Training Grant NNX17AL10H
- Not listed
- This federal contract was awarded by the National Aeronautics and Space Administration (NASA) Shared Services Center to Innovative Space Technologies LLC, a for-profit limited liability company, under the Small Business Innovation Research (SBIR) Program Phase I. The contract, valued at $124,506.00, is for the development of ultra-lightweight, multifunctional magnesium alloy shielding structures. This is part of NASA's research efforts to address the effects of ionizing radiation from galactic...
- This Small Business Innovation Research (SBIR) Phase I contract was awarded by the National Aeronautics and Space Administration (NASA) Shared Services Center to Geoplasma LLC, a for-profit limited liability company. The contract, valued at $110,486.00, aims to further improve and test multifunctional radiation shielding materials for use in crew vehicles and habitats beyond low Earth orbit. The materials under development combine efficient shielding against galactic cosmic radiation and...
- This Small Business Innovation Research (SBIR) Phase II contract was awarded by the Langley Research Center of the National Aeronautics and Space Administration (NASA) to Physical Sciences Inc. (PSI), a for-profit research and development company. The $599,988 firm-fixed-price contract aims to advance PSI's ceramic composite material system for radiation shielding of lunar habitats. The composite material has demonstrated superior performance to aluminum in protecting against galactic cosmic...
- This federal contract award is for the development of a novel integrated radiation shielding material based on aluminum and ultra-high molecular weight polyethylene (UHMWPE), using field assisted sintering technology (FAST). The $124,977 Phase I Small Business Innovation Research (SBIR) contract was awarded to Brimrose Technology Corporation, in collaboration with Penn State University, by the National Aeronautics and Space Administration (NASA) Shared Services Center. This research aims to...
- This is a Phase II Small Business Innovation Research (SBIR) contract awarded by NASA to International Scientific Technologies, Inc. (IST) for the development of advanced radiation-shielding materials using in-situ resources such as regolith for extra-terrestrial habitats. The $750,000 fixed-price contract supports the analysis, fabrication, and testing of polymer-regolith composite materials to effectively shield against galactic cosmic radiation, including light ions, heavy ions, and neutrons....
- This is a Small Business Innovation Research (SBIR) Phase I contract awarded by NASA to Gloyer-Taylor Laboratories Inc. (GTL Company), a small business manufacturer of advanced aerospace technologies based in Tullahoma, Tennessee. The contract, valued at $124,987, aims to incorporate polyethylene into GTL's Ballistic Hemispherical Layup (BHL) technology to develop a lightweight, multifunctional composite material that can serve as primary, secondary, and interior spacecraft structure while...
- This is a Small Business Innovation Research (SBIR) Phase I contract awarded by the National Aeronautics and Space Administration (NASA) to Tethers Unlimited, Inc., a small business located in Bothell, Washington. The contract, valued at $124,714.00, is for the development of a cost-effective and lightweight radiation shielding system called "COMPOSITE-Z AND GRADED-Z RADIATION SHIELDS (COGZ-RAD)". The shielding system utilizes novel multi-material 3D printing techniques to fabricate...
- This is a Phase I Small Business Innovation Research (SBIR) contract awarded by NASA to International Scientific Technologies, Inc., a for-profit small business, to develop advanced radiation-shielding technologies using in-situ resources such as regolith to protect humans from galactic cosmic radiation during extra-terrestrial missions. The $125,000 firm-fixed price contract will support the selection of hydrogenous polymer binders, fabrication of polymer-regolith shielding specimens, and...
- The Air Force Research Laboratory (AFRL) awarded a $2 million firm fixed-price contract to Cosmic Shielding Corporation, a small disadvantaged business, for Phase II of the Sequential TACFI Radiation Threat Mitigation System program. The work will be performed in Huntsville, Alabama, with an ultimate completion date of June 28, 2027. This contract is set aside for small businesses and represents a continuation of the company's ongoing partnership with AFRL in developing advanced radiation...
