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Numerical Analysis of the Nb(C,N) Precipitation Kinetics in Microalloyed Steels
Authors:Milan Pudar  Ernst Kozeschnik  Axel Sormann  Erik Parteder
Affiliation:1. Institute for Material Science, Welding and Forming, Graz University of Technology, Kopernikusgasse 24/1, 8010 Graz, Austria;2. Materials Center Leoben Forschung GmbH, Roseggerstrasse 12, 8700 Leoben, Austria;3. voestalpine Stahl Donawitz GmbH & Co KG, Kerpelystrasse 199, 8700 Leoben, Austria;4. voestalpine Stahl Linz GmbH, VOEST‐ALPINE‐Stra?e 3, 4031 Linz, Austria
Abstract:Precipitation kinetics of Nb(C,N) in microalloyed steels is crucial for the achievement of favoured steel properties. Therefore, numerous experimental studies have been performed in the past and various theoretical models have been developed to describe Nb(C,N) precipitation. However, the experimental data is sometimes contradictory and even the thermodynamic data for NbC solubility in austenite have a large scatter. In this paper, experimental results on the Nb(C,N) and NbV(C,N) precipitation kinetics in deformed and undeformed austenite are reviewed. Based on these data and with the precipitation kinetics module of the software package MatCalc, computer simulations are performed. The predicted interfacial energy of precipitates is adjusted to match the observed kinetics. A comparison between experimental information and simulation, i.e. time ‐ temperature ‐ precipitation (TTP) diagrams, is drawn and discussed. The results of the computer simulations using modified interfacial energies are in good agreement with the experiments.
Keywords:Nb(C  N) precipitation kinetics  microalloyed steel  TTP Diagram
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