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HORNÍKOVÁ, J. ŽÁK, S. ŠANDERA, P.
Original Title
Numerical Fracture Analysis of Compact Tension Shear (CTS) Specimens with Tortuous Crack Fronts
Type
conference paper
Language
English
Original Abstract
The aim of the contribution is to assess the influence of the microstructure of materials on the effective values of stress intensity factors. In this paper some results of 3D-finite element analyses of a CTS-specimen with a tortuous crack are presented. The specimen is subject to an in-plane shear remote loading (mode II) and tortuous crack flanks simulate rough cracks in polycrystalline materials. Finite element calculation by using the commercially available FE-code ANSYS has been carried out to determine stress/strain distribution in the vicinity of crack front and the local values of stress intensity factors are evaluated along the crack front. The existence of friction forces generated by sliding of crack wake asperities is included into calculations. Respective effective values are determined in dependence of the roughness of crack flanks. Results achieved allows to characterize the influence of microstructure to crack growth.
Keywords
shear mode, stress intensity factor, roughness, iron
Authors
HORNÍKOVÁ, J.; ŽÁK, S.; ŠANDERA, P.
Released
1. 3. 2016
Publisher
Trans Tech Publications
ISBN
978-3-03835-541-0
Book
Advances in Fracture and Damage Mechanics
Edition
Key Engineering MAterials
1013-9826
Periodical
Key Engineering Materials (print)
Year of study
665
Number
1
State
Swiss Confederation
Pages from
77
Pages to
80
Pages count
4
BibTex
@inproceedings{BUT119617, author="Jana {Horníková} and Stanislav {Žák} and Pavel {Šandera}", title="Numerical Fracture Analysis of Compact Tension Shear (CTS) Specimens with Tortuous Crack Fronts", booktitle="Advances in Fracture and Damage Mechanics", year="2016", series="Key Engineering MAterials", journal="Key Engineering Materials (print)", volume="665", number="1", pages="77--80", publisher="Trans Tech Publications", doi="10.4028/www.scientific.net/KEM.665.77", isbn="978-3-03835-541-0", issn="1013-9826" }