Detail publikačního výsledku

Linear-Elastic and Elastoplastic Mode II and III Crack Tip Stress-Strain Fields in Cylindrical Specimens with Circumferential Crack

HORNÍKOVÁ, J.; ŠANDERA, P.; POKLUDA, J.

Original Title

Linear-Elastic and Elastoplastic Mode II and III Crack Tip Stress-Strain Fields in Cylindrical Specimens with Circumferential Crack

English Title

Linear-Elastic and Elastoplastic Mode II and III Crack Tip Stress-Strain Fields in Cylindrical Specimens with Circumferential Crack

Type

WoS Article

Original Abstract

A numerical analysis by means of the ANSYS code revealed that the ratio of maximum values of mode III and mode II stress intensity factors reached the value of 1.37 . On the other hand, the ratio of crack tip opening displacements in the elastic-plastic range approaches the value of 2.7. These results can be used for the construction of fatigue crack growth rate curves in steels.

English abstract

A numerical analysis by means of the ANSYS code revealed that the ratio of maximum values of mode III and mode II stress intensity factors reached the value of 1.37 . On the other hand, the ratio of crack tip opening displacements in the elastic-plastic range approaches the value of 2.7. These results can be used for the construction of fatigue crack growth rate curves in steels.

Keywords

mode II, mode III, stress intensity factor, crack tip opening displacement

Key words in English

mode II, mode III, stress intensity factor, crack tip opening displacement

Authors

HORNÍKOVÁ, J.; ŠANDERA, P.; POKLUDA, J.

RIV year

2011

Released

01.02.2010

ISBN

1013-9826

Periodical

Key Engineering Materials (print)

Volume

417-418

Number

1

State

Swiss Confederation

Pages from

321

Pages to

324

Pages count

4

Full text in the Digital Library

BibTex

@article{BUT49828,
  author="Jana {Horníková} and Pavel {Šandera} and Jaroslav {Pokluda}",
  title="Linear-Elastic and Elastoplastic Mode II and III Crack Tip Stress-Strain Fields in Cylindrical Specimens with Circumferential Crack",
  journal="Key Engineering Materials (print)",
  year="2010",
  volume="417-418",
  number="1",
  pages="321--324",
  issn="1013-9826"
}