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Dilatancy of Shear Transformations in a Colloidal Glass

  • Y. Z. Lu
  • , M. Q. Jiang
  • , X. Lu
  • , Z. X. Qin
  • , Y. J. Huang
  • , J. Shen
  • Dalian Jiaotong University
  • CAS - Institute of Mechanics
  • University of Chinese Academy of Sciences
  • Harbin Institute of Technology
  • Tongji University

Research output: Contribution to journalArticlepeer-review

Abstract

Shear transformations, as fundamental rearrangement events operating in local regions, hold the key of plastic flow of amorphous solids. Despite their importance, the dynamic features of shear transformations are far from clear, which is the focus of the present study. Here, we use a colloidal glass under shear as the prototype to directly observe the shear-transformation events in real space. By tracing the colloidal-particle rearrangements, we quantitatively determine two basic properties of shear transformations: local shear strain and dilatation (or free volume). It is revealed that the local free volume undergoes a significantly temporary increase prior to shear transformations, eventually leading to a jump of local shear strain. We clearly demonstrate that shear transformations have no memory of the initial free volume of local regions. Instead, their emergence strongly depends on the dilatancy ability of these local regions, i.e., the dynamic creation of free volume. More specifically, the particles processing the high dilatancy ability directly participate in subsequent shear transformations. These results experimentally enrich Argon's statement about the dilatancy nature of shear transformations and also shed insight into the structural origin of amorphous plasticity.

Original languageEnglish
Article number014023
JournalPhysical Review Applied
Volume9
Issue number1
DOIs
StatePublished - 19 Jan 2018
Externally publishedYes

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