Improved slag corrosion resistance of MgO–C refractories with calcium magnesium aluminate aggregate and silicon carbide: Corrosion behavior and thermodynamic simulation
Author:
Funder
Natural Science Foundation of Hubei Province
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Materials Chemistry,Ceramics and Composites
Reference49 articles.
1. Comparison study of slag corrosion resistance of MgO–MgAl2O4, MgO–CaO and MgO–C refractories under electromagnetic field;Ren;J. Iron Steel Res. Int.,2021
2. Mechanical behavior and thermal shock resistance of MgO–C refractories: influence of graphite content;Zhu;Ceram. Int.,2017
3. Fabrication of CaO–MgO–Al2O3 materials from metallurgical waste industrial residue and their potential usage in MgO–C refractories;Fu;Ceram. Int.,2020
4. Microstructure and properties of MgO–C refractory with different carbon contents;Cheng;Ceram. Int.,2021
5. Improved thermal shock resistance of MgO–C refractories with addition of calcium magnesium aluminate (CMA) aggregates;Chen;Ceram. Int.,2022
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3. Oxidation Behavior of MgO‐C Refractories Containing Metallic Aluminum, Calcium Magnesium Aluminate Aggregates, and Carbores P;steel research international;2024-08-04
4. Significant improvement of oxidation resistance and slag penetration resistance of MgO-SiC-C refractories with Si3N4-Fe addition;Ceramics International;2024-08
5. Postmortem analysis of MgO–C bricks used in smelting furnace for fabricating TiC-bearing slag;Journal of Materials Research and Technology;2024-07
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