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Academic literature on the topic 'Оксидні стекла'
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Journal articles on the topic "Оксидні стекла"
Канон, М. Ю., С. В. Столяр, И. Н. Анфимова, И. Г. Полякова, and Л. Ф. Дикая. "ФИЗИКО-ХИМИЧЕСКИЕ СВОЙСТВА СТЕКОЛ СИСТЕМЫ NaO-BO-SiO-FeO В РАЗРЕЗЕ 6NaO/70SiO, "Физика и химия стекла"." ������ � ����� ������, no. 5 (2018): 601–4. http://dx.doi.org/10.7868/s0132665118050190.
Full textКудрявцев, Ю., R. Asomoza-Palacio, and L. Manzanilla-Naim. "Взаимодействие паров воды с поверхностями силикатных стекол: масс-спектрометрическое исследование." Письма в журнал технической физики 43, no. 9 (2017): 75. http://dx.doi.org/10.21883/pjtf.2017.09.44579.16506.
Full textАлъбаева, И. И., С. Г. Власова, and Р. Ф. Хажиахметова. "СВЕТОПРОПУСКАНИЕ СТЕКОЛ, СИНТЕЗИРОВАННЫХ НА ОСНОВЕ КВАРЦЕВЫХ ПЕСКОВ РАЗНЫХ МЕСТОРОЖДЕНИЙ, "Физика и химия стекла"." ������ � ����� ������, no. 4 (2018): 417–22. http://dx.doi.org/10.7868/s0132665118040091.
Full textКоролева, Е. Ю., Д. Ю. Бурдин, Ю. А. Кумзеров, А. А. Сысоева, А. В. Филимонов, and С. Б. Вахрушев. "Диэлектрические свойства магнетосегнетоэлектрического нанокомпозита CoO-NaNO-=SUB=-2-=/SUB=--пористое стекло." Физика твердого тела 59, no. 10 (2017): 2011. http://dx.doi.org/10.21883/ftt.2017.10.44973.098.
Full textБобков, А. А., В. Ф. Бородзюля, И. А. Ламкин, И. И. Михайлов, В. А. Мошников, А. В. Соломонов, and С. А. Тарасов. "ИССЛЕДОВАНИЕ ЯВЛЕНИЙ, ВОЗНИКАЮЩИХ ПРИ ФОРМИРОВАНИИ ФРАКТАЛЬНЫХ МИКРОСТРУКТУР В СЛОЯХ ПОЛИКАРБОНАТА, ПОЛИМЕТИЛМЕТАКРИЛАТА, ОКСИДА ИНДИЯ-ОЛОВА, ОКСИДА ЦИНКА, "Физика и химия стекла"." ������ � ����� ������, no. 5 (2018): 581–89. http://dx.doi.org/10.7868/s0132665118050165.
Full textСвиридов, С. И., З. Г. Тюрнина, and Н. Г. Тюрнина. "Диффузия щелочных катионов в двухкомпонентных оксидных стеклах." Физика и химия стекла 46, no. 6 (2020): 553–59. http://dx.doi.org/10.31857/s0132665120060268.
Full textТеребіленко, К. В., B. О. Зозуля, В. П. Чорній, С. Г. Неділько, and М. С. Слободяник. "Вплив концентрації ванадію(V) на будову скла K2O—P2O5—WO3—V2O5." Reports of the National Academy of Sciences of Ukraine, no. 3 (July 6, 2021): 72–77. http://dx.doi.org/10.15407/dopovidi2021.03.072.
Full textГерасименко, Н. Н. "Количественное определение содержания бора в стеклах с помощью волнодисперсионного рентгенофлуоресцентного спектрометра." ANALYTICS Russia 11, no. 1 (March 2, 2021): 46–48. http://dx.doi.org/10.22184/2227-572x.2021.11.1.46.48.
