THE EFFECT OF ELASTIC-ANISOTROPY ON THE MIGRATION OF INTERGRANULAR LIQUID-FILMS AND THE PRECIPITATION OF A LIQUID-PHASE IN A CO-CU ALLOY

Authors
BAIK, YJKIM, JKYOON, DY
Issue Date
1993-08
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Citation
ACTA METALLURGICA ET MATERIALIA, v.41, no.8, pp.2385 - 2393
Abstract
When a Co-20Cu (wt%) alloy prepared by liquid phase sintering at 1300-degrees-C is heat-treated at 1150-degrees-C, the intergranular liquid films and grain boundaries migrate, leaving behind a new solid solution with reduced Cu content. The phenomenon is identical to that observed previously in Mo-Ni. The calculated driving force for the migration is almost equal to the coherency strain energy in the solute diffusion zone ahead of the migrating boundaries. The migrating liquid films show faceting with curved planes and edges. Their shape closely resembles the growth shapes predicted on the basis of the coherency strain energy with anisotropic elastic constants. During the heat-treatment, liquid precipitates form within grains and at grain boundaries, and they also show faceting, which is consistent with orientation dependent coherency strain energy in the diffusion zone around the precipitates.
Keywords
GRAIN-BOUNDARY MIGRATION; DIFFUSIONAL COHERENCY STRAIN; MO-NI ALLOY; DISCONTINUOUS PRECIPITATION; DRIVING FORCE; MATRIX; SOLIDS; STRESS; ZN; GRAIN-BOUNDARY MIGRATION; DIFFUSIONAL COHERENCY STRAIN; MO-NI ALLOY; DISCONTINUOUS PRECIPITATION; DRIVING FORCE; MATRIX; SOLIDS; STRESS; ZN
ISSN
0956-7151
URI
https://pubs.kist.re.kr/handle/201004/146007
DOI
10.1016/0956-7151(93)90318-M
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KIST Article > Others
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