E. A. Sherman
Union Institute & University
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Featured researches published by E. A. Sherman.
Refractories and Industrial Ceramics | 1982
A. E. Zhukovskaya; A. A. Kortel; E. A. Sherman; E. A. Prokof'eva; T. P. Korableva
ConclusionsWe studied corundum refractories, modified with additions of Mg, Cr, and Zr oxides and silicon-containing substances designed for making the tiles of gate valves, on the wettability of steel 45 at 1550°C.It was established that within the limits studied the incorporation of oxides of Zr, Cr; mixtures of Cr, Mg and Zr oxides; and also silicon-containing additives, increases the wetting angle of corundum refractories.The low wettability of these refractories by steel to a significant degree determines the high metal resistance in service of the gate-valve tiles made on their basis.
Refractories and Industrial Ceramics | 1980
E. A. Sherman; A. A. Kortel; A. E. Zhukovskaya; Yu. R. Nechaev; Yu. I. Azbel; A. E. Shubina
ConclusionsProcessing of corundum chamotte on a PBSTs-63/100 separator ensures qualitative deironing of the material and permits a decrease in the mass fraction of iron oxides to 0.2%, regardless of their content in the initial chamotte.
Refractories and Industrial Ceramics | 1986
A. E. Zhukovskaya; A. A. Kortel; F. S. Kaplan; E. A. Sherman
Influence des oxydes de Mg, Ti et Cr et de leurs melanges sur la structure du corindon fritte
Refractories and Industrial Ceramics | 1984
A. E. Zhukovskaya; A. A. Kortel; E. A. Sherman; V. A. Krotikov; N. P. Kharitonov
ConclusionsWe developed a method for obtaining silicone bonds for refractory materials based on nonhydrolyzed ethyl silicate, silicone resins, and organic adhesive component.Using corundum and periclase refractories as examples we demonstrated that use of the new bonds contributes to a significant strengthening of the materials in the range 20–900°C, and they are therefore prospective for preparing unfired refractories. The use of bond ensures densification and strengthening of corundum refractories, while simultaneously reducing the shrinkage, and leads to an increase in the stabilization of the high-temperature strength of the articles and a reduction in their wettability by molten steel. It is shown that the new oxide materials may be obtained in the production of tiles for the gate valves of steel-casting ladles.
Refractories and Industrial Ceramics | 1981
A. E. Zhukovskaya; A. A. Kortel; G. M. Kushnirskii; E. A. Sherman
ConclusionsThe authors have measured the creep of certain corundum refractory materials. They have shown that it is determined by the silica content, the annealing temperature of the artifacts, and the microstructure of the latter.
Refractories and Industrial Ceramics | 1980
A. E. Zhukovskaya; A. A. Kortel; E. A. Sherman; V. A. Krotikov; N. P. Kharitonov; G. V. Urleiskaya
ConclusionsUsing alumina refractories as an example, it is shown that the newly developed silicoorganic bonding containing an ethyl silicate base and polymethylphenylsiloxane resin dispersed in it, provides a sufficiently strong crock; a significant increase in the strength of the articles after heat treatment at 350–1000°C; and helps to improve the thermal-block resistance, density and the strength of the refractories and reduces shrinkage on firing.
Refractories and Industrial Ceramics | 1979
A. A. Kortel; L. A. Reinov; A. E. Zhukovskaya; E. A. Sherman; G. E. Karas; V. I. Éntin; A. V. Lakuntsov; G. A. Kopylov; V. F. Nikolaev
ConclusionsSpecial tests have been made on magnesia biceramic and corundum plates in sliding gates of steel teeming ladles. It is found that better teeming of steel from 140-ton ladles into ingot molds is obtained with corundum plates.There is hope of increasing the number of times which the corundum plates can be used.
Refractories and Industrial Ceramics | 1988
A. E. Zhukovskaya; F. S. Kaplan; A. A. Kortel; E. A. Sherman
Refractories and Industrial Ceramics | 1987
A. E. Zhukovskaya; S. V. Kazakov; A. A. Kortel; G. G. Mel'nikova; L. A. Shapurko; E. A. Sherman; G. E. Karas
Refractories and Industrial Ceramics | 1981
G. E. Karas; A. A. Mukhin; M. S. Chirkova; A. E. Zhukovskaya; A. A. Kortel; E. A. Sherman; N. A. Chuprina