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  2. 18 Apr 2017: "#! $ % &#' ( )$ $ -,/.,/021436587 9;:<=7/>?",4@A,/",/",BCD<2>6E=F C5G<H:. : EI1/<=JKLMEI76K0ON<=KEIJP5G<=QGFR#ST5UEI7DSTE<O7D>?EIKV<OQUQ8WJXHYZ9&[75UZEIJVF(58K(Y-0ON<OL]J5_>6X2E9a<OL]JP5G>6XHEZ9BbAc#de,/& f@ g,. hiJ0$STEjE=>65U74XZF0ONKPCE-b6kIF
  3. www.phase-trans.msm.cam.ac.uk/abstracts/quasi.pdf

    www.phase-trans.msm.cam.ac.uk/abstracts/quasi.pdf
    17 Apr 2017:
  4. 1 Application of Bayesian Neural Network for modeling and ...

    www.phase-trans.msm.cam.ac.uk/2001/Ferrite_number.pdf
    18 Apr 2017: 1. Application of Bayesian Neural Network for modeling and prediction offerrite number in austenitic stainless steel welds. M. Vasudevan, M. Murugananth, and A.K. BhaduriMaterials Joining Section. Metallury and Materials GroupIndira Gandhi Centre
  5. 72938-18 333..337

    www.phase-trans.msm.cam.ac.uk/2001/memec3.pdf
    18 Apr 2017: "! #! $#%! "! & #'! (! "! # )! " (! #! ( " "! "! "! # '! " "! (! (! # ,-.//! "# $% & ' ( ) $ ,% -% %. %! ( ///0 ) ///% //( 1 2%! " # $ % & $ ' () ",()- ",(). ", / 0 0. " "! 122/ " 0! % $ 3 ' ) 4 5 6 / " 5. /! "#$ 7 5 / 8222! 4+ / & % ' 0 / 5 5 5 " 5
  6. Characteristics of High-Power Diode-Laser Welds for Industrial…

    www.phase-trans.msm.cam.ac.uk/2001/carrie.pdf
    18 Apr 2017: Characteristics of High-Power Diode-Laser Welds for Industrial Assembly. C.A. Walsh, H.K.D.H. Bhadeshia, A. Lau+, B. Matthias+, R. Oesterlein+, and J. Drechsel, Dept. Materials Science, University of Cambridge, UK; ABB Corp. Research, Ladenburg,.
  7. 72068-24 1404..1411

    www.phase-trans.msm.cam.ac.uk/2000/cirencester.pdf
    18 Apr 2017: "#$%%! "#$ % & ''' ( ) ) , '''$ ''' ( -$! 2/// # ///& 3 ( 0 3 2 4! 3. # 3 /5 3 6 1 / #. 55 7 $ 2. # "! # $. 38. # 9 #! (! # 9 ( #! # (. 8 $ ( :15; # 9. 9 $ ( (. #! ( $! "! #$%! # (. 4 ( # # , - $ , , -3.-. 4. 3 --. 3- # 3. ". # ". & '( ) ' ( , ' , '-
  8. 73132-8 403..408

    www.phase-trans.msm.cam.ac.uk/2001/mst4716.pdf
    18 Apr 2017: Modelling precipitation of niobium carbide inaustenite: multicomponent diffusion, capillarity,and coarseningN. Fujita and H. K. D. H. Bhadeshia. The growth of niobium carbide in austenite involves the diffusion of both niobium and carbon. These
  9. 72340-19 30..32

    www.phase-trans.msm.cam.ac.uk/2000/spheres.pdf
    18 Apr 2017: "! " # $% &&&'& ( ))) )))& )) , -&! " # $ % # & ' ( ' '! ) , -. / 0. 1 12. 34. 56. / 34. 3"4. 34 ' 34 7. 374. 8! 2 34 ' ' 34. / ) ' 0 ' 3"4. #. 3$4. 7 1 1 & 1 1 1 , 7. '. 34 34. 56 ' 34 ' 34 3"4. 34. 34. 7. 3-4. '. 3.4. ( ) ' 34 ' 3.4 '. 3/4. ". 7.
  10. INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF PHYSICS D: APPLIED ...

