A range of engineering alloys was selected to create two distinct sets of structures. One was functionally graded materials (FGM)-using pairs of these alloys-and the second type was a series of wafer-layered structures using pairs of these alloys in different combinations. The aim of this investigation was to identify unique sets of structures of alloys which provide very different coefficients of thermal expansion (CTE) compared to those of individual elements. The process used to create these structures was laser direct metal deposition (DMD) additive manufacturing technology. The linear thermal expansion coefficients of these samples were measured and the results show that specific sets of FGM and wafer type structures of specific consti...
Additive manufacturing in the form of laser deposition is a unique way to manufacture near net shape...
Multilayer direct laser deposition (DLD) is a fabrication process through which parts are fabricated...
Over the last decade, critical advancements have allowed metal additive manufacturing to graduate fr...
Purpose - This paper aims to investigate the changes in tensile properties of novel functionally gra...
Materials with negative thermal expansion (NTE) properties have numerous applications that interest ...
Direct metal deposition (DMD), a laser-cladding based solid freeform fabrication technique, is capab...
Thermal expansion and lattice parameters are investigated up to 1100 degrees C for Ti-6Al-4V compone...
Functionally-graded or composite components (FGCs) have been recognised as having immense potential ...
Laser direct energy deposition (DED) is an advanced additive manufacturing technology, which can pro...
Laser direct metal deposition (LDMD) has developed from a prototyping to a single and multiple metal...
Thermal Expansion is a material property that must be accounted for when designing objects where the...
Interest in additive manufacturing (AM) has dramatically expanded in the last several years, owing t...
Functionally graded materials (FGMs) are advanced materials with improved properties that enable the...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
Additive manufacturing in the form of laser deposition is a unique way to manufacture near net shape...
Multilayer direct laser deposition (DLD) is a fabrication process through which parts are fabricated...
Over the last decade, critical advancements have allowed metal additive manufacturing to graduate fr...
Purpose - This paper aims to investigate the changes in tensile properties of novel functionally gra...
Materials with negative thermal expansion (NTE) properties have numerous applications that interest ...
Direct metal deposition (DMD), a laser-cladding based solid freeform fabrication technique, is capab...
Thermal expansion and lattice parameters are investigated up to 1100 degrees C for Ti-6Al-4V compone...
Functionally-graded or composite components (FGCs) have been recognised as having immense potential ...
Laser direct energy deposition (DED) is an advanced additive manufacturing technology, which can pro...
Laser direct metal deposition (LDMD) has developed from a prototyping to a single and multiple metal...
Thermal Expansion is a material property that must be accounted for when designing objects where the...
Interest in additive manufacturing (AM) has dramatically expanded in the last several years, owing t...
Functionally graded materials (FGMs) are advanced materials with improved properties that enable the...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
Laser deposition of metal layers has been recognized, in recent years, as a one-step process to fabr...
Additive manufacturing in the form of laser deposition is a unique way to manufacture near net shape...
Multilayer direct laser deposition (DLD) is a fabrication process through which parts are fabricated...
Over the last decade, critical advancements have allowed metal additive manufacturing to graduate fr...