NASA NTRS · 20050092293
Atomic Oxygen Effects on Coated Tether Materials
Abstract
The University of Alabama in Huntsville s Propulsion Research Center has teamed with NASA's Marshall Space Flight Center (MSFC) to research the effects of atomic oxygen (AO) bombardment on coated tether materials. Tethers Unlimited Inc. has provided several candidate tether materials with various coatings for (AO) exposure in MSFC's Atomic Oxygen Beam Facility. Additional samples were exposed to ultraviolet (UV) radiation at MSFC. AO erodes most organic materials, and ultraviolet radiation embrittles polymers. This test series was performed to determine the effect of AO and UV on the mechanical integrity of tether materials that were treated with AO-protective coatings, such as Photosil or metallization. Both TUI's Multi-Application Survivable Tether (MAST) Experiment and Marshall Space Flight Center's Momentum Exchange Electrodynamic Reboost (MXER) programs will benefit from this research by helping to determine tether materials and coatings that give the longest life with the lowest mass penalty.
Keep this discovery
Explore connections, maps & timelines
Gittemeier, Keith A., Hawk, Clark W., Finckenor, Miria M., Watts, Ed. 2005-01-01. Atomic Oxygen Effects on Coated Tether Materials. https://ntrs.nasa.gov/citations/20050092293
Cite the original work for its findings. Save a collection to share your selection of sources.