يعرض 1 - 10 نتائج من 1,226 نتيجة بحث عن '"T A, Kuznetsova"', وقت الاستعلام: 0.95s تنقيح النتائج
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    المصدر: Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение, Vol 23, Iss 1, Pp 109-122 (2024)

    وصف الملف: electronic resource

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    المساهمون: the work was supported by the Belarusian Republican Foundation for Fundamental Research (grant no. Т22M-006), работа выполнена при финансовой поддержке Белорусского республиканского фонда фундаментальных исследований (грант № Т22М-006)

    المصدر: Proceedings of the National Academy of Sciences of Belarus. Physical-technical series; Том 68, № 4 (2023); 271-279 ; Известия Национальной академии наук Беларуси. Серия физико-технических наук; Том 68, № 4 (2023); 271-279 ; 2524-244X ; 1561-8358 ; 10.29235/1561-8358-2023-68-4

    وصف الملف: application/pdf

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Solar Energy Materials and Solar Cells, 2002, vol. 70, iss. 4, pp. 487–493. https://doi.org/10.1016/S0927-0248Test(01)00086-1; Dwivedi N., Kumar S., Rauthan C. M. S., Panwar O. s., Siwach P. K. Photoluminescence and electrical conductivity of silicon containing multilayer structures of diamond like carbon. Journal of Optoelectronics and Advanced Materials, 2009, vol. 11, pp. 1618–1626.; Weiser P. S., Prawer S., Manory R. R., Hoffman A., Evans P. J., Paterson P. J. K. Chemical vapour deposition of diamond onto steel: the effect of a Ti implant layer. Surface and Coatings Technology, 1995, vol. 71, iss. 2, pp. 167–172. https://doi.org/10.1016/0257-8972Test(94)01016-C; Chen J. J. Indentation-based methods to assess fracture toughness for thin coatings. Journal of Physics D: Applied Physics, 2012, vol. 45, no. 20, art. ID 203001. https://doi.org/10.1088/0022-3727/45/20/203001Test; Chen J. J., Bull S. J. Indentation Fracture and Toughness Assessment for Thin Optical Coatings on Glass. Journal of Physics D: Applied Physics, 2007, vol. 40, no. 18, pp. 5401–5417. https://doi.org/10.1088/0022-3727/40/18/S01Test; Xinjie Chen, Yao Du, Yip-Wah Chung. Commentary on using H/E and H3/E2 as proxies for fracture toughness of hard coatings. Thin Solid Films, 2019, vol. 688, art. ID 137265. https://doi.org/10.1016/j.tsf.2019.04.040Test; Faisal N. H., Ahmed R., Prathuru A. K., Spence S., Hossain M., Steel J. A. An improved Vickers indentation fracture toughness model to assess the quality of thermally sprayed coatings. Engineering Fracture Mechanics, 2014, vol. 128, pp. 189–204. https://doi.org/10.1016/j.engfracmech.2014.07.015Test; Jiefang Wang, Tiantian Shao, Xiaolong Cai, Lisheng Zhong, Nana Zhao, Yunhua Xu. Study on Microstructure and Fracture Toughness of TaC Ceramic Coating on HT300. Advanced Materials Research, 2015, vols. 1120–1121, pp. 740–744. https://doi.org/10.4028/www.scientific.net/AMR.1120-1121.740Test; Zhaoliang Qu, Kai Wei, Qing He, Rujie He, Yongmao Pei, Shixing Wang, Daining Fanga. High temperature fracture toughness and residual stress in thermal barrier coatings evaluated by an in-situ indentation method. Ceramics International, 2018, vol. 44, iss. 7, pp. 7926–7929. https://doi.org/10.1016/j.ceramint.2018.01.230Test; Kataria S., Srivastava S. K., Kumar P., Srinivas G., Siju, Khan J., Sridhar Rao D. V., Barshilia H. C. Nanocrystalline TiN coatings with improved toughness deposited by pulsing the nitrogen flow rate. Surface and Coatings Technology, 2012, vol. 206, iss. 19–20, pp. 4279–4286. https://doi.org/10.1016/j.surfcoat.2012.04.040Test; Jianning Ding, Yonggang Meng, Shizhu Wen. Mechanical properties and fracture toughness of multilayer hard coatings using nanoindentation. 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    المساهمون: This research was supported by the grant of Belarusian Republican Foundation for Fundamental Research BRFFR No. Т22М-006, as part of the assignment No. 2.3 SPSR “Energy and nuclear processes and technologies”.

