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Application of calcium alumino-titanate to taphole clay 被引量:3
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作者 Mao-qi Ju Man-fei Cai +2 位作者 Yong-he Liang Jian-hua Nie Meng-zhen Guo 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2022年第7期1089-1100,共12页
Calcium alumino-titanate(CAT)can be used as a raw material owing to its excellent refractoriness and thermal expansion.CAT-containing taphole clay(THC)with different particle sizes was prepared and characterized.The r... Calcium alumino-titanate(CAT)can be used as a raw material owing to its excellent refractoriness and thermal expansion.CAT-containing taphole clay(THC)with different particle sizes was prepared and characterized.The results indicated that THC with CAT aggregate has better thermo-mechanical performance than that with a fine CAT powder because of different sintering processes.The CAT aggregate and SiO_(2)reacted and formed liquid phase covering their surface,enhancing the bonding of the particle–matrix and promoting the internal transformation of the substance.Further,the mullite was formed in aggregate with the interwoven network structure.Fine CAT powder has a higher specific surface area,and its surface energy decreases with the particle size.This could cause a reaction between CAT and SiO_(2)at relatively low temperature,making it unable to form a core–shell structure similar to that of the aggregate,with the excessive liquid phase affecting the performance of the samples.Meanwhile,the liquid phase was formed to close the pores and cover the SiC surface,and this was found to enhance the oxidation resistance.A corrosion test confirmed that the THC refractories with CAT aggregates showed better corrosion resistance than other samples.Scanning electron microscopy and energy-dispersive spectrometry results indicated that Ti(C,N)transformed by TiO_(2)in CAT was deposited at the interface between the molten slag and the refractory,and it efficiently prevented the penetration and reaction owing to its high melting point and small wetting angle with the slag. 展开更多
关键词 Taphole clay Calcium alumino-titanate MICROSTRUCTURE Corrosion resistance
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