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Selecting an Encapsulant for an Aerospace Superconducting MachineAchieving larger benefits from electrified propulsion in single aisle aircraft (the largest commercial aircraft market segment) necessitates that a significant fraction of their 20 MW or greater propulsion system be electrified. These aircraft would require up to 10-20 of today’s state-of-the art machines, which have been demonstrated up to 2.5 MW for aerospace use, and could benefit further from 5 MW+ designs. However, when conventionally cooled, high power density machines still produce a significant amount of waste heat, translating into heavy thermal management and detracting from system benefits. Highly efficient fully superconducting electric machines (or those with a cryogenically cooled, high purity copper or aluminum stator) are a possible solution but have multiple barriers to overcome. One such barrier is the durability of superconducting windings. Superconductors are typically brittle, and encapsulants used to hold windings in place are a significant source of stress due to mismatches in coefficient of thermally induced contraction between ambient and operational temperatures (20 to 77 K). Lack of compliance between the materials at operational temperatures also adds significant stress. These encapsulants also form a thermal barrier that can be detrimental to cooling the superconductors. This work describes an initial study of commercially available encapsulants as it relates to superconducting machine applications, along with initial modeling of thermal stress in superconducting windings for a superconducting or cryogenically cooled stator in a 5 MW electric machine.
Document ID
20260004613
Acquisition Source
Glenn Research Center
Document Type
Poster
Authors
Andrew A Woodworth
(Glenn Research Center Cleveland, United States)
Haiquan Guo
(Universities Space Research Association Columbia, United States)
Jarred M Wilhite
(Glenn Research Center Cleveland, United States)
Justin J Scheidler
(Glenn Research Center Cleveland, United States)
Date Acquired
May 21, 2026
Subject Category
Aircraft Propulsion and Power
Meeting Information
Meeting: IEEE Transportation Electrification Conference and Expo and Electric Aircraft Technologies Symposium (ITEC and EATS)
Location: Novi, MI
Country: US
Start Date: June 10, 2026
End Date: June 12, 2026
Sponsors: Institute of Electrical and Electronics Engineers
Funding Number(s)
WBS: 649097.04.03.02.93
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
NASA Peer Committee
Keywords
encapsulant
epoxy
electric machines
superconducting
Electrified aircraft propulsion
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