Comparing the Effectiveness of Polymer and Composite Materials to Aluminum for Extended Deep Space Travel

Author:

Bond Daniel K.1ORCID,Goddard Braden1,Singleterry Robert C.2,Bilbao y León Sama13

Affiliation:

1. Virginia Commonwealth University, Department of Mechanical and Nuclear Engineering, 401 West Main Street, P.O. Box 843015, Richmond, Virginia 23284

2. NASA Langley Research Center, MS 388, 6 East Reid Street, Hampton, Virginia 23681

3. Nuclear Energy Agency, 46, Quai Alphonse Le Gallo, 92100 Boulogne-Billancourt, France

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference37 articles.

1. “Information Needed to Make Radiation Protection Recommendations for Space Missions Beyond Low-Earth Orbit: (Report No. 153),” National Council on Radiation Protection and Measurements (2006); https://app.knovel.com/hotlink/toc/id:kpINMRPRS1/information-needed-make/information-needed-make (current as of June 30, 2019).

2. OLTARIS: On-line tool for the assessment of radiation in space

3. R. SINGLETERRY Jr. et al. “OLTARIS: On-Line Tool for the Assessment of Radiation in Space,” NASA Technical Paper 2010-216722, National Aeronautics and Space Administration (2010).

4. J. SPANGLER, “OLTARIS, OnLine Tool for the Assessment of Radiation in Space” (2018); https://oltaris.nasa.gov/ (current as of June 30, 2019).

5. J. WILSON et al. “HZETRN: Description of a Free-Space Ion and Nucleon Transport and Shielding Computer Program,” NASA STI/Recon Technical Report, National Aeronautics and Space Administration (1995).

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