- This is a firm fixed-price Phase I Small Business Innovation Research (SBIR) contract awarded by NASA to Kaneka Aerospace LLC (DBA Applied Poleramic, Inc.) to develop a new generation of structural high hydrogen content matrix materials for radiation shielding in future NASA missions. The $124,586 contract aims to create fiber-reinforced composite materials with enhanced radiation shielding, damage tolerance, and flammability resistance by incorporating nuclear-grade boron carbide or boron...
RADIATION FROM GCRS AND SOLAR FLARES PROVIDE A HOSTILE IONIZING ENVIRONMENT FOR PERSONNEL AND VITAL ELECTRONIC SYSTEMS. THE EFFECTS OF THIS ENVIRONMENT HAS BEEN A TOPIC OF RESEARCH FOR MANY YEARS. ISSUES INCLUDE THE EXPOSURE FOR HUMANS UNDER ACUTE AND CONTINUOUS EXPOSURES AND THE RADIOGENIC CANCER RISK THAT RISES WITH TOTAL DOSE AND IS A LIMITING CONSTRAINT ON LONGDURATION MISSIONS. THE PROPOSED METAL ALLOY DEVELOPMENT PRODUCES A MATERIAL THAT IS MULTIFUNCTIONAL AND LIGHTWEIGHT FOR DEEP SPACE MISSIONS. THE TARGET MATERIAL HAS A SIGNIFICANT REDUCTION IN MASS AND POTENTIALLY VOLUME FOR PROTECTIVE PERFORMANCE SUCH AS RADIATION AND DEBRIS SHIELDING APPLICATIONS AS WELL AS POTENTIAL PERFORMANCE THERMALLY AND ACOUSTICALLY. DEVELOPMENT OF THESE NEW MG ALLOYS WILL IMPROVE THE MARGIN AND OVERALL RISK ASSOCIATED WITH EACH OF THESE SCENARIOS BY IMPROVING THE SHIELDING PERFORMANCE AND PROVIDES A REDUCTION IN THE LIKELIHOOD OF ELECTRONIC COMPONENT FAILURE OCCURRENCE AS WELL AS A REDUCTION IN CONSEQUENCE. EQUALLY IMPORTANT, THIS WILL REDUCE THE RISK OF CANCER TO PERSONNEL FROM RADIATION EXPOSURE. WITH RESPECT TO ELECTRONIC SYSTEMS, THE SYSTEMS THAT PROVIDE LIFE SUPPORT AND ARE CONSIDERED CRITICAL SYSTEMS ARE VULNERABLE TO THE IONIZING RADIATION EFFECTS AS WELL. ONCE THE "HEAVY" PARTICLES PENETRATE THE ELECTRONIC COMPONENTS, SHORTS ARE CREATED IN WORST CASE CONDITIONS AND PROVIDE TEMPORARY UPSETS IN THE BEST CONDITIONS. SIMILARLY, THOSE ELECTRONIC SYSTEMS THAT ARE CONSIDERED NONCRITICAL, SIMILAR EFFECTS ARE SEEN BUT HAVE CONSEQUENCES THAT EFFECT THE MISSION ASSURANCE ASPECTS. BY REPLACING EXISTING METALLIC COMPONENTS WITH APPROPRIATE MG ALLOYS, SUCH AS THE ONES FROM THIS PROJECT, BOTH VEHICLE WEIGHT AND CREW DOSE RATE CAN BE REDUCED. THE OPERATIONAL BENEFITS OF SUCH A CHANGE ARE MANIFOLD. FOR EXAMPLE, WEIGHT CAN BE REPLACED WITH FUEL TO ACHIEVE GREATER VEHICLE VELOCITY. ALTERNATIVELY, MISSION DURATION COULD BE EXTENDED WHILE OPERATING WITHIN EQUIVALENT DOSE LIMITS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | Not listed | $35.0k | 6/14/17 | |
| Not listed | $35.0k | 6/14/17 |