dc.creatorSun, Fusheng
dc.creatorZúñiga Páez, Alejandro
dc.creatorRojas Goñi, Paula
dc.creatorLavernia, Enrique J.
dc.date.accessioned2009-06-19T13:10:40Z
dc.date.available2009-06-19T13:10:40Z
dc.date.created2009-06-19T13:10:40Z
dc.date.issued2006-07
dc.identifierMETALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE Volume: 37A Issue: 7 Pages: 2069-2078 Published: JUL 2006
dc.identifier1073-5623
dc.identifierhttps://repositorio.uchile.cl/handle/2250/124995
dc.description.abstractThe grain growth, thermal stability, and recrystallization behavior of a cryomilled Ti alloy with a grain size of about 21.2 nm were examined using differential scanning calorimetry, X-ray diffraction, and transmission electron microscopy. Isochronal heat treatments at different temperatures were applied to study the thermal stability and recrystallization behavior of this alloy system. The average grain size increased from 20 to 80 nm in the temperature range of 200 degrees C to 350 degrees C, and then significantly decreased to 15 nm during annealing at 400 degrees C to 450 degrees C. This phenomenon was rationalized on the basis of a recrystallization mechanism. When the annealing temperature increased from 450 degrees C to 720 degrees C, the grain size increased slightly from 15.2 to 27.5 nm. In addition, the isothermal grain growth behavior in this alloy was investigated in the temperature range of 150 degrees C to 720 degrees C, and the resulting grain growth activation energy was analyzed to rationalize the underlying grain growth mechanisms. An interesting scientific question that arises from the present work is whether a decrease in grain size can be obtained in nanocrystalline (nc) materials via a recrystallization mechanism. The present results show that indeed a smaller grain size is obtained after annealing at elevated temperatures (500 degrees C to 720 degrees C) in cryomilled nc Ti, and the experimental results are explained on the basis of a recrystallization mechanism.
dc.languageen
dc.publisherMINERALS METALS MATERIALS SOC
dc.subjectGRAIN-GROWTH BEHAVIOR
dc.titleThermal stability and recrystallization of nanocrystalline Ti produced by cryogenic milling
dc.typeArtículo de revista


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