In this paper, the AlMg4.5Mn alloy has been welded using tungsten inert gas (TIG) and metal inert gas (MIG) processes with different gas shielding atmospheres. Tensile strength, hardness, impact and fracture toughness, fatigue crack growth parameters (Delta Kth, da/dN), as well as microstructure were determined. By comparing results for different gas mixtures, the main conclusion for TIG welding was that increased helium content has an important effect on toughness and fatigue crack growth parameters, whereas its effect on other mechanical properties is not significant. On the other hand, in the case of MIG welding, adding helium does not affect mechanical properties, except the fatigue crack growth rate. It was also established that adding...
In order to analyse the fatigue resistance of joints welded by the MIG process in aluminium alloy 50...
Tungsten inert gas (TIG) welding of austenitic stainless steels is a critical process used in indust...
The low melting point of aluminium and its non-ferrous properties causes the difficulties in welding...
The experiment have been performed using samples of welded joints of the three components aluminium ...
The effect of MIG/MAG shielding gas on the toughness of aluminium alloy AlMg4.5Mn weld metal has bee...
Due to its properties such as high strength/weight ratio, enhanced corrosion resistance, low density...
Aluminum alloy 5083 H116 has an exceptional performance in extreme environments, moderately high str...
The research aims to investigate the effects of GMAW or MIG welding process on the mechanical proper...
Welding using Metal Inert Gas (MIG) is welding that goes through a splicing process by melting the p...
The research aims to investigate the effects of GMAW or MIG welding process on the mechanical proper...
Tungsten usually exhibits poor weldability and marked brittleness at room temperature. This causes t...
Tungsten Inert Gas TIG welding is widely used for weld the thin metal. Alloying metal is also welded...
This paper discussed about the consequences of using different filer metal by metal inert gas (MIG) ...
The paper studies the influence of shielding gas on the composition and the structure of weld joint ...
The present study aims at investigating the effect of MIG welding process on the bending strength of...
In order to analyse the fatigue resistance of joints welded by the MIG process in aluminium alloy 50...
Tungsten inert gas (TIG) welding of austenitic stainless steels is a critical process used in indust...
The low melting point of aluminium and its non-ferrous properties causes the difficulties in welding...
The experiment have been performed using samples of welded joints of the three components aluminium ...
The effect of MIG/MAG shielding gas on the toughness of aluminium alloy AlMg4.5Mn weld metal has bee...
Due to its properties such as high strength/weight ratio, enhanced corrosion resistance, low density...
Aluminum alloy 5083 H116 has an exceptional performance in extreme environments, moderately high str...
The research aims to investigate the effects of GMAW or MIG welding process on the mechanical proper...
Welding using Metal Inert Gas (MIG) is welding that goes through a splicing process by melting the p...
The research aims to investigate the effects of GMAW or MIG welding process on the mechanical proper...
Tungsten usually exhibits poor weldability and marked brittleness at room temperature. This causes t...
Tungsten Inert Gas TIG welding is widely used for weld the thin metal. Alloying metal is also welded...
This paper discussed about the consequences of using different filer metal by metal inert gas (MIG) ...
The paper studies the influence of shielding gas on the composition and the structure of weld joint ...
The present study aims at investigating the effect of MIG welding process on the bending strength of...
In order to analyse the fatigue resistance of joints welded by the MIG process in aluminium alloy 50...
Tungsten inert gas (TIG) welding of austenitic stainless steels is a critical process used in indust...
The low melting point of aluminium and its non-ferrous properties causes the difficulties in welding...