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  2. Materials Science and Engineering, Vol. A438-440, 2006,145-148 1…

    www.phase-trans.msm.cam.ac.uk/2006/bimodal.pdf
    7 Jun 2010: Materials Science and Engineering, Vol. A438-440, 2006,145-148. 1. Bimodal Size-distribution of Bainite Plates. K. Hase a), C. Garcia-Mateo b), and H. K. D. H. Bhadeshia c). a) JFE Steel Corporation, Steel Research Lab., Kawasakidori 1-chome,
  3. 26 Jul 2010: Non-equilibrium solidification and ferrite ind-TRIP steel. H. L. Yi1, S. K. Ghosh1, W. J. Liu1, K. Y. Lee2 and H. K. D. H. Bhadeshia1,3. Microscopy and microanalysis experiments on two cast alloys, designed on the basis of. equilibrium to contain
  4. Spot weldability of d-TRIP steel containing0?4 wt-%C H. L. ...

    www.phase-trans.msm.cam.ac.uk/2010/stw1721.pdf
    11 Oct 2010: Spot weldability of d-TRIP steel containing0?4 wt-%C. H. L. Yi1, K. Y. Lee2, J. H. Lim2 and H. K. D. H. Bhadeshia1,3. Strong steels are usually difficult to resistance spot weld because of the tendency to form hard. phases. This applies particularly
  5. (Thermec.tex)

    www.phase-trans.msm.cam.ac.uk/2003/Thermec.pdf
    7 Jun 2010: Materials Science Forum, Vols. 426–432, 2003, pp. 35–42. Advances in the Kinetic Theory of Carbide Precipitation. H. K. D. H. BhadeshiaUniversity of Cambridge. Department of Materials Science and MetallurgyPembroke Street, Cambridge CB2 3QZ, U.K.
  6. Effects of weld preheat temperature and heatinput on type ...

    www.phase-trans.msm.cam.ac.uk/2009/stw1398.pdf
    7 Jun 2010: Effects of weld preheat temperature and heatinput on type IV failure. J. A. Francis1, G. M. D. Cantin2, W. Mazur2 and H. K. D. H. Bhadeshia3. Type IV cracking refers to the premature failure of a welded joint due to an enhanced rate of creep. void
  7. Analysis of toughness of welding alloys forhigh strength low ...

    www.phase-trans.msm.cam.ac.uk/2002/stwj248.pdf
    7 Jun 2010: Analysis of toughness of welding alloys forhigh strength low alloy shipbuilding steels. E. A. Metzbower, J. J. DeLoach, S. H. Lalam, and H. K. D. H. Bhadeshia. In previous work by the present authors a model wasdeveloped for the estimation of the
  8. Accumulation of stress in constrainedassemblies: novel Satoh test…

    www.phase-trans.msm.cam.ac.uk/2010/stw1683.pdf
    29 Sep 2010: Accumulation of stress in constrainedassemblies: novel Satoh test configuration. A. A. Shirzadi1,2 and H. K. D. H. Bhadeshia2. A common test used to study the response of a transforming material to external constraint is due. to Satoh and involves
  9. crystal-paper_note.dvi

    www.phase-trans.msm.cam.ac.uk/2008/comments.pdf
    7 Jun 2010: Comments on “Bainite formation kinetics in. high carbon alloyed steel”. H. K. D. H. Bhadeshia. University of Cambridge. Materials Science and Metallurgy. Pembroke Street, Cambridge CB2 3QZ, U. K. hkdb@cam.ac.uk. Scripta Materialia 59 (2008)
  10. paper

    www.phase-trans.msm.cam.ac.uk/2008/fastslow.pdf
    7 Jun 2010: Thermomechanical Simulation and Processing of Steels, Simpro 08, eds S. K. Chaudhuri, B. K. Jha, S. Srikant, P. K. Maini, A. Deva, R. Datta, Allied Publishers Pvt. Ltd., Kolkata, India, (2008) pages 3-11. Very Short and Very Long Heat-Treatments in
  11. epsilon2.dvi

