Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel
The thermo-mechanical control processing of Nb-Ti micro-alloyed steel by induction heating in the endless strip production (ESP) line was analyzed to better understand the microstructural evolution and Nb precipitation and dissolution behavior in austenite during rapid heating to high temperatures....
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doaj-e7fc33d6d7fd4f14a3bffd82b0ad0aa92021-02-03T00:04:54ZengMDPI AGMetals2075-47012021-02-011125125110.3390/met11020251Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed SteelQibo Tang0Gang Niu1Huibin Wu2Lixiong Xu3Rui Yuan4Collaborative Innovation Center of Steel Technology, University of Science & Technology Beijing, Beijing 100083, ChinaCollaborative Innovation Center of Steel Technology, University of Science & Technology Beijing, Beijing 100083, ChinaCollaborative Innovation Center of Steel Technology, University of Science & Technology Beijing, Beijing 100083, ChinaCollaborative Innovation Center of Steel Technology, University of Science & Technology Beijing, Beijing 100083, ChinaCollaborative Innovation Center of Steel Technology, University of Science & Technology Beijing, Beijing 100083, ChinaThe thermo-mechanical control processing of Nb-Ti micro-alloyed steel by induction heating in the endless strip production (ESP) line was analyzed to better understand the microstructural evolution and Nb precipitation and dissolution behavior in austenite during rapid heating to high temperatures. The Nb-Ti micro-alloyed steel consisting of 0.05 wt% C and 0.05 wt% Nb was processed through simulated rough rolling at 1050 °C followed by rapid isothermal reheating at 1150 °C. The austenite coarsening behavior and the Nb dissolution behavior at different holding times were compared, and the coarsening kinetics of austenite grains and the dissolution kinetics of precipitates were investigated. It was found that during induction heating, the size of austenite grains gradually increased with the isothermal time, and the amounts of precipitates were greatly reduced. Round precipitates of (Ti, Nb) (C, N) and square precipitates of Ti (C, N) gradually dissolved into the austenite matrix with the holding time. The Nb content in the solution increased from 0.0137 to 0.0299 wt% as the holding time increased from 1 to 40 s; therefore, about 59.8% of the total Nb content dissolved into the austenite matrix during the induction heating process.https://www.mdpi.com/2075-4701/11/2/251Nb-Ti micro-alloyed steelESPinduction heatingprecipitationdissolution |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Qibo Tang Gang Niu Huibin Wu Lixiong Xu Rui Yuan |
spellingShingle |
Qibo Tang Gang Niu Huibin Wu Lixiong Xu Rui Yuan Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel Metals Nb-Ti micro-alloyed steel ESP induction heating precipitation dissolution |
author_facet |
Qibo Tang Gang Niu Huibin Wu Lixiong Xu Rui Yuan |
author_sort |
Qibo Tang |
title |
Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel |
title_short |
Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel |
title_full |
Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel |
title_fullStr |
Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel |
title_full_unstemmed |
Effects of Induction Heating in the ESP Line on Microstructural Evolution and Nb Dissolution Behavior of Nb-Ti Micro-Alloyed Steel |
title_sort |
effects of induction heating in the esp line on microstructural evolution and nb dissolution behavior of nb-ti micro-alloyed steel |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2021-02-01 |
description |
The thermo-mechanical control processing of Nb-Ti micro-alloyed steel by induction heating in the endless strip production (ESP) line was analyzed to better understand the microstructural evolution and Nb precipitation and dissolution behavior in austenite during rapid heating to high temperatures. The Nb-Ti micro-alloyed steel consisting of 0.05 wt% C and 0.05 wt% Nb was processed through simulated rough rolling at 1050 °C followed by rapid isothermal reheating at 1150 °C. The austenite coarsening behavior and the Nb dissolution behavior at different holding times were compared, and the coarsening kinetics of austenite grains and the dissolution kinetics of precipitates were investigated. It was found that during induction heating, the size of austenite grains gradually increased with the isothermal time, and the amounts of precipitates were greatly reduced. Round precipitates of (Ti, Nb) (C, N) and square precipitates of Ti (C, N) gradually dissolved into the austenite matrix with the holding time. The Nb content in the solution increased from 0.0137 to 0.0299 wt% as the holding time increased from 1 to 40 s; therefore, about 59.8% of the total Nb content dissolved into the austenite matrix during the induction heating process. |
topic |
Nb-Ti micro-alloyed steel ESP induction heating precipitation dissolution |
url |
https://www.mdpi.com/2075-4701/11/2/251 |
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