    www.phase-trans.msm.cam.ac.uk/2001/mujahid.pdf
    18 Apr 2017: INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF PHYSICS D: APPLIED PHYSICS. J. Phys. D: Appl. Phys. 34 (2001) 2573–2580 PII: S0022-3727(01)22079-8. Coupled diffusional/displacivetransformations: addition ofsubstitutional alloying elementsS A Mujahid1
  11. 73040-7 116..124

    www.phase-trans.msm.cam.ac.uk/2001/stwj204.pdf
    18 Apr 2017: Neural network analysis of strength andductility of welding alloys for high strength low. alloy shipbuilding steelsE. A. Metzbower, J. J. DeLoach, S. H. Lalam, and H. K. D. H. Bhadeshia. There are considerable demands for the development ofweld
  12. IM73694_18 512..516

    www.phase-trans.msm.cam.ac.uk/2000/bainite1.pdf
    18 Apr 2017: " # $. %&'(''! "# $ % & ' ' ' (' ) ) , - ,./. % & ' '(' 0 1 2 23.45 4 6 7 3/. 89 $' 3! : 4. '. 3 ) 8'! "! #! $ % #! # &. % ' ()! ' # $! '! $! $ #! ,, -. -. / $! ' $ $ ' ". 0 $ #! ""# ,! ' 1 2! $ 3 ' ; ,! ;,! ; , # ' 4 5. $%& ' "(( ( ) &% %, "" &-,./0
  13. 73694-19 517..522

    www.phase-trans.msm.cam.ac.uk/2000/bainite2.pdf
    18 Apr 2017: "#$%$&! "# $ % & ' ' ' (' ) ) , - ,./. % & ' '(' 0 1 2 23.45 4 6 73/. 89 $' 3! : 4. '. 3 ) 8'! "! #$$% # "! $ &$$% # #! '!$% ( )(! "##! ,- ( % $#! /' $ ,-. % $ )# 0$ 1 0$ )#$$ )##$ ) )$$# )# )$## #. 2. 0. 3 )45 $$! $ 6$$ 7 0$ 1! 8! 8 6$8 94:; 945 #$$
  14. IM73694_29 693..699

    www.phase-trans.msm.cam.ac.uk/2000/hetrodef.pdf
    18 Apr 2017: Heterogeneous deformation and recrystallisationof iron base oxide dispersion strengthenedPM2000 alloyC. Capdevila, Y. L. Chen, N. C. K. Lassen, A. R. Jones, and H. K. D. H. Bhadeshia. The recrystallisation behaviour of PM2000 oxide dispersion
  15. ms16034442

    www.phase-trans.msm.cam.ac.uk/abstracts/com.pdf
    17 Apr 2017: Short communicationRefinement and characterisation of athermodynamically stableb-[Ni(Al,Ti)]–b=-[Ni. 2AlTi]–c=-[Ni. 3(Al,Ti)]. metal–metal compositeJ. D. Robson and H. K. D. H. Bhadeshia. The Ni–Al–Ti system contains three intermetallic
  16. www.phase-trans.msm.cam.ac.uk/2001/ms950209.pdf

    www.phase-trans.msm.cam.ac.uk/2001/ms950209.pdf
    18 Apr 2017:
  17. 68808-14 81..89

    www.phase-trans.msm.cam.ac.uk/abstracts/cole.pdf
    17 Apr 2017: " # $ % $ # &'() % " # ( , -. , /0 /1 %! # "$ 2 3 4 $$ 56 71 %! $ 4$ % $ $ ' 08, % " ' $ 9777: 96 1 9777. &000 2 4! "#$%" $! " # $ % & ' ( ). '. 2 ' 2. 2! %. % ' ' / &. 3 4 '! ". / '. $&# $! $' () )"! (#$%" &") / - 5. 6 4! 3 ) 2. #))& #%&"%#) "#)!" ,
  18. MODELLING OF KINETICS AND DILATOMETRIC BEHAVIOR OF…

    www.phase-trans.msm.cam.ac.uk/abstracts/eutectoid.pdf
    17 Apr 2017: MODELLING OF KINETICS AND DILATOMETRIC BEHAVIOR OF NON-ISOTHERMALPEARLITE-TO-AUSTENITE TRANSFORMATION IN AN EUTECTOID STEEL. C. García de Andrés1, F.G. Caballero1,2 ,C. Capdevila1 and H.K.D.H. Bhadeshia2. 1 Department of Physical Metallurgy.
  19. Design of Creep–Resistant Steel Welds H. K. D. H. ...

