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Advancing GRCop-based Bimetallic Additive Manufacturing to Optimize Component Design and Applications for Liquid Rocket EnginesAdditive manufacturing (AM) is advancing many applications of component design for liquid rocket engines. The ability to rapidly design and manufacture components has provided significant opportunities for development and flight programs across the propulsion industry. AM has demonstrated significant advantages that include cost and schedule savings in addition to performance improvements through new design opportunities. While these performance advantages can be in the characteristics of complex design features, they can also be in the form of new materials. AM has been demonstrated in these various component applications using a variety of metal alloys, many of which are traditional alloys for extreme environments. Additional developments were completed using AM to provide new alloys and maturing these material uses for high performance applications. Almost all of the prior developments across component applications have focused on single-alloys in these AM processes. NASA and industry partners have focused in recent years to advance processing to create bimetallic and multicomponent AM processes and materials. The role of multi-alloy AM offers advantages since it can further optimize weight, optimize reliability and performance by increasing the strength to weight ratio of a component, and can optimize materials for various engineering requirements. This is particularly important in liquid rocket engine combustion devices that must reject heat in high heat flux environments yet maintain adequate structural margins under high operational pressure. NASA has been exploring several AM processes, materials, and applications for combustion devices, specifically combustion chambers, injectors, nozzles, and ignition systems. These components require fine geometric features for internal flow or cooling functionality. They experience high thermal gradients across thin-walls and must survive high pressures and temperatures from propellants and the combustion process. A copper-based alloy is normally used to provide high thermal conductivity, but at the detriment of increased weight if used as a single alloy in an AM chamber. Various AM processes were demonstrated on these components using a copper-based alloy/superalloy bimetallic solution. The AM processes being explored individually and in combination for bimetallic applications include Laser Powder Bed Fusion (L-PBF), Laser Powder Directed Energy Deposition (LP-DED), and cold spray. The combination of bimetallic material combinations explored in this research include copper-based material primarily and superalloys, Inconel 625 or NASA HR-1. The various aspects of the additive manufacturing processes and challenges, materials characterization, and the testing of bimetallic components in a relevant environment will be discussed.
Document ID
20210018647
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Paul Gradl
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Thomas Teasley
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Chris Protz
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Marissa Garcia
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Christopher Kantzos
(Glenn Research Center Cleveland, Ohio, United States)
David Ellis
(Glenn Research Center Cleveland, Ohio, United States)
Date Acquired
July 13, 2021
Subject Category
Metals And Metallic Materials
Meeting Information
Meeting: 2021 AIAA Propulsion and Energy Forum
Location: Virtual
Country: US
Start Date: August 9, 2021
End Date: August 11, 2021
Sponsors: American Institute of Aeronautics and Astronautics
Funding Number(s)
WBS: 119991.04.01.62
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Technical Review
NASA Peer Committee
Keywords
Additive Manufacturing
GRCop-42
GRCop-84
Bimetallic
Multi Alloy
AM
Additively manufactured
LP-DED
L-PBF
Cold spray
coldspray
WAAM
Directed Energy Deposition
Powder bed Fusion
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