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首页> 外文期刊>Journal of the European Ceramic Society >Interactive powder mixture concept for the preparation of geopolymers with fine porosity
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Interactive powder mixture concept for the preparation of geopolymers with fine porosity

机译:互动粉末混合概念,用于制备具有细孔隙率的地质聚合物

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摘要

A new concept of chemical foaming is proposed for the preparation of geopolymers with fine porosity. The use of an interactive powder mixture of gas releasing agent and carrier particles, potentially combines the benefits of small point sources of gas with easy homogenization in the fresh geopolymer. This concept was exploited here for the preparation of porous flyash-based geopolymers. The interactive powder mixture was a SiC powder containing reactive submicron FeSi/FeSi2 particles. Premature foaming was avoided due to prolonged induction period and slow reaction rate of the active phase. Samples were characterized using scanning electron microscopy, mercury porosimetry, tree-point bending tests and thermal conductivity measurements. In addition, total porosity was determined using measured apparent and real densities. It was found that fine pore structure (diameter 140 +/- 80 mu m) not normally obtained using chemical foaming, was achieved in a reproducible manner with this approach. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种新的化学发泡概念,用于制备具有细孔隙率的地质聚合物。使用气体释放剂和载体颗粒的相互动物粉末混合物,可能与新鲜地质聚合物易于均匀化的小点气体的益处。此概念在这里被利用,用于制备多孔粉煤基地质聚合物。互动粉末混合物是含有反应性亚微米FESI / FESI2颗粒的SiC粉末。由于延长的诱导期和活性相的缓慢反应速率,避免了过早发泡。使用扫描电子显微镜,汞孔隙率,树点弯曲试验和导热率测量来表征样品。此外,使用测量的表观和实际密度测定总孔隙率。发现,通过这种方法以可再现的方式实现通常使用化学发泡而不是通常获得的细孔结构(直径140 +/-80μm)。 (c)2016 Elsevier Ltd.保留所有权利。

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