Additive Manufacturing (AM) has increasingly been used to fabricate parts in aerospace applications, which may require service lives beyond ten-million cycles due to the imposed high loading frequencies. Understanding the very high cycle fatigue (VHCF) behavior of these additive manufactured (AM) parts is an important step towards their design and qualification processes. This study focuses on the high cycle fatigue (HCF) and VHCF behaviors of both wrought and laser beam-powder bed fusion (LB-PBF) fabricated Inconel 718 in machined/polished surface condition, emphasizing on the influence of test frequency (i.e., cyclic strain rate). Uniaxial, fully-reversed force- and stress-controlled fatigue tests were conducted utilizing a servo-hydrauli...
Nickle based super alloys such as Inconel 718 are being extensively used to manufacture turbine bla...
The high cycle fatigue (HCF) and very high cycle fatigue (VHCF) behavior of Ti 6Al 4V manufactured b...
In order to obtain a widespread application of Additive Manufactured (AM) technology in the aircraft...
In this study, the very high cycle fatigue (VHCF) behavior of Inconel 718 manufactured via a Laser ...
It has been recognized that parts produced by additive manufacturing with surfaces in the “as-built”...
Additive Manufacturing (AM) is a disruptive modern manufacturing process in which parts are manufact...
The fatigue lives of additively manufactured (AM) Inconel 718 (IN718) produced by selective electron...
The flexibility in design offered by advanced additive manufacturing (AM) technologies makes these p...
High cycle fatigue properties of material obtained with additive manufacturing (AM) processes such a...
Additive Manufacturing (AM), commonly known as 3D Printing, is a disruptive modern manufacturing pro...
International audienceThe mechanical performances of additive manufactured (AM) material are highly ...
The mechanical performances of additive manufactured (AM) material are highly dependent on the fabri...
Laser-based powder bed fusion (L-PBF) is nowadays the preeminent additive manufacturing (AM) techniq...
Murakami’s approach has been used in the high cycle fatigue regime to relate the fatigue limit to ...
Metal based Additive Manufacturing (AM) has experienced dynamic growth in recent years. However, th...
Nickle based super alloys such as Inconel 718 are being extensively used to manufacture turbine bla...
The high cycle fatigue (HCF) and very high cycle fatigue (VHCF) behavior of Ti 6Al 4V manufactured b...
In order to obtain a widespread application of Additive Manufactured (AM) technology in the aircraft...
In this study, the very high cycle fatigue (VHCF) behavior of Inconel 718 manufactured via a Laser ...
It has been recognized that parts produced by additive manufacturing with surfaces in the “as-built”...
Additive Manufacturing (AM) is a disruptive modern manufacturing process in which parts are manufact...
The fatigue lives of additively manufactured (AM) Inconel 718 (IN718) produced by selective electron...
The flexibility in design offered by advanced additive manufacturing (AM) technologies makes these p...
High cycle fatigue properties of material obtained with additive manufacturing (AM) processes such a...
Additive Manufacturing (AM), commonly known as 3D Printing, is a disruptive modern manufacturing pro...
International audienceThe mechanical performances of additive manufactured (AM) material are highly ...
The mechanical performances of additive manufactured (AM) material are highly dependent on the fabri...
Laser-based powder bed fusion (L-PBF) is nowadays the preeminent additive manufacturing (AM) techniq...
Murakami’s approach has been used in the high cycle fatigue regime to relate the fatigue limit to ...
Metal based Additive Manufacturing (AM) has experienced dynamic growth in recent years. However, th...
Nickle based super alloys such as Inconel 718 are being extensively used to manufacture turbine bla...
The high cycle fatigue (HCF) and very high cycle fatigue (VHCF) behavior of Ti 6Al 4V manufactured b...
In order to obtain a widespread application of Additive Manufactured (AM) technology in the aircraft...