Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming

Laser peen forming (LPF) is a pure mechanical forming method through accumulated plastic strain, which has been successfully applied in wing components. Experimental investigation has been performed to understand the effect of process parameters such as constraint conditions, sheet thickness and las...

Full description

Bibliographic Details
Main Authors: Wu Junfeng, Zou Shikun, Zhang Yongkang, Gong Shuili
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201816703007
id doaj-4f3b179cb41841489458978d1d2e2500
record_format Article
spelling doaj-4f3b179cb41841489458978d1d2e25002021-02-02T08:02:29ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011670300710.1051/matecconf/201816703007matecconf_ic4m-icdes2018_03007Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen FormingWu JunfengZou ShikunZhang YongkangGong ShuiliLaser peen forming (LPF) is a pure mechanical forming method through accumulated plastic strain, which has been successfully applied in wing components. Experimental investigation has been performed to understand the effect of process parameters such as constraint conditions, sheet thickness and laser energy on surface morphology and bending deformation of 2024-T3 thin sheets of dimensions of 76 mm ×19 mm (length × width). The research results indicated that bulges on the aluminum foil were generated at the bottom surface and not generated at the topmost surface. It was different for transition value of two-way bending deformations of thin sheets after LPF with different constraint conditions. Remain flat thicknesses of thin sheets after LPF were about 1 mm ~ 2 mm for 20 J, 25 J and 30 J. Arc heights and curvatures of 3 mm thickness sheets increased with laser energy and those of 2 mm thickness sheets only made little change. It was found that convex deformation, flat, concave deformation and laser deep drawing for thin sheets with different thicknesses after LPF.https://doi.org/10.1051/matecconf/201816703007
collection DOAJ
language English
format Article
sources DOAJ
author Wu Junfeng
Zou Shikun
Zhang Yongkang
Gong Shuili
spellingShingle Wu Junfeng
Zou Shikun
Zhang Yongkang
Gong Shuili
Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming
MATEC Web of Conferences
author_facet Wu Junfeng
Zou Shikun
Zhang Yongkang
Gong Shuili
author_sort Wu Junfeng
title Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming
title_short Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming
title_full Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming
title_fullStr Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming
title_full_unstemmed Surface Morphology and Bending Deformation of 2024-T3 Thin Sheets with Laser Peen Forming
title_sort surface morphology and bending deformation of 2024-t3 thin sheets with laser peen forming
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Laser peen forming (LPF) is a pure mechanical forming method through accumulated plastic strain, which has been successfully applied in wing components. Experimental investigation has been performed to understand the effect of process parameters such as constraint conditions, sheet thickness and laser energy on surface morphology and bending deformation of 2024-T3 thin sheets of dimensions of 76 mm ×19 mm (length × width). The research results indicated that bulges on the aluminum foil were generated at the bottom surface and not generated at the topmost surface. It was different for transition value of two-way bending deformations of thin sheets after LPF with different constraint conditions. Remain flat thicknesses of thin sheets after LPF were about 1 mm ~ 2 mm for 20 J, 25 J and 30 J. Arc heights and curvatures of 3 mm thickness sheets increased with laser energy and those of 2 mm thickness sheets only made little change. It was found that convex deformation, flat, concave deformation and laser deep drawing for thin sheets with different thicknesses after LPF.
url https://doi.org/10.1051/matecconf/201816703007
work_keys_str_mv AT wujunfeng surfacemorphologyandbendingdeformationof2024t3thinsheetswithlaserpeenforming
AT zoushikun surfacemorphologyandbendingdeformationof2024t3thinsheetswithlaserpeenforming
AT zhangyongkang surfacemorphologyandbendingdeformationof2024t3thinsheetswithlaserpeenforming
AT gongshuili surfacemorphologyandbendingdeformationof2024t3thinsheetswithlaserpeenforming
_version_ 1724298015530811392