DocumentCode
870461
Title
High-Vacuum Gamma Irradiation Facilities for Synergistic Effects Testing on Optoelectronic Components and Materials
Author
Fernandez, A. Fernandez ; Brichard, B. ; Ooms, H. ; Berghmans, F.
Author_Institution
SCK/CEN, Mol
Volume
53
Issue
6
fYear
2006
Firstpage
3726
Lastpage
3730
Abstract
The assessment of the durability of candidate space components and materials requires the use of ground laboratory testing facilities when no reliable information exists in the published literature. Accelerated tests simulating the radiation/temperature/vacuum environment need to be performed to investigate possible synergistic degradation effects. An irradiation chamber combining high vacuum and thermal cycling with a large range of gamma dose rates has been designed and constructed for this purpose at SCKmiddotCEN, the Belgian Nuclear Research Center. The irradiation chamber module with actively-controlled vacuum is designed to fit in our gamma irradiation facilities. The vacuum irradiation module operates in the high-vacuum regime even in the presence of moderate outgassing from polymer materials. A pressure of 10-5 mbar can be routinely achieved but lower pressure can be obtained in the case of inert and mineral materials. In addition to the facility description, our paper discusses preliminary results of radiation-assisted outgassing of common polymers obtained using this new vacuum irradiation module
Keywords
gamma-ray effects; materials testing; optoelectronic devices; outgassing; polymers; radiation hardening; radioactive sources; 10-5 mbar; Belgian Nuclear Research Center; accelerated tests; actively-controlled vacuum; gamma dose rates; ground laboratory testing facilities; hardness assurance; high-vacuum gamma irradiation facilities; inert materials; irradiation chamber; mineral materials; optoelectronic components; optoelectronic materials; polymer materials; radiation environment; radiation-assisted outgassing; space components; space materials; synergistic degradation effect testing; temperature environment; thermal cycling; vacuum environment; Annealing; Atmosphere; Costs; Gamma rays; Materials reliability; Materials testing; Performance evaluation; Polymers; Temperature; Thermal degradation; Gamma radiation; hardness assurance; irradiation facility; radiation assessment; vacuum;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2006.884248
Filename
4033451
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