Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics

Laser cleaning is a relatively new and promising industrial cleaning method. Despite its potential as an alternative to conventional de-rusting methods, very few studies have been done on rust removal. The current study is aimed at investigating experimentally the effect of various important laser p...

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Main Authors: Narayanan Vishnu, Singh Ramesh K, Marla Deepak
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201822101007
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spelling doaj-f5fa314352c34f5f9b4208c44075f48f2021-02-02T05:02:55ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012210100710.1051/matecconf/201822101007matecconf_icdme2018_01007Laser cleaning for rust removal on mild steel: An experimental study on surface characteristicsNarayanan VishnuSingh Ramesh KMarla DeepakLaser cleaning is a relatively new and promising industrial cleaning method. Despite its potential as an alternative to conventional de-rusting methods, very few studies have been done on rust removal. The current study is aimed at investigating experimentally the effect of various important laser parameters on properties of surface after laser processing. Rusted mild steel samples were irradiated with moving pulsed laser beam. Parameters like scan speed, number of passes, etc. were varied and the change in properties such as surface profile, roughness, hardness, etc. of the processed surface were observed along with depth of removal. The depth of removal was found to increase with an increase in laser power, and number of scans but decreased with an increase in scan speed. The surface got discoloured and deformed at lower speeds and higher powers. The surface roughness after processing hardly showed any variation with the initial roughness values before cleaning but depended on the scanning path of the laser. The microhardness values after laser processing varied with path traced by the laser beam which points to microstructure changes in the samples due to laser processing.https://doi.org/10.1051/matecconf/201822101007
collection DOAJ
language English
format Article
sources DOAJ
author Narayanan Vishnu
Singh Ramesh K
Marla Deepak
spellingShingle Narayanan Vishnu
Singh Ramesh K
Marla Deepak
Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics
MATEC Web of Conferences
author_facet Narayanan Vishnu
Singh Ramesh K
Marla Deepak
author_sort Narayanan Vishnu
title Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics
title_short Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics
title_full Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics
title_fullStr Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics
title_full_unstemmed Laser cleaning for rust removal on mild steel: An experimental study on surface characteristics
title_sort laser cleaning for rust removal on mild steel: an experimental study on surface characteristics
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Laser cleaning is a relatively new and promising industrial cleaning method. Despite its potential as an alternative to conventional de-rusting methods, very few studies have been done on rust removal. The current study is aimed at investigating experimentally the effect of various important laser parameters on properties of surface after laser processing. Rusted mild steel samples were irradiated with moving pulsed laser beam. Parameters like scan speed, number of passes, etc. were varied and the change in properties such as surface profile, roughness, hardness, etc. of the processed surface were observed along with depth of removal. The depth of removal was found to increase with an increase in laser power, and number of scans but decreased with an increase in scan speed. The surface got discoloured and deformed at lower speeds and higher powers. The surface roughness after processing hardly showed any variation with the initial roughness values before cleaning but depended on the scanning path of the laser. The microhardness values after laser processing varied with path traced by the laser beam which points to microstructure changes in the samples due to laser processing.
url https://doi.org/10.1051/matecconf/201822101007
work_keys_str_mv AT narayananvishnu lasercleaningforrustremovalonmildsteelanexperimentalstudyonsurfacecharacteristics
AT singhrameshk lasercleaningforrustremovalonmildsteelanexperimentalstudyonsurfacecharacteristics
AT marladeepak lasercleaningforrustremovalonmildsteelanexperimentalstudyonsurfacecharacteristics
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