Academic literature on the topic 'Кераміка пориста'
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Journal articles on the topic "Кераміка пориста"
Bilousov, O. Ur, V. A. Sviderskyy, and L. P. Chernyak. "Porous ceramics on the basis of granite screenings." Science and Education a New Dimension VIII(233), no. 28 (July 25, 2020): 61–63. http://dx.doi.org/10.31174/send-nt2020-233viii28-14.
Full textЩербаков, И. П., А. Г. Кадомцев, and А. Е. Чмель. "Временной паттерн накопления микротрещин при ударном повреждении пористой керамики SiC." Письма в журнал технической физики 48, no. 11 (2022): 45. http://dx.doi.org/10.21883/pjtf.2022.11.52614.19140.
Full textЛебедев, А. С., В. Н. Анфилогов, and И. А. Блинов. "Пористая керамика на основе карбида кремния." Доклады Академии наук 468, no. 3 (2016): 285–87. http://dx.doi.org/10.7868/s0869565216150135.
Full textNedbailo, O. M., and O. G. Chernyshyn. "Використання в будівництві теплоефективної порожнотілої кераміки та пористих бетонів." Кераміка: наука і життя, no. 1(38) (April 24, 2018): 6–13. http://dx.doi.org/10.26909/csl.1.2018.1.
Full textБелоусов, Олег, Валентин Свидерский, Лев Черняк, and Олег Шнирук. "РАЗНОВИДНОСТИ ШАМОТА КАК ФАКТОР ВЛИЯНИЯ НА СТРУКТУРУ И СВОЙСТВА ПОРИСТОЙ КЕРАМИКИ." Будівельні матеріали та вироби, no. 1-2(101) (April 24, 2019): 40–42. http://dx.doi.org/10.48076/2413-9890.2020-101-07.
Full textGURIEVA, V. A., A. V. DOROSHIN, K. M. VDOVIN, and Yu E. ANDREEVA. "Porous Ceramics on the Basis of Low-Melting Clays and Slurries." Stroitel'nye Materialy 747, no. 4 (2017): 32–36. http://dx.doi.org/10.31659/0585-430x-2017-747-4-32-36.
Full textYarotskaya, Evgeniya G., and Pavel P. Fedorov. "БОРАТ АЛЮМИНИЯ И МЕТОДЫ ЕГО СИНТЕЗА ОБЗОР." Конденсированные среды и межфазные границы 20, no. 3 (September 11, 2018): 348–53. http://dx.doi.org/10.17308/kcmf.2018.20/571.
Full textСкворцов, А. А., М. Н. Лукьянов, И. Е. Чебенева, and А. А. Скворцова. "Структура и механические свойства пористой диатомитовой керамики после деформации сжатием." Письма в журнал технической физики 47, no. 4 (2021): 11. http://dx.doi.org/10.21883/pjtf.2021.04.50637.18395.
Full textBabashov, V. G., N. M. Varrik, and T. A. Karaseva. "POROUS CERAMIC FOR FILTRATION OF METAL MELTS AND HOT GASES (rеview)." Proceedings of VIAM, no. 8 (2020): 54–63. http://dx.doi.org/10.18577/2307-6046-2020-0-8-54-63.
Full textКовалько, Н. Ю., М. А. Пономарева, Т. В. Хамова, А. С. Долгин, М. В. Калинина, and О. А. Шилова. "Получение и исследование пористой керамики на основе диоксида циркония для эндопротезирования." Физика и химия стекла 46, no. 6 (2020): 667–72. http://dx.doi.org/10.31857/s0132665120030087.
Full textDissertations / Theses on the topic "Кераміка пориста"
Білоусов, Олег Юрійович. "Фільтрувальні композити на основі пороутворюючих матеріалів різного генезису." Thesis, КПІ ім. Ігоря Сікорського, 2021. https://ela.kpi.ua/handle/123456789/40818.
