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Influence of filler wires on hardness and coating dilution in high-speed laser-welded Al–Si-coated 22MnB5 steel

delete2026-02-06
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PRE
AI
N
Neel Agarwal
A
Andrew Embleton-Thirsk
H
Hanwen Yang
X
Xiaoye Zhao
I
Ivan Viaux
A
Adrian Gerlich
N
Norman Zhou
DOI:10.1177/13621718261419618delete
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Abstract

Abstract

En 中文
<jats:p> 22MnB5 steel blanks (Usibor <jats:sup>®</jats:sup> 1500) are widely used in automotive crash-resistant components because of their high strength. However, laser welding of Al–Si-coated 22MnB5 is challenging because coating dilution in the weld pool promotes soft δ-ferrite phase formation, reducing weld strength. An industrial solution is laser-ablation, while filler wire addition provides an alternative means to modify fusion-zone chemistry, with or without ablation. In this study, micro-structural development and mechanical performance of laser-welded Al-Si-coated 22MnB5 were investigated using ER4130 and ER420 filler wires. Energy-dispersive spectroscopy showed reduced bulk aluminum-(Al) content in welds with both filler wires relative to as-received welded hot-stamped welds, correlating with reduced δ-ferrite formation and increased martensite content. Higher chromium in ER420 further enhances hardenability, while carbon addition on wires further promoted martensite formation. These findings offer insights for Cr–C-based filler wire selection and advancing laser welding strategies for high-strength structural applications. </jats:p>
Keywords:
filler wire
laser welding
Al-Si-coated steel
22MnB5
microstructure
hardness
coating dilution
martensite
δ-ferrite
ER4130
ER420

Journal

S
Science and Technology of Welding and Joining
IF:
3.7
Papers:
2.3K
Citations:
4.9K

Organization

A
arcelormittal
Scholars:
42
Papers: 23
Citations: 0
U
University of Waterloo
Scholars:
2.2W
Papers: 2.3W
Citations: 3.3W
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