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Sep 9, 2022
Macchi, Juan, 2022, "Time-resolved dislocation density evolution during martensitic transformation tracked in situ by High-Energy XRD experiments: a study of C content and cooling rate effects", https://doi.org/10.12763/SGPFMK, Université de Lorraine, V1
The present dataset was obtained during in situ High Energy X-Ray Diffraction experiments. The aim was to investigate the effect of the C content and of the cooling rate on the dislocation density during the martensitic transformation. |
Archive 7Z - 9.4 MB -
MD5: cf299e79485ab92f00dba1eca5d5ffc2
steel 0.1C, cooling rate -100Cs
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Texte - 53.2 KB -
MD5: b5df5705a00c2aaa0985196b9bd8b467
dilatomertric heat treatment, steel 0.1C, cooling under Ms -100Cs |
Archive 7Z - 9.2 MB -
MD5: ccee314666243f063ceed497358084bb
steel 0.1C, cooling rate -10Cs |
Texte - 65.2 KB -
MD5: 56f185309a0fb064a10245e665c20249
dilatomertric heat treatment, steel 0.1C, cooling under Ms -10Cs |
Archive 7Z - 9.3 MB -
MD5: 10fe50c0f2be81b8112372286728ec75
steel 0.1C, cooling rate -50Cs |
Texte - 65.1 KB -
MD5: d8b3508c763005e259ed69e2da2fa071
dilatomertric heat treatment, steel 0.1C, cooling under Ms -50Cs |
Archive 7Z - 40.6 KB -
MD5: 75f5f4d18b7e4627c00fbddc490a2851
steel 0.1C, cooling rate water quench
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Archive 7Z - 9.1 MB -
MD5: 7e12cc242cacae7e61872d34a2192478
steel 0.2C, cooling rate -100Cs |
Texte - 51.9 KB -
MD5: fbf4e3c19e2a549502efaf525006412c
dilatomertric heat treatment, steel 0.2C, cooling under Ms -100Cs |