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Abdrakhimova, “Effect of ash light fraction content on refractory material pore structure formation from the argillaceous part of gravitation tailings,
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(2001)
Abdrakhimova, “Pore structure during brick firing,
(1997)
Study of water penetration and cracking of acid resistant material structure prepared using product waste
(1988)
Effect of ash light fraction content on refractory material pore structure formation from the argillaceous part of gravitation tailings
(1954)
Effect of Transfer in Capillary-Porous Bodies [in Russian], Gosernergoizdat
(2001)
Pore structure during brick firing
(1988)
Abdrakhimova, “Study of the structure of porosity and density during firing the argillaceous part of zircon-ilmenite enrichment tailings,
(2001)
Abdrakhimov, “Study of water penetration and cracking of acid resistant material structure prepared using product waste,
(2004)
Abdrakhimova, “Effect of some nonferrous metallurgy waste products on brick physical and mechanical properties,
AV Lykov (1956)
Heat- and Mass-Transfer During Drying [in Russian]
E. Abdrakhimova, V. Abdrakhimov (2011)
Physicochemical methods for studying the mineral composition and pore structure for the argillaceous part zircon-ilmenite ore gravitation tailingsRefractories and Industrial Ceramics, 52
(1957)
Heat and Mass Transfer in Capillary-Porous Bodies [in Russian], Gosernergoizdat
(2001)
Abdrakhimova, “Correlation of pore capillary structure and brick frost resistance,
(1997)
Abdrakhimov, “Effect of feldspar concentrate on ceramic plate phase transformations,
(2001)
Study oft eh pore structure of ceramic materials based on Nonferrous metallurgy waste
ES Abdrakhimova, VZ Abdrakhimov (2003)
Physicochemical Processes During Acid-Resistant material Firing [in Russian]
(2001)
Formation of ceramic material pre structure from argillaceous part of zircon ilmenite gravitation tailings
(1999)
Argillaceosu part of zircon - ilmenite gravitation tailings – raw material for ceramic material production
AV Lykov (1959)
Theory of Substance Energy Transfer [in Russian]
(2000)
Kinetics of change in pore structure during firing acid - resistant materials
E. Abdrakhimova (2010)
Physicochemical studies of pyrophyllite of the Nikol’sk depositRefractories and Industrial Ceramics, 51
(2003)
Mosituree xopansion of ceramic plates based on enrichment waste
(2010)
Effect of pyro - phyllite on structure , porosity , and physicomechanical properties of acid - resistant materials
(1988)
Abdrakhimov, “Mosituree xopansion of ceramic plates based on enrichment waste,
(2004)
Effect of some nonferrous metallurgy waste products on brick physical and mechanical properties
(1989)
Study of the structure of porosity during acid - resistant material firing
(1999)
Structure of acid - resistant material plate porosity
E. Abdrakhimova, V. Abdrakhimov (2009)
Processes that occur during firing of the argillaceous part of zircon-ilmenite ore gravitation tailingsRefractories and Industrial Ceramics, 50
Study of tile pore structure made from nonferrous metallurgy technogenic raw material
(1956)
Heat- and Mass-Transfer During Drying [in Russian], Gosernergoizdat
(2003)
Abdrakhimov, “Effect of pyrophyllite on structure, porosity, and physicomechanical properties of acid-resistant materials,
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Crystal X-Radiography [Russian translation
Use of nonferrous metallurgy waste in acid - resistant material production
(2000)
Change in pore structure during front resistance tests of ceramic materials from production waste
(1985)
Egerev, “Change in porous structure of facia plates during frost resistance tests,
A. Lykov (1966)
On systems of differential equations for heat and mass transfer in capillary porous bodiesJournal of engineering physics, 26
(2001)
Correlation of pore capillary structure and brick frost resistance
Change in porous structure of facia plates during frost resistance tests
(2000)
Abdrakhimov, “Structure of acid-resistant material plate porosity,
AV Lykov (1954)
Effect of Transfer in Capillary-Porous Bodies [in Russian]
(2000)
Abdrakhimov, “Change in pore structure during front resistance tests of ceramic materials from production waste,
(1999)
Abdrakhimov, “Study of the structure of porosity during acid-resistant material firing,
(2004)
Abdrakhimov, Use of nonferrous metallurgy waste in acid-resistant material production,
(1989)
Cherdobaeva, “Formation of ceramic material pre structure from argillaceous part of zircon ilmenite gravitation tailings,
(2005)
Abdrakhimova, “Study of tile pore structure made from nonferrous metallurgy technogenic raw material,
(1988)
Effect of feldspar concentrate on ceramic plate phase transformations
(1998)
Features of pore structure formation in in ceramic materials based on nonferrous metallurgy waste
AS Berkman, IT Mel’nikova (1962)
Wall Material Structure and Frost Resistance [in Russian]
(2004)
Study of the structure of porosity and density during firing the argillaceous part of zircon - ilmenite enrichment tailings
AV Lykov (1957)
Heat and Mass Transfer in Capillary-Porous Bodies [in Russian]
(1959)
Theory of Substance Energy Transfer [in Russian], AN BSSR
(2001)
Cherdobaev, “Study oft eh pore structure of ceramic materials based on Nonferrous metallurgy waste,
(2000)
Abdrakhimov, “Kinetics of change in pore structure during firing acid-resistant materials,
A dependence is established for acid-resistant material pore structure on firing temperature and gas parameters. It is expedient to fire acid-resistant materials up to 1100°C in an oxidizing atmosphere, and at 1100 – 1200°C in a reducing atmosphere. With this regime firing provides an improvement for acid-resistant material pore structure.
Refractories and Industrial Ceramics – Springer Journals
Published: Jun 2, 2016
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