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Phase and crystal orientation study of a TRansformation Induced Plasticity steel subjected to cyclic load induced fatigue

Deakin University
Alexander Kanapin (Aggregated by) Elena Pereloma (Aggregated by) Jean François Michiels (Aggregated by) John Fernandes (Aggregated by) Lloyd T Lam (Aggregated by)
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.4225/16/5382CCA77FB27&rft.title=Phase and crystal orientation study of a TRansformation Induced Plasticity steel subjected to cyclic load induced fatigue&rft.identifier=10.4225/16/5382CCA77FB27&rft.publisher=Deakin University&rft.description=An electron backscatter diffraction (EBSD) study of the microstructure of TRIP steel during fatigue failure. Phase and crystal orientation study of a TRIP steel subjected to cyclic load induced fatigue. The relative fractions of austenite, ferrite and martensite are quantified within the strain field of a fatigue crack tip. This data is a subset of data supporting a wider study of the fatigue properties of multiphase steels used in the automotive industry. The different microstructural phases present in these steels can influence the strain life and cyclic stabilized strength of the material due to the way in which these phases accommodate the applied cyclic strain. Fully reversed strain-controlled low-cycle fatigue tests have been used to determine the mechanical fatigue performance of a dual-phase (DP) 590 and transformation induced plasticity (TRIP) 780 steel, with transmission electron microscopy (TEM) and scanning electron microscopy (SEM-EBSD) used to examine the deformed microstructures .&rft.creator=Alexander Kanapin&rft.creator=Elena Pereloma&rft.creator=Jean François Michiels&rft.creator=John Fernandes&rft.creator=Lloyd T Lam&rft.date=2014&rft_rights= https://www.rioxx.net/licenses/all-rights-reserved/&rft_subject=Materials engineering not elsewhere classified&rft_subject=EBSD&rft_subject=electron backscatter diffraction&rft_subject=Materials Engineering not elsewhere classified&rft.type=dataset&rft.language=English Access the data

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An electron backscatter diffraction (EBSD) study of the microstructure of TRIP steel during fatigue failure. Phase and crystal orientation study of a TRIP steel subjected to cyclic load induced fatigue. The relative fractions of austenite, ferrite and martensite are quantified within the strain field of a fatigue crack tip. This data is a subset of data supporting a wider study of the fatigue properties of multiphase steels used in the automotive industry. The different microstructural phases present in these steels can influence the strain life and cyclic stabilized strength of the material due to the way in which these phases accommodate the applied cyclic strain. Fully reversed strain-controlled low-cycle fatigue tests have been used to determine the mechanical fatigue performance of a dual-phase (DP) 590 and transformation induced plasticity (TRIP) 780 steel, with transmission electron microscopy (TEM) and scanning electron microscopy (SEM-EBSD) used to examine the deformed microstructures .

Issued: 26 05 2014

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ACN 633 798 857