Finishing methods of additive manufactured metal parts are becoming a key driver of industrial viability, increasingly with additive processes being challenged in demanding end-product applications. The same scenario stresses the requirements as to fatigue life of parts built by Additive Manufacturing (AsM). The paper addresses fatigue life of Ti6Al4V produced by Powder Bed Fusion in four finishing conditions: as-built, tool machined, after tumbling and after tumbling and subsequent shot-peening. Failure mechanisms at the micro-scale are observed in order to reinforce the mechanical results by identifying the role of different surface morphologies in crack initiation. X-ray diffraction (XRD), scanning electron microscopy (SEM) techniques an...
Fatigue performance can be a critical attribute for the production of structural parts or components...
In this paper, the specificity and/or the common features of materials coming from such new additive...
With the development of additive manufacturing (AM), the Ti-6Al-4V alloy manufactured by laser powde...
Finishing methods of additive manufactured metal parts are becoming a key driver of industrial viabi...
Additive manufacturing (AM), of metals is gaining popularity as an alternative to conventional manuf...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
Additive manufacturing (AM) is a state of the art technology enabling fabrication of complex geometr...
Additive manufacturing (AM) is a state of the art technology enabling fabrication of complex geometr...
The fatigue behavior of additively manufactured (AM) structural parts is sensitive to the surface an...
Over the last decade, additive manufacturing (AM) techniques have been expanding rapidly due to thei...
This dissertation composes three papers detailing work intended to examine the mechanisms that contr...
This master thesis investigates the effect of surface morphology of Selectively Laser Melted Ti-6Al-...
Additive Manufacturing (AM) for metals includes is a group of production methodst hat use a layer-by...
Additive manufacturing (AM) technology has enabled efficient fabrication of parts with complex geome...
Fatigue performance can be a critical attribute for the production of structural parts or components...
In this paper, the specificity and/or the common features of materials coming from such new additive...
With the development of additive manufacturing (AM), the Ti-6Al-4V alloy manufactured by laser powde...
Finishing methods of additive manufactured metal parts are becoming a key driver of industrial viabi...
Additive manufacturing (AM), of metals is gaining popularity as an alternative to conventional manuf...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
Additive manufacturing (AM) is a state of the art technology enabling fabrication of complex geometr...
Additive manufacturing (AM) is a state of the art technology enabling fabrication of complex geometr...
The fatigue behavior of additively manufactured (AM) structural parts is sensitive to the surface an...
Over the last decade, additive manufacturing (AM) techniques have been expanding rapidly due to thei...
This dissertation composes three papers detailing work intended to examine the mechanisms that contr...
This master thesis investigates the effect of surface morphology of Selectively Laser Melted Ti-6Al-...
Additive Manufacturing (AM) for metals includes is a group of production methodst hat use a layer-by...
Additive manufacturing (AM) technology has enabled efficient fabrication of parts with complex geome...
Fatigue performance can be a critical attribute for the production of structural parts or components...
In this paper, the specificity and/or the common features of materials coming from such new additive...
With the development of additive manufacturing (AM), the Ti-6Al-4V alloy manufactured by laser powde...