Laser Welding of Titanium/Steel Bimetallic Sheets with In Situ Formation of Fex(CoCrNiMn)Tiy High-Entropy Alloys in Weld Metal

Author:

Liu Dejia1ORCID,Ma Zhe1,Xue Nianlong1,Wang Weixiong1,Han Shanguo23

Affiliation:

1. School of Materials Science and Engineering, East China Jiaotong University, Nanchang 330013, China

2. Yang Jiang China-Ukraine E. O. PATON Institute of Technology, Yangjiang 529532, China

3. China-Ukraine Institute of Welding, Guangdong Academy of Sciences, Guangzhou 510651, China

Abstract

Due to the notable disparities in the physical and chemical characteristics between titanium and steel, the direct fusion of titanium/steel bimetallic sheets results in a considerable formation of fragile intermetallic compounds, making it difficult to achieve excellent metallurgical welded joints. In this study, a multi-principal powder of CoCrNiMn was designed and utilized as a filler material in the welding of the TA1/Q345 bimetallic sheet. It was expected that the in situ formation of Fex(CoCrNiMn)Tiy high-entropy alloys would be achieved using the filler powders, combined with the Ti and Fe elements from the melting of the TA1 and Q345 so as to restrain the generation of Fe-Ti IMCs and obtain the promising welded joints of the TA1/Q345 bimetallic sheet. An interesting finding is that high-entropy alloys were successfully obtained in the weld metal. The Fe-Ti intermetallic compounds at the welding interface were significantly reduced. The tensile strength was ~293 MPa, accounting for 60% of the strength of the base metal. Dimples were observed at the fracture of the welded joint.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

Guangdong Basic and Applied Basic Research Foundation

Yangjiang Provincial Science and Technology Special Fund Project

Jiangxi Provincial Graduate Innovation Special Fund Project

Publisher

MDPI AG

Subject

General Materials Science

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