Full textThe thesis is devoted to the development of scientific bases of chemical technology of production of porous ceramic filter materials under conditions of expansion of raw material base, increase of operational reliability and competitiveness. Comprehensive solution of issues of industrial development, life support and environmental protection has necessitated the implementation of filtration and purification of air, gases and liquids using porous materials. At the same time, attention is paid to expanding the range of such materials, increasing the performance and operational reliability. Elements of porous ceramics, which were produced in Ukraine at the Slavyansky ceramic plant, became practically widespread in filtration and purification systems. However, the constant expansion of applications and technical requirements for porous ceramics requires further modernization of their technology based on the deepening of scientific ideas about the criteria for selecting raw materials, their physical and chemical properties and features of the structure of products. Known developments in the technology of porous ceramics are mainly based on the use of highly concentrated dispersed systems based on resource-intensive ceramic fireclay, made by high-temperature firing of refractory clays. The analysis of the filler as a factor influencing the formation of the structure and properties of the products is reduced to the variation of its particle size distribution. In most known developments, the structural characteristics of filter ceramics are limited by indicators of total or open porosity. The cleaning efficiency is associated with a decrease in pore diameter while reducing productivity. Further development of competitive national production, increasing the range and directions of use of porous ceramics are inextricably linked with the expansion of raw materials, development of new mass compositions, improvement of technological processes and equipment, absorption of scientific ideas about the connection composition - structure - properties in highly concentrated dispersed silicate systems. The aim of this work is to develop scientific and technical principles of national production of competitive porous ceramics waiting for cleaning, irrigation and aeration systems by expanding the raw material base, establishing patterns of formation of the pore structure of filter ceramics based on fillers of different genesis. A set of physicochemical and instrumental methods of analysis and standardized testing were used for research. Lyophilicity and wettability by polar and nonpolar liquid were evaluated by the improved technique of B.V. Deryagin. The structure and phase composition were determined using X-ray phase, electron microscopic and infrared methods of physicochemical analysis. Processing of experimental results was carried out using the methods of mathematical statistics. The composition, structure and surface properties of varieties of raw materials of artificial (ceramic fireclay) and natural (magmatic rocks) origin as the main raw material – fillers and man-made cutting additives for the manufacture of porous filter composites for multifunctional purposes have been studied. New rational compositions of porous ceramics based on raw materials of different genesis with differentiation of varieties and quantitative ratio of components, porous man-made additives and the degree of heat treatment have been created. Technological principles of application of initial materials of different genesis for production of elements of ceramics as filter composites taking into account an energy condition and lyophilicity of a surface of pore structure are developed. The design has been improved and the industrial production of porous ceramic elements for technical systems of aeration and water purification and soil irrigation has been made.
Conference papers on the topic "Кераміка пориста"
Ткаченко, С. С., В. О. Емельянов, and К. В. Мартынов. "Пористое кварцевое стекло, как связующее в литейной керамике." In Наука России: Цели и задачи. НИЦ "LJournal", 2021. http://dx.doi.org/10.18411/sr-10-08-2021-19.
Full text"ОСОБЕННОСТИ ДЕФОРМАЦИОННОГО ПОВЕДЕНИЯ ПОРИСТЫХ КЕРАМИК НА ОСНОВЕ ДИОКСИДА ЦИРКОНИЯ." In Физическая мезомеханика. Материалы с многоуровневой иерархически организованной структурой и интеллектуальные производственные технологии. Издательство ТГУ, 2021. http://dx.doi.org/10.17223/978-5-907442-03-0-2021-004.
Full text"ТРАНСФОРМАЦИОННОЕ ПРЕВРАЩЕНИЕ В ПОРИСТОЙ КЕРАМИКЕ НА ОСНОВЕ ДИОКСИДА ЦИРКОНИЯ ПРИ ОСЕВОМ СЖАТИИ." In Физическая мезомеханика. Материалы с многоуровневой иерархически организованной структурой и интеллектуальные производственные технологии. Издательство ТГУ, 2021. http://dx.doi.org/10.17223/978-5-907442-03-0-2021-175.
Full text"ЧИСЛЕННОЕ МОДЕЛИРОВАНИЕ ДЕФОРМАЦИИ И РАЗРУШЕНИЯ ПОРИСТЫХ ГЕТЕРОМОДУЛЬНЫХ КЕРАМИК НА ОСНОВЕ КАРБИДА ЦИРКОНИЯ ПРИ ОДНООСНОМ СЖАТИИ." In Физическая мезомеханика. Материалы с многоуровневой иерархически организованной структурой и интеллектуальные производственные технологии. Издательство ТГУ, 2021. http://dx.doi.org/10.17223/978-5-907442-03-0-2021-292.
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