Some surface profiles of a strip after plane-strain indentation by rigid bodies with serrated surfaces

Author:

Shi Jingyu,McElwain D.L.S,Domanti S.A

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Metals and Alloys,Computer Science Applications,Modelling and Simulation,Ceramics and Composites

Reference19 articles.

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2. M.L. Busch, H. Biausser, G. Baird, A. Le Bon, M. Grumbach, Metallurgical and mechanical aspects of temper rolling process, in: Proceedings of the Fourth International Steel Rolling Conference, Deauvill, France, June 1987, pp. E48.1–E48.7.

3. Development of an FEM-model for the simulation of the transfer of surface structure in cold-rolling processes;Bunten;J. Mater. Process. Technol.,1996

4. Real area of contact between a rough tool and a smooth workpiece at high normal pressures;Bay;Wear,1976

5. O. Pawelski, W. Rasp, L. Loffler, A plastomechanical model of the transfer of surface roughness from tool to workpiece, in: K. Lange (Ed.), Advanced Technology of Plasticity: Proceedings of the Second International Conference on Technology of Plasticity, 1987, Springer, Berlin.

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1. Effect of ceramic work rolls on surface roughness of rolled SUS304 ultra-thin strips;Journal of Iron and Steel Research International;2024-01-10

2. Plane strain wedge indentation revisited;Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences;2022-06

3. An Experimental Investigation of Steel Surface Topography Transfer by Cold Rolling;Micromachines;2020-09-30

4. Rolling: Skin-Pass;Encyclopedia of Iron, Steel, and Their Alloys;2016-01-13

5. Control method for steel strip roughness in Two-stand temper mill rolling;Chinese Journal of Mechanical Engineering;2015-05

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