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Sun-Ig Hong 1 Article
Powder Densification Using Equal Channel Angular Pressing
Seung-Chae Yoon, Min-Hong Seo, Sun-Ig Hong, Hyoung-Seop Kim
J Korean Powder Metall Inst. 2006;13(2):124-128.
DOI: https://doi.org/10.4150/KPMI.2006.13.2.124
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In recent years, equal channel angular pressing (ECAP) has been the subject of intensive study due to its capability of producing fully dense samples having a ultrafine grain size. In this paper, the ECAP process was applied to metallic powders in order to achieve both powder consolidation and grain refinement. In the ECAP process for solid and powder metals, knowledge of the internal stress, strain and strain rate distribution is fundamental to the determination of the optimum process conditions for a given material. The properties of the ECAP processed solid and powder materials are strongly dependent on the shear plastic deformation behavior during ECAP, which is controlled mainly by die geometry, material properties, and process conditions. In this study, we investigated the consolidation, plastic deformation and microstructure evolution behaviour of the powder compact during ECAP.

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    Behzad Sadeghi, Pasquale Cavaliere, Catalin Iulian Pruncu, Martin Balog, Moara Marques de Castro, Rajni Chahal
    Critical Reviews in Solid State and Materials Sciences.2024; 49(1): 1.     CrossRef

Journal of Powder Materials : Journal of Powder Materials