Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions

For many years already, a lot of research groups try to shed light on the origin of friction and to enhance the tribological performance of rubbing surfaces. In this context, the ability to tailor the tribological properties on different scales is of utmost importance. In this work, laser interferen...

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Autores principales: Andreas Rosenkranz, Carsten Gachot, Esteban Ramos-Moore, Frank Mücklich
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Publicado: Japanese Society of Tribologists 2016
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spelling oai:doaj.org-article:c7410c04eaf744b9814fe3084c13d0a02021-11-05T09:21:12ZLaser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions1881-219810.2474/trol.11.575https://doaj.org/article/c7410c04eaf744b9814fe3084c13d0a02016-09-01T00:00:00Zhttps://www.jstage.jst.go.jp/article/trol/11/5/11_575/_pdf/-char/enhttps://doaj.org/toc/1881-2198For many years already, a lot of research groups try to shed light on the origin of friction and to enhance the tribological performance of rubbing surfaces. In this context, the ability to tailor the tribological properties on different scales is of utmost importance. In this work, laser interference patterning is used to produce well-defined surface topographies with line- and cross-like patterns in order to modify the tribological performance under dry and lubricated conditions. Under dry conditions, the frictional behavior of line-like patterned surfaces having a periodicity of 9 μm are investigated using a ball-on-disk tribometer in linear reciprocating sliding mode as a function of the normal load and the relative alignment. Regarding mixed lubrication, the oil film lifetime of cross-like patterns (periodicity of 9 μm) is evaluated using a ball-on-disk tribometer (normal load of 5 N and sliding velocity of 5 cm/s) in rotational sliding mode. The experiments under dry friction demonstrate a significant friction reduction for the line-like surface patterned surfaces, independent on the respective alignment. Dependent on the used normal load, differences in the frictional behavior are observed. For the cross-like patterns under mixed lubrication, an increase of the oil film lifetime by a factor of 56 is achieved.Andreas RosenkranzCarsten GachotEsteban Ramos-MooreFrank MücklichJapanese Society of Tribologistsarticlesurface patterninglaser interferencedry frictionmixed lubricationwearPhysicsQC1-999Engineering (General). Civil engineering (General)TA1-2040Mechanical engineering and machineryTJ1-1570ChemistryQD1-999ENTribology Online, Vol 11, Iss 5, Pp 575-582 (2016)
institution DOAJ
collection DOAJ
language EN
topic surface patterning
laser interference
dry friction
mixed lubrication
wear
Physics
QC1-999
Engineering (General). Civil engineering (General)
TA1-2040
Mechanical engineering and machinery
TJ1-1570
Chemistry
QD1-999
spellingShingle surface patterning
laser interference
dry friction
mixed lubrication
wear
Physics
QC1-999
Engineering (General). Civil engineering (General)
TA1-2040
Mechanical engineering and machinery
TJ1-1570
Chemistry
QD1-999
Andreas Rosenkranz
Carsten Gachot
Esteban Ramos-Moore
Frank Mücklich
Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions
description For many years already, a lot of research groups try to shed light on the origin of friction and to enhance the tribological performance of rubbing surfaces. In this context, the ability to tailor the tribological properties on different scales is of utmost importance. In this work, laser interference patterning is used to produce well-defined surface topographies with line- and cross-like patterns in order to modify the tribological performance under dry and lubricated conditions. Under dry conditions, the frictional behavior of line-like patterned surfaces having a periodicity of 9 μm are investigated using a ball-on-disk tribometer in linear reciprocating sliding mode as a function of the normal load and the relative alignment. Regarding mixed lubrication, the oil film lifetime of cross-like patterns (periodicity of 9 μm) is evaluated using a ball-on-disk tribometer (normal load of 5 N and sliding velocity of 5 cm/s) in rotational sliding mode. The experiments under dry friction demonstrate a significant friction reduction for the line-like surface patterned surfaces, independent on the respective alignment. Dependent on the used normal load, differences in the frictional behavior are observed. For the cross-like patterns under mixed lubrication, an increase of the oil film lifetime by a factor of 56 is achieved.
format article
author Andreas Rosenkranz
Carsten Gachot
Esteban Ramos-Moore
Frank Mücklich
author_facet Andreas Rosenkranz
Carsten Gachot
Esteban Ramos-Moore
Frank Mücklich
author_sort Andreas Rosenkranz
title Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions
title_short Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions
title_full Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions
title_fullStr Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions
title_full_unstemmed Laser Interference Patterning of Steel Surfaces - Influence on the Frictional Performance under Dry and Lubricated Sliding Conditions
title_sort laser interference patterning of steel surfaces - influence on the frictional performance under dry and lubricated sliding conditions
publisher Japanese Society of Tribologists
publishDate 2016
url https://doaj.org/article/c7410c04eaf744b9814fe3084c13d0a0
work_keys_str_mv AT andreasrosenkranz laserinterferencepatterningofsteelsurfacesinfluenceonthefrictionalperformanceunderdryandlubricatedslidingconditions
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AT estebanramosmoore laserinterferencepatterningofsteelsurfacesinfluenceonthefrictionalperformanceunderdryandlubricatedslidingconditions
AT frankmuumlcklich laserinterferencepatterningofsteelsurfacesinfluenceonthefrictionalperformanceunderdryandlubricatedslidingconditions
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