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Mechanism Investigation on the Surface Integrity Influence on Fretting Wear

  • Beihang University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Surface strengthening treatments are commonly employed to enhance the wear resistance of materials. However, due to the coupling of surface integrity parameters introduced by surface strengthening, the influence mechanism of individual surface integrity parameters on fretting wear behavior remains controversial. To address this, fretting wear tests were conducted un-der four different surface conditions: electrical discharge machining, longitudinal polishing, shot peening, and stress relief annealing. Through quantitative characterization of surface integrity parameters, the influence of these parameters on fret-ting wear was systematically quantified. The results indicate that the coefficient of friction exhibits a significant correlation with the discrepancy between contact surfaces, contact stiffness is predominantly determined by the discrepancy of the contact surfaces and the hardness of the material, and when frictional work is employed to quantify wear, the wear coefficient is mainly dependent on hardness, with a correlation coefficient R2 of 0.9948.

Original languageEnglish
Title of host publicationMoving Integrated Product Development to Service Clouds in the Global Economy - Proceedings of the 21st ISPE Inc. International Conference on Concurrent Engineering, CE 2014
EditorsXuelin Lei
PublisherIOS Press BV
Pages143-156
Number of pages14
ISBN (Electronic)9781643686479
DOIs
StatePublished - 3 Mar 2026
Event16th International Conference of Mechanical and Aerospace Engineering, ICMAE 2025 - Rome, Italy
Duration: 15 Jul 202518 Jul 2025

Publication series

NameAdvances in Transdisciplinary Engineering
Volume87
ISSN (Print)2352-751X
ISSN (Electronic)2352-7528

Conference

Conference16th International Conference of Mechanical and Aerospace Engineering, ICMAE 2025
Country/TerritoryItaly
CityRome
Period15/07/2518/07/25

Keywords

  • fretting wear
  • shot peening
  • stress relief annealing
  • surface integrity

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