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    Article

    Aluminosilicate checker products for blast furnace regenerators

    I. F. Usatikov, N. V. Pitak, E. A. Gin'yar, M. E. Drizheruk in Refractories (1973)

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    Article

    Press for double pressing of dense refractories

    I. M. Aleksyuk, N. V. Pitak, E. A. Gin'yar, R. S. Shulyak, I. F. Usatikov in Refractories (1973)

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    Article

    Damage to stoves and measures to eliminate it

    As a result of investigations into newly developed refractories and a study of their service conditions in the stoves of blast furnaces, three basic types of failure in the structure and the checkers were dete...

    N. V. Pitak, E. A. Gin'yar, I. F. Usatikov in Refractories (1972)

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    Article

    Physicochemical and thermodynamic properties of aluminosilicate products for the blast heaters of blast furnaces

    The physicochemical and thermomechanical properties of the following commercial aluminosilicate refractories have been studied: fireclay classes A and B, kaolin, and high-alumina (50 and 62% Al2O3). The deformati...

    E. A. Gin'yar, R. S. Mal'chenko, N. V. Pitak, K. A. Mikhailova in Refractories (1969)

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    Article

    Production of dense refractories for blast furnace shafts

    The Zaporozhe Refractories Plant with the help of the Ukraine Refractories Research Institute has produced a batch (1100 tons) of kaolin brick with a porosity of not more than 12% for a 2700 m3 blast furnace at t...

    V. A. Sazhin, M. I. Kolesnik, I. P. Davydov, I. E. Dudavskii in Refractories (1968)

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    Article

    Service of refractories in a blast furnace shaft

    The destruction of the refractory structure of a blast furnace depends on the properties of the refractory, the system of cooling the lining, the furnace operating cycle, the action of alkalis, primary slags, ...

    N. V. Pitak, E. A. Gin'yar, V. I. Levitanskii, G. Ya. Rutkovskii in Refractories (1968)

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    Article

    Dense refractories based on Novoselits kaolin for the shafts of blast furnaces

    At the Zaporozhe Refractories Plant they developed the production of dense kaolin refractories (porosity less than 12%) for the shafts of blast furnaces. Mass production of such products is favorable, and shou...

    S. A. Zhikharevich, E. A. Gin'yar, L. A. Kozyreva, R. S. Mal'chenko in Refractories (1966)

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    Article

    Some features of the behavior of kirovograd clay during firing

    The temperature interval for bloating of alumino-silicate refractories during the firing process depends on the nature of the original raw materials and the firing cycle. The rate of rise in temperature affect...

    S. A. Zhikharevich, E. A. Gin'yar in Refractories (1966)

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    Article

    Refractories from kaolinitic materials and high-alumina bond

    In the department making high-alumina products at the Zaporozh'e Refractories factory they have manufactured an experimental-industrial batch of refractories with high thermal properties for building high-temp...

    S. A. Zhikharevich, E. A. Gin'yar, L. A. Kozyreva, R. S. Mal'chenko in Refractories (1966)

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    Article

    Technology for refractories with a high-alumina bond

    We developed a method of introducing commercial alumina into the bonding part of the batch with combined fine grinding of the components in a tubemill for increasing the reaction capacity of the components of ...

    S. A. Zhikharevich, E. A. Gin'yar, L. A. Kozyreva, R. S. Mal'chenko in Refractories (1966)