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The influence of stacking faults on mechanical behavior of advanced materials

  • Ruizhe Su
  • , Dajla Neffati
  • , Yifan Zhang
  • , Jaehun Cho
  • , Jin Li
  • , Haiyan Wang
  • , Yashashree Kulkarni
  • , Xinghang Zhang*
  • *Corresponding author for this work
  • Purdue University
  • University of Houston
  • Harbin Institute of Technology Shenzhen

Research output: Contribution to journalReview articlepeer-review

Abstract

There are abundant studies on deformation mechanisms in metallic materials dominated by grain boundaries and twin boundaries. In comparison, the influence of stacking faults on deformation mechanisms of materials remains less well understood. Recent studies have shown that when the density of stacking faults increases sharply, their influence on mechanical behavior of metallic or ceramic materials becomes prominent, and in fact, dominates in some cases. This article reviews recent research progress on how nanoscale stacking faults impact the mechanical behavior of metallic and ceramic materials. We primarily focus on studies that reveal the formation of pre-existing stacking faults, their interactions with dislocations, and phase transformations during plastic deformation as evidenced by experiments and simulations. The aim of this review is to highlight the potential opportunities in using stacking faults to tailor the deformation mechanisms of advanced materials.

Original languageEnglish
Article number140696
JournalMaterials Science and Engineering: A
Volume803
DOIs
StatePublished - 28 Jan 2021
Externally publishedYes

Keywords

  • In situ
  • Mechanical property
  • Molecular dynamics
  • Stacking faults
  • Twin

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