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  1. Results that match 1 of 2 words

  2. Current page: 200 Lucy in Tokyo, ...

    www.phase-trans.msm.cam.ac.uk/2013/LJ/Pages/200.html
    14 Feb 2020: Current page: 200. Lucy in Tokyo, Japan.
  3. 200 (2)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image200.html
    14 Feb 2020: Isothermally transfromed at 380C, mixture of martensite and bainite.
  4. 250_200

    www.phase-trans.msm.cam.ac.uk/2004/adi3/adi3-Pages/Image28.html
    14 Feb 2020: Cast iron. For details see https://www.phase-trans.msm.cam.ac.uk/2001/adi/photo.html.
  5. Hanover_2008_200

    www.phase-trans.msm.cam.ac.uk/2008/Han/Han-Pages/Image189.html
    14 Feb 2020:
  6. 200

    www.phase-trans.msm.cam.ac.uk/2008/Ni/6Ni/6Ni-Pages/Image5.html
    14 Feb 2020: Quenched, fully martensite.
  7. 300_200

    www.phase-trans.msm.cam.ac.uk/2004/adi3/adi3-Pages/Image31.html
    14 Feb 2020: Cast iron. For details see https://www.phase-trans.msm.cam.ac.uk/2001/adi/photo.html.
  8. 200 (1)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/4Ni/4Ni-Pages/Image3.html
    14 Feb 2020: Quenched, fully martensite.
  9. 200(5)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image5.html
    14 Feb 2020: Quenched, fully martensitic.
  10. 200

    www.phase-trans.msm.cam.ac.uk/2008/Ni/4Ni/4Ni-Pages/Image91.html
    14 Feb 2020: Isothermally transfromed at 490C, fully martensite.
  11. 200(2)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/4Ni/4Ni-Pages/Image92.html
    14 Feb 2020: Isothermally transfromed at 490C, fully martensite.
  12. 200(3)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image155.html
    14 Feb 2020: Isothermally transfromed at 400C, mixture of martensite and bainite.
  13. 200(2)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/6Ni/6Ni-Pages/Image363.html
    14 Feb 2020: Isothermally transformed at 280C for 9 weeks, mixture of martensite and bainite.
  14. 35064_200

    www.phase-trans.msm.cam.ac.uk/2004/adi3/adi3-Pages/Image40.html
    14 Feb 2020: Cast iron. For details see https://www.phase-trans.msm.cam.ac.uk/2001/adi/photo.html.
  15. 200 (1)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/4Ni/4Ni-Pages/Image4.html
    14 Feb 2020: Quenched, fully martensite.
  16. 200 (1)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image39.html
    14 Feb 2020: Isothermally transfromed at 470C, fully martensite.
  17. 200 (3)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image61.html
    14 Feb 2020: Isothermally transfromed at 460C, mixture of martensite and bainite.
  18. 200 (2)

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image62.html
    14 Feb 2020: Isothermally transfromed at 460C, mixture of martensite and bainite.
  19. 200

    www.phase-trans.msm.cam.ac.uk/2008/Ni/5Ni/5Ni-Pages/Image93.html
    14 Feb 2020: Isothermally transfromed at 440C, mixture of martensite and bainite.
  20. 200_02

    www.phase-trans.msm.cam.ac.uk/2008/Ni/6Ni/6Ni-Pages/Image177.html
    14 Feb 2020: Isothermally transformed at 280C for 7days, mixture of martensite and bainite.
  21. 200_01

    www.phase-trans.msm.cam.ac.uk/2008/Ni/6Ni/6Ni-Pages/Image264.html
    14 Feb 2020: Isothermally transformed at 280C for 3 weeks, mixture of martensite and bainite.
  22. 200_05

    www.phase-trans.msm.cam.ac.uk/2008/Ni/6Ni/6Ni-Pages/Image265.html
    14 Feb 2020: Isothermally transformed at 280C for 3 weeks, mixture of martensite and bainite.
  23. 200_07

    www.phase-trans.msm.cam.ac.uk/2008/Ni/6Ni/6Ni-Pages/Image266.html
    14 Feb 2020: Isothermally transformed at 280C for 3 weeks, mixture of martensite and bainite.
  24. Bulk Nanocrystalline Steel

