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Field structure at mode III dynamically propagating crack tip in elastic-viscoplastic materials

  • Bin Jia*
  • , Zhen Qing Wang
  • , Yong Dong Li
  • *Corresponding author for this work
  • Harbin Engineering University
  • Academy of Armored Force Engineering China

Research output: Contribution to journalArticlepeer-review

Abstract

An elastic-viscoplastic mechanics model is used to investigate asymptotically the mode III dynamically propagating crack tip field in elastic-viscoplastic materials. The stress and strain fields at the crack tip possess the same power-law singularity under a linear-hardening condition. The singularity exponent is uniquely determined by the viscosity coefficient of the material. Numerical results indicate that the motion parameter of the crack propagating speed has little effect on the zone structure at the crack tip. The hardening coefficient dominates the structure of the crack-tip field. However, the secondary plastic zone has little influence on the field. The viscosity of the material dominates the strength of stress and strain fields at the crack tip while it does have certain influence on the crack-tip field structure. The dynamic crack-tip field degenerates into the relevant quasi-static solution when the crack moving speed is zero. The corresponding perfectly-plastic solution is recovered from the linear-hardening solution when the hardening coefficient becomes zero.

Original languageEnglish
Pages (from-to)919-925
Number of pages7
JournalApplied Mathematics and Mechanics (English Edition)
Volume29
Issue number7
DOIs
StatePublished - Jul 2008

Keywords

  • Crack tip field
  • Dynamically propagating crack
  • Elastic-viscoplastic materials
  • Mode III crack
  • Zone structure

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