Passive Films for CubeSat Solar Array and Radiator Thermal Control

Metadata Updated: November 12, 2020

Trending towards reduced power and mass budget on satellites with a longer mission life, there is a need for a reliable thermal control system that is more efficient and cost-effective.  Vanadium dioxide, VO2, is a transition metal oxide that undergoes a passive thermal phase change from a semiconductor to a metal at 67 C.  By depositing nm thick VO2 via an in house atomic layer deposition (ALD) reactor, passive thermal control for solar cells, radiators and external boxes with minimized weight, cost and structural simplicity is possible.  By utilizing a combinatorial property of atomic layer deposition where layers of other materials such as alumina or zinc oxide can be deposited in conjunction with vanadium oxide to provide a dopant in order to reduce the transition temperature. ALD is a cost effective nanoadditive-manufacturing technique that allows for the conformal coating of substrates with atomic control in a benign temperature and pressure environment.  Through the introduction of paired precursor gases, thin films can be deposited on a myriad of substrates from flat surfaces to those with significant topography.  By providing atomic layer control, where single layers of atoms can be deposited, the fabrication of metal transparent films, precise nano-laminates, and coatings of nano-channels and pores is achievable.The benefit of using a variable emissive coating has been verified via a thermal model where we assume two plates, 100 mm x 100 mm at 1/8” thick, orbiting LEO in safe mode at a Beta 0 angle allowing for maximum eclipse.  If we coat one plate with the variable emissive coating and the other with silver Teflon we see that the variable emissive coating maintains a much warmer temperature versus the constant high emissive silver Teflon coating.  These results translate to a 2 W savings in heater power if both plates are to run at similar temperatures.

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Public: This dataset is intended for public access and use. License: No license information was provided. If this work was prepared by an officer or employee of the United States government as part of that person's official duties it is considered a U.S. Government Work.

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Metadata Created Date November 12, 2020
Metadata Updated Date November 12, 2020

Metadata Source

Harvested from NASA Data.json

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Resource Type Dataset
Metadata Created Date November 12, 2020
Metadata Updated Date November 12, 2020
Publisher Space Technology Mission Directorate
Unique Identifier Unknown
Identifier TECHPORT_40610
Data First Published 2016-09-01
Data Last Modified 2020-01-29
Public Access Level public
Bureau Code 026:00
Metadata Context
Metadata Catalog ID
Schema Version
Catalog Describedby
Homepage URL
Program Code 026:027
Source Datajson Identifier True
Source Hash b3726eff0080ef26e8df4072dca06e3748759ef7
Source Schema Version 1.1

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