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Preparation of self-reinforcement of porous mullite ceramics through in situ synthesis of mullite whisker in flyash body

机译:用粉煤灰体中原位合成莫来石晶须制备自增强多孔莫来石陶瓷

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摘要

Self-reinforced porous mullite ceramics were fabricated by a starch consolidation method with flyash, different aluminium sources (Al(OH)_3 and Al_2O_3) and the additive AlF_3 as raw materials. The reinforcement mechanism of needle-like mullite whiskers through in situ synthesis in ceramic body was investigated. The bulk density, apparent porosity and bending strength of the samples were tested. Phase compositions and microstructures of the sintered samples were measured by XRD and SEM, respectively. It showed that AlF_3 as additive was helpful to the formation of mullite whiskers at a low temperature. As the aluminium sources, Al(OH)_3 was more suitable for the preparation of mullite whiskers than Al_2O_3. The in situ synthesized mullite whiskers formed an interlocking structure, which enhanced the mechanical strength of the porous mullite ceramics. Porous mullite ceramics with bending strength of about 100 MPa and apparent porosity of about 55% were made at 1550 °C.
机译:通过粉煤灰,不同铝源(Al(OH)_3和Al_2O_3)和添加剂AlF_3的淀粉固结法制备了自增强多孔莫来石陶瓷。研究了通过陶瓷原位合成针状莫来石晶须的增强机理。测试了样品的堆积密度,表观孔隙率和弯曲强度。分别通过XRD和SEM测量了烧结样品的相组成和微观结构。结果表明,AlF_3作为添加剂有助于在低温下形成莫来石晶须。作为铝源,Al(OH)_3比Al_2O_3更适合制备莫来石晶须。原位合成的莫来石晶须形成互锁结构,从而增强了多孔莫来石陶瓷的机械强度。在1550℃下制成具有约100MPa的弯曲强度和约55%的表观孔隙率的多孔莫来石陶瓷。

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