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Porous mullite ceramics with a fully closed-cell structure fabricated by direct coagulation casting using fly ash hollow spheres/kaolin suspension

机译:多孔莫来石陶瓷,具有通过使用粉煤灰空心球/高岭土悬浮液的直接凝固铸造制造的全闭孔结构

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摘要

Porous mullite ceramics with a fully closed-cell structure were fabricated by direct coagulation casting (DCC) using fly ash hollow spheres (FAHSs) as the non-sacrificial pore-forming agent. Kaolin powder was used as the filler and the suspension stabilizer, and bentonite was used as the rheological additive, respectively. The effects of bentonite on the stabilization mechanism of suspension and properties of the porous ceramics were investigated. It is found that 1 wt% additional bentonite is efficient in improving the suspension stability from 2 h to at least 24 h, due to increased suspension viscosity, thixotropy and yield stress. Densification of the kaolin powder during sintering eliminates the open pores, and the closed pores from FAHSs remain to yield a fully closed-cell structure. The porous mullite ceramics have a total porosity ranging from 44.73% to 46.12%, in which 99% of the pores are closed. Bentonite also increases the compressive strength of porous mullite ceramics by 14.4%, and compressive strength of 58.07 +/- 5.44 MPa can be achieved.
机译:具有完全闭孔结构的多孔莫来石陶瓷通过使用粉煤灰空心球(FAHS)作为非牺牲孔形成剂的直接凝固铸造(DCC)制造。使用高岭土粉作为填料和悬浮稳定剂,并分别用作流变添加剂。研究了膨润土对悬浮液稳定机理的影响及多孔陶瓷的性质。发现,由于悬浮粘度,触变性和产胁应力增加,1wt%的膨润土在将悬浮稳定性从2小时改善到至少24小时的有效。烧结过程中高岭土粉末的致密化消除了开放的孔,并且来自FAHSS的闭孔仍然产生完全闭合细胞结构。多孔莫来石陶瓷的总孔隙度为44.73%至46.12%,其中99%的孔隙闭合。膨润土也将多孔莫来石陶瓷的抗压强度提高14.4%,并且可以实现58.07 +/- 5.44MPa的抗压强度。

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