Experimental study of physicochemical processes during firing of acid-resistant materials based on traditional natural materials and production wastes

Features are established for the occurrence of thermal processes, making it possible to control them, and use the data obtained in developing ceramic acid-resistant material firing regimes. The least coefficient of effective thermal conductivity of acid-resistant materials lies in a temperature rang...

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Published inRefractories and industrial ceramics Vol. 53; no. 1; pp. 40 - 45
Main Authors Abdrakhimova, E. S., Abdrakhimov, V. Z., Roshchupkina, I. Yu, Myshentseva, Yu. B.
Format Journal Article
LanguageEnglish
Published Boston Springer US 01.05.2012
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Abstract Features are established for the occurrence of thermal processes, making it possible to control them, and use the data obtained in developing ceramic acid-resistant material firing regimes. The least coefficient of effective thermal conductivity of acid-resistant materials lies in a temperature range within which the intensity of physicochemical processes is more marked. These zones correspond to the most complex firing conditions, since the lower thermal conductivity, the slower an object heats up.
AbstractList Features are established for the occurrence of thermal processes, making it possible to control them, and use the data obtained in developing ceramic acid-resistant material firing regimes. The least coefficient of effective thermal conductivity of acid-resistant materials lies in a temperature range within which the intensity of physicochemical processes is more marked. These zones correspond to the most complex firing conditions, since the lower thermal conductivity, the slower an object heats up. Keywords: firing, physicochemical processes, temperature, acid-resistant material, argillaceous part of zircon-ilmenite ore gravitation tailings (ZIG), kaolin, pyrophyllite, high-alumina petrochemical wastes, thermal diffusivity, thermodynamics, differential heating curves.
Features are established for the occurrence of thermal processes, making it possible to control them, and use the data obtained in developing ceramic acid-resistant material firing regimes. The least coefficient of effective thermal conductivity of acid-resistant materials lies in a temperature range within which the intensity of physicochemical processes is more marked. These zones correspond to the most complex firing conditions, since the lower thermal conductivity, the slower an object heats up.
Zircon-ilmenite ore gravitation tailings, kaolin clay, pyrophyllite and high-alumina petrochemical wastes were used to produce acid-resistant materials. Characteristics are established for the occurrence of thermal processes, making it possible to control them, and use the data to develop ceramic acid-resistant material firing regimes. The minimum coefficient of effective thermal conductivity of acid-resistant materials lies in a temperature range within which the intensity of physicochemical processes is more marked. These zones correspond to the most complex firing conditions, since the lower the thermal conductivity, the slower an object heats up.
Features are established for the occurrence of thermal processes, making it possible to control them, and use the data obtained in developing ceramic acid-resistant material firing regimes. The least coefficient of effective thermal conductivity of acid-resistant materials lies in a temperature range within which the intensity of physicochemical processes is more marked. These zones correspond to the most complex firing conditions, since the lower thermal conductivity, the slower an object heats up.[PUBLICATION ABSTRACT]
Audience Academic
Author Abdrakhimova, E. S.
Roshchupkina, I. Yu
Myshentseva, Yu. B.
Abdrakhimov, V. Z.
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Issue 1
Keywords pyrophyllite
differential heating curves
firing
temperature
thermodynamics
kaolin
high-alumina petrochemical wastes
argillaceous part of zircon- ilmenite ore gravitation tailings (ZIG)
thermal diffusivity
acid-resistant material
physicochemical processes
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PublicationTitle Refractories and industrial ceramics
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E. S. Abdrakhimova and V. Z. Abdrakhimov, Physicochemical Processes During Firing of Acid-Resistant Materials [in Russian], Nedra, St. Petersburg (3003).
AbdrakhimovVZBuryeAAAbdrakhimovaESBases of Glass technology [in Russian]2005SamaraSamara State Arch.-Building Univ.
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V. Z. Abdrakhimov and E. S. Abdrakhimova, Physicochemical Processes of Structure Formation in Ceramic Materials Based on Nonferrous and Power Generation Waste [in Russian], Kaz. Gos. Tech. Univ., Ust’-Kamenogorsk (2000).
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SaibulatovSZSuleimenovSTRalkoAVAsh-Ceramic Wall Materials [in Russian]1982AlmataNauka
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Snippet Features are established for the occurrence of thermal processes, making it possible to control them, and use the data obtained in developing ceramic...
Zircon-ilmenite ore gravitation tailings, kaolin clay, pyrophyllite and high-alumina petrochemical wastes were used to produce acid-resistant materials....
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SubjectTerms Aluminum oxide
Ceramics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Clay
Coefficients
Composites
Electric properties
Firing
Glass
Gravitation
Gravity
Heat transfer
Materials Science
Natural Materials
Pyrophyllite
Refractories
Thermal conductivity
Thermal properties
Toy industry
Wastes
Title Experimental study of physicochemical processes during firing of acid-resistant materials based on traditional natural materials and production wastes
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