Al-Li alloys were introduced for the use in aerospace applications due to its many advantages over steel such as its low density, good thermal and electrical conductivity and corrosion resistance of these alloys. The current generation of Al-Li alloys were developed to replace the currently used AA2024 alloy in commercial airframes, military and space applications. Traditional joining methods cannot be used to join dissimilar aluminium alloys. Thus, friction stir welding (FSW) was used to join the 2 dissimilar Al-Li alloys - AA2099 T83 and AA2060 T8E30 alloys. FSW causes several changes in the microstructure due to the rotational movement of the tool which results in localised plastic deformation and a thermal cycle in the alloys. This lead...
Aluminium alloy AA2024-T3 is a lightweight and damage tolerant material, and is therefore often used...
International audienceA wide range of complementary techniques are used to build up a detailed pictu...
Magnesium alloys, being the lightest engineering alloys, have the potential to replace ferrous and a...
Friction Stir Welding (FSW) is a promising solid state joining process widely used generally for Al ...
Friction stir welding (FSW) has been identified as “key” technology for the production of primary ae...
Friction stir welding (FSW) process is an emerging ―green‖ solid-state method in which is accepted a...
Today, composite materials are more and more used for aircraft structures; however, the aluminium-li...
A l'heure où les matériaux composites prennent une part toujours plus importante dans les structures...
Friction-surface processing (FSP) was explored as a possible method for mitigating corrosion of a fr...
The fuel consumption of high-density automobiles has increased in recent years. Aluminum (Al) alloy ...
The present study shows results of friction stir welded (FSW) samples after different plastic deform...
Microstructure and the corrosion behaviour of friction stir weld region in an aluminium AA5083/AA702...
Friction Stir Welding is a method which joint different materials that in traditional weld it can’t ...
For this project, corrosion behavior of welded joint of AA7075-T6 and AA6061-T6 aluminum alloy using...
AbstractIn this work, the corrosion behavior of welded lap joints of AA6061-T6 aluminum alloy produc...
Aluminium alloy AA2024-T3 is a lightweight and damage tolerant material, and is therefore often used...
International audienceA wide range of complementary techniques are used to build up a detailed pictu...
Magnesium alloys, being the lightest engineering alloys, have the potential to replace ferrous and a...
Friction Stir Welding (FSW) is a promising solid state joining process widely used generally for Al ...
Friction stir welding (FSW) has been identified as “key” technology for the production of primary ae...
Friction stir welding (FSW) process is an emerging ―green‖ solid-state method in which is accepted a...
Today, composite materials are more and more used for aircraft structures; however, the aluminium-li...
A l'heure où les matériaux composites prennent une part toujours plus importante dans les structures...
Friction-surface processing (FSP) was explored as a possible method for mitigating corrosion of a fr...
The fuel consumption of high-density automobiles has increased in recent years. Aluminum (Al) alloy ...
The present study shows results of friction stir welded (FSW) samples after different plastic deform...
Microstructure and the corrosion behaviour of friction stir weld region in an aluminium AA5083/AA702...
Friction Stir Welding is a method which joint different materials that in traditional weld it can’t ...
For this project, corrosion behavior of welded joint of AA7075-T6 and AA6061-T6 aluminum alloy using...
AbstractIn this work, the corrosion behavior of welded lap joints of AA6061-T6 aluminum alloy produc...
Aluminium alloy AA2024-T3 is a lightweight and damage tolerant material, and is therefore often used...
International audienceA wide range of complementary techniques are used to build up a detailed pictu...
Magnesium alloys, being the lightest engineering alloys, have the potential to replace ferrous and a...