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Effect of ferrotitanium slag on microstructure and properties of Al_(2)O_(3)-SiC-C castables for iron runner
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作者 Tu Long Hua-zhi Gu +5 位作者 Mei-jie Zhang Ao Huang Lv-ping Fu Ding Chen Wen-dong Qiu Mao-qi Ju 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2024年第9期2122-2132,共11页
Ferrotitanium slag(FS)is a waste slag produced during the smelting of ferrotitanium alloys by thermite reduction.Its alumina content is high and can be used as alumina raw material.Iron runner castables containing dif... Ferrotitanium slag(FS)is a waste slag produced during the smelting of ferrotitanium alloys by thermite reduction.Its alumina content is high and can be used as alumina raw material.Iron runner castables containing different amounts of FS were prepared and characterized.The results show that the introduction of FS is beneficial to the sintering of the castables sample.When the FS concentration is 11.2 wt.%,the aggregate and matrix of the castables sample have a good combination,and the mechanical strength of the Al_(2)O_(3)–SiC–C castable reaches a maximum at room temperature.However,excessive introduction of FS generates a large amount of anorthite phase,which reduces the mechanical strength of the Al_(2)O_(3)–SiC–C castable at room temperature.In addition,the high-melting phase CaTiO_(3)is formed in FS,which has good mechanical properties.Meanwhile,the cracks of FS are reduced,and the combination between phases is closer,thus significantly improving the hot modulus of rupture of the castable.When the FS concentration is not above 33.6 wt.%,the castables show good slag resistance.The TiO_(2)in FS is transformed into TiC by carbothermal reaction,which is enriched at the boundary and prevents further reaction of the slag. 展开更多
关键词 Ferrotitanium slag al_(2)o_(3)-sic-c castable Hot modulus of rupture Slag resistance
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碳源对Al_(2)O_(3)-SiC-C质铁沟浇注料性能影响的研究进展 被引量:2
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作者 张艳利 李志刚 杨文刚 《硅酸盐通报》 CAS 北大核心 2022年第6期2160-2166,共7页
本文综述了沥青、炭黑、焦炭和石墨等常规碳源,表面改性碳以及新型碳源对Al_(2)O_(3)-SiC-C质铁沟浇注料性能影响的研究概况。沥青在Al_(2)O_(3)-SiC-C质浇注料中发挥着重要作用,其加热软化后渗透或挥发、凝结到浇注料的缝隙或气孔中,... 本文综述了沥青、炭黑、焦炭和石墨等常规碳源,表面改性碳以及新型碳源对Al_(2)O_(3)-SiC-C质铁沟浇注料性能影响的研究概况。沥青在Al_(2)O_(3)-SiC-C质浇注料中发挥着重要作用,其加热软化后渗透或挥发、凝结到浇注料的缝隙或气孔中,可以增强颗粒之间的结合,改善高温下液相分布,避免过烧结,显著提高浇注料的抗渣性能。炭黑粒度细小,可充分填充空隙,降低烧后试样的气孔平均孔径,改善高温下抗侵蚀性。炭黑、焦炭和石墨等常规碳源适合作为附加碳源和沥青配合使用,达到互补的效果。表面改性碳中造粒石墨具有较好的应用效果,可大幅提高Al_(2)O_(3)-SiC-C质铁沟浇注料中鳞片石墨的引入量,显著提高抗渣性能。新型碳源中含碳树脂粉Carbores P配合沥青添加到Al_(2)O_(3)-SiC-C质铁沟浇注料中可有效提高铁沟服役寿命。 展开更多
关键词 铁沟 al_(2)o_(3)-sic-c质浇注料 沥青 炭黑 造粒石墨 Carbores P
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