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首页> 外文期刊>Journal of Ceramic Science and Technology >Thermal Shock Performance of Refractories for Application in Steel Ingot Casting
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Thermal Shock Performance of Refractories for Application in Steel Ingot Casting

机译:钢锭铸造用耐火材料的热冲击性能

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This study investigates the thermal shock performance of carbon-free and low-carbon-containing refractories, with and without nanoscale additives, based on alumina, mullite, and alumina doped with zirconia and titania (AZT). For this purpose, the porosity and cold modulus of rupture of the refractories before and after a single thermal shock by compressed air were determined. The mullite-matrix materials exhibited the highest porosities owing to restrained densification during sintering, but exhibited the lowest strength losses of the carbon-free materials. In general, the carbon-containing materials had very low strengths because the carbon content was only 4 wt%. The matrix strength was therefore quite low. However, the additions of nanoadditives increased the strength of the carbon-containing alumina. Meanwhile, in the carbon-containing mullite, the nanoadditives caused an enhanced reaction of the used mullite raw material, while in the carbon-containing AZT, the nanoadditives resulted in enhanced decomposition of the aluminum titanate phase leading to reduced strengths after thermal shock. Nevertheless, all alumina-based compositions as well as the carbon-free mullite-matrix materials seem very promising for application in steel ingot casting.
机译:这项研究研究了基于或不基于纳米级添加剂的无碳和低碳耐火材料的热冲击性能,这些材料基于氧化铝,莫来石和掺有氧化锆和二氧化钛(AZT)的氧化铝。为此,确定了在通过压缩空气进行一次热冲击之前和之后的耐火材料的孔隙率和冷断裂模量。由于抑制了烧结过程中的致密化,莫来石基体材料表现出最高的孔隙率,但在无碳材料中表现出最低的强度损失。通常,含碳材料具有非常低的强度,因为碳含量仅为4重量%。因此,基质强度非常低。然而,纳米添加剂的添加增加了含碳氧化铝的强度。同时,在含碳莫来石中,纳米添加剂引起所使用的莫来石原料的反应增强,而在含碳AZT中,纳米添加剂导致钛酸铝相的分解增强,从而导致热冲击后强度降低。然而,所有基于氧化铝的组合物以及不含碳的莫来石基质材料似乎非常有希望用于钢锭铸造中。

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