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Strengthening effects of Mg-Si precipitates on wear resistance of SiCp/Al-Si-Mg composites

  • Chengtong Ye
  • , Lina Jia*
  • , Yan Qi
  • , Zuheng Jin
  • , Yanyu Liu
  • , Wenbo Wang
  • , Hu Zhang*
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

The effects of Mg on wear resistance of SiCp/Al-Si-Mg composites were studied. Comparative analyses between equivalent von-Mises stresses and yield stresses of α-Al and SiC were calculated, and quasi-in-situ observation were conducted to reveal the wear behavior and modes. During reciprocating frictions, the matrix with better plasticity is the weak part in composites. Due to the deformation discontinuity, the interface between SiC and matrix tends to separate leading to surface cracks and wear failure. Therefore, increasing the strength of α-Al and improving the deformation coordination between α-Al and SiC are the crux to improve wear resistance. 1 wt% Mg addition introduces Mg-Si GP zones and B′ precipitates into α-Al, resulting in precipitation strengthening which improves the wear resistance of composites.

Original languageEnglish
Article number205716
JournalWear
Volume564-565
DOIs
StatePublished - 15 Mar 2025

Keywords

  • Casting
  • Metal-matrix composites
  • Precipitation strengthening
  • Wear resistance

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