The absence of an economy of scale in spaceflight hardware makes additive manufacturing an immensely attractive option for propulsion components. As additive manufacturing techniques are increasingly adopted by government and industry to produce propulsion hardware in human-rated systems, significant development efforts are needed to establish these methods as reliable alternatives to conventional subtractive manufacturing. One of the critical challenges facing powder bed fusion techniques in this application is variability between machines used to perform builds. Even with implementation of robust process controls, it is possible for two machines operating at identical parameters with equivalent base materials to produce specimens with sli...
Additive Manufacturing (AM) is a valid and economically viable technique to produce fully functional...
Additive manufacturing lends itself well to the manufacture of aerospace parts due to the high compl...
Additive manufacturing (AM) will support NASA in their moon and mars missions by reducing the amount...
Selective Laser Melting (SLM) is a powder bed fusion additive manufacturing process used increasingl...
Additive Manufacturing (AM) processes enable their deployment in broad applications from aerospace t...
Additive Manufacturing (AM) is an emerging technology with a focus on complex metallic component fab...
The production of metallic parts by additive manufacturing (AM) is of significant interest to indus...
Laser powder bed fusion additive manufacturing is used for demanding applications in industries such...
Research in metallic additive manufacturing (AM) has been rapidly growing over the past 10 years, wi...
In the last decade, additive manufacturing has gained significant interest for direct part producti...
Powder-Bed Additive Manufacturing (AM) through Direct Metal Laser Sintering (DMLS) or Selective Lase...
JBK-75 is an iron-nickel derivative alloy of A-286 that has been of interest to NASAs propulsion com...
This presentation documents the fatigue properties of three additive manufactured (AM) metallic syst...
The mechanical performance of additively manufactured (AM) components remains an issue, limiting the...
Parts produced by additive manufacturing (AM), particularly Selective Laser Melting (SLM), have been...
Additive Manufacturing (AM) is a valid and economically viable technique to produce fully functional...
Additive manufacturing lends itself well to the manufacture of aerospace parts due to the high compl...
Additive manufacturing (AM) will support NASA in their moon and mars missions by reducing the amount...
Selective Laser Melting (SLM) is a powder bed fusion additive manufacturing process used increasingl...
Additive Manufacturing (AM) processes enable their deployment in broad applications from aerospace t...
Additive Manufacturing (AM) is an emerging technology with a focus on complex metallic component fab...
The production of metallic parts by additive manufacturing (AM) is of significant interest to indus...
Laser powder bed fusion additive manufacturing is used for demanding applications in industries such...
Research in metallic additive manufacturing (AM) has been rapidly growing over the past 10 years, wi...
In the last decade, additive manufacturing has gained significant interest for direct part producti...
Powder-Bed Additive Manufacturing (AM) through Direct Metal Laser Sintering (DMLS) or Selective Lase...
JBK-75 is an iron-nickel derivative alloy of A-286 that has been of interest to NASAs propulsion com...
This presentation documents the fatigue properties of three additive manufactured (AM) metallic syst...
The mechanical performance of additively manufactured (AM) components remains an issue, limiting the...
Parts produced by additive manufacturing (AM), particularly Selective Laser Melting (SLM), have been...
Additive Manufacturing (AM) is a valid and economically viable technique to produce fully functional...
Additive manufacturing lends itself well to the manufacture of aerospace parts due to the high compl...
Additive manufacturing (AM) will support NASA in their moon and mars missions by reducing the amount...