Microstructure Heterogeneity and Mechanical Properties of a High-Strength Ductile Laminated Steel by Electron Beam Welding

Author:

He Qiong1,Wang Mingsai1,Yang Bo1,Guo Fengjiao1,Ran Hao1,Wei Wei1,Zhang Chao1,Zhai Yu1,Wang Qingyuan12,Cao Wenquan3,Huang Chongxiang12

Affiliation:

1. School of Aeronautics and Astronautics, Sichuan University, Chengdu 610065, China

2. Key Laboratory of Deep Earth Science and Engineering, Ministry of Education, Sichuan University, Chengdu 610065, China

3. Central Iron and Steel Research Institute (CISRI), Beijing 100081, China

Abstract

The aim of this study is to fabricate high-strength steel with exceptional yield strength and superior ductility by employing a novel design approach of nanolamellar/equiaxial crystal “sandwich” heterostructures, utilizing rolling and electron-beam-welding techniques. The microstructural heterogeneity of the steel is manifested in the phase content and grain size, ranging from nanolamellae comprising a small quantity of martensite on both sides to the completely coarse austenite in the center, which are interconnected via gradient interfaces. The structural heterogeneity and phase-transformation-induced plasticity (TIRP) offer remarkable strength and ductility for the samples. Furthermore, the synergistic confinement of the heterogeneous structures leads to the formation of Lüders bands, which exhibit stable propagation under the TIRP effect and impede the onset of plastic instability, ultimately resulting in a significant improvement in the ductility of the high-strength steel.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Materials Science

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