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  1. Results that match 1 of 2 words

  2. Hydrogen di↵usion and thepercolation of austenite in nanostructured…

    www.phase-trans.msm.cam.ac.uk/2014/percolation.pdf
    24 May 2014: Both can be heat-treated to produce the requirednanostructure, as shown previously [1, 2, 23, 24]. ... Mater. Sci. Tech-nol., 18:279–284, 2002. 28. [24] C. Garcia-Mateo, F. G.
  3. Austenite in transformation-induced plasticity steelsubjected to…

    www.phase-trans.msm.cam.ac.uk/2014/multiple.pdf
    23 Jul 2014: In alloy A with wC = 0.24 wt%, the two-step treatment worsens theductility with the opposite effect observed in alloy B which contains 0.41 wt%carbon. ... Sci. 8 (2004) 259–265. [24] B. C. DeCooman: Curr. Opi. in Sol.
  4. Mechanical.dvi

    www.phase-trans.msm.cam.ac.uk/2014/Mechanical.pdf
    26 Jan 2014: df1 = χ. (. 1 24. i=0. fi. ). dT, with df1 = 0 if MS1 < T. ... df24 = χ. (. 1 24. i=0. fi. ). dT, with df24 = 0 if MS24 < T (4).
  5. Phase quantification in nanobainite via magnetic measurements and…

    www.phase-trans.msm.cam.ac.uk/2014/Magnetisation.pdf
    25 Nov 2014: Recent research hasshown that even after significant cycling stressing, the austenite films ofnanostructured bainite in the regions of maximum subsurface shear stressdo not stress transform to martensite [24]. ... 24] W. Solano-Alvarez, E. J. Pickering, H
  6. About Calculating the Characteristics of the Martensite-Austenite…

    www.phase-trans.msm.cam.ac.uk/2014/MA_Bhadeshia_2013_TMS.pdf
    30 Jan 2014: 18. Y. Tomota et al., “Tensile Deformation of Two Ductile Phase Alloys: Flow CFe–Cr–Ni Alloys.” Materials Science and Engineering, 24 (1976), 85 - 94. ... 24. B.C. DeCooman, “Structure–Properties Relationship in TRIP Steels Containing Carbide
  7. AuthorInstructions2.dvi

    www.phase-trans.msm.cam.ac.uk/2014/LBZ.pdf
    25 May 2014: J. Jacques: Current Opinion in Solid State and Materials Science 8 (2004) 259–265.[24] H.
  8. Hydrogen_revised6

    www.phase-trans.msm.cam.ac.uk/2014/Han.pdf
    29 Mar 2014: austenitic TWIP steel is reported to be around 6070 % [21-24]. ... 11. [24] M. Koyama, E. Akiyama, and K. Tsuzaki, Scripta Materialia 66 (2012) 947.
  9. PrefaceAdventures in the physical metallurgy of steels H. K. ...

    www.phase-trans.msm.cam.ac.uk/2014/editorial_Bhadeshia_MST_2014.pdf
    24 May 2014: addressed. Alloys of austenitic iron containing large concentrations of manganese (typically 15–20 wt-%) arenow common in research and are commercially available;22–24 they rely on twinning-inducedplasticity (TWIP) to ... Sci. Technol., 2008, 24,
  10. apms_revised_1Mar2014_AD_TDR

    www.phase-trans.msm.cam.ac.uk/2014/durability_De_MST_2014.pdf
    24 May 2014: Mater. Trans. A, 2011, 42A, (9), 2716–2722. [24] V. D. Manvatkar, A. ... Workpiece and tool materials C-Mn 1018 Steel, W-0.4%Re Tool shoulder and pin diameters, mm (15, 18, 21, 24), (7.9, 9.0) Workpiece thickness, mm 6.35,
  11. hotdefR1_harry.dvi

    www.phase-trans.msm.cam.ac.uk/2014/dual_phase_2014.pdf
    25 Apr 2014: for C-Mn steels A = 3.8732 µm10s1 and Qgg 400 kJ mol1) [24]. ... occurring during hot deformation and predicting phase structure comparable. 24. to experimental results.

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