Subsurface stress evolution under orthotropic wear and frictional contact conditions

This work presents a computational framework to study the evolution of the subsurface stresses in 3D solids under orthotropic frictional contact and wear conditions. The formulation is based on the influence coefficients methodology to relate the discrete elastic response (i.e., displacements and st...

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Published inInternational journal of mechanical sciences Vol. 234; p. 107695
Main Authors Juliá, Javier M., Rodríguez-Tembleque, Luis
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 15.11.2022
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Abstract This work presents a computational framework to study the evolution of the subsurface stresses in 3D solids under orthotropic frictional contact and wear conditions. The formulation is based on the influence coefficients methodology to relate the discrete elastic response (i.e., displacements and stresses) to the sampled excitation (i.e., surface contact tractions). The proposed methodology is validated by solving several benchmark problems and is applied to analyze how the subsurface stress distribution (i.e. maximum value and its location) –and its evolution– caused by orthotropic wear conditions are clearly affected not only by the considered wear problems (i.e., sliding wear or fretting wear) but also by the friction coefficient values and the sliding direction angle –relative to the tribological axes–. Several numerical examples are presented to show the importance of these last two aspects when orthotropic wear conditions are considered. In other case, we could over- or underestimate the maximum values of the subsurface stresses during the wear process. [Display omitted] •Influence coefficients formulation to study subsurface stress evolution caused by orthotropic wear conditions.•Subsurface stress evolution depends on the friction coefficient values and on the sliding direction angle –relative to the main tribological axes–.•Fretting wear regime is governed by the sliding direction angle –relative to the main tribological axes–.•A threshold value of that angle establishes the fretting wear regime: gross slip or partial slip wear.•The resulting subsurface stress maximum values and their locations are showed to be affected by that angle.
AbstractList This work presents a computational framework to study the evolution of the subsurface stresses in 3D solids under orthotropic frictional contact and wear conditions. The formulation is based on the influence coefficients methodology to relate the discrete elastic response (i.e., displacements and stresses) to the sampled excitation (i.e., surface contact tractions). The proposed methodology is validated by solving several benchmark problems and is applied to analyze how the subsurface stress distribution (i.e. maximum value and its location) –and its evolution– caused by orthotropic wear conditions are clearly affected not only by the considered wear problems (i.e., sliding wear or fretting wear) but also by the friction coefficient values and the sliding direction angle –relative to the tribological axes–. Several numerical examples are presented to show the importance of these last two aspects when orthotropic wear conditions are considered. In other case, we could over- or underestimate the maximum values of the subsurface stresses during the wear process. [Display omitted] •Influence coefficients formulation to study subsurface stress evolution caused by orthotropic wear conditions.•Subsurface stress evolution depends on the friction coefficient values and on the sliding direction angle –relative to the main tribological axes–.•Fretting wear regime is governed by the sliding direction angle –relative to the main tribological axes–.•A threshold value of that angle establishes the fretting wear regime: gross slip or partial slip wear.•The resulting subsurface stress maximum values and their locations are showed to be affected by that angle.
ArticleNumber 107695
Author Juliá, Javier M.
Rodríguez-Tembleque, Luis
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  givenname: Luis
  orcidid: 0000-0003-2993-8361
  surname: Rodríguez-Tembleque
  fullname: Rodríguez-Tembleque, Luis
  email: luisroteso@us.es
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CitedBy_id crossref_primary_10_1007_s40544_023_0854_3
crossref_primary_10_3390_lubricants11060265
crossref_primary_10_1016_j_ijmecsci_2023_108823
crossref_primary_10_1142_S1756973723410056
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Keywords Orthotropic friction
Friction
Wear
Contact mechanics
Influence coefficient method
Orthotropic wear
Partial-slip
Fretting wear
Gross-slip
Subsurface stress
Language English
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Snippet This work presents a computational framework to study the evolution of the subsurface stresses in 3D solids under orthotropic frictional contact and wear...
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elsevier
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Publisher
StartPage 107695
SubjectTerms Contact mechanics
Fretting wear
Friction
Gross-slip
Influence coefficient method
Orthotropic friction
Orthotropic wear
Partial-slip
Subsurface stress
Wear
Title Subsurface stress evolution under orthotropic wear and frictional contact conditions
URI https://dx.doi.org/10.1016/j.ijmecsci.2022.107695
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