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Updated: Aug 20, 2026

Knowledge Based Cloud FE Simulation of Sheet Metal Forming Processes
Published on: December 13, 2016
Self-affine surface morphology of plastically deformed metals
Michael Zaiser1, Frederic Madani Grasset, Vasileios Koutsos
1Centre for Materials Science and Engineering, The University of Edinburgh, The King's Buildings, Sanderson Building, Edinburgh EH9 3JL, United Kingdom.
Abstract:
We analyze the surface morphology of metals after plastic deformation over a range of scales from 10 nm to 2 mm using atomic force microscopy and scanning white-light interferometry. We demonstrate that an initially smooth surface during deformation develops self-affine roughness over almost 4 orders of magnitude in scale. The Hurst exponent H of one-dimensional surface profiles initially decreases with increasing strain and then stabilizes at H approximately 0.75. We show that the profiles can be mathematically modeled as graphs of a fractional Brownian motion. Our findings can be understood in terms of a fractal distribution of plastic strain within the deformed samples.
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