Research on the Microstructure and Properties of a Flux-Cored Wire Gas-Shielded Welded Joint of A710 Low-Alloy High-Strength Steel

Author:

Wang Xing1,Yang Zhibin1ORCID,Du Lingzhi1

Affiliation:

1. School of Materials Science and Engineering, Dalian Jiaotong University, Dalian 116028, China

Abstract

In this study, a 16 mm thick A710 low-alloy high-strength steel was welded by using flux-cored wire gas-shielded welding with an E81T1-Ni1M flux-cored wire. The microstructure characteristics and mechanical properties of the joints were systematically studied. The results showed that the joint was well formed without obvious welding defects. The center of the weld was mainly needle-like ferrite, the coarse grain area was mainly slat-like and granular bainite, and the fine grain area was mainly ferrite and pearlite. The lowest hardness in the weld area was the weakest area of the joint. The average tensile strength of the joint was 650 MPa, reaching 95% of the base metal; the samples were all fractured in the weld area, and the fracture morphology showed typical plastic fracture characteristics. The low-temperature (−40 °C) impact energy of the joint weld area and the heat-affected zone were 71 J and 253 J; the fracture morphology was characterized by a ductile–brittle mixed fracture, and the ductile area of the specimen fracture in the heat-affected zone was larger. The bending performance was good. Under the specified life of 2 × 106 cycles; the median fatigue limit and the safety fatigue limit were 520 MPa and 492 MPa, and the fatigue cracks germinated on the surface of the priming weld.

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

Reference16 articles.

1. Wire and arc additive manufacturing of HSLA steel: Effect of thermal cycles on microstructure and mechanical properties;Rodrigues;Addit. Manuf.,2019

2. Control of microstructure and properties of welded joints of heavy structures of low alloy high strength steels;Wang;Key Eng. Mater.,2019

3. Effect of the structure on the mechanical properties and cracking resistance of welded joints of low-alloyed high-strength steels;Berdnikova;Procedia Struct. Integr.,2019

4. Automatic welding technologies for long-distance pipelines by use of all-position self-shielded flux cored wires;Zeng;Nat. Gas Ind. B,2014

5. Welding current effect on diffusible hydrogen content in flux cored arc weld metal;Bracarense;J. Braz. Soc. Mech. Sci. Eng.,2002

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