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  4. Mean Stress Effect on the Fatigue Life of 304L Austenitic Steel in Air and PWR Environments Determined with Strain- and Load-Controlled Experiments
 
research article

Mean Stress Effect on the Fatigue Life of 304L Austenitic Steel in Air and PWR Environments Determined with Strain- and Load-Controlled Experiments

Spatig, Philippe  
•
Le Roux, Jean-Christophe
•
Bruchhausen, Matthias
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February 1, 2021
Metals

The mean stress effect on the fatigue life of 304L austenitic steel was evaluated at 300 degrees C in air and pressurized water reactor (PWR) environments. Uniaxial tests were performed in strain-control and load-control modes, with zero mean stress and a positive mean stress of 50 MPa. A specific procedure was used for the strain-controlled experiments to maintain the strain amplitude and mean stress constant. The strain-controlled data indicate that the application of positive mean stress decreases the fatigue life for a given strain amplitude in air and PWR environments. The data also show that the life reduction is independent of the environments, suggesting that no synergistic effects between the mean stress and the LWR environment occur. The load-controlled experiments confirm that the application of positive mean stress increases fatigue due to cyclic hardening processes. This observation is much less pronounced in the PWR environment. All data were analyzed using the Smith-Watson-Topper (SWT) stress-strain function, which was shown to correlate well with all strain- and load-controlled data with and without mean stress in each environment. In the SWT-life curve representation, the life reduction in the PWR environment was found fully consistent with the NUREG-CR6909 predictions.

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Type
research article
DOI
10.3390/met11020221
Web of Science ID

WOS:000622786900001

Author(s)
Spatig, Philippe  
Le Roux, Jean-Christophe
Bruchhausen, Matthias
Mottershead, Kevin
Date Issued

2021-02-01

Published in
Metals
Volume

11

Issue

2

Start page

221

Subjects

Materials Science, Multidisciplinary

•

Metallurgy & Metallurgical Engineering

•

Materials Science

•

Metallurgy & Metallurgical Engineering

•

austenitic steel

•

environmentally assisted fatigue

•

mean stress

•

light water reactor environment

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRS  
Available on Infoscience
March 26, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/176645
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