Inconel 738 (IN 738), like other precipitation-hardened nickel-base superalloys that contain a substantial amount of Al and Ti, is very difficult to weld due to its high susceptibility to heat-affected zone (HAZ) cracking during conventional fusion welding processes. The cause of this cracking, which is usually intergranular in nature, has been attributed to the liquation of various phases in the alloy, subsequent wetting of the grain boundaries by the liquid and decohesion across one of the solid-liquid interfaces due to on-cooling tensile stresses. In the present work, crack-free welding of the alloy was obtained by linear friction welding (LFW), notwithstanding the high susceptibility of the material to HAZ cracking. Gleeble thermomechan...
The main scope of this study investigated the occurrence of liquation cracking in the heat-affected ...
International audienceThe continuous growth in the manufacture of aerospace components such as blisk...
Linear friction welding (LFW) is an increasingly popular solid-state joining method for challenging ...
Inconel 738 (IN 738), like other precipitation-hardened nickel-base superalloys that contain a subst...
A detailed microstructural analysis was performed on a difficult-to-weld nickel-base superalloy, IN ...
Fusion welding of nickel-base superalloys is often associated with fusion zone solidification cracki...
A study of weld cracking resistance during linear friction joining of a difficult-to-weld nickel-bas...
The microstructure of Allvac 718 Plus (718 Plus; ATI, Pittsburgh, PA, USA) superalloy was examined a...
A systematic study of the microstructural response of conventionally cast IN 738 and single crystal ...
Abstract Solidification cracking was observed during a tungsten–inert gas (TIG) welding process used...
International audienceA new post-weld heat treatment (PWHT) cycle was designed for novel dissimilar ...
Linear friction welding (LFW), an emerging automated technology, has potential for solid-state joini...
The focus of this thesis was to study the suitability of the linear friction welding (LFWing) proces...
The focus of this thesis was to study the suitability of the linear friction welding (LFWing) proces...
The microstructure of linear friction welds in single crystal (SX) CMSX 486 superalloy was studied. ...
The main scope of this study investigated the occurrence of liquation cracking in the heat-affected ...
International audienceThe continuous growth in the manufacture of aerospace components such as blisk...
Linear friction welding (LFW) is an increasingly popular solid-state joining method for challenging ...
Inconel 738 (IN 738), like other precipitation-hardened nickel-base superalloys that contain a subst...
A detailed microstructural analysis was performed on a difficult-to-weld nickel-base superalloy, IN ...
Fusion welding of nickel-base superalloys is often associated with fusion zone solidification cracki...
A study of weld cracking resistance during linear friction joining of a difficult-to-weld nickel-bas...
The microstructure of Allvac 718 Plus (718 Plus; ATI, Pittsburgh, PA, USA) superalloy was examined a...
A systematic study of the microstructural response of conventionally cast IN 738 and single crystal ...
Abstract Solidification cracking was observed during a tungsten–inert gas (TIG) welding process used...
International audienceA new post-weld heat treatment (PWHT) cycle was designed for novel dissimilar ...
Linear friction welding (LFW), an emerging automated technology, has potential for solid-state joini...
The focus of this thesis was to study the suitability of the linear friction welding (LFWing) proces...
The focus of this thesis was to study the suitability of the linear friction welding (LFWing) proces...
The microstructure of linear friction welds in single crystal (SX) CMSX 486 superalloy was studied. ...
The main scope of this study investigated the occurrence of liquation cracking in the heat-affected ...
International audienceThe continuous growth in the manufacture of aerospace components such as blisk...
Linear friction welding (LFW) is an increasingly popular solid-state joining method for challenging ...