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Finite Element Analysis of Densification Behavior during Equal Channel Angular Pressing Process of Powders
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분말 ECAP 공정 시 치밀화의 유한요소해석
윤승채, 팜쾅, 천병선, 이홍로, 김형섭
Finite Element Analysis of Densification Behavior during Equal Channel Angular Pressing Process of Powders
Seung-Chae Yoon, Pham Quang, Byong-Sun Chun, Hong-Ro Lee, Hyoung-Seop Kim
Journal of Korean Powder Metallurgy Institute 2006;13(6):415-420
DOI: https://doi.org/10.4150/KPMI.2006.13.6.415
1충남대학교 나노공학부
2충남대학교 나노공학부
3충남대학교 나노공학부
4충남대학교 나노공학부
5충남대학교 나노공학부
1Department of Nano Materials Engineering, Chungnam National University
2Department of Nano Materials Engineering, Chungnam National University
3Department of Nano Materials Engineering, Chungnam National University
4Department of Nano Materials Engineering, Chungnam National University
5Department of Nano Materials Engineering, Chungnam National University
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Nanostructured metallic materials are synthesized by bottom-up processing which starts with powders for assembling bulk materials or top-down processing starting with a bulk solid. A representative bottom-up and top-down paths for bulk nanostructured/ultrafine grained metallic materials are powder consolidation and severe plastic deformation (SPD) methods, respectively. In this study, the bottom-up powder and top-down SPD approaches were combined in order to achieve both full density and grain refinement without grain growth, which were considered as a bottle neck of the bottom-up method using conventional powder metallurgy of compaction and sintering. For the powder consolidation, equal channel angular pressing (ECAP), one of the most promising method in SPD, was used. The ECAP processing associated with stress developments was investigated. ECAP for powder consolidation were numerically analyzed using the finite element method (FEM) in conjunction with pressure and shear stress.

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