A review on plastic deformation induced surface/interface roughening of sheet metallic materials

With the increasing demand for light weight design in industries such as aerospace and automotive, sheet metallic materials with high strength and low density have been intensively manufactured and widely applied. However, plastic deformation induced surface roughening is an undesirable and a practi...

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Autores principales: Ning Nie, Lihong Su, Guanyu Deng, Huijun Li, Hailiang Yu, Anh Kiet Tieu
Formato: article
Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/fdc2e56e11d24b97bb94dad0ccbe464b
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spelling oai:doaj.org-article:fdc2e56e11d24b97bb94dad0ccbe464b2021-12-04T04:34:31ZA review on plastic deformation induced surface/interface roughening of sheet metallic materials2238-785410.1016/j.jmrt.2021.11.087https://doaj.org/article/fdc2e56e11d24b97bb94dad0ccbe464b2021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2238785421013661https://doaj.org/toc/2238-7854With the increasing demand for light weight design in industries such as aerospace and automotive, sheet metallic materials with high strength and low density have been intensively manufactured and widely applied. However, plastic deformation induced surface roughening is an undesirable and a practically unavoidable phenomenon for sheet metallic materials and becomes the subject of great attention in recent years. The evolution of surface roughening plays important roles in the strain limit of the deformation and also significantly influences the product quality and application. This paper provides a comprehensive overview of both experimental and numerical modelling contributions to understand the surface roughening behaviour of sheet metallic materials during various plastic deformation and manufacturing processes. It has been found that roughening of the free surface or necking of the interface is induced by grain scale strain heterogeneity and strongly dependent on the strain the material experienced, strain state and direction, grain size and texture, lubrication, mechanical properties of materials, rolling parameters, etc. By controlling and optimising these parameters, the surface roughening can be optimised for different materials and processing techniques to suit different applications.Ning NieLihong SuGuanyu DengHuijun LiHailiang YuAnh Kiet TieuElsevierarticleManufacturingSheet metalPlastic deformationSurface rougheningNumerical modellingMining engineering. MetallurgyTN1-997ENJournal of Materials Research and Technology, Vol 15, Iss , Pp 6574-6607 (2021)
institution DOAJ
collection DOAJ
language EN
topic Manufacturing
Sheet metal
Plastic deformation
Surface roughening
Numerical modelling
Mining engineering. Metallurgy
TN1-997
spellingShingle Manufacturing
Sheet metal
Plastic deformation
Surface roughening
Numerical modelling
Mining engineering. Metallurgy
TN1-997
Ning Nie
Lihong Su
Guanyu Deng
Huijun Li
Hailiang Yu
Anh Kiet Tieu
A review on plastic deformation induced surface/interface roughening of sheet metallic materials
description With the increasing demand for light weight design in industries such as aerospace and automotive, sheet metallic materials with high strength and low density have been intensively manufactured and widely applied. However, plastic deformation induced surface roughening is an undesirable and a practically unavoidable phenomenon for sheet metallic materials and becomes the subject of great attention in recent years. The evolution of surface roughening plays important roles in the strain limit of the deformation and also significantly influences the product quality and application. This paper provides a comprehensive overview of both experimental and numerical modelling contributions to understand the surface roughening behaviour of sheet metallic materials during various plastic deformation and manufacturing processes. It has been found that roughening of the free surface or necking of the interface is induced by grain scale strain heterogeneity and strongly dependent on the strain the material experienced, strain state and direction, grain size and texture, lubrication, mechanical properties of materials, rolling parameters, etc. By controlling and optimising these parameters, the surface roughening can be optimised for different materials and processing techniques to suit different applications.
format article
author Ning Nie
Lihong Su
Guanyu Deng
Huijun Li
Hailiang Yu
Anh Kiet Tieu
author_facet Ning Nie
Lihong Su
Guanyu Deng
Huijun Li
Hailiang Yu
Anh Kiet Tieu
author_sort Ning Nie
title A review on plastic deformation induced surface/interface roughening of sheet metallic materials
title_short A review on plastic deformation induced surface/interface roughening of sheet metallic materials
title_full A review on plastic deformation induced surface/interface roughening of sheet metallic materials
title_fullStr A review on plastic deformation induced surface/interface roughening of sheet metallic materials
title_full_unstemmed A review on plastic deformation induced surface/interface roughening of sheet metallic materials
title_sort review on plastic deformation induced surface/interface roughening of sheet metallic materials
publisher Elsevier
publishDate 2021
url https://doaj.org/article/fdc2e56e11d24b97bb94dad0ccbe464b
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