High manganese TWIP steels have a remarkable potential to produce impact resistant car body parts in the automotive industry. Hybrid laser arc welding (HLAW), i.e. simultaneous action of an arc and laser source, can be regarded as the most promising joining technique for such components due to, among other factors, the possibility to use filler metals to avoid improper microstructures and Mn chemical segregations in dissimilar welds of TWIP with other steel grades. In this regard, this work studies the influence of the main welding settings during HLAW of 1.4 mm thick TWIP and Dual Phase (DP) steel sheets used in the automotive industry, which were joined with the use of an austenitic steel filler. Quality of TWIP-DP welds was investigated ...
Austenitic stainless steels are generally known to have very good laser weldability, when ordinary g...
High-power lasers are very effective in welding of plates thicker than 10 mm due to the keyhole mode...
Plates joining is one of the first stage at large vessels manufacturing line, process conditioning t...
n this paper, an innovative 18% Mn austenitic TWIP steel, which exhibits a very good combination of ...
Abstract Dual phase DP600 steels have been used in many automobile structures and laser welding has ...
The development of high strength steel enables constructions to be made with less material than with...
In response to demands for improved safety standards and fuel economy, automotive OEMs have shown an...
Difficult-to-weld steels are ferrous alloys that are characterized by a low thermal conductivity, an...
This paper presents results from an ongoing investigation into laser-arc-hybrid welding of thick, hi...
Thick section welding has significant importance for oil and gas industry in low temperature regions...
The aim of the present work was to investigate the possibilities of hybrid laser arc welding regardi...
In this paper, TWinning-Induced Plasticity (TWIP), Dual Phase (DP) and austenitic stainless (AISI 31...
AbstractConventional welding processes often fail to provide adequate joints in high strength steels...
The aim of the present work was to investigate the possibilities of hybrid laser arc welding regardi...
Aerospace and automotive industries utilize advanced high strength steels due to their exceptional m...
Austenitic stainless steels are generally known to have very good laser weldability, when ordinary g...
High-power lasers are very effective in welding of plates thicker than 10 mm due to the keyhole mode...
Plates joining is one of the first stage at large vessels manufacturing line, process conditioning t...
n this paper, an innovative 18% Mn austenitic TWIP steel, which exhibits a very good combination of ...
Abstract Dual phase DP600 steels have been used in many automobile structures and laser welding has ...
The development of high strength steel enables constructions to be made with less material than with...
In response to demands for improved safety standards and fuel economy, automotive OEMs have shown an...
Difficult-to-weld steels are ferrous alloys that are characterized by a low thermal conductivity, an...
This paper presents results from an ongoing investigation into laser-arc-hybrid welding of thick, hi...
Thick section welding has significant importance for oil and gas industry in low temperature regions...
The aim of the present work was to investigate the possibilities of hybrid laser arc welding regardi...
In this paper, TWinning-Induced Plasticity (TWIP), Dual Phase (DP) and austenitic stainless (AISI 31...
AbstractConventional welding processes often fail to provide adequate joints in high strength steels...
The aim of the present work was to investigate the possibilities of hybrid laser arc welding regardi...
Aerospace and automotive industries utilize advanced high strength steels due to their exceptional m...
Austenitic stainless steels are generally known to have very good laser weldability, when ordinary g...
High-power lasers are very effective in welding of plates thicker than 10 mm due to the keyhole mode...
Plates joining is one of the first stage at large vessels manufacturing line, process conditioning t...