    www.phase-trans.msm.cam.ac.uk/abstracts/Creepweld.pdf
    17 Apr 2017: Design of Creep–Resistant Steel Welds. H. K. D. H. Bhadeshia. University of CambridgeDepartment of Materials Science and Metallurgy. Pembroke Street, Cambridge CB2 3QZ, U.K. Published in: Trends in Welding Research, eds. S. A.David, T. DebRoy, J.
  20. 17 Apr 2017: Proceedings of Solid–Solid Phase Transformations ’99, (JIMIC-3), eds M. Koiwa, K. Otsuka andT. Miyazaki, Japan Institute for Metals, Kyoto, Japan, 1999, pp. 1445-1452. Kinetics of Simultaneous Transformations. H. K. D. H. Bhadeshia. Department
  21. MODELLING OF PHASE TRANSFORMATIONS IN STEEL WELD METAL H. ...

    www.phase-trans.msm.cam.ac.uk/abstracts/ecomap.pdf
    17 Apr 2017: MODELLING OF PHASE TRANSFORMATIONS IN STEEL WELD METAL. H. K. D. H. Bhadeshia. University of CambridgeDepartment of Materials Science and Metallurgy. Pembroke Street, Cambridge CB2 3QZ, U.K. Abstract. This paper deals with some of the latest issues
  22. � � � � � �� � � � ...

    www.phase-trans.msm.cam.ac.uk/abstracts/CFEMS8.pdf
    17 Apr 2017: " #! $! %. & ' ( ) , -. / - 0 1 ( / 2 3 4. / < ) ( 9 : 4 ) 1 = ( ( 4 ) ; 5 > ) 9 = ) 3 ) ; 3 0? @ A B6 / < ) ( 9 : > 5 1 1 3 8 ( 1 C 9 ) 9 ) 5 4 ( ; 5 D 9 3 ) ; 3 0 @ E - F. 7 (. ( ; 9. G H I J K L M N ( 1 1 < ) 9 5 1 , ) < , 9 ( ; , O 1 1 ( < ) 9 1
  23. MODELLING OF ISOTHERMAL FERRITEFORMATION USING AN ANALYTICAL…

    www.phase-trans.msm.cam.ac.uk/abstracts/GUILMOUR.pdf
    17 Apr 2017: MODELLING OF ISOTHERMAL FERRITEFORMATION. USING AN ANALYTICAL TREATMENT OFSOFT. IMPINGEMENT IN 0.37C - 1.45Mn - 0.11VMICROALLOYED STEEL. C. García de Andrés1, C. Capdevila1, F.G. Caballero1,2 and H.K.D.H. Bhadeshia2. 1 Department of Physical
  24. New Welding Alloys: Computational MethodsL.–E. Svensson and H. K. ...

    www.phase-trans.msm.cam.ac.uk/abstracts/svetsaren.pdf
    17 Apr 2017: New Welding Alloys: Computational MethodsL.–E. Svensson and H. K. D. H. Bhadeshia. Metals are useful materials because of their sophistication and low cost. The many phasetransformations and processing variables associated with them can be
  25. Recrystallisation of Practical Mechanically Alloyed Iron–Base and and …

    www.phase-trans.msm.cam.ac.uk/abstracts/ODSreview.pdf
    17 Apr 2017: Recrystallisation of Practical Mechanically Alloyed. Iron–Base and and Nickel–Base Superalloys. Materials Science and Engineering A223 (1997) 64-77. H. K. D. H. BhadeshiaUniversity of Cambridge/JRDC. Department of Materials Science and
  26. low carbon

    www.phase-trans.msm.cam.ac.uk/abstracts/lowcarbon.pdf
    17 Apr 2017: LOW–CARBON STEELS: THE CALCULATION OF. MIXED–MICROSTRUCTURES & THEIR MECHANICAL PROPERTIES. H. K. D. H. Bhadeshia. University of Cambridge/Research and Development Corporation of JapanDepartment of Materials Science and Metallurgy. Pembroke St.,
  27. The Impact Toughness of C–Mn Steel Arc–Welds – A ...