    المصدر: Devices and Methods of Measurements; Том 15, № 1 (2024); 60-67 ; Приборы и методы измерений; Том 15, № 1 (2024); 60-67 ; 2414-0473 ; 2220-9506 ; 10.21122/2220-9506-2024-15-1

    وصف الملف: application/pdf

    العلاقة: https://pimi.bntu.by/jour/article/view/859/684Test; Yingtian Yu, Mengyi Wang, N.M. Anoop Krishnan, Morten M. Smedskjaer, K. Deenamma Vargheese, John C. Mauro, Magdalena Balonis, Mathieu Bauchy. Hardness of silicate glasses: Atomic-scale origin of the mixed modifier effect. Journal of Non-Crystalline Solids. 2018;489:16-21. DOI:10.1016/j.jnoncrysol.2018.03.015; Sellappan P, Rouxel T, Celarie F, Becker E, Houizot P, Conradt R. Composition dependence of indentation deformation and indentation cracking in glass. Acta Materialia. 2013;61:5949–5965. DOI:10.1016/j.actamat.2013.06.034; Tanguy Rouxel, Satoshi Yoshida. The fracture toughness of inorganic glasses. Journal of the American Ceramic Society. 2017;100(10):4374-4396. DOI:10.1111/jace.15108; Robert F. Cook, George M. Phar. Direct Observation and Analysis of Indentation Cracking in Glasses and Ceramics. Journal of the American Ceramic Society. 1990;73(4):787-817. DOI:10.1111/j.1151-2916.1990.tb05119.x; Ishikawa H, Shink N. Critical Load for Median Crack Initiation in Vickers Indentation of Glasses. Communications of the American Ceramic Society. 1982;65(8):c124-c127. DOI:10.1111/j.1151-2916.1982.tb10496.x; Chuchai Anunmana, Kenneth J. Anusavice, John J. Mecholsky Jr. Residual stress in glass: Indentation crack and fractography approaches. Dental Materials. 2009;25: 1453-1458. DOI:10.1016/j.dental.2009.07.001; Satoshi Yoshida, Mitsuo Kato, Akiko Yokota, Shohei Sasaki, Akihiro Yamada, Jun Matsuoka, Naohiro Soga, Charles R. Kurkjian. Direct observation of indentation deformation and cracking of silicate glasses. Journal of Materials Research. 2015;30(15):2291-2299. DOI:10.1557/jmr.2015.214; Jingjing Chen, Jun Xu, Bohan Liu, Xuefeng Yao, Yibing Li. Quantity Effect of Radial Cracks on the Cracking Propagation Behavior and the Crack Morphology, PLoS ONE. 2014;9(7):e98196 р. DOI:10.1371/journal.pone.0098196; Hagan JT. Cone cracks around Vickers indentations in fused silica glass. Journal of Materials Science. 1979;14:462-466. DOI:10.1007/BF00589840; Tanguy Rouxel. Fracture surface energy and toughness of inorganic glasses. Scripta Materialia. 2017;137:109-113. DOI:10.1016/j.scriptamat.2017.05.005; Lapitskaya VA, Kuznetsova TA, Chizhik SA, Warcholinski B. Methods for Accuracy Increasing of Solid Brittle Materials Fracture Toughness Determining. Devices and Methods of Measurements. 