New slag system for synchronously controlling hydrogen-oxygen content of electroslag ingot and preparation method thereof
A simultaneous control and electroslag ingot technology, applied in the field of electroslag remelting slag system, can solve the problems of inability to effectively control the oxygen content and hydrogen content of steel ingots, reduce the hydrogen and oxygen content of steel ingots, and low hydrogen permeability, etc. Production efficiency and economic benefits, the effect of reducing hydrogen content and eliminating hydrogen permeation
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Embodiment 1
[0036] A new slag system that simultaneously controls the hydrogen-oxygen content of electroslag ingots in this embodiment, the composition and weight percentage of the slag system are: CaF 2 : 43%, CaO: 22%, Al 2 o 3 : 6%, MgO: 8%, Ce 2 o 3 : 16%, La 2 o 3 : 5%. The steps of its preparation method are specifically:
[0037] Step 1. According to the requirements of preparing slag components and weight percentage, the slag material is configured in proportion and mixed evenly. The slag material is limestone, dolomite, fluorite, bauxite, cerium oxide powder and lanthanum oxide powder. In this embodiment The slag composition and weight percentage are: CaF 2 : 43%, CaO: 22%, Al 2 o 3 : 6%, MgO: 8%, Ce 2 o 3 : 16%, La 2 o 3 : 5%; Wherein: the mass percentage of CaO in the limestone>54%, particle size 2~5mm; the mass percentage of MgO in the dolomite>20%, the mass percentage of CaO>30%, particle size 2~5mm; Medium CaF 2 The mass percentage of bauxite is more than 90%,...
Embodiment 2
[0044] A new slag system that simultaneously controls the hydrogen-oxygen content of electroslag ingots in this embodiment, the composition and weight percentage of the slag system are: CaF 2 : 45%, CaO: 20%, Al 2 o 3 : 5%, MgO: 10%, Ce 2 o 3 : 14%, La 2 o 3 : 6%. The steps of its preparation method are specifically:
[0045] Step 1. According to the requirements of preparing slag components and weight percentage, the slag material is configured in proportion and mixed evenly. The slag material is limestone, dolomite, fluorite, bauxite, cerium oxide powder and lanthanum oxide powder. In this embodiment The slag composition and weight percentage are: CaF 2 : 45%, CaO: 20%, Al 2 o 3 : 5%, MgO: 10%, Ce 2 o 3 : 14%, La 2 o 3 : 6%; Wherein: the mass percent of CaO in the limestone>54%, particle size 2~5mm; the mass percent of MgO in the dolomite>20%, the mass percent of CaO>30%, particle size 2~5mm; Medium CaF 2 The mass percentage of bauxite is more than 90%, and th...
Embodiment 3
[0050] A new slag system that simultaneously controls the hydrogen-oxygen content of electroslag ingots in this embodiment, the composition and weight percentage of the slag system are: CaF 2 : 47%, CaO: 18%, Al 2 o 3 : 4%, MgO: 12%, Ce 2 o 3 : 14%, La 2 o 3 : 5%. The steps of its preparation method are specifically:
[0051] Step 1. According to the requirements of preparing slag components and weight percentage, the slag material is configured in proportion and mixed evenly. The slag material is limestone, dolomite, fluorite, bauxite, cerium oxide powder and lanthanum oxide powder. In this embodiment The slag composition and weight percentage are: CaF 2 : 47%, CaO: 18%, Al 2 o 3 : 4%, MgO: 12%, Ce 2 o 3 : 14%, La 2 o 3 : 5%; Wherein: the mass percentage of CaO in the limestone>54%, particle size 2~5mm; the mass percentage of MgO in the dolomite>20%, the mass percentage of CaO>30%, particle size 2~5mm; Medium CaF 2 The mass percentage of bauxite is more than 90...
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