Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 14. Composition and Some Properties of Composite Composition Ceramic Concretes in the System Al2O3–SiO2–SiC–C1
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Ceramics and Composites
Link
http://link.springer.com/article/10.1007/s11148-018-0184-6/fulltext.html
Reference26 articles.
1. Yu. E. Pivinskii, D. A. Dobrodon, I. V. Galenco, et al., “Materials based on highly concentrated ceramic binding suspensions (HCBS). Comparative evaluation of the properties and in–service durability of pocket blocks of intermediate layers,” Refract. Indust. Ceram., 38(9), 365 – 368 (1997).
2. Yu. E. Pivinskii, D. A. Dobrodon, E. V. Rozhkov, et al., “Materials based on high-density ceramic binding suspensions. Pressing of refractories using bauxite-based high-density ceramic binding suspensions,” Refract. Indust. Ceram., 38(3), 106 – 110 (1997).
3. Yu. E. Pivinskii, D. A. Dobrodon, E. V. Rozhkov, et al., “Materials based on highly concentrated ceramic binding suspensions (HCBS). Evaluation of methods for molding bauxite ceramic concretes,” Refract. Indust. Ceram., 38(5), 180 – 183 (1997).
4. Yu. E. Pivinskii and D. A. Dobrodon, “Preparation and properties of high-alumina binder suspensions in the bauxite – quartz glass system,” Novye Ogneupory, No. 5, 19 – 26 (2002).
5. Yu. E. Pivinskii and V. Yu. Belousova, “Materials based on highly concentrated ceramic binding suspensions (HCBS). Corundum – mullite ceramic castables based on plasticized HCBS of bauxite,” Refract. Indust. Ceram., 40(9/10), 391 – 395 (1999).
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