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Influence of Various Factors on the Properties of Refractory Concrete
Timofeeva A.S., Nikitchenko T.V., Shishkin V.D.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 2. Properties of Starting Components and Castings Based on Composite Composition HCBS. Study of the Initial Stage of Sintering and Mullitization1
Pivinskii Y.E., Dyakin P.V.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 7. Sintering and Secondary Mullite Formation of Materials Based on Composite Composition HCBS During Nonisothermal Heating and Isothermal Firing1
Pivinskii Y.E., Dyakin P.V.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 13. Effect of Firing Temperature on Phase Composition, Structure, and Some Properties of Materials Based on Composite Composition HCBS (Bauxite, Electrocorundum, Quartz Glass)1
Pivinskii Y.E., Perepelitsyn V.A., Dyakin P.V., Kolobov A.Y., Prokhorenkov D.S.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 5. Effect of Firing Temperature on Properties of Materials Prepared From Composite HCBS With Addition of Refractory Clay1
Pivinskii Y.E., Dyakin P.V., Ostryakov L.V.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 4. Effect of Refractory Clay Additions on Properties of Compound Composition HCBS, Castings, and Materials Based on Them
Pivinskii Y.E., Dyakin P.V.
Mullite-Corundum Materials Based on Mullite Binder Resistant to High-Temperature Deformation
Pletnev P.M., Pogrebenkov V.M., Vereshchagin V.I., Tyul’kin D.S.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 3. Effect of Firing Temperature on Sintering and Mullitization of Materials Prepared on the Basis of Composite Composition HCBS1
Pivinskii Y.E., Dyakin P.V., Ostryakov L.V.
Possibility of Preparing Aluminosilicate Fillers Based on Kaolin and Technogenic Materials
Kashcheev I.D., Zemlyanoi K.G., Stepanova K.O.
Mullite–TiC–c-BN–c-ZrO2 materials Produced by Spark-Plasma Sintering and Their Properties
Hmelov A.V.
Highly Porous Permeable Cellular Ceramic Based on Silicon Carbide with Added Mullite
Belyakov A.V., Oo Z.Y., Popova N.A., Kornilov R.A.
Synthesis and Properties of Mullite–Sialon–ZrB2Materials Produced Using a Spark-Plasma Technique
Hmelov A.V.
Ceramic Proppants Based on Kazakhstan Natural Alumosilicate Resources
Biryukova A.A., Dzhienalyev T.D., Tikhonova T.A.
Sintering of Ceramic Materials Based on Bauxitized Clay of the North-Onezh Deposit. Part 2. Effect of Sintering Additions
Kashcheev I.D., Zemlyanoi K.G., Pavlova I.A.
Dense Mulliteceramic Sintered by SPS and Its Behavior Under Thermal Shock
Wang P., Luo X., Wei S., Xie Z., Sun J.
Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 6. Mullitization and Thermal Expansion of Materials Based on Compound Composition HCBS1
Pivinskii Y.E., Dyakin P.V., Kolobov A.Y.
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