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An elastoplastic damage constitutive model for frozen soil based on the super/subloading yield surfaces

  • School of Civil Engineering, Harbin Institute of Technology
  • Royal Melbourne Institute of Technology University

Research output: Contribution to journalArticlepeer-review

Abstract

Soil particles and ice form bonded structure in frozen soil. The modulus and bond strength of frozen soil decrease with the damage of the bonded structure during deformation. An elastoplastic damage constitutive model, based on the super/subloading yield surfaces, is proposed for frozen soil, in which the damage variable and bond strength are used to consider the elastic and plastic damage respectively. The model is validated with the observed mechanical behaviors of frozen sandy soil and frozen saline soil in triaxial compression tests with different confining pressures. The comparisons illustrate that the model can describe the hardening/softening and dilatancy of frozen soils with the change of confining pressures. The results also show that the expansion of frozen soil during shear is related to the loss of bond strength induced by the development of damage of the bonded structure.

Original languageEnglish
Article number103842
JournalComputers and Geotechnics
Volume128
DOIs
StatePublished - Dec 2020

Keywords

  • Bond strength
  • Damage variable
  • Elastoplastic model
  • Frozen soil

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