Hybrid laser arc welding: State-of-art review

B Acherjee - Optics & Laser Technology, 2018 - Elsevier
Hybrid laser arc welding simultaneously utilizes the arc welding and the laser welding, in a
common interaction zone. The synergic effects of laser beam and eclectic arc in the same …

Laser beam and laser-arc hybrid welding of aluminium alloys

I Bunaziv, OM Akselsen, X Ren, B Nyhus, M Eriksson - Metals, 2021 - mdpi.com
Aluminium alloys are widely used in many industries due to their high strength-to-weight
ratios and resistance to corrosion. Due to their specific thermophysical properties and …

Direct laser metal deposition additive manufacturing of Inconel 718 superalloy: Statistical modelling and optimization by design of experiments

M Moradi, A Hasani, Z Pourmand, J Lawrence - Optics & Laser Technology, 2021 - Elsevier
Direct laser metal deposition (DLMD) technique is used for additive manufacturing (AM) of
Inconel 718 Ni-based superalloy using full factorial design. A 1 kW fiber laser is applied with …

Additive manufacturing of stellite 6 superalloy by direct laser metal deposition–Part 2: Effects of scanning pattern and laser power reduction in differrent layers

M Moradi, A Hasani, ZM Beiranvand… - Optics & Laser …, 2020 - Elsevier
In this study, the purpose is to investigate two strategies for direct laser metal deposition
method (DLMD) additive manufacturing of stellite 6 Cobalt-based superalloy experimentally …

Additive manufacturing of stellite 6 superalloy by direct laser metal deposition–Part 1: Effects of laser power and focal plane position

M Moradi, A Ashoori, A Hasani - Optics & Laser Technology, 2020 - Elsevier
This paper surveys the additive manufacturing (AM) of stellite 6 Cobalt-based superalloy by
direct laser metal deposition method (DLMD) experimentally. In the present research, a …

Enhancement of low power CO2 laser cutting process for injection molded polycarbonate

M Moradi, O Mehrabi, T Azdast, KY Benyounis - Optics & Laser Technology, 2017 - Elsevier
Laser cutting technology is a non-contact process that typically is used for industrial
manufacturing applications. Laser cut quality is strongly influenced by the cutting processing …

An investigation on capability of hybrid Nd: YAG laser-TIG welding technology for AA2198 Al-Li alloy

AH Faraji, M Moradi, M Goodarzi, P Colucci… - Optics and Lasers in …, 2017 - Elsevier
This paper surveys the capability of the hybrid laser-arc welding in comparison with lone
laser welding for AA2198 aluminum alloy experimentally. In the present research, a …

Research on weld formation mechanism of laser-MIG arc hybrid welding with butt gap

H Huang, P Zhang, H Yan, Z Liu, Z Yu, D Wu… - Optics & Laser …, 2021 - Elsevier
At present, there are few researches on laser-MIG arc hybrid welding with a large butt gap.
In this paper, laser-MIG arc hybrid welding is used to weld low-alloy high-strength steel with …

Study on arc and laser powers in the hybrid welding of AA5754 Al-alloy

G Casalino, M Mortello, P Leo, KY Benyounis… - Materials & Design, 2014 - Elsevier
In this paper a new generation of fiber laser assisted by a MIG source was used to weld
AA5754-H111 aluminum alloy in 3 mm thick butt configuration. The effects of laser and arc …

Multi-objective topology optimization of deep drawing dissimilar tailor laser welded blanks; experimental and finite element investigation

A Aminzadeh, A Parvizi, M Moradi - Optics & Laser Technology, 2020 - Elsevier
Laser welded blanks (LWBs) are semi-finished components typically manufacture by
dissimilar materials, thicknesses, shapes, coatings, etc. After butt welding of the primary …