Добірка наукової літератури з теми "Periclase-carbon refractories"
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Статті в журналах з теми "Periclase-carbon refractories"
Konevskikh, L. A., O. G. Omel’chenko, O. G. Drugova, A. N. Varaksin, and T. Yu Obukhova. "Pulmonary ventilation and gases exchange disorders in workers engaged into refractory materials production." Occupational Health and Industrial Ecology, no. 2 (March 14, 2019): 74–79. http://dx.doi.org/10.31089/1026-9428-2019-2-74-79.
Повний текст джерелаShchekina, T. I., A. M. Batanova, E. N. Gramenitskiy, and B. N. Grigoriev,. "Experimental study of stability chromite-periclase and periclase-carbon refractories." Vestnik Otdelenia nauk o Zemle RAN 3, Special Issue (June 17, 2011): 1–7. http://dx.doi.org/10.2205/2011nz000232.
Повний текст джерелаKashcheev, I. D., K. G. Zemlyanoi, S. A. Pomortsev, A. G. Valuev, and Yu A. Borisova. "Reinforcement of Periclase-Carbon Refractories with Carbon Fibers1." Refractories and Industrial Ceramics 57, no. 3 (September 2016): 288–91. http://dx.doi.org/10.1007/s11148-016-9970-1.
Повний текст джерелаKhoroshavin, L. B., V. A. Perepelitsyn, T. I. Boriskova, L. V. Ivashchenko, L. B. Romanovskii, N. F. Kravtsov, A. F. Kravchenkov, K. G. Kurteev, and E. G. Krekker. "Periclase-carbon parts with a graphite kish (periclase-carbon refractories for steel melting production)." Refractories 29, no. 9-10 (September 1988): 632–37. http://dx.doi.org/10.1007/bf01287801.
Повний текст джерелаAntonov, G. I. "Unfired periclase-carbon refractories on a phenol binder." Refractories and Industrial Ceramics 39, no. 9-10 (September 1998): 329–33. http://dx.doi.org/10.1007/bf02770595.
Повний текст джерелаKashcheev, I. D., K. G. Zemlyanoi, A. V. Chevychelov, A. G. Valuev, and S. A. Pomortsev. "Periclase-Carbon Refractories Molded by a New Method1." Refractories and Industrial Ceramics 58, no. 2 (July 2017): 145–47. http://dx.doi.org/10.1007/s11148-017-0072-5.
Повний текст джерелаRodgol'ts, Yu S., I. Ya Prokhorova, O. N. Semenova, V. I. N�shcheret, A. F. Kharichev, and N. N. Skripnik. "Periclase-lime refractories with increased concentration of carbon." Refractories 29, no. 11-12 (November 1988): 663–67. http://dx.doi.org/10.1007/bf01280331.
Повний текст джерелаKashcheev, I. D., V. I. Sizov, and O. A. Panin. "Properties of periclase-carbon refractories containing metal powders." Refractories 30, no. 7-8 (July 1989): 468–70. http://dx.doi.org/10.1007/bf01280680.
Повний текст джерелаBosyakova, N. A., S. A. Pomortsev, R. G. Gizatullin, Yu L. Klyosov, S. V. Laptov, I. D. Kashcheev, and K. G. Zemlyanoy. "Alumina-periclase-carbon refractories production of «Ogneupor» LCC." NOVYE OGNEUPORY (NEW REFRACTORIES) 1, no. 7 (November 25, 2021): 10–13. http://dx.doi.org/10.17073/1683-4518-2021-7-10-13.
Повний текст джерелаBosyakova, N. A., S. A. Pomortsev, R. G. Gizatullin, Yu L. Klyosov, S. V. Laptov, I. D. Kashcheev, and K. G. Zemlyanoi. "Alumina-Periclase-Carbon Refractories Produced by OOO Ogneupor." Refractories and Industrial Ceramics 62, no. 4 (November 2021): 381–83. http://dx.doi.org/10.1007/s11148-021-00612-6.
Повний текст джерелаДисертації з теми "Periclase-carbon refractories"
Повшук, Василь Володимирович. "Нанозміцнені периклазовуглецеві вогнетриви для футерівки конвертерів з використанням комплексного антиоксиданту". Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/37726.
Повний текст джерелаThesis for the degree of candidate of technical sciences (Ph.D.) in specialty 05.17.11 – technology of refractory nonmetallic materials (161 – chemical technologies and engineering). – National Technical University "Kharkov Polytechnic Institute", Kharkov, 2018. The thesis is devoted to the development of compositions and basic techno-logical parameters for the preparation of nano-reinforced periclase-carbon refractories for various zones of converter lining with prescribed parameters of physical and mechanical properties and increased resistance to slag and oxidation. The possibility of obtaining nano-reinforced periclase-carbon refractories by synthesis of the carbon-matrix matrix of a given structure of periclase-carbon refractories filled with nanoparticles β-SiC and NiO and ensuring its maximum structural strength due to the use of optimum sol-gel admixtures for modifying the phenol-formaldehyde resin is theoretically substantiated and experimentally proved pre-cursor components of a nickel antioxidant. The technological parameters for the production of periclase-carbon refractories with specified physic-mechanical properties based on fused periclase with different amounts of graphite were determined using ETS-40 or its sol and nickel salts to create a complex antioxidant Al + SiC + Ni(NiO), which provides enhanced resistance to oxidation due to the formation of a dense layer of β-SiC and Ni(NiO) nanoparticles around graphite particles, a non-combustion technology and magnesia flux formulations for melting steel in a converter from waste periclase-carbon refractories lining of converters that accelerate guidance in the converter slag and improve the sustainability of the converter lining.
Повшук, Василь Володимирович. "Нанозміцнені периклазовуглецеві вогнетриви для футерівки конвертерів з використанням комплексного антиоксиданту". Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/37701.
Повний текст джерелаThesis for the degree of candidate of technical sciences (Ph.D.) in specialty 05.17.11 – technology of refractory nonmetallic materials (161 – chemical technologies and engineering). – National Technical University "Kharkov Polytechnic Institute", Kharkov, 2018. The thesis is devoted to the development of compositions and basic techno-logical parameters for the preparation of nano-reinforced periclase-carbon refractories for various zones of converter lining with prescribed parameters of physical and mechanical properties and increased resistance to slag and oxidation. The possibility of obtaining nano-reinforced periclase-carbon refractories by synthesis of the carbon-matrix matrix of a given structure of periclase-carbon refractories filled with nanoparticles β-SiC and NiO and ensuring its maximum structural strength due to the use of optimum sol-gel admixtures for modifying the phenol-formaldehyde resin is theoretically substantiated and experimentally proved pre-cursor components of a nickel antioxidant. The technological parameters for the production of periclase-carbon refractories with specified physic-mechanical properties based on fused periclase with different amounts of graphite were determined using ETS-40 or its sol and nickel salts to create a complex antioxidant Al + SiC + Ni(NiO), which provides enhanced resistance to oxidation due to the formation of a dense layer of β-SiC and Ni(NiO) nanoparticles around graphite particles, a non-combustion technology and magnesia flux formulations for melting steel in a converter from waste periclase-carbon refractories lining of converters that accelerate guidance in the converter slag and improve the sustainability of the converter lining.
Частини книг з теми "Periclase-carbon refractories"
Emlemdi, H., and J. R. Blachere. "Influence of Carbon on the Microstructure of Periclase Refractories." In Application of Refractories: Ceramic Engineering and Science Proceedings, Volume 9, Issue 1/2, 11–20. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2008. http://dx.doi.org/10.1002/9780470310465.ch2.
Повний текст джерела