    www.phase-trans.msm.cam.ac.uk/2005/SWpaper/SWpaper.html
    14 Feb 2020: C), gently transferring into an oven at the low temperature (at say 200. ... There is no rapid cooling - residual stresses are avoided. The size of the sample can be large because the time taken to reach 200.
  25. Micrograph Library for Very Strong Bainite - Part 3

    www.phase-trans.msm.cam.ac.uk/2007/sp9/sp9.html
    14 Feb 2020: The alloy can be made in large sizes (greater than 200 mm) in all directions.
  26. High Performance Bainitic Steels

    www.phase-trans.msm.cam.ac.uk/2005/performance/paper.html
    14 Feb 2020: Figure 9: Fe-0.98C-1.46Si-1.89Mn-0.26Mo-1.26Cr-0.09V wt%, transformed at 200. C for 5 days. ... Figure 11: Fe-0.98C-1.46Si-1.89Mn-0.26Mo-1.26Cr-0.09V wt%, transformed at 200. C for 5 days.
  27. Phase Transformations and Complex Properties Research Group

    www.phase-trans.msm.cam.ac.uk/pubs/pt.html
    4 Jul 2024: Materials Science and Engineering A, Vol. 223, 1997, pp. 186-200. T.
  28. Micrograph Library for Very Strong Bainite - Part 4

    www.phase-trans.msm.cam.ac.uk/2007/sp10/sp10.html
    14 Feb 2020: The alloy can be made in large sizes (greater than 200 mm) in all directions.
  29. 14 Feb 2020: It is demonstrated that low and medium strength weld metals benefit from oxides up to a concentration of about 200 ppmw as consistent with previous research, because acicular ferrite is stimulated
  30. Micrograph Library for Very Strong Bainite - Part 4

    www.phase-trans.msm.cam.ac.uk/2007/sp9c/sp9c.html
    14 Feb 2020: The alloy can be made in large sizes (greater than 200 mm) in all directions.
  31. Further evidence of tetragonality in bainitic ferrite

    www.phase-trans.msm.cam.ac.uk/2015/tetra.html
    14 Feb 2020: Further evidence of tetragonality in bainitic ferrite. C. N. Hulme-Smith, M. J. Peet, I. Lonardelli, A. C. Dippel and H. K. D. H. Bhadeshia. Abstract. There is growing evidence that bainitic ferrite which retains a substantial amount of carbon in
  32. Tensile behaviour of thermally-stable nanocrystalline bainitic-steels

    www.phase-trans.msm.cam.ac.uk/2019/Tensile.html
    14 Feb 2020: Surprisingly, the alloys are found to have greater ultimate tensile strengths and ductility when tested at 200 C, compared with corresponding tests at ambient temperature. ... This is demonstrated to be a consequence of the more gradual
  33. Micrograph Library for Very Strong Bainite - Part 5

    www.phase-trans.msm.cam.ac.uk/2007/sp10c/sp10c.html
    14 Feb 2020: The alloy can be made in large sizes (greater than 200 mm) in all directions.
  34. Getting a Visa to Visit India

    www.phase-trans.msm.cam.ac.uk/2007/Visa/Visa.html
    14 Feb 2020: We got there at about 0710 and there were already 200 people queuing in front of us. ... Dawn breaking. These are the people queuing behind the 200 in front.
  35. 5 6 7 8 9 10 11 12 13 ...

    www.phase-trans.msm.cam.ac.uk/2005/LINK/
    10 Apr 2021:
  36. Nanostructured Bainite

    www.phase-trans.msm.cam.ac.uk/2010/nano.html
    14 Feb 2020: C), followed by a gentle transfer into an oven at the low temperature (say 200. ... The size of the sample can be large because the time taken to reach 200.
  37. Joining Ceramics to Metals using Metallic Foam

    www.phase-trans.msm.cam.ac.uk/2008/foam.html
    14 Feb 2020: Alumina-stainless steel bonds withstood more that 60 thermal cycles between 200 to 800C in air.
  38. 14 Feb 2020: the hardness of 200 HV in the stir zone without particle additions.
  39. Mössbauer Spectroscopy of Low Temperature Bainite

