Mechanism of Deposition of Inclusions and Metal on ZrO<SUB>2</SUB>-CaO-C Immersion Nozzle in Continuous Casting

Механизм осаждения включений и металла на погружное сопло ZrO2-CaO-C при непрерывном литье
Ryoji Tsujino, Arata Tanaka, Akira Imamura, Daijyo TAKAHASHI, Shozo Mizoguchi
1994-01-01

Al2O3-C refractoryZrO2-CaO-C refractoryalumina inclusionscontinuous casting immersion nozzlegraphite reduction reactionsmetal depositionnetwork aluminaoxide layer formationsuboxide gases (SiO, ZrO)
Conditions of deposition of alumina and metal on ZrO2-CaO-C refractory has been investigated in comparison of Al2O3-C refractory by laboratory scale test. The results are summarized as follows.(1) When high aluminum and alumina inclusions were contained in the molten steel, ZrO2-CaO-C refractory was easier to be deposited than Al2O3-C one.(2) The deposition may be composed of two steps.The first is the formation of fine oxide layer (the network alumina) in the hot face during very short time after immersion.The second is the deposition of non-metallic inclusions on the fine oxide layer.(3) The generation of the fine oxide layer is due to the following reactions. Direct reaction of aluminum in the molten steel with silica and zirconia contained in the refractory. Suboxide gases (SiO, ZrO) reduced by graphite in the refractory react with aluminum in the molten steel.
1
Deposition on the immersion nozzle proceeds via two steps: rapid formation of a fine oxide (network alumina) layer on the hot face, followed by deposition of non-metallic inclusions onto that layer.
2
Suboxide gases (SiO, ZrO) reduced by graphite in the refractory react with aluminum in the molten steel, contributing to generation of the fine oxide layer.
3
The fine oxide layer forms through direct reactions of aluminum in molten steel with silica and zirconia in the refractory.
4
ZrO2-CaO-C refractory accumulates alumina and metal deposits more readily than Al2O3-C refractory when molten steel contains high aluminum and alumina inclusions.

ZrO2-CaO-C immersion nozzle refractory in continuous casting (interaction surface exposed to molten steel)

Mechanism and conditions of deposition of alumina, metal, and non-metallic inclusions on the refractory surface, including formation of a fine oxide (network alumina) layer via reactions of molten-steel aluminum with silica/zirconia and suboxide gases reduced by graphite

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1994-01-01
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Ryoji Tsujino
Arata Tanaka
Akira Imamura
Daijyo TAKAHASHI
Shozo Mizoguchi
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