Phase Transformation Crystallography in Pipeline HSLA Steel after TMCP

Author:

Lobanov Mikhail L.1ORCID,Zorina Maria A.1ORCID,Karabanalov Maxim S.1,Urtsev Nikolay V.1ORCID,Redikultsev Andrey A.1

Affiliation:

1. Heat Treatment & Physics of Metals Department, Ural Federal University, 19 Mira St., Ekaterinburg 620062, Russia

Abstract

Thermo-mechanical controlled processing (TMCP) is employed to obtain the required level of mechanical properties of contemporary high-strength low-alloy (HSLA) steel plates utilized for gas and oil pipeline production. The strength, deformation behavior and resistance to the formation and propagation of running fractures of the pipeline steel are mainly determined by its microstructure and crystallographic texture. These are formed as a result of austenite deformation and consequent γ→α-transformation. This present study analyses the crystallographic regularities of the structural and textural state formation in a steel plate that has been industrially produced by means of TMCP. The values of the mechanical properties that have been measured in different directions demonstrate the significance of the crystallographic texture in the deformation and failure of steel products. An electron backscatter diffraction (EBSD) method and crystallographic analysis were utilized to establish the connection between the main texture components of the deformed austenite and α-phase orientations. This paper demonstrates that the crystallographic texture that is formed due to a multipath γ→α-transformation results from the α-phase nucleation on the special boundaries between grains with γ-phase orientations. The analysis of the spectra of the α-γ-interface boundary angle deviations from the Kurdjumov–Sachs (K–S), Nishiyama–Wassermann (N–W), and Greninger–Troiano (G–T) orientation relationships (ORs) allows to suggest that the observed austenite particles represent a secondary austenite (not retained) that precipitates at intercrystalline α-phase boundaries and correspond to the ORs with regard to only one adjacent crystallite.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference55 articles.

1. Stalheim, D., Boggess, T., San Marchi, C., Jansto, S., Somerday, B., Muralidharan, G., and Sofronis, P. (October, January 27). Microstructure and Mechanical Property Performance of Commercial Grade API Pipeline Steels in High Pressure Gaseous Hydrogen. Proceedings of the 8th International Pipeline Conference, Calgary, AB, Canada.

2. Zhang, G., Bai, X., Stalheim, D., Li, S., and Ding, W. (October, January 29). Development and Production of Heavy Gauge X80 and High Strength X90 Pipeline Steels Utilizing TMCP/Optimized Cooling Process. Proceedings of the 10th International Pipeline Conference, Calgary, AB, Canada.

3. Effect of TMCP Rolling Schedules on the Microstructure and Performance of X70 Steel;Roccisano;Mater. Charact.,2021

4. Lobanov, M.L., Khotinov, V.A., Urtsev, V.N., Danilov, S.V., Urtsev, N.V., Platov, S.I., and Stepanov, S.I. (2022). Tensile Deformation and Fracture Behavior of API-5L X70 Line Pipe Steel. Materials, 15.

5. Transformation Textures in Steels;Ray;Int. Mater. Rev.,1994

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