AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION

The type of surface damage that occurs in fretting contact depends on the magnitude of the surface normal and tangential tractions. In existing fretting models the relative displacement is assumed to be accommodated mainly microslip in the contact surface. The present paper argues that adhesion f...

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Main Author: Stefan GHIMISI
Format: Article
Language:English
Published: Academica Brancusi 2022-05-01
Series:Fiabilitate şi Durabilitate
Subjects:
Online Access:https://www.utgjiu.ro/rev_mec/mecanica/pdf/2022-01/04_Stefan%20GHIMISI%20%20-%20AN%20ELASTIC%20ADHESION%20MODEL%20FOR%20TANGENTIAL%20TRACTION.pdf
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author Stefan GHIMISI
author_facet Stefan GHIMISI
author_sort Stefan GHIMISI
collection DOAJ
description The type of surface damage that occurs in fretting contact depends on the magnitude of the surface normal and tangential tractions. In existing fretting models the relative displacement is assumed to be accommodated mainly microslip in the contact surface. The present paper argues that adhesion forces and elastic deformation in the contact zone may contribute significantly to the relative displacement during fretting of metals .A simultaneously applied tangential force and normal into contact appears a adhesion force. A tangential force whose magnitude is less equal on greater than the force of limiting friction will not give rise on give rise to a sliding motion.It is determined the energy loss dissipated per fretting cycle.
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institution Kabale University
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2344-3669
language English
publishDate 2022-05-01
publisher Academica Brancusi
record_format Article
series Fiabilitate şi Durabilitate
spelling doaj-art-bb9dfb2817b74fe9a8f066d3bf5f82e92025-02-10T11:16:23ZengAcademica BrancusiFiabilitate şi Durabilitate1844-640X2344-36692022-05-011512328AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTIONStefan GHIMISI0Constantin Brâncusi University of Târgu JiuThe type of surface damage that occurs in fretting contact depends on the magnitude of the surface normal and tangential tractions. In existing fretting models the relative displacement is assumed to be accommodated mainly microslip in the contact surface. The present paper argues that adhesion forces and elastic deformation in the contact zone may contribute significantly to the relative displacement during fretting of metals .A simultaneously applied tangential force and normal into contact appears a adhesion force. A tangential force whose magnitude is less equal on greater than the force of limiting friction will not give rise on give rise to a sliding motion.It is determined the energy loss dissipated per fretting cycle.https://www.utgjiu.ro/rev_mec/mecanica/pdf/2022-01/04_Stefan%20GHIMISI%20%20-%20AN%20ELASTIC%20ADHESION%20MODEL%20FOR%20TANGENTIAL%20TRACTION.pdfstatic and kinetic frictionadhesive forceelastic adhesion
spellingShingle Stefan GHIMISI
AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION
Fiabilitate şi Durabilitate
static and kinetic friction
adhesive force
elastic adhesion
title AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION
title_full AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION
title_fullStr AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION
title_full_unstemmed AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION
title_short AN ELASTIC ADHESION MODEL FOR TANGENTIAL TRACTION
title_sort elastic adhesion model for tangential traction
topic static and kinetic friction
adhesive force
elastic adhesion
url https://www.utgjiu.ro/rev_mec/mecanica/pdf/2022-01/04_Stefan%20GHIMISI%20%20-%20AN%20ELASTIC%20ADHESION%20MODEL%20FOR%20TANGENTIAL%20TRACTION.pdf
work_keys_str_mv AT stefanghimisi anelasticadhesionmodelfortangentialtraction
AT stefanghimisi elasticadhesionmodelfortangentialtraction