Sintered silicon carbide composites deposited on zirconium alloy substrates in air and Ar atmosphere – Part II: Evaluation on micro-indentation properties; Materials Letters; Vol. 308, Pt. B
| Parent link: | Materials Letters Vol. 308, Pt. B.— 2022.— [131278, 4 p.] |
|---|---|
| Institution som forfatter: | Национальный исследовательский Томский политехнический университет Инженерная школа ядерных технологий Отделение ядерно-топливного цикла |
| Andre forfattere: | Afornu B. K. Bright Kwame, Lider A. M. Andrey Markovich, Agyekum E. B. Ephraim Bonah, Amoah P. A. Paul Atta, Ansakh M. N. S. Maykl Nii Sanka |
| Summary: | Title screen Micro-indentation test was performed on sintered Silicon Carbide (SiC) deposited on Zr-1Nb (E110) substrates fabricated in air and Ar atmosphere. Micro-indentation results show SiC sintered on Zr-1Nb in air and Ar having hardness of about 7 and 4 times respectively than that of uncoated Zr-1Nb. Both coating variants doubles their resistance to depth penetrated by indenter compared to the uncoated Zr-alloy. XRD phase quantitative results indicate the formation of approximately 15% more protective oxides, mostly SiO2 on sample sintered in air than sample sintered in Ar atmosphere accounting for the extra resistance to mechanical deformation. Режим доступа: по договору с организацией-держателем ресурса |
| Sprog: | engelsk |
| Udgivet: |
2022
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| Fag: | |
| Online adgang: | https://doi.org/10.1016/j.matlet.2021.131278 |
| Format: | Electronisk Book Chapter |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=668034 |
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Lignende værker
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Sintered Silicon Carbide composites deposited on zirconium alloy substrates in air and Ar atmosphere – Part I: Evaluation of scratch adhesion and tribology properties; Materials Letters; Vol. 306
Udgivet: (2022) -
Obtaining Silicon-Carbide-Based Ceramics from Ash and Slag Wastes; Technical Physics Letters; Vol. 46, iss. 7
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Udgivet: (2020) -
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Udgivet: (2024) -
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Udgivet: (2019) -
Porous SiC ceramic obtained by spark plasma sintering of preceramic paper: Microstructure, mechanical properties and gas permeability; Ceramics International; Vol. 50, iss. 8
Udgivet: (2024)