Investigation of post-weld rolling methods to reduce residual stress and distortion

Date

2017-04-27

Supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier

Department

Type

Article

ISSN

0924-0136

Format

Free to read from

Citation

Luis D. Cozzolino, Harry E. Coules, Paul A. Colegrove, Shuwen Wen, Investigation of post-weld rolling methods to reduce residual stress and distortion, Journal of Materials Processing Technology, Volume 247, September 2017, pp243-256

Abstract

The mechanisms of post-weld rolling and how it reduces and eliminates residual stress and distortion are poorly understood. Finite element analysis was applied to two different methods of rolling: rolling the weld bead directly with a single roller and rolling beside the weld bead with a dual flat roller. The models showed that both rolling techniques were able to induce compressive stress into the weld region, which increased with rolling load. The distribution of stress was sensitive to the coefficients of friction between the workpiece and the roller and the backing bar. High friction coefficients concentrated the plastic deformation and compressive stress within the centre of the weld bead. Distortion can be eliminated by rolling; however, the experiments indicated that this was only achieved when applied to the weld bead directly.

Description

Software Description

Software Language

Github

Keywords

Residual stress management, Rolling, Welding, Modelling, FEA

DOI

Rights

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