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Microstructures and mechanical properties of Al_2O_3-C refractories using nickel-loaded ultrafine microcrystalline graphite and silicon additives

机译:含镍超细微晶石墨和硅添加剂的Al_2O_3-C耐火材料的组织和力学性能

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摘要

Ultrafine microcrystalline graphite (UMCG) and nickel-loaded ultrafine microcrystalline graphite (NMCG) were introduced into Al_2O_3-C refractories to totally replace graphite flake (GF), respectively. Their interactions with silicon additive were exploited through the observation of microstructures, mechanical and thermo-mechanical properties of Al_2O_3-C refractories after firing at 800-1400 °C in a coke powder bed. It revealed that with NMCG, carbon nanotubes and SiC whiskers are in-situ formed out of nickel-catalytic pyrolysis of phenol resin binder at the temperature low to 1000 °C. Moreover, the amount of SiC whiskers increases with increasing fire temperature. The synergistic effect of the ultrafine microcrystalline graphite, carbon nanotubes and SiC whiskers contributes to the substantial improvement of mechanical properties and thermal shock resistance of Al_2O_3-C refractories using nickel-loaded ultrafine microcrystalline graphite as carbon source.
机译:将超细微晶石墨(UMCG)和负载镍的超细微晶石墨(NMCG)分别引入Al_2O_3-C耐火材料中,以完全替代石墨薄片(GF)。通过观察焦粉床中800-1400°C焙烧后Al_2O_3-C耐火材料的微观结构,力学性能和热机械性能,探讨了它们与硅添加剂的相互作用。结果表明,使用NMCG,在低至1000°C的温度下,镍催化酚醛树脂粘合剂的热解过程就可以形成碳纳米管和SiC晶须。此外,碳化硅晶须的数量随着火温度的升高而增加。超细微晶石墨,碳纳米管和SiC晶须的协同作用有助于以负载镍的超细微晶石墨为碳源的Al_2O_3-C耐火材料的力学性能和抗热震性显着提高。

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