For dissimilar twin-wire weld-deposition used here, it is observed that the resultant hardness is in the volumetric proportion of the hardness of the individual filler wires. This aids the fabrication of FGMs using arc based weld-deposition with localized control of hardness, achieved through the control of the ratio of wire speeds of the individual filler wires. Four sample parts were fabricated to demonstrate the concept of realizing FGMs through TWAM. The fabricated parts showed good match with the desired hardness variation
Wire Arc Additive Manufacturing (WAAM) is a revolutionary process under the category of Direct Energ...
Within the past years, in the field of manufacturing, new technologies known as 3D printing or rapid...
Additive Manufacturing (AM) has increased in popularity and attracted much attention from many field...
Due to its high deposition rate, low cost and simple setup, weld-deposition based additive manufactu...
Functionally Gradient Material (FGM) may have a controlled variation of the material matrix so as t...
When the inherent inhomogeneity of Additive Manufacturing techniques is carefully exploited, the ani...
When the inherent inhomogeneity of Additive Manufacturing techniques is carefully exploited, the ani...
When the inherent inhomogeneity of Additive Manufacturing techniques is carefully exploited, the an...
ABSTRACT Various energy sources are available for sintering and/or depositing the material in additi...
Various energy sources are available for sintering and/or depositing the material in additive manufa...
Twin-wire welding based additive manufacturing (TWAM) is a novel additive manufacturing (AM) process...
TWAM (twin-wire welding additive manufacturing) is a new additive manufacturing (AM) technology that...
Fabrication of functionally graded materials-FGM is an emerging technique in the field of additive m...
In this thesis, investigations on depositions of similar, dissimilar and functionally graded materia...
Additive manufacturing (AM) is considered to be part of the 4th Industrial Revolution in digital era...
Wire Arc Additive Manufacturing (WAAM) is a revolutionary process under the category of Direct Energ...
Within the past years, in the field of manufacturing, new technologies known as 3D printing or rapid...
Additive Manufacturing (AM) has increased in popularity and attracted much attention from many field...
Due to its high deposition rate, low cost and simple setup, weld-deposition based additive manufactu...
Functionally Gradient Material (FGM) may have a controlled variation of the material matrix so as t...
When the inherent inhomogeneity of Additive Manufacturing techniques is carefully exploited, the ani...
When the inherent inhomogeneity of Additive Manufacturing techniques is carefully exploited, the ani...
When the inherent inhomogeneity of Additive Manufacturing techniques is carefully exploited, the an...
ABSTRACT Various energy sources are available for sintering and/or depositing the material in additi...
Various energy sources are available for sintering and/or depositing the material in additive manufa...
Twin-wire welding based additive manufacturing (TWAM) is a novel additive manufacturing (AM) process...
TWAM (twin-wire welding additive manufacturing) is a new additive manufacturing (AM) technology that...
Fabrication of functionally graded materials-FGM is an emerging technique in the field of additive m...
In this thesis, investigations on depositions of similar, dissimilar and functionally graded materia...
Additive manufacturing (AM) is considered to be part of the 4th Industrial Revolution in digital era...
Wire Arc Additive Manufacturing (WAAM) is a revolutionary process under the category of Direct Energ...
Within the past years, in the field of manufacturing, new technologies known as 3D printing or rapid...
Additive Manufacturing (AM) has increased in popularity and attracted much attention from many field...