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Phase Formation and Diamond Retention in Cdiamond–(WC–Co)–ZrO2 Composites Formed by Spark Plasma Sintering Method.

Authors :
Ratov, B. T.
Mechnik, V. A.
Bondarenko, N. A.
Gevorkyan, E. S.
Kolodnitskyi, V. M.
Kalzhanova, A. B.
Sundetova, P. S.
Utepov, Z. G.
Source :
Journal of Superhard Materials; Apr2024, Vol. 46 Issue 2, p112-128, 17p
Publication Year :
2024

Abstract

New data on the effect of a ZrO<subscript>2</subscript> nanopowder additive (from 0 to 10 wt %) on phase formation and structural transformations in the hard-alloy matrix in the region of destruction under impact loading and on diamond retention in composite diamond-containing 25С<subscript>diamond</subscript>–70.5WC–4.5Co materials formed by spark plasma sintering are presented. The sintered initial 94WC–6Co composite consists of the hexagonal WC phase with unit cell parameters a = 0.2906 nm and с = 0.2837 nm, the cubic Co<subscript>3</subscript>W<subscript>3</subscript>C phase (а = 1.1112 nm), and the hexagonal graphite phase. The sintered composites with ZrO<subscript>2</subscript> content from 0.5 to 10% is composed by the WC and Co<subscript>3</subscript>W<subscript>3</subscript>C structural phases, amorphous carbon, and the tetragonal ZrO<subscript>2</subscript> phase (а = 0.36019 nm, с = 0.5174 nm). It has been shown that, when the ZrO<subscript>2</subscript> content is increased, the sizes of phase components and average microstrains are more rapidly decreased in directions с and а of the 94WC–6Co composite. The addition of ZrO<subscript>2</subscript> to the 25С<subscript>diamond</subscript>–70.5WC–4.5Co composite improves diamond retention. In the sintered composites, diamond retention is improved due to that they have a higher content of the tetragonal ZrO<subscript>2</subscript> phase, which provides the transformational mechanism of strengthening in the hard-alloy matrix material via its structural transformations into a denser one and the formation of a more fine-grained matrix structure with thin interlayers of cobalt bonds between WC grains. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10634576
Volume :
46
Issue :
2
Database :
Complementary Index
Journal :
Journal of Superhard Materials
Publication Type :
Academic Journal
Accession number :
177949044
Full Text :
https://doi.org/10.3103/S1063457624020084