Communication comparison of experimental methods to measure the isothermal precipitation kinetics of Nb(C,N) in austenite of a Nb-microalloyed steel

The isothermal precipitation kinetics of Nb(C,N) in strained austenite of a Nb-microalloyed steel was quantitatively investigated using electrical resistivity (ER) and interrupted compression methods and validated with transmission electron microscopy (TEM). The difference in precipitation start tim...

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Published inMetallurgical and materials transactions. A, Physical metallurgy and materials science Vol. 40A; no. 7; pp. 1515 - 1519
Main Authors Park, J S, Ha, Y S, Lee, Young-Kook
Format Journal Article
LanguageEnglish
Published 01.07.2009
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Abstract The isothermal precipitation kinetics of Nb(C,N) in strained austenite of a Nb-microalloyed steel was quantitatively investigated using electrical resistivity (ER) and interrupted compression methods and validated with transmission electron microscopy (TEM). The difference in precipitation start time (P(s)) between the two methods is too small to compare the accuracy of the methods. The precipitation finish time (P(f)) exhibits the larger difference between the two methods. The interrupted compression method gives too early P(f) because of particle growth with holding time.
AbstractList The isothermal precipitation kinetics of Nb(C,N) in strained austenite of a Nb-microalloyed steel was quantitatively investigated using electrical resistivity (ER) and interrupted compression methods and validated with transmission electron microscopy (TEM). The difference in precipitation start time (P(s)) between the two methods is too small to compare the accuracy of the methods. The precipitation finish time (P(f)) exhibits the larger difference between the two methods. The interrupted compression method gives too early P(f) because of particle growth with holding time.
Author Park, J S
Lee, Young-Kook
Ha, Y S
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Title Communication comparison of experimental methods to measure the isothermal precipitation kinetics of Nb(C,N) in austenite of a Nb-microalloyed steel
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