論文 High bending strength at 1800 °C exceeding 1 GPa in TiB2-B4C composite

A. Kuncser ; O. Vasylkiv SAMURAI ORCID (National Institute for Materials Science) ; H. Borodianska ; D. Demirskyi (National Institute for Materials Science) ; P. Badica

コレクション

引用
A. Kuncser, O. Vasylkiv, H. Borodianska, D. Demirskyi, P. Badica. High bending strength at 1800 °C exceeding 1 GPa in TiB2-B4C composite. Scientific Reports. 2023, 13 (), 6915. https://doi.org/10.1038/s41598-023-33135-w
SAMURAI

説明:

(abstract)

High density (99.5%) ceramic composite composed of titanium boride and boron carbide (70/30 vol%) was obtained by spark plasma sintering and was tested by 3-point bending test in Ar atmosphere at 1800 °C. Bending strength was high, around 1.1 GPa. The strength–strain curve presents a peculiar shape composed of three regions where elastic and plastic deformations are active with a different weight. Based on transmission electron microscopy observations we propose a process of mechanical energy absorption driven by shear stress in the boron carbide crystals: stacking faults with (1-11) and (011) stacking planes and twins with (1-11) twinning plane rearrange into nano-twins with (10-1) twinning planes, orthogonal but equivalent to the initial ones. This rearrangement mechanism provides in the first instance a plastic signature, but further contributes strengthening.

権利情報:

キーワード: TiB2, Boron carbide, bending strength, spark plasma sintering

刊行年月日: 2023-04-27

出版者: Springer Science and Business Media LLC

掲載誌:

  • Scientific Reports (ISSN: 20452322) vol. 13 6915

研究助成金:

  • Ministerul Cercetării, Inovării şi Digitalizării PC1-PN23080101
  • NIMS PA5180 (セラミックスプロセッシング)
  • NIMS AB3080 (多結晶光学材料 Research toward Innovative Optical Materials)

原稿種別: 著者最終稿 (Accepted manuscript)

MDR DOI: https://doi.org/10.48505/nims.4958

公開URL: https://doi.org/10.1038/s41598-023-33135-w

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更新時刻: 2024-11-14 16:31:00 +0900

MDRでの公開時刻: 2024-11-14 16:31:00 +0900

ファイル名 サイズ
ファイル名 A Kuncser nanotwins rearrangement _ new v10.docx (サムネイル)
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サイズ 1.82MB 詳細
ファイル名 supplementary v10 (1).docx
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サイズ 100KB 詳細