Modelling of microstructure evolution in hot deformation

Author:

Shercliff H.R.1,Lovatt A.M.1

Affiliation:

1. Department of Engineering, University of Cambridge, Trumpington Street, Cambridge CB2 1PZ, UK

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference35 articles.

1. Bailer-Jones C. A. L. Sabin T. J. Roberts S. M. Mackay D. J. C. & Withers P. J. 1997 Prediction of deformed and annealed microstructures using Bayesian neural networks and Gaussian processes. In Proc. Australasia Pacific Forum on Intelligent Processing and Manufacturing of Materials (IPMM '97) Gold Coast Australia (ed. T. Chandra et al .) pp. 2913- 2919. Brisbane Australia: Watson Ferguson.

2. Static and dynamic modelling of materials forging;Bailer-Jones C. A. L.;Aust. J. Intelligent Information Processing Systems,1998

3. Bailer-Jones C. A. L. Bhadeshia H. K. D. H. & Mackay D. J. C. 1999 Gaussian process modelling of austenite formation in steel. Mater. Sci. Technol. (Submitted.)

4. The Influence of Transient Deformation Conditions on Strength, Microstructure and Recrystallisation during Thermomechanical Processing of an Aluminium Alloy Al-1% Mg

5. Baxter G. J. Furu T. Zhu Q. Whiteman J. A. & Sellars C. M. 1999 The influence of transient deformation conditions on the deformed microstructure of aluminium alloy Al-1%Mg. Acta Mater. (In the press.)

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