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Residual stresses in surface induction hardening of steels: Comparison between experiment and simulation

Article dans une revue avec comité de lecture
Author
ccCOUPARD, Dominique
26754 Laboratoire Matériaux Endommagement Fiabilité et Ingénierie des Procédés [LAMEFIP]
ccPALIN-LUC, Thierry
BRISTIEL, Philippe
JI, Vincent
DUMAS, Christian

URI
http://hdl.handle.net/10985/10519
DOI
10.1016/j.msea.2007.10.047
Date
2008
Journal
Materials Science and Engineering: A

Abstract

Deep induction hardening has been performed on two batches of smooth cylindrical specimens with a hardening depth respectively around 2 mm and 3 mm. The distributions of axial and circumferential residual stresses are analysed for the two specimen batches by X-ray diffraction technique. The radial normal stress field is estimated through the use of the well known Moore and Evans correction. Finally, the experimental residual stresses are compared with those obtained from a multiphysic finite element modelling of the whole induction treatment process, including electromagnetic, thermal, metallurgical and mechanical phenomena. The simulated residual stress field is in good agreement with X-ray analysis especially at depths lower than one-tenth the specimen diameter. At deeper depths, a correction of the experimental X-ray analysis has been done to obtain realistic values.

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