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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/24082
Title: Coherency strain and precipitation kinetics: Crystalline and amorphous nitride formation in ternary Fe-Ti/Cr/V-Si alloys
Authors: Schwarz B.
Rossi P.J.
Straßberger L.
Jörg F.
Meka, Sai Ramudu
Bischoff E.
Schacherl R.E.
Mittemeijer E.J.
Published in: Philosophical Magazine
Abstract: Specimens of iron-based binary Fe-Si alloy and ternary Fe-Me-Si alloys (with Me = Ti, Cr and V) were nitrided at 580 °C in a NH3H2-gas mixture applying a nitriding potential of 0.1 atm-1/2 until nitrogen saturation in the specimens was attained. In contrast with recent observations in other Fe-Me1-Me2 alloys, no "mixed" (Me1, Me2) nitrides developed in Fe-Me-Si alloys upon nitriding: first, all Me precipitates as MeN; and thereafter, all Si precipitates as Si3N4. The MeN precipitates as crystalline, finely dispersed, nanosized platelets, obeying a Baker-Nutting orientation relationship (OR) with respect to the ferrite matrix. The Si3N4 precipitates as cubically, amorphous particles; the incoherent (part of the) MeN/-Fe interface acts as heterogeneous nucleation site for Si3N4. The Si3N4-precipitation rate was found to be strongly dependent on the degree of coherency of the first precipitating MeN. The different, even opposite, kinetic effects observed for the various Fe-Me-Si alloys could be ascribed to the different time dependences of the coherent → incoherent transitions of the MeN particles in the different Fe-Me-Si alloys. © 2014 © 2014 Taylor & Francis.
Citation: Philosophical Magazine, 94(27): 3098-3119
URI: https://doi.org/10.1080/14786435.2014.952258
http://repository.iitr.ac.in/handle/123456789/24082
Issue Date: 2014
Publisher: Taylor and Francis Ltd.
Keywords: coherency
misfit strain
nitride-precipitation kinetics
nitriding
ternary iron-based alloys
ISSN: 14786435
Author Scopus IDs: 55785494800
56339815000
56339978600
57213340539
24503463800
16192908600
6506515029
35565640800
Author Affiliations: Schwarz, B., Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research), Stuttgart, D-70569, Germany
Rossi, P.J., Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research), Stuttgart, D-70569, Germany
Straßberger, L., Institute for Materials Science, University of Stuttgart, Stuttgart, D-70569, Germany
Jörg, F., Institute for Materials Science, University of Stuttgart, Stuttgart, D-70569, Germany
Meka, S.R., Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research), Stuttgart, D-70569, Germany
Bischoff, E., Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research), Stuttgart, D-70569, Germany
Schacherl, R.E., Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research), Stuttgart, D-70569, Germany, Institute for Materials Science, University of Stuttgart, Stuttgart, D-70569, Germany
Mittemeijer, E.J., Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research), Stuttgart, D-70569, Germany, Institute for Materials Science, University of Stuttgart, Stuttgart, D-70569, Germany
Corresponding Author: Schwarz, B.; Max Planck Institute for Intelligent Systems (Max Planck Institute for Metals Research)Germany
Appears in Collections:Journal Publications [MT]

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