    www.phase-trans.msm.cam.ac.uk/2010/epsilon2.pdf
    7 Jun 2010: ε-carbide in Alloy Steels: First-principlesAssessment. Jae Hoon Jang a In Gee Kim a H. K. D. H. Bhadeshia a,b. aGraduate Institute of Ferrous Technology, Pohang University of Science and. Technology, Pohang 790-784, Republic of Korea. bDepartment
  12. is430777

    www.phase-trans.msm.cam.ac.uk/2003/mobility.pdf
    7 Jun 2010: 1. Introduction. An alloy can be created without melting, by violently de-forming mixtures of different powders. As first discoveredby Benjamin,1,2) inert oxides can also be introduced into themicrostructure using this technique. The resulting disper
  13. www.phase-trans.msm.cam.ac.uk/2004/topology.pdf

    www.phase-trans.msm.cam.ac.uk/2004/topology.pdf
    7 Jun 2010:
  14. 7 Jun 2010: Understanding Mechanical Properties of Novel High Strength Steel Weld MetalsThrough High-Resolution Microstructural Investigations. E. Keehan, L. Karlsson,Esab AB, Gothenburg, Sweden. H. O. Andrén,Chalmers University of Technology, Gothenburg,
  15. Industrial Applications of the Mössbauer Effect, eds M. Garcia, ...

    www.phase-trans.msm.cam.ac.uk/2005/Mossbauer.pdf
    7 Jun 2010: Industrial Applications of the Mössbauer Effect, eds M. Garcia, J. F. Marco, F. Plazaola,American Insitute of Physics, 2005, pp. 338-343. 338. Mössbauer Analysis of Low-Temperature Bainite. P. Bruna, T. Pradell, D. Crespo, C. García-Mateo and H. K
  16. Transactions of the Indian Institute of Metals 59 (2006) ...

    www.phase-trans.msm.cam.ac.uk/2007/coalesced.pdf
    7 Jun 2010: Transactions of the Indian Institute of Metals 59 (2006) 689–694. Coalesced Bainite. H. K. D. H. Bhadeshia, E. Keehan‡, L. Karlsson‡ and H.–O. Andrén†. University of Cambridge, Materials Science and Metallurgy. Pembroke Street, Cambridge
  17. www.phase-trans.msm.cam.ac.uk/2002/thickness.pdf

    www.phase-trans.msm.cam.ac.uk/2002/thickness.pdf
    7 Jun 2010:
  18. Scripta Materialia 57 (2007) 869–872 Crystallographic Texture and…

    www.phase-trans.msm.cam.ac.uk/2007/intervene.pdf
    7 Jun 2010: Scripta Materialia 57 (2007) 869–872. Crystallographic Texture and. Intervening Transformations. Saurabh Kundu and H. K. D. H. Bhadeshia. University of CambridgeMaterials Science and MetallurgyPembroke Street, Cambridge CB2 3QZ, U. K.www.msm.cam.ac
  19. (ICOMAT02 Christian)

    www.phase-trans.msm.cam.ac.uk/2002/Christian.pdf
    7 Jun 2010: A Tribute to Professor ‘Jack’ Christian. H. K. D. H. Bhadeshia. University of CambridgeDepartment of Materials Science and Metallurgy. Pembroke Street, Cambridge CB2 3QZ, U.K. Journal de Physique IV, Vol. 112 (2003) 77–25. Abstract. Jack
  20. www.phase-trans.msm.cam.ac.uk/2002/hyperbolic.pdf

    www.phase-trans.msm.cam.ac.uk/2002/hyperbolic.pdf
    7 Jun 2010:
  21. Heat treatment and Magnetic Field Procedure A 32mm diameter ...

    www.phase-trans.msm.cam.ac.uk/2006/PTM.Mag.pdf
    7 Jun 2010: Heat treatment and Magnetic Field Procedure A 32mm diameter bore resistive magnet with a 33T maximum field strength at the National High Magnetic Field Laboratory (NHMFL) was used. An induction-heating coil set-up has been designed to heat and cool

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