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In-orbit contamination traps based on sol-gel coatings
01.08.2007 - 31.03.2011
Auftragsforschungsprojekt
The control of molecular contamination for spacecrafts is currently only pursued on ground. This is sufficient when the contamination levels at launch can be held significantly below EOL requirements. With increasingly sensitive optical payloads, even on-ground requirements become difficult to maintain, leaving very little margin in orbit for nominal performance. Active control of contamination in orbit has already been demonstrated (e.g. Hubble Space Telescope) where zeolite-based cartridges have been placed near critical hardware. The drawback of this solution is still a relatively small volume/surface ratio; the application of such a concept as coating would be most efficient. European developments are currently pending, with a variety of missions to come where active contamination control would be desirable. The goal of the project is to show the feasibility of a molecular contamination trap, applied as coating, to protect optically sensitive or contamination critical payloads. The coatings will be prepared by sol-gel processes which additionally allow concomitant tailoring of several properties (porosity, optical performance, etc.). A multifunctional protection system will thus be created.
Personen
Projektleiter_in
Ulrich Schubert
(E165)
Projektmitarbeiter_innen
Jasmin Geserick
(E165)
Marina Lomoschitz
(E165)
Institut
E165 - Institute of Materials Chemistry
Contract/collaboration
FFG - Österr. Forschungsförderungsgesellschaft mbH
ESA / ESTEC
Forschungsschwerpunkte
Non-metallic Materials: 50%
Surfaces and Interfaces: 50%
Schlagwörter
Deutsch
Englisch
Beschichtungen
coatings
Sol-Gel Prozeß
sol-gel processing
Adsorption
adsorption
Hybridmaterialien
hybrid materials
Publikationen
Publikationsliste