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Data Library MAP_DATA_MS

  1. Provenance of code.
  2. Purpose of code.
  3. Description of subroutine's operation.
  4. References.
  5. Any additional information.
  6. Keywords.
  7. Download source code.
  8. Links.

Provenance of Source Code

Tracey Cool* and H.K.D.H. Bhadeshia,
Phase Transformations Group,
Department of Materials Science and Metallurgy,
University of Cambridge,
Cambridge, U.K.

*TC is now with the Materials Engineering Department, Parsons Power Generation Systems Ltd, Heaton Works, Shields Road, Newcastle Upon Tyne, NE6 2YL

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Provides dilatometric data on the martensite transformation of wrought steels and weld deposits on rapid cooling.

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The tar file msdb.tar contains three files. File msdb.data contains the chemical composition of the steels studied followed by three measured martensite start temperatures. Files msdb.info and msdb.tex contain, respectively, text and plain TeX versions of this documentation.

Column 1 is Sample ID.

Column 2 is Carbon concentration (weight%)

Column 3 is Silicon concentration (weight%)

Column 4 is Manganese concentration (weight%)

Column 5 is Sulphur concentration (weight%)

Column 6 is Phosphorus concentration (weight%)

Column 7 is Nickel concentration (weight%)

Column 8 is Chromium concentration (weight%)

Column 9 is Molybdenum concentration (weight%)

Column 10 is Vanadium concentration (weight%)

Column 11 is Cobalt concentration (weight%)

Column 12 is Tungsten concentration (weight%)

Column 13 is Niobium concentration (weight%)

Column 14 is Nitrogen concentration (weight%) (N if not available)

Column 15 is Oxygen concentration (weight%) (N if not available)

Column 16 is Measured MS

Column 17 is Measured MS

Column 18 is Measured MS

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  1. Tracey Cool, Design of Steel Weld Deposits, PhD Thesis, University of Cambridge, 1996.
  2. Tracey Cool and H.K.D.H. Bhadeshia, Materials Science and Technology, Volume 12 (1996) 40-44.

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Further Comments



materials, data, dilatation, dilatometric data, martensite, transformation, wrought, steel, weld deposit, weld, cooling

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