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Circumferential twisting during route B equal-channel angular pressing

delete2018-09-01
delete9
PRE
AI
H
Hak Hyeon Lee
W
Wooyeol Kim
K
Ki Chae Jung
S
Seung-Jae Seo
J
Jae Kun Lee
H
Hong Lae Park
K
Kyung‐Tae Park
Hyoung Seop Kim 封面图
Hyoung Seop Kim (Hyoung Seop Kim) *
DOI:10.1016/j.jmatprotec.2018.05.001delete
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摘要

摘要

En 中文
Equal-channel angular pressing (ECAP) is a representative severe plastic deformation process to fabricate bulk nanostructured materials by repetitive passes. Typically, there are four basic processing routes for the repetitive passes: route B is the most beneficial for grain refinement and homogenization of microstructure. In this work, investigation on deformation during route B in ECAP was conducted using the finite element analysis. It was found that the route B could lead to the inhomogeneous equivalent strain along the longitudinal direction of the workpiece by an unusual phenomenon called circumferential twisting. The circumferential twisting is primarily attributed to the deformation inhomogeneity for the cross-section induced during the 1 st pass of ECAP. This phenomenon occurs remarkably for the large-scale ECAP process because the twisting angle per unit length is almost constant. In addition, the higher the strain hardening exponent of the material, the greater the sample twisting during ECAP by the corner gap effect.
Keyword:
Equal-channel angular pressing
Finite element method
Severe plastic deformation
Strain inhomogeneity
Circumferential twisting
Deformation behavior
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期刊

J
Journal of Materials Processing Technology
IF:
7.5
论文数:
1.6W
被引数:
4.5W

机构

Hanbat National University 封面图
Hanbat National University
学者数:
2.1K
论文数: 2.2K
被引数: 1.9K
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