Ostwald ripening of γ-Fe precipitates in a Cu-1.5 at. % Fe alloy
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference11 articles.
1. Structure of martensite in very small iron-rich precipitates
2. The martensitig transformation of iron precipitates in a copper matrix
3. Dislocations in grain boundaries and grain boundary sliding
4. Ageing Characteristics of Copper-Iron Alloys
5. Etude par microscopie electronique de la cinetique de precipitation dans un alliage de cuivre a 2, 1 % de fer
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