2022;13(1):4049. DOI:10.21122/2220-9506-2022-13-1-40-49; Lapitskaya VA, Kuznetsova TA, Khudoley AL, Khabarava AV, Chizhik SA, Aizikovich SM, Sadyrin EV. Influence of polishing technique on crack resistance of quartz plates. International Journal of Fracture. 2021;231(1):61–77. DOI:10.1007/s10704-021-00564-5; Lapitskaya VA, Kuznetsova TA, Khabarava AV, Chizhik SA, Aizikovich SM, Sadyrin EV, Mitrin BI, Weifu Sun. The use of AFM in assessing the crack resistance of silicon wafers of various orientations. Engineering Fracture Mechanics. 2022;259:107926. DOI:10.1016/j.engfracmech.2021.107926; Lapitskaya VA, Kuznetsova TA, Chizhik SA. Influence of Temperature from 20 to 100 °C on Specific Surface Energy and Fracture Toughness of Silicon Wafers. Devices and Methods of Measurements. 2023;14(4):161172. DOI:10.21122/2220-9506-2023-14-4-161-172; Oliver WC, Pharr GM. Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodology. Journal of Materials Research. 2004;19(1):3-20.; Metallic materials – Instrumented indentation test for hardness and materials parameters – Part 1: Test method: ISO 14577-1:2015. – Introduct. 29.07.2015. Dublin: The National Standards Authority of Ireland, 2015. – 54 p.; Golovin YuI. Nanoindentation and mechanical properties of solids in submicrovolumes, thin near-surface layers, and films: A review. Physics of the Solid State, 2008;50(12):2205-2236.; Niihara K, Morena R, Hasselman DPH. Evaluation of KIc of brittle solids by the indentation method with low crack-to-indent ratios. Journal of Materials Science Letters. 1982;1:13-16.; Niihara K. A fracture mechanics analysis of indentation-induced Palmqvist crack in ceramics. Journal of Materials Science Letters. 1983;2:221-223.; Keryvin V, Hoang VH, Shen J. Hardness, toughness, brittleness and cracking systems in an ironbased bulk metallic glass by indentation. Intermetallics. 2009;17:211-217. DOI:10.1016/j.intermet.2008.08.017 211–217; Yoshinari Kato, Hiroki Yamazaki, Satoshi Yoshida, Jun Matsuoka. Effect of densification on crack initiation under Vickers indentation test. Journal of NonCrystalline Solids. 2010;356:1768-1773. DOI:10.1016/j.jnoncrysol.2010.07.015; Akio Koike, Shusaku Akiba, Takahiro Sakagami, Kazutaka Hayashi, Setsuro Ito. Difference of cracking behavior due to Vickers indentation between physically and chemically tempered glasses. Journal of Non-Crystalline Solids. 2012; 358:3438-3444. DOI:10.1016/j.jnoncrysol.2012.02.020; Yoshinari Kato, Hiroki Yamazaki, Satoru Itakura, Satoshi Yoshida, Jun Matsuoka. Load dependence of densification in glass during Vickers indentation test. Journal of the Ceramic Society of Japan. 2011;119(2):110115. DOI:10.2109/jcersj2.119.110; https://pimi.bntu.by/jour/article/view/859Test

