Improvement strategy for edge waviness in roll bending process of corrugated sheet metals

被引:0
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作者
Do-Sik Shim
Jong-Youn Son
Eun-Mi Lee
Gyeong-Yun Baek
机构
[1] KITECH,Green Manufacturing Process Technology Center
[2] Chonnam National University,Department of Mechanical Engineering
关键词
Corrugated sheet metal; Roll bending; Wavy edge; Finite element method (FEM);
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学科分类号
摘要
This paper focuses on the corrugated thin-walled sheet metal in the roll bending process. The main defect that appears in corrugated panels subjected to high amounts of bending deformation is a wavy edge. Edge defects are caused by excessive longitudinal stress and strain near the edge of the plate, and local edge buckling may occur when some critical value of the bending radius is exceeded. This paper proposes two different approaches to avoid a wavy edge for a formed panel: excessive stress on the edge region is restrained by controlling the length of the cross-sectional end of the corrugated panel while considering the stress distribution, and the bending radius in each forming step is determined by considering the strain limit at which the initial edge waviness occurs to avoid excessive compression at particular steps. The experimental and numerical results indicated that the two proposed design strategies can minimize wavy edges in the formed shape.
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页码:581 / 596
页数:15
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