Inheritance Of Hot Rolled TMPC Microstructure And Texture During The Continuous Annealing Process Of High-end Q&P Steels*

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Wei Xu Zhisong Chai
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
9
File Size:
999 KB
Publication Date:
Oct 1, 2019

Abstract

Q&P steels undergo continuous multiple processes, including hot rolling, intermediate heat treatment, cold rolling and continuous annealing etc. The inheritant effect of initial microstructure could affect the final microstructure and mechanical properties of Q&P steels. In this work, effects of different hot rolled microstructure/texture on the final microstructure and properties subjected to Q&P process were investigated in Fe-0.38C-1.58Mn-1.6Si system. Different initial microstructures were generated combing different TMCP and cooling strategies. The microstructure and texture of hot rolled materials were characterized in detail. The hot rolled material was subsequently processed by intermediate annealing, cold rolling and continuous annealing. The comparison reveals great effects of the initial hot rolled microstructures, i.e. inheritance effect. The faster reverse transformation would lead to more sufficient austenitization and it would greatly weaken the inheritant effect of the initial microstructure. Although the difference of final phase fraction for different initial microstructures was not significant, the inheritance effect was mainly reflected in the effect on austenite morphology. For the mechanical properties, no obvious difference in strength was shown for the samples with different initial microstructures after Q&P heat treatment, but there was fluctuation in elongation.
Citation

APA: Wei Xu Zhisong Chai  (2019)  Inheritance Of Hot Rolled TMPC Microstructure And Texture During The Continuous Annealing Process Of High-end Q&P Steels*

MLA: Wei Xu Zhisong Chai Inheritance Of Hot Rolled TMPC Microstructure And Texture During The Continuous Annealing Process Of High-end Q&P Steels*. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2019.

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