    www.phase-trans.msm.cam.ac.uk/abstracts/toughness.pdf
    17 Apr 2017: The Impact Toughness of C–Mn Steel Arc–Welds. – A Bayesian Neural Network Analysis. H. K. D. H. Bhadeshia, D. J. C. MacKay and L.–E. Svensson†. Mathematics and Physical Sciences GroupDarwin College, Silver Street, Cambridge CB3 9EU, U. K.
  28. The Bainite Transformation: Unresolved Issues � � � � ...

    www.phase-trans.msm.cam.ac.uk/abstracts/unresolved.pdf
    17 Apr 2017: The Bainite Transformation: Unresolved Issues! " #. $ % % % & '. 2 % % % 3. 4 5 , 6 7 8 - 4 6 5 9 0 : ; <. 1 % % 3 <. 3 ; % = > % % :. % % %? @ A % % B % %. % ;. % % ; %? A ; C 3 0 3 2 % 0? ' D A E. %. 6 F G , F 4 G H 6 I , ( 5 I 6 , J ( 4 6 5 J G -
  29. Published in 'Microalloying in Steels', Year: 1998, pp:…

    www.phase-trans.msm.cam.ac.uk/abstracts/microalloyed.pdf
    17 Apr 2017: Published in 'Microalloying in Steels', Year: 1998, pp: 39-50Periodical: Materials Science Forum Vols. 284-286Published on http://www.scientific.net, eMail: office@scientific.net 1998 by Trans Tech Publications Ltd., Switzerland, http://www.ttp.net.
  30. 72340-20 25..29

    www.phase-trans.msm.cam.ac.uk/2000/plates.needles.pdf
    18 Apr 2017: "! " # $% &&&'& ( ))) )))& )) , -&! " #. $ % &' # ( % ) ". ( ,. /. /! "! " ( " # 0 -. /! 1! (! (! " 0 ""1 % (! 0! # ". 2 3 4 ,. /. 2. /. & 2. 2. / 2. /. 2 5. ,! 6. /! "# $%! & '' (') , - ,". %. : # ; <(! (. =) 53 # (! ,5. 5! 3/. / /. '! 1. /. /. /
  31. 17 Apr 2017: "#$% &(' ), -,/.0% - -( /1-%#2435#2 67,8&9:8<;>=@?A=@BDC&9E8<FG8&H:89E8<I4J&=@K&LNMOJ&PA==@Q&KDHR8S&8TU8<VW=@XYFZ=N[&. ] Q<P_@LYaMOP_b+[c@d$T4=@B:e&aPAK&f@LHULYg<=(ObOBhLNQibc@d0Vj=(bkLYlPA=@?AMU7mXYP_LNQ&XLZ=@Q&KjVjLYbO=@?A?An&Of@[. o LNB:e&Oc@p@LR7
  32. 71876-7 338..340

    www.phase-trans.msm.cam.ac.uk/2000/STWJ185.pdf
    18 Apr 2017: & ' ( ") " " ' ,-" ). (. & " /" ' 012"). 3 4 5556 7 000. 000 8 &! "#$!#! "# $ % &. 9' ()",- ((. , 9:! "# $ % 9:. /! 0! 0. 1. %!% 0( 2 #. & ' () (. ' ( , '. 003 4! ((( 5 " 6 " 6 07! $ 8 3003 4! ((( 5 " 6 " 6 07! $ 8 3. , 0( 9 (". & 0 9 0 ((30!:0 ((30
  33. mst4640a

