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Study of the kinetics of austenite grain growth by dynamic Ti-rich and Nb-rich carbonitride dissolution in HSLA steel: In-situ observation and modeling.

Authors :
Zhang, Yang
Li, Xiaohua
Liu, Yongchang
Liu, Chenxi
Dong, Ji
Yu, Liming
Li, Huijun
Source :
Materials Characterization. Nov2020, Vol. 169, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

The effect of carbonitrides on the growth of austenite grains in high-strength low-alloy (HSLA) steel was investigated through microstructure analysis and high-resolution dilatometry. The austenite grain growth at various temperatures was measured in situ using high temperature laser scanning confocal microscopy. Two kinds of precipitates with different morphologies containing large amounts of Ti and Nb were observed in the austenitized samples at different temperatures. The smaller Nb-rich spherical carbonitrides dissolved at the higher temperature, while the lager Ti-rich rectangular carbonitrides have a higher thermal stability and can pin at the austenite grain boundary. This study reveals that the dissolution of Nb in austenite causes the rapid growth of austenite grains and slows down the ferrite phase transition, which is beneficial to the formation of bainite. A kinetic model of austenite growth considering the dynamic dissolution of different types of carbonitrides is proposed. The results of the model show the same overall trend as the experimental results, and the individual differences can be explained. The proposed model can be used to predict the austenite grain size during the austenitizing process of HSLA steel and can reflect the austenite grain change throughout the process more continuously. • Two carbonitrides with different thermal stability at the high temperature were found. • The dissolution of Nb element affect the austenite grain size and also affect the phase transition in the cooling process. • Providing a new method to predict the pinning pressure and the austenite grain size with increasing time from dynamics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10445803
Volume :
169
Database :
Academic Search Index
Journal :
Materials Characterization
Publication Type :
Academic Journal
Accession number :
146656843
Full Text :
https://doi.org/10.1016/j.matchar.2020.110612