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Forming and sintering of porous calcium-hexaaluminate ceramics with hydraulic alumina

机译:水硬性氧化铝对六水铝酸钙多孔陶瓷的成型和烧结

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摘要

We have developed a new eco-friendly fabrication process for porous ceramics using hydraulic alumina (HA) and water. In the present study, we fabricated porous calcium-hexaaluminate (CaAl12O19, CA6) ceramics using this new process. A boehmite gel 3-D network was formed by the hydration of HA in HA/CaCO3 mixed slurry. The HA/CaCO3 mixed slurry was hardened by the formation of this 3-D network. Even without the addition of an organic binder, green bodies containing the 3-D network demonstrated high compressive strength and retained their original shapes. Furthermore, the water acted as a fugitive material in the green bodies. Consequently, the open porosity of the CA6 ceramics could be controlled over a wide range of 42-62.7% by the addition of water (ratio of water to HA/CaCO3 mixed powder: 0.4 to 1.6 by weight) without the use of organic fugitive materials. The results of evolved gas analysis-mass spectrometry measurements showed that the emissions from the hardened green body consisted mostly of water. Consequently, the new fabrication process for porous calcium-hexaaluminate ceramics was confirmed to be eco-friendly.
机译:我们已经开发了一种新的生态环保的制造工艺,该工艺可使用水硬性氧化铝(HA)和水来制造多孔陶瓷。在本研究中,我们使用此新工艺制造了多孔六铝酸钙(CaAl12O19,CA6)陶瓷。通过在HA / CaCO3混合浆液中水合水合形成勃姆石凝胶3-D网络。 HA / CaCO3混合浆液通过此3-D网络的形成而硬化。即使不添加有机粘合剂,包含3-D网络的生坯也表现出高抗压强度并保持其原始形状。此外,水在生坯中充当逃逸性物质。因此,通过添加水(水与HA / CaCO3混合粉末的比例:0.4至1.6重量比)而无需使用有机逃逸性材料,可以将CA6陶瓷的开孔率控制在42-62.7%的宽范围内。 。演变的气体分析-质谱测量的结果表明,硬化生坯的排放物主要由水组成。因此,证实了多孔六铝酸钙陶瓷的新制造工艺是环保的。

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