样品明显大于其未组装的对应物(39.97%)。此外,组装的样品显示较窄的孔径分布和相对较高的累积孔体积。

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