Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts

Reliable traction between wheel and rail is an important issue in the railway industry. To reduce variations in the coefficient of friction, so-called “friction modifiers” (carrier with particles) are used. Twin-disk tests were done with three commercial friction modifiers, based on different compos...

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Main Authors: M. A. Oomen, R. Bosman, P.M. Lugt
Format: Article
Language:English
Published: The Prognostics and Health Management Society 2017-12-01
Series:International Journal of Prognostics and Health Management
Subjects:
Online Access:https://papers.phmsociety.org/index.php/ijphm/article/view/2663
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spelling doaj-f44fccecc0cc490bbabdad2b2ab8b1d22021-07-02T20:42:22ZengThe Prognostics and Health Management SocietyInternational Journal of Prognostics and Health Management2153-26482153-26482017-12-0183doi:10.36001/ijphm.2017.v8i3.2663Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail ContactsM. A. Oomen0R. Bosman1P.M. Lugt2University of Twente, Laboratory of Surface Technology and Tribology, PO Box 217, 7500 AE, Enschede, The NetherlandsUniversity of Twente, Laboratory of Surface Technology and Tribology, PO Box 217, 7500 AE, Enschede, The NetherlandsUniversity of Twente, Laboratory of Surface Technology and Tribology, PO Box 217, 7500 AE, Enschede, The Netherlands / SKF Research and Technology Development, Nieuwegein, The NetherlandsReliable traction between wheel and rail is an important issue in the railway industry. To reduce variations in the coefficient of friction, so-called “friction modifiers” (carrier with particles) are used. Twin-disk tests were done with three commercial friction modifiers, based on different compositions of carrier and particles, to characterize their friction and wear behavior. It is shown experimentally that the influence of the carrier cannot be neglected just after application and very low (0.01-0.05) frictional values are observed in a fully flooded situation. However, starvation occurs quickly and friction values will become relatively stable at an intermediate level around μ=0.2 until the friction modifier is consumed and a new dose is required. After the carrier is pushed out of the running track the particles in the contact dominate the tribological performance. The level of friction is a function of total rolling distance, effective sliding length and sum velocity. The most dominant factor depends on the friction modifier and the working mechanism for friction stabilization. It is also shown that the wear rates during tests do not depend significantly on slip, which makes it possible to predict wear behavior. Wear rates are dependent on the type of friction modifier used.https://papers.phmsociety.org/index.php/ijphm/article/view/2663wear predictionwearfrictionsolid particlesabrasionfriction modifierslip
collection DOAJ
language English
format Article
sources DOAJ
author M. A. Oomen
R. Bosman
P.M. Lugt
spellingShingle M. A. Oomen
R. Bosman
P.M. Lugt
Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts
International Journal of Prognostics and Health Management
wear prediction
wear
friction
solid particles
abrasion
friction modifier
slip
author_facet M. A. Oomen
R. Bosman
P.M. Lugt
author_sort M. A. Oomen
title Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts
title_short Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts
title_full Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts
title_fullStr Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts
title_full_unstemmed Characterization of Friction and Wear Behavior of Friction Modifiers used in Wheel-Rail Contacts
title_sort characterization of friction and wear behavior of friction modifiers used in wheel-rail contacts
publisher The Prognostics and Health Management Society
series International Journal of Prognostics and Health Management
issn 2153-2648
2153-2648
publishDate 2017-12-01
description Reliable traction between wheel and rail is an important issue in the railway industry. To reduce variations in the coefficient of friction, so-called “friction modifiers” (carrier with particles) are used. Twin-disk tests were done with three commercial friction modifiers, based on different compositions of carrier and particles, to characterize their friction and wear behavior. It is shown experimentally that the influence of the carrier cannot be neglected just after application and very low (0.01-0.05) frictional values are observed in a fully flooded situation. However, starvation occurs quickly and friction values will become relatively stable at an intermediate level around μ=0.2 until the friction modifier is consumed and a new dose is required. After the carrier is pushed out of the running track the particles in the contact dominate the tribological performance. The level of friction is a function of total rolling distance, effective sliding length and sum velocity. The most dominant factor depends on the friction modifier and the working mechanism for friction stabilization. It is also shown that the wear rates during tests do not depend significantly on slip, which makes it possible to predict wear behavior. Wear rates are dependent on the type of friction modifier used.
topic wear prediction
wear
friction
solid particles
abrasion
friction modifier
slip
url https://papers.phmsociety.org/index.php/ijphm/article/view/2663
work_keys_str_mv AT maoomen characterizationoffrictionandwearbehavioroffrictionmodifiersusedinwheelrailcontacts
AT rbosman characterizationoffrictionandwearbehavioroffrictionmodifiersusedinwheelrailcontacts
AT pmlugt characterizationoffrictionandwearbehavioroffrictionmodifiersusedinwheelrailcontacts
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