Predicting quarter-buckling and herringbone buckling in rolled strip

Author:

Zhou Z1,Thomson P F2,Lam Y C3,Yuen D D W4

Affiliation:

1. Department of Mechanical Engineering, Monash University, Building 31, Victoria 3800, Australia

2. Department of Materials Engineering, Monash University, Victoria, Australia

3. Department of Mechanical and Production Engineering, Nanyang Technological University, Singapore

4. BlueScope Steel, Port Kembla, Australia

Abstract

Although edge-wave and centre-buckles in rolled strip are believed to be largely self-equilibrated, the result of residual stress, formation of herringbone and quarter-buckles in hot- or cold-rolled strip is believed to require application of external stress. It is verified here that stress distributions such as those indicated by Roberts are possible causes of quarter-buckling and herringbone buckling. Quarter-buckling is believed to result from stress in the sheet or strip produced by non-parabolic bending of the work rolls. Herringbone buckling is attributed to local regions of axial tension and compression in the transverse stress distribution, caused by misalignment, which effectively produces a shear in the sheet that may manifest itself in diagonal buckling.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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1. Rolling;Schey’s Tribology in Metalworking;2023-09-30

2. Research on quarter-wave control in DP980 steel during cold rolling based on multi-pass simulation;The International Journal of Advanced Manufacturing Technology;2022-09-24

3. Investigations on relations between shape defects and thickness profile variations in thin flat rolling;The International Journal of Advanced Manufacturing Technology;2014-11-09

4. Investigations on Formation of Shape Defects in Square Rolling of Uniform Thin Flat Sheet Product;ISIJ International;2013

5. Coupled approach for flatness prediction in cold rolling of thin strip;International Journal of Mechanical Sciences;2011-09

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