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Radiation-Resistant Ti/BN Coatings: Insights From 171 Days Exposure to Space Radiation and Atomic Oxygen in Low OrbitAtmospheric Plasma Spray (APS) and Vacuum Plasma Spray (VPS) techniques were used to develop Ti/2 vol.% hBN coatings, for extreme space environments and tested aboard the International Space Station as part of the MISSE-17 (Materials International Space Station Experiments) program. The coatings were exposed to atomic oxygen, space radiation, and low-orbit thermal cycling. VPS coatings showed a 56% increase in microhardness, a 26% rise in elastic modulus, minimal porosity and crack density changes compared to APS coatings. The change in mechanical properties is attributed to the formation of TiO, TiO₂ and TiN from nitrogen retention, alongside radiation-induced dislocations, which enhanced surface hardening. The oxidation of titanium led to the formation of TiO and TiO₂, while boron nitride was retained and underwent transmutation in VPS coatings. XPS and EDS analyses confirmed the enhanced space-environment resistance of VPS coatings, making them ideal for long-term spacecraft protection in lunar and Martian conditions.
Document ID
20260007753
Acquisition Source
Langley Research Center
Document Type
Reprint (Version printed in journal)
Authors
Abhijith Kunneparambil Sukumaran
(Florida International University Miami, United States)
Sara Rengifo
(Marshall Space Flight Center Redstone Arsenal, United States)
William Scott
(Marshall Space Flight Center Redstone Arsenal, United States)
Annette Gray
(Marshall Space Flight Center Redstone Arsenal, United States)
Miria Finckenor
(Marshall Space Flight Center Redstone Arsenal, United States)
Rony Thomas Murickan
(Florida International University Miami, United States)
Justin McElderry
(Marshall Space Flight Center Redstone Arsenal, United States)
Matthew Mazurkivich
(Marshall Space Flight Center Redstone Arsenal, United States)
Michael Renfro
(Plasma Processes, Inc. Huntsville, AL, United States)
Sang-Hyon Chu
(Langley Research Center Hampton, United States)
Cheol Park
(Langley Research Center Hampton, United States)
Anna Wu
(Oxford University Oxford, United Kingdom)
Yifei Fu
(University of Central Flordia)
Sudipta Seal
(University of Central Flordia)
Arvind Agarwal
(Florida International University)
Date Acquired
August 12, 2026
Publication Date
July 26, 2025
Publication Information
Publication: npj Materials Degradation
Publisher: Nature
Volume: 9
Subject Category
Space Radiation
Funding Number(s)
WBS: 833011.02.07.8328.26
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Technical Management
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