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VOJTEK, T. POKLUDA, J. HOHENWARTER, A. PIPPAN, R.
Original Title
Intrinsic behaviour of mode II and mode III long fatigue cracks in zirconium and the Ti-6Al-4V alloy.
Type
conference paper
Language
English
Original Abstract
This work is focused on experimental study of micromechanisms of mode II and mode III fatigue cracks in metallic materials in the near-threshold regime. The resistance to fatigue crack growth can be divided to an intrinsic component (ahead of the crack tip) and an extrinsic component (shielding, closure), which is significantly higher than the intrinsic one. Fracture surfaces from the Ti6Al4V alloy and pure zirconium were observed in three dimensions. Experiments were conducted using a special device for simultaneous crack loading in modes II and III. Additionally, pure mode II and pure mode III experiments were done using CTS and torsion specimens, respectively. At the beginning of all experiments, crack closure was eliminated due to precracks generated under cyclic compressive loading. A common mechanism of local mode II advances was observed in both modes II and III. The results were similar to those of pure titanium. The hcp metals exhibit a transition behaviour between materials with coplanar shear-mode crack propagation and materials with a high tendency to deflect to the opening mode I.
Keywords
effective threshold, modes II and III, micromechanism, Ti6Al4V, zirconium, quantitative fractography
Authors
VOJTEK, T.; POKLUDA, J.; HOHENWARTER, A.; PIPPAN, R.
Released
1. 1. 2017
Publisher
Trans Tech Publications Inc.
ISBN
978-3-03835-626-4
Book
Materials Structure & Micromechanics of Fracture VIII
1662-9779
Periodical
Solid State Phenomena
Year of study
258
Number
1
State
Swiss Confederation
Pages from
265
Pages to
268
Pages count
4
BibTex
@inproceedings{BUT131920, author="Tomáš {Vojtek} and Jaroslav {Pokluda} and Anton {Hohenwarter} and Reinhard {Pippan}", title="Intrinsic behaviour of mode II and mode III long fatigue cracks in zirconium and the Ti-6Al-4V alloy.", booktitle="Materials Structure & Micromechanics of Fracture VIII", year="2017", journal="Solid State Phenomena", volume="258", number="1", pages="265--268", publisher="Trans Tech Publications Inc.", doi="10.4028/www.scientific.net/SSP.258.265", isbn="978-3-03835-626-4", issn="1662-9779" }