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 in | Refractories and industrial ceramics Vol. 53; no. 1; pp. 40 - 45 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Boston
Springer US
01.05.2012
Springer Springer Nature B.V |
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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. |
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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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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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References | AbdrakhimovaESPhysicotechnical studies of pyrophyllite of the Nikolsk depositRefr. Ind. Ceram.20105116810.1007/s11148-010-9244-21:CAS:528:DC%2BC3cXot1amtro%3D 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. E. S. Abdrakhimova and V. Z. Abdrakhimov, “Study of acid-resistant material firing,” Ogneupory Tekhn. Keram., No. 1, 40 – 44 (2005). AbdrakhimovaESAbdrakhimovVZProcesses that occur during firing of the argillaceous part of zircon-ilmenite gravitation tailingsRefr. Ind. Ceram.200950210110610.1007/s11148-009-9159-y1:CAS:528:DC%2BD1MXpt1Wiu78%3D AbdrakhimovaESEffect of pyrophyllite on the physicochemical properties and acid resistance of acid-proof materialsRefr. Ind. Ceram.200950317417710.1007/s11148-009-9177-91:CAS:528:DC%2BD1MXhsFOrtb%2FP AbdrakhimovVZAbdrakhimovaESChemical Technology of Ceramic Brick Using Technogenic Raw Material: Teaching Aid (Recommended by the Teaching Union of RF Higher Education in the Field of Construction as a Teaching Aid for Students Learning in Area 6535000 “Construction”) [in Russian]2007SamaraSamara State Arch.-Building Univ. E. S. Abdrakhimova and V. Z. Abdrakhimov, “Study of processes occurring during firing of acid-resistant materials,” Materialovedenie, No. 5, 41 – 44 (2006). AbdrakhimovVZKhlystovAISemenychevVKUse of technogenic formations in the production of unfired refractory compositesRefr. Ind. Ceram.201051321221810.1007/s11148-010-9292-71:CAS:528:DC%2BC3cXhsVags73O AbdrakhimovVZEcological and practical aspects of use of high-alumina petrochemical wastes in production of acid-resistant materialsRefr. Ind. Ceram.2010511525510.1007/s11148-010-9254-01:CAS:528:DC%2BC3cXot1amt74%3D AbdrakhimovVZKovkovIVAbdrakhimovaESDenisovDYExperimental study of physicochemical processes during firing of composite ceramic materialsKhim. Khim. Tekhnol.20075095861 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). V. Z. Abdrakhimov and V. K. Semenychev, “Effect of high-alumina petrochemical waste on the structure of porous acid-resistant materials,” Novye Ogneupory, No. 9, 45 – 48 (2010). SaibulatovSZSuleimenovSTRalkoAVAsh-Ceramic Wall Materials [in Russian]1982AlmataNauka ES Abdrakhimova (9458_CR4) 2009; 50 ES Abdrakhimova (9458_CR5) 2009; 50 VZ Abdrakhimov (9458_CR14) 2005 VZ Abdrakhimov (9458_CR6) 2010; 51 ES Abdrakhimova (9458_CR9) 2010; 51 SZ Saibulatov (9458_CR10) 1982 9458_CR1 VZ Abdrakhimov (9458_CR12) 2007 9458_CR3 VZ Abdrakhimov (9458_CR8) 2010; 51 9458_CR2 VZ Abdrakhimov (9458_CR11) 2007; 50 9458_CR7 9458_CR13 |
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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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