    www.phase-trans.msm.cam.ac.uk/2005/Mossbauer.html
    14 Feb 2020: Mössbauer Spectroscopy of Low Temperature Bainite. P. Bruna, T. Pradell, D. Crespo, C. Garcia-Mateo and H. K. D. H. Bhadeshia. Abstract. Low-temperature bainite, obtained by the transformation of austenite at temperatures as low as 200C for times
  40. Freckles in Nickel Based Superalloys

    www.phase-trans.msm.cam.ac.uk/2007/freckle.html
    14 Feb 2020: Axial section showing freckles in IN 718, 200 mm diameter billet. ... Radial section showing freckles in IN 718, 200 mm diameter billet.
  41. Effect of tempering upon the tensile properties of a nanostructured…

    www.phase-trans.msm.cam.ac.uk/2014/tempering2.html
    14 Feb 2020: D. H. Bhadeshia. Abstract. The tensile properties of a nanostructured carbide-free bainitic steel formed at 200-250C are compared against those after tempering sufficiently to remove the retained austenite.
  42. Recrystallization of Austenitic Stainless Steel

    www.phase-trans.msm.cam.ac.uk/abstracts/recryst.html
    14 Feb 2020: Transmission electron micrographs taken at 200 kV, from a thin foil sample of "302AA" austenitic stainless steel.
  43. Elongation of Irradiated Steels

    www.phase-trans.msm.cam.ac.uk/2009/forsik.html
    14 Feb 2020: Predictions were compared to experimental values and were in agreement. The model was extrapolated to predict the elongation at high irradiation doses (200 dpa) and high temperatures (750C).
  44. 14 Feb 2020: Journal of Magnetism and Magnetic Materials 378 (2015) 200-205. W. Solano-Alvarez, H.
  45. Size distribution of oxides and toughness of steel weld metals

    www.phase-trans.msm.cam.ac.uk/2006/oxygen2.html
    14 Feb 2020: Size distribution of oxides and toughness of steel weld metals. Shinichi Terashima and H. K. D. H. Bhadeshia. Abstract. Experiments have been conducted to modify the size distribution of oxide particles in steel weld metals which have predominantly
  46. Micrograph Library for Very Strong Bainite - Part 2

    www.phase-trans.msm.cam.ac.uk/2007/aus2/aus2.html
    14 Feb 2020: The alloy can be made in large sizes (greater than 200 mm) in all directions.
  47. 14 Feb 2020: The foils were examined using JEM 100CX and 2000EX transmission electron microscopes operating at 100 and 200 kV respectively. ... Å) operating at 30 kV and 20 mA. The phase fractions were determined taking into account the integrated intensities of
  48. Large Chunks of Very Strong Steel

    www.phase-trans.msm.cam.ac.uk/2004/chunks.html
    14 Feb 2020: Large Chunks of Very Strong Steel. H. K. D. H. Bhadeshia. Abstract. Steel with an ultimate tensile strength of 2500 MPa, a hardness at 600-670 HV and toughness in excess of 30-40 MPa m. 1/2. is the result of exciting new developments with bainite.
  49. Mechanical Properties of Low-Temperature Bainite

    www.phase-trans.msm.cam.ac.uk/2005/mechanical.html
    14 Feb 2020: characterized. The microstructure is generated by isothermal transformation at temperatures in the range 200-300C.
  50. Modelling Creep Rupture Strength of Ferritic Steel Welds

    www.phase-trans.msm.cam.ac.uk/abstracts/cole.html
    14 Feb 2020: Modelling Creep Rupture Strength of Ferritic Steel Welds. D. Cole, C. Martin-Moran, A.G. Sheard, H. K. D. H. Bhadeshia and D. J. C. MacKay. Abstract. Recent changes in the design of steam turbine power plant have necessitated the replacement of
  51. Dry rolling/sliding wear of nanostructured bainite

    www.phase-trans.msm.cam.ac.uk/2014/rolling_sliding.html
    14 Feb 2020: Dry rolling/sliding wear of nanostructured bainite. Subhankar Das Bakshi, A. Leiro, B. Prakash and H.K.D.H. Bhadeshia. Abstract. The abrasive wear of carbide-free bainitic steel under dry rolling/sliding conditions has been studied. It is

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