Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method
In order to evaluate the surface quality of ferritic stainless steel (FSS) sheets tensile deformation, a crystal plasticity (CP) model, in which the constitutive laws were incorporated with the consideration of the heterogeneous distribution of the properties of grains, was established to analyse th...
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doaj-ce067608ae3a4bff97eb5d0fa1ed48d02020-11-25T03:41:53ZengElsevierJournal of Materials Research and Technology2238-78542019-05-018331753187Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element methodXiaoguang Ma0Jingwei Zhao1Wei Du2Xin Zhang3Zhengyi Jiang4School of Mechanical, Materials, Mechatronic and Biomedical Engineering, University of Wollongong, Wollongong, NSW 2522, Australia; Corresponding authors.School of Mechanical, Materials, Mechatronic and Biomedical Engineering, University of Wollongong, Wollongong, NSW 2522, Australia; Corresponding authors.Stainless Steel Technical Centre, Baosteel Research Institute (R&D Centre), Baoshan Iron & Steel Co., Ltd., Shanghai 200431, ChinaStainless Steel Technical Centre, Baosteel Research Institute (R&D Centre), Baoshan Iron & Steel Co., Ltd., Shanghai 200431, ChinaSchool of Mechanical, Materials, Mechatronic and Biomedical Engineering, University of Wollongong, Wollongong, NSW 2522, Australia; Corresponding authors.In order to evaluate the surface quality of ferritic stainless steel (FSS) sheets tensile deformation, a crystal plasticity (CP) model, in which the constitutive laws were incorporated with the consideration of the heterogeneous distribution of the properties of grains, was established to analyse the effect of texture, grain sizes and initial surface roughness on the surface roughness evolution of FSS sheets. The electron backscatter diffraction (EBSD) tests were performed to characterise the texture and the grains. A tensile test of the represent volume was simulated and further verified by experimental results. The numerical simulation results indicate that the surface roughness is dependent almost linearly on the average grain size. The {001}〈110〉 and the {112}〈110〉 components induce remarkable undulation on the surface of FSS sheets during uniaxial tension. The surface topology of FSS sheets after tensile deformation are obtained using 3D laser scanning microscope, which shows an agreement with the simulated results. Keywords: Ferritic stainless steel, Surface roughness evolution, Surface topography, Crystal plasticity model.http://www.sciencedirect.com/science/article/pii/S2238785418309657 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiaoguang Ma Jingwei Zhao Wei Du Xin Zhang Zhengyi Jiang |
spellingShingle |
Xiaoguang Ma Jingwei Zhao Wei Du Xin Zhang Zhengyi Jiang Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method Journal of Materials Research and Technology |
author_facet |
Xiaoguang Ma Jingwei Zhao Wei Du Xin Zhang Zhengyi Jiang |
author_sort |
Xiaoguang Ma |
title |
Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method |
title_short |
Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method |
title_full |
Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method |
title_fullStr |
Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method |
title_full_unstemmed |
Analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method |
title_sort |
analysis of surface roughness evolution of ferritic stainless steel using crystal plasticity finite element method |
publisher |
Elsevier |
series |
Journal of Materials Research and Technology |
issn |
2238-7854 |
publishDate |
2019-05-01 |
description |
In order to evaluate the surface quality of ferritic stainless steel (FSS) sheets tensile deformation, a crystal plasticity (CP) model, in which the constitutive laws were incorporated with the consideration of the heterogeneous distribution of the properties of grains, was established to analyse the effect of texture, grain sizes and initial surface roughness on the surface roughness evolution of FSS sheets. The electron backscatter diffraction (EBSD) tests were performed to characterise the texture and the grains. A tensile test of the represent volume was simulated and further verified by experimental results. The numerical simulation results indicate that the surface roughness is dependent almost linearly on the average grain size. The {001}〈110〉 and the {112}〈110〉 components induce remarkable undulation on the surface of FSS sheets during uniaxial tension. The surface topology of FSS sheets after tensile deformation are obtained using 3D laser scanning microscope, which shows an agreement with the simulated results. Keywords: Ferritic stainless steel, Surface roughness evolution, Surface topography, Crystal plasticity model. |
url |
http://www.sciencedirect.com/science/article/pii/S2238785418309657 |
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