    www.phase-trans.msm.cam.ac.uk/2001/mst4640a.pdf
    18 Apr 2017: OverviewResidual stressPart 1 – Measurement techniquesP. J. Withers and H. K. D. H. Bhadeshia. Residual stress is that which remains in a body that is stationary and at equilibrium with its surroundings. It can bevery detrimental to the
  34. 73460-10 366..375

    www.phase-trans.msm.cam.ac.uk/2001/mst4640b.pdf
    18 Apr 2017: OverviewResidual stressPart 2 – Nature and originsP. J. Withers and H. K. D. H. Bhadeshia. Residual stress is that which remains in a body that is stationary and at equilibrium with its surroundings. It can bedetrimental when it reduces the
  35. 70938-2 135..147

    www.phase-trans.msm.cam.ac.uk/abstracts/harsha.pdf
    17 Apr 2017: "! " # " " ". $ % & ' ( ) % ( & , )- ' - $. & /01)-! 2! 3334 2!333. /// 5 $. #$%&'( %#'$! -"#$$-%. &'% #$! #$. -" () ' ,. -% -./&0 ,. 12 , 1. && 3 #$! % &. 0 1. $6 &1 4 5 #$ 6 4. 7 4 8 ". 1 7 7 7. 9 1! %': 7 8 / 8. 7. #1$. #1$ #1$. 6. #$6 6. #$.
  36. 70938-3 149..160

    www.phase-trans.msm.cam.ac.uk/abstracts/harsha2.pdf
    17 Apr 2017: $ " $ , #( -./&$ 0 1112! 111. '--- 3$ ". #$%&'(%#'$! ". # $. # # 4% "% &' (). # %%4%. %. "% &). %) ) ,. " , , , -. # %% %. %%/ %%01- # %% 1 %2+ %(1, # %(1 (2 (2 %20. # %%% %( %% %%%/- # %%%( %1 %%%0 %%% # %% 31 %1+ 3, # %% (1 %/ %204 # %% 10 %2((
  37. Poster.indd

    https://www.ifm.eng.cam.ac.uk/uploads/News/Fibrefromstingingnettles.pdf
    7 Feb 2017: Where do nettle fi bres fi t in? Bast Fibres. Processing RouteProcessing Route. How can nettles be sustainable? The above diagram shows one way of classifying fi bres. At the top level, fi bres can be extracted from natural sources, or they can be
  38. MAP Program Library - MAP_STEEL_FERRITIC_HOT_MECH_PROPERTIES

    www.phase-trans.msm.cam.ac.uk/map/steel/programs/MAP_STEEL_FERRITIC_HOT_MECH_PROPERTIES.htm
    15 Mar 2017: Follow these steps to use this module:. 1. Download the file. ... 1. Program text. Complete program. 2. Program data. See file test.dat and Readme.txt.
  39. Mathematical Modelling of Weld Phenomena - VI Published by ...

    www.phase-trans.msm.cam.ac.uk/2001/creep.pdf
    18 Apr 2017: Mathematical Modelling of Weld Phenomena - VI Published by the Institute of Materials, eds H. Cerjak and H. K. D. H. Bhadeshia, 2002, 243-260. INPUTSchemical compositions, temperature,phase fractions,ferrite composition. Factorisation of
  40. www.phase-trans.msm.cam.ac.uk/abstracts/young.1995.pdf

    www.phase-trans.msm.cam.ac.uk/abstracts/young.1995.pdf
    17 Apr 2017:
  41. ~~metalu~a Disena de nuevas aceras bainfticas(o) F. G. Caballero., ...

