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Very high cycle fatigue for single phase ductile materials: Comparison between α-iron, copper and α-brass polycrystals

Article dans une revue avec comité de lecture
Author
BLANCHE, Antoine
WANG, Chong
233900 Laboratoire Energétique Mécanique Electromagnétisme [LEME]
PHUNG, Ngoclam
WAGNER, Daniele
233900 Laboratoire Energétique Mécanique Electromagnétisme [LEME]
BATHIAS, Claude
116205 Université Paris Nanterre [UPN]
233900 Laboratoire Energétique Mécanique Electromagnétisme [LEME]
CHRYSOCHOOS, André
693 Laboratoire de Mécanique et Génie Civil [LMGC]
MUGHRABI, Haeel
311714 Friedrich-Alexander Universität Erlangen-Nürnberg = University of Erlangen-Nuremberg [FAU]
ccRANC, Nicolas
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccFAVIER, Véronique

URI
http://hdl.handle.net/10985/14800
DOI
10.1016/j.ijfatigue.2016.05.034
Date
2016
Journal
International Journal of Fatigue

Abstract

In this paper, the main results obtained in the framework of a National French Agency project called DISFAT, standing for “Dissipation in Fatigue”, are presented. The project was dedicated to the microplastic mechanisms leading to crack initiation in the case of ductile metals loaded in very high cycle fatigue. Fatigue tests were carried out at 20 kHz using an ultrasonic facility. In order to investigate the microplastic mechanisms, slip markings at the surface of the specimens were observed and the self-heating of the specimen during the tests was measured by thermography to deduce the dissipated energy. Polycrystalline copper, α-brass and α-iron were investigated. A good correlation was found between persistent slip bands and dissipated energy. The dissipated energy for the three materials was of the same order of magnitude but while α-iron reached a stable dissipative state, the dissipated energy in the case of copper and α-brass was found to continue to increase gradually with increasing numbers of cycles. That change in dissipated energy during cycling was consistent with the development of persistent slip bands. Both were discussed with regard to the materials.

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