Εμφανίζονται 1 - 2 Αποτελέσματα από 2 για την αναζήτηση '"электроимпульсное плазменное спекание (SPS)"', χρόνος αναζήτησης: 0,43δλ Περιορισμός αποτελεσμάτων
  1. 1
    Academic Journal

    Συνεισφορές: Исследование выполнено на базе «Нано-Центра» Национального исследовательского Томского политехнического университета. Эксперименты по характеризации исходных порошков, SPS-спеканию прозрачной керамики, исследованию микроструктуры, оптических и упругопластических свойств выполнены при поддержке Российского научного фонда, проект № 17-13-01233, количественное описание спектров светопропускания комплексным критерием оптического качества выполнено при частичной поддержке РФФИ, проект № 16-08-00831.

    Πηγή: NOVYE OGNEUPORY (NEW REFRACTORIES); № 3 (2019); 34-39 ; Новые огнеупоры; № 3 (2019); 34-39 ; 1683-4518 ; 10.17073/1683-4518-2019-3

    Περιγραφή αρχείου: application/pdf

    Relation: https://newogneup.elpub.ru/jour/article/view/1171/1031; Wang, S. F. Transparent ceramics: processing, materials and applications / S. F. Wang [et al.] // Prog. Solid State Chem. ― 2013. ― Vol. 41. ― P. 20‒53.; Peuchert, U. Transparent cubic-ZrO2 ceramics for application as optical lenses / U. Peuchert, Y. Okano, Y. Menke [et al.] // J. Eur. Ceram. Soc. ― 2009. ― Vol. 29. ― P. 283‒291.; Качаев, А. А. Оптически прозрачная керамика (Обзор) / А. А. Качаев, Д. В. Гращенков, Ю. Е. Лебедева [и др.] // Стекло и керамика. ― 2016. ― № 4. ― С. 3‒10.; Zhang, H. B. Optimization of high-pressure sintering of transparent zirconia with nano-sized grains / H. B. Zhang, B.-N. Kim, K. Morita [et al.] // J. Alloys Compd. ― 2010. ― Vol. 508. ― P. 196‒199.; Zhang, H. B. Effect of sintering temperature on optical properties and microstructure of translucent zirconia prepared by high pressure spark plasma sintering / H. B. Zhang, B. N. Kim, K. Morita [et al.] // Sci. Technol. Adv. Mater. ― 2011. ― Vol. 12. ― P. 1‒6.; Anselmi-Tamburini, U. Transparent nanometric cubic and tetragonal zirconia obtained by high-pressure pulsed electric current sintering / U. Anselmi-Tamburini, J. N. Woolman, Z. A. Munir // Adv. Funct. Mater. ― 2007. ― Vol. 17, № 16. ― P. 3267‒3273.; Alaniz, J. E. Optical properties of transparent nanocrystallineyttria stabilized zirconia / J. E. Alaniz, F. G. Perez-Gutierrez, G. Aguilar, J. E. Garay // Opt. Mater. ― 2009. ― Vol. 32. ― P. 62‒68.; Casolco, S. R. Transparent/translucent polycrystalline nanostructured yttria stabilized zirconia with varying colors / S. R. Casolco, J. Xu, J. E. Garay // Scripta Mater. ― 2008. ― Vol. 58. ― P. 516‒519.; Lei, L. W. Transparent yttria stabilized zirconia from glycinenitrate process by spark plasma sintering / L. W. Lei, Z. Y. Fu, H. Wang [et al.] // Ceram. Int. ― 2012. ― Vol. 38, № 1. ― P. 23‒28.; Nagayama, H. Development of colored zirconia ceramics / H. Nagayama, M. Kudoh, N. Shinozaki [et al.] // TOSOH Research & Technology Review. ― 2009. ― Vol. 53. ― P. 53‒56.; Khasanov, O. L. Relationship of optical properties and elastoplastic characteristics of transparent spark plasma sintered YSZ ceramics / O. L. Khasanov, E. S. Dvilis, Z. G. Bikbaeva [et al.] // J. Ceram. Sci. Technol. ― 2017. ― Vol. 8, № 1. ― P. 161‒168.; Niihara, K. Evaluation of KIc of brittle solids by the indentation method with low crack-to-indent ratios / K. Niihara, R. Morena, D. P. H. Hasselman // J. Mater. Sci. Lett. ― 1982. ― Vol. 1. ― P. 13‒16.; Krell, A. Transparent compact ceramics: Inherent physical issues / A. Krell, J. Klimke, T. Hutzler // Opt. Mater. ― 2009. ― Vol. 31. ― P. 1144‒1150.; Dahl, P. Densification and properties of zirconia prepared by three different sintering techniques / P. Dahl, I. Kaus, M. Johnsson [et al.] // Ceram. Int. ― 2007. ― Vol. 33. ― P. 1603‒1610.; Yamashita, I. Development of highly transparent zirconia ceramics / I. Yamashita, M. Kudo, K. Tsukuma // TOSOH Research & Technology Review. ― 2009. ― Vol. 53. ― P. 11‒16.; Gogotsi, G. A. Vickers and Knoop indentation behavior of cubic and partially stabilized zirconia crystals / G. A. Gogotsi, S. N. Dub, E. E. Lomonova, B. I. Ozersky // J. Eur. Ceram. Soc. ― 1995. ― Vol. 15. ― P. 405‒413.; Donzel, L. Microstructure and mechanical properties of cubic zirconia (8YSZ)/SiC nanocomposites / L. Donzel, S. G. Roberts // J. Eur. Ceram. Soc. ― 2000. ― Vol. 20. ― P. 2457‒2462; https://newogneup.elpub.ru/jour/article/view/1171

