Detail publikace
The influence of discontinuity and orthotropy of fracture toughness on conditions of fracture initiation in singular stress concentrators
KLUSÁK, J. PROFANT, T. KNÉSL, Z. KOTOUL, M.
Anglický název
The influence of discontinuity and orthotropy of fracture toughness on conditions of fracture initiation in singular stress concentrators
Typ
Článek recenzovaný mimo WoS a Scopus
Jazyk
en
Originální abstrakt
This paper deals with assessment of conditions of fracture initiation in singular stress concentrations that are modeled by a bi-material notch composed of two orthotropic materials. Within the assessment of the stress concentrators, the stability criteria based on standard linear elastic fracture mechanics can lead to incorrect results due to discontinuity and orthotropy of fracture toughness. Procedures in literature suggested for assessing the critical applied loading and fracture initiation direction usually consider only the change of elastic constants of the material and do not consider the change of fracture toughness. The stability criterion considering fracture toughness dependent on the direction of presupposed fracture initiation is shown in the paper. It is concluded that the criterion of this kind can qualitatively and quantitatively influence the estimated fracture initiation conditions, and it contributes to more reliable assessment of components with geometrical and/or material discontinuity.
Klíčová slova anglicky
Composites, Generalized fracture mechanics, Fracture toughness mismatch, Bi-material notches, Stability criterion of notches
Vydáno
2013-09-04
Nakladatel
PERGAMON-ELSEVIER SCIENCE LTD
Místo
England, Oxford
ISSN
0013-7944
Časopis
Engineering fracture mechanics
Ročník
110
Číslo
2013
Strany od–do
438–447
Počet stran
10
BIBTEX
@article{BUT106074,
author="Jan {Klusák} and Tomáš {Profant} and Zdeněk {Knésl} and Michal {Kotoul}",
title="The influence of discontinuity and orthotropy of fracture toughness on conditions of fracture initiation in singular stress concentrators",
journal="Engineering fracture mechanics",
year="2013",
volume="110",
number="2013",
pages="438--447",
issn="0013-7944"
}