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    المؤلفون: G. P. Arutyunov, E. I Tarlovskaya, A. G. Arutyunov, Yu. N. Belenkov, A. O. Konradi, Yu. M. Lopatin, A. P. Rebrov, S. N. Tereshchenko, A. I. Chesnikova, H. G. Hayrapetyan, A. P. Babin, I. G. Bakulin, N. V. Bakulina, L. A. Balykova, A. S. Blagonravova, M. V. Boldina, M. I. Butomo, A. R. Vaisberg, A. S. Galyavich, V. V. Gomonova, N. Yu. Grigorieva, I. V. Gubareva, I. V. Demko, A. V. Evzerikhina, A. V. Zharkov, A. A. Zateishchikova, U. K. Kamilova, Z. F. Kim, T. Yu. Kuznetsova, A. N. Kulikov, N. V. Lareva, E. V. Makarova, S. V. Malchikova, S. V. Nedogoda, M. M. Petrova, I. G. Pochinka, K. V. Protasov, D. N. Protsenko, D. Yu. Ruzanav, S. A. Sayganov, A. Sh. Sarybaev, N. M. Selezneva, A. B. Sugraliev, I. V. Fomin, O. V. Khlynova, O. Yu. Chizhova, I. I. Shaposhnik, D. A. Sh'ukarev, A. K. Abdrakhmanova, S. A. Avetisian, H. G. Avoyan, K. K. Azarian, G. T. Aimakhanova, D. A. Ayipova, A. Ch. Akunov, M. K. Alieva, A. R. Almukhambedova, A. V. Aparkina, O. R. Aruslanova, E. Yu. Ashina, O. Yu. Badina, O. Yu. Barysheva, T. I. Batluk, A. S. Batchayeva, R. A. Bashkinov, A. M. Bitieva, I. U. Bikhteyev, N. A. Borodulina, M. V. Bragin, V. A. Brazhnik, A. M. Budu, G. A. Bykova, K. R. Vagapova, D. D. Varlamova, N. N. Vezikova, E. A. Verbitskaya, O. E. Vilkova, E. A. Vinnikova, V. V. Vustina, E. A. Gаlova, V. V Genkel, D. B. Giller, E. I. Gorshenina, E. V. Grigorieva, E. U. Gubareva, G. M. Dabylova, A. I. Demchenko, O. Yu. Dolgikh, M. Y. Duyshobayev, D. S. Evdokimov, K. E. Egorova, A. E. Zheldybayeva, N. V. Zarechnova, Yu. D. Zimina, S. U. Ivanova, E. U. Ivanchenko, M. V. Ilina, M. V. Kazakovtseva, E. V. Kazymova, Yu. S. Kalinina, N. A. Kamardina, A. M. Karachenova, I. A. Karetnikov, N. A. Karoli, M. Kh. Karsiev, D. S. Кaskaeva, K. F. Kasymova, Zh. B. Kerimbekova, E. S. Kim, N. V. Kiseleva, D. A. Klimenko, O. V. Kovalishena, S. V. Kozlov, E. V. Kolmakova, T. P. Kolchinskaya, M. I. Koliadich, O. V. Kondriakova, M. P. Konoval, D. U. Konstantinov, E. A. Konstantinova, V. A. Kordukova, E. V. Koroleva, A. U. Kraposhina, T. V. Kryukova, A. S. Kuznetsova, T. U. Kuzmina, K. V. Kuzmichev, Ch. K. Kulchoroeva, T. V. Kuprina, I. M. Kuranova, L. V. Kurenkova, N. U. Kurchugina, N. A. Kushubakova, V. I. Levankova, A. A. Ledyaeva, T. V. Lisun, V. E. Lisyanskaya, N. A. Lyubavina, N. A. Magdeyeva, K. V. Mazalov, V. I. Maiseenko, A. S. Makarova, A. M. Maripov, N. V. Markov, A. A. Marusina, E. S. Melnikov, A. I. Metlinskaya, N. B. Moiseenko, F. N. Muradova, R. G. Muradyan, Sh. N. Musaelian, E. S. Nekaeva, N. M. Nikitina, S. E. Nifontov, E. U. Obolentseva, A. A. Obukhova, B. B. Ogurlieva, A. A. Odegova, Yu. V. Omarova, N. A. Omurzakova, Sh. O. Ospanova, V. A. Pavlova, E. V. Pahomova, L. D. Petrov, S. S. Plastinina, D. A. Platonov, V. A. Pogrebetskaya, D. V. Polyakov, D. S. Polyakov, E. V. Ponomarenko, L. L. Popova, A. A. Potanin, N. A. Prokofeva, J. D. Rabik, N. A. Rakov, A. N. Rakhimov, N. A. Rozanova, I. V. Samus, S. Serikbolkyzy, Ya. A. Sidorkina, A. A. Simonov, V. V. Skachkova, R. D. Skvortcova, D. S. Skuridin, D. V. Solovieva, I. A. Solovieva, I. M. Sukhomlinova, A. G. Sushilova, D. R. Tagayeva, E. P. Tikhonova, D. S. Tokmin, A. A. Tolmacheva, M. S. Torgunakova, K. V. Trenogina, N. A. Trostianetckaia, D. A. Trofimov, M. A. Trubnikova, A. A. Tulichev, A. T. Tursunova, N. D. Ulanova, O. V. Fatenkov, O. V. Fedorishina, T. S. Fil, I. U. Fomina, I. S. Fominova, I. A. Frolova, S. M. Tsvinger, V. V. Tsoma, M. B. Cholponbaeva, T. I. Chudinovskikh, I. V. Shavrin, O. A. Shevchenko, D. R. Shikhaliev, E. A. Shishkina, K. U. Shishkov, S. U. Sherbakov, G. V. Shcherbakova, E. A. Yausheva

    المصدر: Российский кардиологический журнал, Vol 28, Iss 1 (2023)

    وصف الملف: electronic resource