  2. 2
    Academic Journal

    Συνεισφορές: Национальный фонд Китая по поддержке естественных наук (грант 51402143)

    Πηγή: NOVYE OGNEUPORY (NEW REFRACTORIES); № 1 (2018); 38-42 ; Новые огнеупоры; № 1 (2018); 38-42 ; 1683-4518 ; 10.17073/1683-4518-2018-1

    Περιγραφή αρχείου: application/pdf

    Relation: https://newogneup.elpub.ru/jour/article/view/953/866; Omori, M. Sintering, consolidation, reaction and crystal growth by the spark plasma system (SPS) / M. Omori // Mater. Sci. Eng., A. ― 2000. ― Vol. 287. ― P. 183.; Orru, R. Consolidation/synthesis of materials by electric current activated/assisted sintering / R. Orru, R. Licheri, A. M. Locci [et al.] // Mater. Sci. Eng. R: Reports. ― 2009. ― Vol. 63. ― P. 127.; Schneider, H. Structure and properties of mullite ― review / H. Schneider, J. Schreuer, B. Hildmann // J. Europ. Ceram. Soc. ― 2008. ― Vol. 28. ― P. 329.; Rendtorf, N. M. Dense mullite zirconia composites obtained from the reaction sintering of milled stoichiometric alumina zircon mixtures by SPS / N. M. Rendtorf [et al.] // Ceram. Int. ― 2014. ― Vol. 40. ― P. 4461.; Weibel, A. Toughened carbon nanotube–iron–mullite composites prepared by spark plasma sintering / A. Weibel [et al.] // Ceram. Int. ― 2013. ― Vol. 39. ― P. 5513.; Gao, L. Microstructure and mechanical properties of SiC-mullite Nano-composite prepared by spark plasma sintering / L. Gao [et al.] // Mater. Sci. Eng., A. ― 2002. ― Vol. 334. ― P. 262.; De Sola, Esther Ruiz. Solubility and microstructural development of TiO2-containing 3Al2O3•2SiO2 and 2Al2O3•SiO2 mullites obtained from single-phase gels / Esther Ruiz de Sola [et al.] // J. Eur. Ceram. Soc. ― 2007. ― Vol. 27. ― P. 2647.; Gao, L. Mechanical properties and microstructure of nano‒SiC‒Al2O3 composites densified by spark plasma sintering / L. Gao, [et al.] // J. Eur. Ceram. Soc. ― 1999. ― Vol. 19. ― P. 609.; Khor, K. A. Spark plasma reaction sintering of ZrO2/ mullite composites from plasma spheroidized zircon/ alumina powders / K. A. Khor [et al.] // Mater. Sci. Eng., A. ― 2003. ― Vol. 339. ― P. 286.; Zhou, M. H. Sintering of mullite-alumina composites from diphasic precursors / M. H. Zhou // Ceram. Int. ― 1999. ― Vol. 25. ― P. 325.; Wang, Y. Effects of sintering temperature on mechanical properties of 3D mullitefiber (ALF FB3) reinforced mullite composites / Y. Wang [et al.] // Ceram. Int. ― 2013. ― Vol. 39. ― P. 9229.; Doni Jayaseelan, D. Pulse electric current sintering and microstructure of industrial mullite in the presence of sintering aids / D. Doni Jayaseelan [et al.] // Ceram. Int. ― 2004. ― Vol. 30. ― P. 539.; Dong, Y. C. Sintering and characterization of flyashbased mullite with MgO addition / Y. C. Dong [et al.] // J. Eur. Ceram. Soc. ― 2011. ― Vol. 31. ― P. 687.; Doni Jayaseelan, D. Sintering and microstructure of mullite‒Mo composites / D. Doni Jayaseelan [et al.] // J. Eur. Ceram. Soc ― 2002. ― Vol. 22. ― P. 1113.; Singh, M. Depth-profiling of phase composition and preferred orientation in graded alumina/mullite/ aluminium-titanate hybrid using X-ray and synchrotron radiation diffraction / M. Singh, I. M. Low // Mater. Res. Bull. ― 2002. ― Vol. 37. ― P. 1279.; https://newogneup.elpub.ru/jour/article/view/953