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Erschienen in: Metallurgical and Materials Transactions A 12/2011

01.12.2011 | Symposium: Austenite Formation and Decomposition IV

Quenched and Partitioned Microstructures Produced via Gleeble Simulations of Hot-Strip Mill Cooling Practices

verfasst von: G. A. Thomas, J. G. Speer, D. K. Matlock

Erschienen in: Metallurgical and Materials Transactions A | Ausgabe 12/2011

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Abstract

Previous researchers reported on quenched and partitioned (Q&P) microstructures produced via carbon partitioning from martensite into austenite during isothermal annealing after quenching to develop a partially martensitic initial structure. However, the thermal profile used in previous studies is not well suited to creating Q&P microstructures directly from a hot-strip mill. In this work, the commonly employed Q&P thermal profile (i.e., having an isothermal partitioning step) was modified to evaluate nonisothermal partitioning that might instead occur during cooling of a wound coil. Thus, it was possible to assess the potential for creating Q&P microstructures and properties directly off of the hot mill. Gleeble thermal simulations representative of a hot-strip mill cooling practice were used to create dual-phase, Q&P, transformation-induced plasticity (TRIP), and conventional microstructures by varying the quench/coiling temperatures (CTs) using a 0.19C-1.59Mn-1.63Si (wt pct) steel. Microstructural and mechanical property data indicate that hot rolling might be a viable processing route for high-strength Q&P steels.

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Fußnoten
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PHILIPS is a trademark of FEI Company, Hillsboro, OR.
 
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Metadaten
Titel
Quenched and Partitioned Microstructures Produced via Gleeble Simulations of Hot-Strip Mill Cooling Practices
verfasst von
G. A. Thomas
J. G. Speer
D. K. Matlock
Publikationsdatum
01.12.2011
Verlag
Springer US
Erschienen in
Metallurgical and Materials Transactions A / Ausgabe 12/2011
Print ISSN: 1073-5623
Elektronische ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-011-0648-5

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