    www.phase-trans.msm.cam.ac.uk/2000/bainite.spanish.pdf
    18 Apr 2017: metalua. Disena de nuevas aceras bainfticas(o). F. G. Caballero., H.K.D.H. Bhadeshia., K.,P. Brown. A. Mawella, D.O. Jones. y. Resumen En los ultimos alios se han disefiado aceros con microestructuras formadas par placas deferrita bainitica superior
  42. Publ mst1506 Issue 4128 Page 627

    www.phase-trans.msm.cam.ac.uk/2001/molybdenum.nobu.pdf
    18 Apr 2017: Introduction. Many steels contain substitutional solutes which have astrong affinity for carbon or nitrogen. Such steels can behardened by heat treatment which induces the precipitationof fine alloy carbides. Examples of such carbides includeMX, M2C,
  43. www.phase-trans.msm.cam.ac.uk/abstracts/homogenisation.pdf

    www.phase-trans.msm.cam.ac.uk/abstracts/homogenisation.pdf
    17 Apr 2017:
  44. Publ mst1503 Issue 4132 Page 287

    www.phase-trans.msm.cam.ac.uk/2001/gaussian.bailer.mst.pdf
    18 Apr 2017: Introduction. The formation of austenite is an important component inthe heat treatment of steels. The temperature at whichaustenite begins to form during the continuous heating ofsteel is termed the Ac1 temperature, and that at which thesteel
  45. PII: S0921-5093(01)00913-3

    www.phase-trans.msm.cam.ac.uk/2001/adi.neural.Yescas.pdf
    18 Apr 2017: Materials Science and Engineering A311 (2001) 162 – 173. Estimation of the amount of retained austenite in austemperedductile irons using neural networks. M.A. Yescas a, H.K.D.H. Bhadeshia a,, D.J. MacKay b. a Department of Materials Science and
  46. Quantitative modelling tools for the design of Ni-base superalloys

    www.phase-trans.msm.cam.ac.uk/abstracts/chinese/tancret2.doc
    17 Apr 2017: Quantitative modelling tools for the design of Ni-base superalloys. F. Tancret. University of Cambridge. Department of Materials Science and Metallurgy. Pembroke Street - Cambridge CB2 3QZ. United Kingdom. Biography: The author is a Materials
  47. DESIGNOF FERRITIC CREEP–RESISTANT STEELS H. K. D. H.…

    www.phase-trans.msm.cam.ac.uk/abstracts/creep.ultrasteel.pdf
    17 Apr 2017: DESIGNOF FERRITIC CREEP–RESISTANT STEELS. H. K. D. H. BhadeshiaUniversityof Cambridge,U.K! ". " #. $ % & & ' (. ) , - ) $. /. 0 " 0. ( 1. 2! 2 2 3. 4 4 4 5 6 7 4 8 6 4 5. 2 9 :. ; 4 & : 8 4 <. 4 = >? 6 @. 4 A. B C D D E D D D F. 4 G 2. 4 4 G 2 H
  48. Publ mst1504 Issue 4226 Page 471

    www.phase-trans.msm.cam.ac.uk/2001/kasuya.extended.mst.pdf
    18 Apr 2017: Introduction. A model for a single transformation begins with thecalculation of the nucleation and growth rates usingclassical theory,1–6 but an estimation of the volume fractionrequires impingement between particles to be taken intoaccount. This
  49. Publ mst1501 Issue 4155 Page 22

    www.phase-trans.msm.cam.ac.uk/2001/bhadeshia.steels.mst.pdf
    18 Apr 2017: Introduction. About 70% of all the steel compositions that are currentlyused have been developed within the last 10 years. Noveliron alloys are being conceived, manufactured, and mar-keted with a regularity which has confounded manyprophecies. Phase
  50. Publ mst1505 Issue 4135 Page 518

    www.phase-trans.msm.cam.ac.uk/2001/matsuzaki.bainite.mst.pdf
    18 Apr 2017: Table 1 Chemical composition of steels, wt-%. Steel C Si Mn Cr Fe. A 012 203 296. Bal.B 096 021 038 126 Bal. Introduction. The effect of austenite grain size on the evolution of thebainite transformation in steels is not yet certain in spiteof many
  51. PII: S0921-5093(01)01234-5

    www.phase-trans.msm.cam.ac.uk/2001/Capdevila.strain.hetero.pdf
    18 Apr 2017: Materials Science and Engineering A316 (2001) 161 – 165. Strain heterogeneity and the production of coarse grains inmechanically alloyed iron-based PM2000 alloy. C. Capdevila a, U. Miller b, H. Jelenak c, H.K.D.H. Bhadeshia a,a Department of

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