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  2. Critical Assessment: Friction Stir Welding of Steels

    www.phase-trans.msm.cam.ac.uk/2009/fswsteel.html
    14 Feb 2020: Download PDF file of paper.
  3. TRIP-Assisted Steels?

    www.phase-trans.msm.cam.ac.uk/2002/trip.html
    14 Feb 2020: TRIP-Assisted Steels? H.K.D.H. Bhadeshia. Abstract. The role of transformation--induced plasticity in Fe-Mn-Si-C steels intended for automobiles is investigated. The high uniform ductility associated with these alloys is often attributed to the
  4. 14 Feb 2020: Competitive Formation of Inter- and Intragranularly Nucleated Ferrite. S. J. Jones and H. K. D. H. Bhadeshia. Abstract. A recent trend in the development of tough steels has been to stimulate the heterogeneous nucleation of ferrite on nonmetallic
  5. TRIP-assisted steels: cracking of high-carbon martensite

    www.phase-trans.msm.cam.ac.uk/2006/cracking.html
    14 Feb 2020: TRIP-assisted steels: cracking of high-carbon martensite. S. Chatterjee and H. K. D. H. Bhadeshia. Abstract. Modern TRIP assisted steels contain retained austenite with carbon concentrations in excess of 1 wt-%. Some of their mechanical properties,
  6. Crystallographic Texture of Induction-welded and Heat-treated…

    www.phase-trans.msm.cam.ac.uk/2009/Yan.html
    14 Feb 2020: Crystallographic Texture of Induction-welded and Heat-treated Pipeline Steel. P. Yan, Ö. E. Güngör, P. Thibaux and H. K. D. H. Bhadeshia. Abstract. Large-diameter steel pipes are produced by induction seam-welding followed by induction-assisted
  7. 10th International Aachen Welding Conference

    www.phase-trans.msm.cam.ac.uk/2007/Aachen/Aachen.html
    14 Feb 2020: 10. th. International Aachen Welding Conference, 22-25 October 2007. This conference was held in honour of Professor Ulrich Dilthey's retirement after many decades of leadership in the field of welding. Dusseldorf Airport. Dusseldorf Central Railway
  8. Designing optimised experiments for the international fusion…

    www.phase-trans.msm.cam.ac.uk/2007/Design.html
    14 Feb 2020: Download PDF file of paper..
  9. 14 Feb 2020: Crystallography of Widmanstätten austenite in duplex stainless steel weld metal. J. W. Abtibol Menezes, H. Abreu, S. Kundu, H. K. D. H. Bhadeshia and P. M. Kelly. Abstract. Two kinds of austenite grow from δ-ferrite during the cooling of the
  10. Austempered ductile cast irons

    www.phase-trans.msm.cam.ac.uk/2001/adi.html
    14 Feb 2020: Download PDF File This file is reprinted from Materials Science and Engineering with permission from Elsevier Science.
  11. Bainite Transformation Kinetics, Part I, Modified Model

    www.phase-trans.msm.cam.ac.uk/abstracts/bainite.kinetics1.html
    14 Feb 2020: Bainite Transformation Kinetics, Part I, Modified Model. G. I. Rees and H. K. D. H. Bhadeshia. Abstract. An earlier model for the overall transformation kinetics of bainite has been corrected and modified to be consistent with known details of the
  12. Neural network analysis of Charpy transition temperature of…

    www.phase-trans.msm.cam.ac.uk/2007/Charpy.html
    14 Feb 2020: Download PDF file of paper..
  13. Three-Dimensional Atom Probe Analysis of Carbon Distribution in…

    www.phase-trans.msm.cam.ac.uk/2004/atom.probe.bainite.html
    14 Feb 2020: Three-Dimensional Atom Probe Analysis of Carbon Distribution in Low-Temperature Bainite. M. Peet, S. S. Babu, M. K. Miller and H. K. D. H. Bhadeshia. Abstract. A bainitic microstructure with fine ferrite plates (20 to 40 nm) in a matrix of
  14. Diffusional Formation of Ferrite in Iron and its Alloys

    www.phase-trans.msm.cam.ac.uk/abstracts/progress.html
    14 Feb 2020: Diffusional Formation of Ferrite in Iron and its Alloys. H. K. D. H. Bhadeshia. Abstract. A review covering the following topics:. Introduction. Classification of Ferritic Microstructures. Mechanism of Diffusional Transformations in Ferrite.
  15. Analysis of Irradiation Hardening in Low-Activation Steels

    www.phase-trans.msm.cam.ac.uk/2006/kemp.html
    14 Feb 2020: Neural-Network Analysis of Irradiation Hardening in Low-Activation Steels. R. Kemp, G. A. Cottrell, H. K. D. H. Bhadeshia, G. R. Odette, T. Yamamoto and H. Kishimoto. Abstract. An artificial neural network has been used to model the irradiation
  16. 14 Feb 2020: Stainless steel weld metal designed to mitigate residual stresses. A. A. Shirzadi, H. K. D. H. Bhadeshia, L. Karlsson and P. J. Withers. Abstract. There have been considerable efforts to create welding consumables which on solid-state phase
  17. Transformation Texture in Deformed Stainless Steel

    www.phase-trans.msm.cam.ac.uk/2006/texture.html
    14 Feb 2020: Transformation Texture in Deformed Stainless Steel. Saurabh Kundu and H. K. D. H. Bhadeshia. Abstract. The development of transformation texture in a deformed austenitic stainless steel has been modelled using the crystallographic theory of
  18. Microstructure of Steel Welds

    www.phase-trans.msm.cam.ac.uk/2005/MMW1.html
    14 Feb 2020: Modelling the Evolution of Microstructure in Steel Weld Metals. H. K. D. H. Bhadeshia and L.-E. Svensson. Modelling the Evolution of Microstructure in Steel Weld Metals, Mathematical Modelling of Weld Phenomena, pp. 109-182, by H. K. D. H. Bhadeshia
  19. Stress and the Microstructure of Steel Welds

    www.phase-trans.msm.cam.ac.uk/2005/MMW2.html
    14 Feb 2020: Stress and the Microstructure of Steel Welds. H. K. D. H. Possible Effects of Stress on Steel Weld Microstructures, Mathematical Modelling of Weld Phenomena 2, pp. 71-118, by H. K. D. H. Bhadeshia, Eds. H. Cerjak and H. Bhadeshia, Institute of
  20. Models for the Elementary Mechanical Properties of Steel Welds

    www.phase-trans.msm.cam.ac.uk/2005/MMW3.html
    14 Feb 2020: Models for the Elementary Mechanical Properties of Steel Welds. H. K. D. H. Bhadeshia. Models for the Elementary Mechanical Properties of Steel Welds, Mathematical Modelling of Weld Phenomena 3, pp. 229--284, by H. K. D. H. Bhadeshia, Eds. H. Cerjak
  21. 14 Feb 2020: Contribution of Microalloying to the Strength of Hot-rolled Steels. Joo Hyun Ryu and H. K. D. H. Bhadeshia. Abstract. Although the principles of microalloying are well-established, the complexity of thermomechanical processing is such that it is

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