Keyword: high-temperature materials

3 records found. Displaying records 1 to 3.

TTZ_carbide_reference_cte.docx
High-temperature toughening in ternary medium-entropy (Ta1/3Ti1/3Zr1/3)C carbide consolidated using spark-plasma sintering
Journal article
Creator
Demirskyi ,D. (author) (Search by this author)
Research Center for Functional Materials/Optical Materials Field/Ceramics Processing Group, National Institute for Materials Science
;
Nishimura ,T (author) (Search by this author)
Research Center for Structural Materials/Administrative Office, National Institute for Materials Science
ORCID SAMURAI ;
Suzuki ,T.S. (author) (Search by this author)
Research Center for Electronic and Optical Materials/Optical Materials Field/Optical Ceramics Group, National Institute for Materials Science
ORCID SAMURAI ;
Sakka ,Y (author) (Search by this author)
Research Center for Electronic and Optical Materials/Optical Materials Field/Polycrystalline Optical Material Group, National Institute for Materials Science
ORCID SAMURAI ;
Vasylkiv ,O. (author) (Search by this author)
Research Center for Electronic and Optical Materials/Optical Materials Field/Polycrystalline Optical Material Group, National Institute for Materials Science
ORCID SAMURAI ;
Yoshimi ,K. (author) (Search by this author)
Tohoku University, Department of Materials Science and Engineering
Keyword
tantalum carbide, high-entropy ceramics, flexural strength, toughness, high-temperature materials
Date published
2020-10-01
Updated at
2025-05-23 08:30:24 +0900

MTLA-D-21-00345-R1.pdf
Fracture peculiarities and high-temperature strength of bulk polycrystalline boron
Journal article
Creator
D. Demirskyi (author) (Search by this author)
National Institute for Materials Science
;
P. Badica (author) (Search by this author)
;
A. Kuncser (author) (Search by this author)
;
O. Vasylkiv (author) (Search by this author)
ORCID SAMURAI
Keyword
boron, polycrystalline ceramic, flexural strength, high-temperature materials
Date published
2022-01-24
Updated at
2024-11-21 16:31:38 +0900

MSEA-D-21-03137-R2 1.pdf
Allotropic strengthening and in situ phase transformations during ultra-high-temperature flexure of bulk tantalum nitride
Journal article
Creator
D. Demirskyi (author) (Search by this author)
National Institute for Materials Science
;
O. Vasylkiv (author) (Search by this author)
ORCID SAMURAI ;
K. Yoshimi (author) (Search by this author)
Keyword
binary phase diagram, flexural strength, toughness, high-temperature materials
Date published
2021-08-20
Updated at
2024-11-19 16:30:09 +0900

Filter