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Characterization of Austempered Ductile Iron Through Barkhausen Noise Measurements
Authors:C. D'Amato  C. Verdu  X. Kleber  G. Regheere  A. Vincent
Affiliation:(1) Groupe d'Etudes de Metallurgie Physique et de Physique des Matériaux-UMR CNRS 5510, Institut National des Sciences Appliquées, 69621 Villeurbanne Cedex, France;(2) CTIF, 44 av. de la Division Leclerc, 92312 Sèvres cedex, France
Abstract:The outstanding mechanical properties of austempered ductile irons (ADI) are linked to the microstructure of the matrix obtained by subjecting a ductile iron with an appropriate composition to a heat treatment called austempering. Then the microstructure of the matrix consists of bainitic ferrite with different volume fractions of retained austenite. The aim of this work is to use the magnetic Barkhausen noise (MBN) as a nondestructive method for characterizing the microstructure of ADI. First, it is shown that the amplitude and position of the peak-shaped MBN response is quite sensitive to the microstructure of the matrix of ductile irons. Thus each type of constituent (equiaxial ferrite, pearlite, martensite or bainite) exhibits a typical response and, in turn, it can be identified from the MBN response. Furthermore, a good correlation is found between MBN signal parameters and ADI heat treatment parameters, indicating that MBN is also quite sensitive to fine evolutions of the microstructure of ADI. MBN peak position is especially sensitive to the type of bainite, whereas peak amplitude is linked to the progress of the bainite reaction. Hence MBN measurements appear to be a powerful tool to assess some important microstructural features of ADI castings.
Keywords:SG ductile iron  austempered ductile iron  bainite  magnetic Barkhausen noise
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