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Finite Element Analysis on the Effect of Die Corner Angle in Equal Channel Angular Pressing Process of Powders
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HOME > J Korean Powder Metall Inst > Volume 14(1); 2007 > Article
분말 ECAP 공정에 미치는 금형 모서리각 효과에 대한 유한요소해석
윤승채, 복천희, 팜쾅, 김형섭
Finite Element Analysis on the Effect of Die Corner Angle in Equal Channel Angular Pressing Process of Powders
Seung-Chae Yoon, Cheon-Hee Bok, Pham Quang, Hyoung-Seop Kim
Journal of Korean Powder Metallurgy Institute 2007;14(1):26-31
DOI: https://doi.org/10.4150/KPMI.2007.14.1.026
1충남대학교 나노공학부
2충남대학교 나노공학부
3충남대학교 나노공학부
4충남대학교 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
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Manufacturing bulk nanostructured materials with least grain growth from initial powders is challenging because of the bottle neck of bottom-up methods using the conventional powder metallurgy of compaction and sintering. In this study, bottom-up type powder metallurgy processing and top-down type SPD (Severe Plastic Deformation) approaches were combined in order to achieve both real density and grain refinement of metallic powders. ECAP (Equal Channel Angular Pressing), one of the most promising processes in SPD, was used for the powder consolidation method. For understanding the ECAP process, investigating the powder density as well as internal stress, strain distribution is crucial. We investigated the consolidation and plastic deformation of the metallic powders during ECAP using the finite element simulations. Almost independent behavior of powder densification in the entry channel and shear deformation in the main deformation zone was found by the finite element method. Effects of processing parameters on densification and density distributions were investigated.

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