Full textДресвянников, А. Ф., Е. В. Петрова, and А. И. Хайруллина. "СИНТЕЗ ПРЕКУРСОРОВ АЛЮМОКАЛЬЦИЕВЫХ ОКСИДНЫХ СИСТЕМ МЕТОДОМ АНОДНОГО ОКИСЛЕНИЯ АЛЮМИНИЯ В ВОДНЫХ РАСТВОРАХ, "Физика и химия стекла"." ������ � ����� ������, no. 4 (2018): 384–93. http://dx.doi.org/10.7868/s0132665118040054.
Full textКудряшов, Д. А., А. С. Гудовских, А. В. Бабичев, А. В. Филимонов, А. М. Можаров, В. Ф. Агекян, Е. В. Борисов, А. Ю. Серов, and Н. Г. Философов. "Наноразмерные пленки Cu-=SUB=-2-=/SUB=-O: формирование методом ВЧ-магнетронного распыления, исследование структурных и оптических свойств." Физика и техника полупроводников 51, no. 1 (2017): 111. http://dx.doi.org/10.21883/ftp.2017.01.44005.8318.
Full textDissertations / Theses on the topic "Оксидні стекла"
Петров, Дмитро Вікторович. "Технологія оптичних кольорових стекол інфрачервоного діапазону спеціального призначення." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/41528.
Full textDissertation for the Ph.D. degree in specialty 05.17.11 – "Technology of refractory nonmetallic materials". – National Technical University "Kharkiv Polytechnic Institute", Kharkiv, 2019. The dissertation is devoted to the development of infrared optical glasses with next spectral characteristics, as well as the creation of technologies for their production. The spectral characteristics are transmittance at a wavelength of 1060 nm 1060 τ (λ₁₀₆₀)>65% and absorption in the spectral range up to 950 nm. The solution to this problem was achieved due to the addition of the Cr₂O₃-Mn₂O₃ colorant system to the glass matrix of the R₂O-PbO-SiO₂ system, as well as the additional optical thin-film coatings. For production implementation optical color glass a pot regenerator furnace was used. The ceramic vessel with a volume of 500 liters was chosen. The temperature of the production was 1420 ± 20 °С. To improve the quality of optical glass practical studies were carried out. These studies devote to the modes of batch filling, mixing and temperature parameters. Fundamental researches were conducted on the mode of cooling of colored optical glass. For the first time for such glasses the stage of cooling made by inertia cooling of the furnace construction without gas. Due to introduction of the results and improving of the spectral parameters the volume of quality glass yield has increased. The software was developed to control the technological processes of the furnace in automatic mode.
Петров, Дмитро Вікторович. "Технологія оптичних кольорових стекол інфрачервоного діапазону спеціального призначення." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/41488.
Full textDissertation for the Ph.D. degree in specialty 05.17.11 – "Technology of refractory nonmetallic materials". – National Technical University "Kharkiv Polytechnic Institute", Kharkiv, 2019. The dissertation is devoted to the development of infrared optical glasses with next spectral characteristics, as well as the creation of technologies for their production. The spectral characteristics are transmittance at a wavelength of 1060 nm 1060 τ (λ₁₀₆₀)>65% and absorption in the spectral range up to 950 nm. The solution to this problem was achieved due to the addition of the Cr₂O₃-Mn₂O₃ colorant system to the glass matrix of the R₂O-PbO-SiO₂ system, as well as the additional optical thin-film coatings. For production implementation optical color glass a pot regenerator furnace was used. The ceramic vessel with a volume of 500 liters was chosen. The temperature of the production was 1420 ± 20 °С. To improve the quality of optical glass practical studies were carried out. These studies devote to the modes of batch filling, mixing and temperature parameters. Fundamental researches were conducted on the mode of cooling of colored optical glass. For the first time for such glasses the stage of cooling made by inertia cooling of the furnace construction without gas. Due to introduction of the results and improving of the spectral parameters the volume of quality glass yield has increased. The software was developed to control the technological processes of the furnace in automatic mode.
Бартницька, Н. Є. "Люмінесценція оксидних стекол, активованих ртутеподібними та рідкісноземельніми іонами." Diss. of Candidate of Physical and Mathematical Sciences, МО України, КУ ім.Т.Шевченка, 1993.
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