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Identification of fretting fatigue crack propagation mechanisms using acoustic emission
Authors:J. Meriaux  M. Boinet  S. Fouvry
Affiliation:a Laboratoire de Tribologie et Dynamique des Systèmes, Ecole Centrale de Lyon 36 avenue Guy de Collongue, 69131 Ecully, France
b Euro Physical Acoustics 27, Rue Magellan 94370 Sucy en Brie, France
c SNECMA Villaroche, Rond point René-Ravaud, 77550 Moissy-Cramayel, France
Abstract:In this study, a fretting fatigue test has been equipped with an acoustic emission (AE) device in order to identify the successive crack propagation mechanisms. The fretting fatigue crack nucleation and propagation is a complicated process. Cracks initiate and propagate firstly due to shearing (mode II) and then by tension (mode I). The crack propagation generates mechanical energy emission. Elastic waves appear and can be detected through AE. A complete analysis of the AE signals (multi-parameter analysis, location of the AE in the loading cycle and a statistical analysis) led to an identification of three different steps in the crack propagation process. The evolution of the shearing and the tension influences in the crack propagation process is recognizable separately. Therefore, the three crack propagation steps have been identified as (a) crack propagation in mode II, (b) mixed mode crack propagation and (c) pure mode I crack propagation.
Keywords:Fretting fatigue   Acoustic emission   Ti6Al4V   Crack propagation
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