Analytical Modeling of Surface Roughness, Hardness and Residual Stress Induced by Deep Rolling
Autor: | Bernd Breidenstein, Berend Denkena, Alexandre Mendes Abrão, Tobias Mörke, Frederico de Castro Magalhães |
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Rok vydání: | 2016 |
Předmět: |
0209 industrial biotechnology
Work (thermodynamics) Materials science Mechanical Engineering Metallurgy 02 engineering and technology Surface finish Modeling and simulation 020303 mechanical engineering & transports 020901 industrial engineering & automation 0203 mechanical engineering Mechanics of Materials Residual stress Surface roughness General Materials Science Composite material |
Zdroj: | Journal of Materials Engineering and Performance. 26:876-884 |
ISSN: | 1544-1024 1059-9495 |
Popis: | Deep rolling is a mechanical surface treatment that can significantly alter the features of metallic components and despite the fact that it has been used for a long time, to date the influence of the interaction among the principal process parameters has not been thoroughly understood. Aiming to fulfill this gap, this work addresses the effect of deep rolling on surface finish and mechanical properties from the analytical and experimental viewpoints. More specifically, the influence of deep rolling pressure and number of passes on surface roughness, hardness and residual stress induced on AISI 1060 steel is investigated. The findings indicate that the surface roughness after deep rolling is closely related to the yield strength of the work material and the available models can satisfactorily predict the former parameter. Better agreement between the mathematical and experimental hardness values is achieved when a single deep rolling pass is employed, as well as when the yield strength of the work material increases. Compressive residual stress is generally induced after deep rolling, irrespectively of the selected heat treatment and deep rolling parameters. Finally, the model proposed to predict residual stress provides results closest to the experimental data especially when the annealed material is considered. |
Databáze: | OpenAIRE |
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