Effect of Reduction Sequence during Rolling on Deformed Texture and Anisotropy of Ferritic Stainless Steel

Author:

Cho Sang Heon12,Lee Young Jin2,Bahanan Warda1,Oh Jeong Moo1,Kim Dong-Ju3,Kang Jee-Hyun1ORCID,Ryu Jungho1ORCID,Widiantara I Putu1,Ko Young Gun1ORCID

Affiliation:

1. School of Materials Science and Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea

2. Hyundai BNG Steel Co., Ltd., Changwon 51707, Republic of Korea

3. SeA Mechanics Co., Ltd., Gumi 39379, Republic of Korea

Abstract

This investigation studied the effect of reduction sequence during rolling of ferritic stainless steel on texture and anisotropy. A series of thermomechanical processes were performed on the present samples utilizing rolling deformation, with a total height reduction of 83% but with different reduction sequences, 67% + 50% (route A) and 50% + 67% (route B). Microstructural analysis showed that no significant difference was found in terms of the grain morphology between route A and route B. In terms of the texture, as compared to route A, route B developed a sharper texture on all components along the γ-fiber and a considerably higher fraction of boundaries that displayed 38°111 misorientations with respect to the surrounding deformed grains. In consequence, optimal deep drawing properties were achieved, where rm was maximized and Δr was minimized. Moreover, despite the similar morphology between the two processes, the resistance toward ridging was improved in the case of route B. This was explained in relation to the selective growth-controlled recrystallization, which favors the formation of microstructure with homogeneous distribution of the <111>//ND orientation.

Funder

Yeungnam University

Publisher

MDPI AG

Subject

General Materials Science

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