NANOSONIC INC. — National Aeronautics and Space Administration SBIR Phase I: Z8

NANOSONIC INC. — SBIR Phase I award from National Aeronautics and Space Administration.

Amount
$125,000
Agency
National Aeronautics and Space Administration
Program / Phase
SBIR · Phase I
Topic
Z8
Solicitation
SBIR_19_P1
NAICS
Place of performance
VA
Period
2019-08-19 → 2020-02-18

Description

Radiation in space poses threats for both astronauts and electronic equipment.nbsp; While it is relatively easy to shield against non-ionizing RF and microwave radiation, shielding against higher energy ionizing radiation ndash; gamma rays, protons, neutrons and galactic cosmic radiation (GCR) ndash; is much more challenging.nbsp; With longer missions to Jupiter or future manned missions and with the use of smaller spacecraft that cannot accommodate additional weight needed for shielding, the importance of lightweightnbsp;shielding to NASA has increased.nbsp; Radiation shielding approaches that have been considered through prior work include fabricating spacecraft out of hydrogen-rich radiation absorbing and scattering plastics instead of aluminum, placing external liquid hydrogen fuel and internal supply water around astronauts as radiation absorbers, and creating strong electromagnetic fields to deflect the radiation.nbsp; To be effective, however, conventional shielding materialsnbsp;need to be thick and material thickness increases the total unwanted mass to be carried by a small satellite, and the amount of power required to create a deflection field would require significant fuel.nbsp; NanoSonic proposesnbsp;to develop lightweight composites consisting of multiple layers of graded atomic number (Z-number) materials as effective ionizing radiation shields beyond Low Earth Orbit.nbsp; NanoSonic shall advance the Technology Readiness Levelnbsp;to 3 ndash; 5 during Phase I.nbsp; Thenbsp;composites could be used as the structural shells and support members of small satellites so serve multiple purposes.nbsp; Preliminary research results with NanoSonicrsquo;s materials in the Department of Environmental and Radiological Health Sciences at Colorado State University, and at the NASA Space Radiation Laboratory at the Brookhaven National Laboratory, have shown that our materials significantly attenuate X-rays and gamma rays without secondary radiation, and structurally survive simulated 50-year exposure to solar energetic particles and GCR.