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1Academic Journal
Authors: E. S. Kravchenko, A. A. Yaremchenko, J. Grins, G. Svensson, Е. С. Кравченко, А. А. Яремченко, Е. Гринс, Г. Свенссон
Source: Proceedings of the National Academy of Sciences of Belarus, Chemical Series; № 1 (2017); 37-43 ; Известия Национальной академии наук Беларуси. Серия химических наук; № 1 (2017); 37-43 ; 2524-2342 ; 1561-8331 ; undefined
Subject Terms: плазменное искровое спекание, SOFC, gas-tight ceramics, anisotropic thermal expansion, Spark Plasma Sintering, ТОТЭ, газоплотная керамика, анизотропное термическое расширение
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Relation: https://vestichem.belnauka.by/jour/article/view/236/228; High-temperature characterization of oxygen-deficient K2NiF4-type Nd2–xSrxNiO4–d (x = 1.0–1.6) for potential SOFC/SOEC applications / E. Kravchenko [et al.] // J. Mater. Chem. A. – 2015. – Vol. 3. – P. 23852–23863.; Gómez, S. Y. Current developments in reversible solid oxide fuel cells / S. Y.Gómez, D. Hotza // Renewable and Sustainable Energy Reviews. – 2016. – Vol. 61. – P. 155–174.; Progress in material selection for solid oxide fuel cell technology: A review / N. Mahato [et al.] // Progress in Materials Science. – 2015. – Vol. 72. – P. 141–337.; Болдин, М. С. Физические основы технологии электромпульсного плазменного спекания: учеб.-метод. пособие / М. С Болдин; Нижегород. гос. ун-т. – Нижний Новгород, 2012. – С. 59.; Field-assisted sintering technology/spark plasma sintering: Mechanisms, materials, and technology developments /O. Guillon [et al.] // Advanced Engineering Materials. – 2014. – Vol. 16. – P. 830–849.; Omori, M. Sintering, consolidation, reaction and crystal growth by the spark plasma system (SPS) / M. Omori //Materials Science and Engineering A. – 2000. – Vol. 287. – P. 183–188.; Dielectric properties of La1.75Ba0.25NiO4 ceramics prepared by spark plasma sintering / C. L. Song [et al.] // Journal of Alloys and Compounds. – 2010. – Vol. 490. – P. 605–608.; Giant dielectric constant in Nd2NiO4+δ ceramics obtained by spark plasma sintering / X. Q. Liu [et al.] // Ceramics International. – 2011. – Vol. 37. – P. 2423–2427.; Clarke, F. J. P. Residual strain and the fracture stress-grain size relationship in brittle solids / F. J. P. Clarke // Acta Metallurgica. – 1964. – Vol. 12. – P. 139–143.; Davidge, R. W. Internal strain energy and the strength of brittle materials / R. W. Davidge, G. Tappin // Journal of Materials Science. – 1968. – Vol. 3. – P. 297–301.; Kuszyk, J. A. Influence of grain size on effects of thermal expansion anisotropy in MgTi2O5 / J. A. Kuszyk, R. C. Bradt // Journal of the American Ceramic Society. – 1973. – Vol. 56. – P. 420–423.; Matsuo, Y. Effect of grain size on microcracking in lead titanate ceramics / Y. Matsuo, H. Sasaki // Journal of the American Ceramic Society. – 1966. – Vol. 49. – P. 229–230.; Evans, A. G. Microfracture from thermal expansion anisotropy-I. Single phase systems / A. G. Evans // Acta Metallurgica. – 1978. – Vol. 26. – P. 1845–1853.; Magnetic susceptibility and low-temperature structure of the linear chain cuprate Sr2CuO3/ T. Ami [et al.] // Physical Review B. – 1995. – Vol. 51. – P. 5994–6001.; https://vestichem.belnauka.by/jour/article/view/236; undefined
Availability: https://vestichem.belnauka.by/jour/article/view/236
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2Academic Journal
Authors: Шорников, Дмитрий, Бурлакова, Марина, Тарасов, Борис, Никитин, Степан, Якуткина, Татьяна, Юрлова, Мария
Subject Terms: ЯДЕРНЫЕ РЕАКТОРЫ НА БЫСТРЫХ НЕЙТРОНАХ, ВЫСОКОПЛОТНОЕ ТОПЛИВО, НИТРИД УРАНА, ГИДРИРОВАНИЕ-ДЕГИДРИРОВАНИЕ, СПЕКАНИЕ НИТРИДА УРАНА, ЭЛЕКТРО-ИМПУЛЬСНОЕ ПРЕССОВАНИЕ, ПЛАЗМЕННОЕ ИСКРОВОЕ СПЕКАНИЕ
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3Academic Journal
Source: Вектор науки Тольяттинского государственного университета.
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