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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

  1. LIQUID-VAPOR FLOW REGIME TRANSISTIONS FOR USE IN DESIGN OF HEAT TRANSFER LOOPS IN SPACECRAFT

    SBC: Aeta Corp            Topic: N/A

    N/A

    SBIR Phase I 1984 Department of DefenseAir Force
  2. TWO DIFFERENT DETECTORS, BOTH USING THIN, CRACKED-ETHYLENE FOILS, WILL BE MADE.

    SBC: Arizona Carbon Foil Co Inc            Topic: N/A

    TWO DIFFERENT DETECTORS, BOTH USING THIN, CRACKED-ETHYLENE FOILS, WILL BE MADE. ONE DETECTOR CONSISTS OF A LOW-PRESSURE GAS CELL, SEALED AT EITHER END WITH ALUMINIZED ETHYLENE FOILS ABOUT 10 MICROGRAMS PER SQUARE CENTIMETER THICK. LIGHT GENERATED WHEN THE PROTON BEAM TRAVERSES THE GAS WILL BE VIEWED THROUGH A SIDE WINDOW; THE INTENSITY OF THE LIGHT, AS MEASURED WITH A PHOTOMULTIPLIER OR PHOTODIODE ...

    SBIR Phase I 1984 Department of DefenseAir Force
  3. GAASP TOP SOLAR CELLS FOR INCREASED SOLAR CONVERSION EFFICIENCY

    SBC: ASTROPOWER, INC.            Topic: N/A

    N/A

    SBIR Phase I 1984 Department of DefenseAir Force
  4. HEAT EXCHANGE MATRIX

    SBC: Elanco Inc.            Topic: N/A

    N/A

    SBIR Phase I 1984 Department of DefenseArmy
  5. GROWTH OF GAAS USING ION CLUSTER BEAM TECHNOLOGY

    SBC: ETONNET, INC.            Topic: N/A

    THIS PROGRAM WOULD INVESTIGATE THE GROWTH OF

    SBIR Phase II 1984 Department of DefenseAir Force
  6. A MAJOR PROBLEM WITH CURRENTLY AVAILABLE CHEMICAL AGENT FILTERS IS THE RESISTENCE TO AIR PERMEABILITY, OR BREATHABILITY.

    SBC: Fiber Materials, Inc.            Topic: N/A

    A MAJOR PROBLEM WITH CURRENTLY AVAILABLE CHEMICAL AGENT FILTERS IS THE RESISTENCE TO AIR PERMEABILITY, OR BREATHABILITY. THIS RESISTANCE IS DUE TO THE RELATIVELY DENSE PACKING OF ACTIVATED CARBON MATERIAL TO ABSORB THE TOXIC CHEMICAL VAPORS. A PROGRAM IS PROPOSED TO DEVELOP ACTIVATED CARBON FIBER FELTX THAT POSSES LOW FIBER DENSITY TO ACHIEVE GOOD AIR PERMEABILITY, BUT ADEQUATE VAPOR ABSORPTION. T ...

    SBIR Phase I 1984 Department of DefenseAir Force
  7. HYBRID FIBER CARBON-CARBON COMPOSITES FOR IMPROVED COMPATIBILITY WITH OXIDATION RESISTANT COATINGS

    SBC: Fiber Materials, Inc.            Topic: N/A

    N/A

    SBIR Phase I 1984 Department of DefenseAir Force
  8. LIQUID HYDROGEN COOLED CONDUCTORS FOR PULSED HIGH POWER APPLICATIONS

    SBC: CREARE LLC            Topic: N/A

    THERE ARE NUMEROUS APPLICATIONS WHERE THE THERMAL AND ELECTROMAGNETIC PERFORMANCE OF PURE METAL CONDUCTORS CAN BE APPRECIABLY ENHANCED BY COOLING WITH LIQUID HYDROGEN. ONE SUCH APPLICATION INVOLVES COOPER AND TUNGSTEN CONDUCTORS OF ELECTROMAGNETIC LAUNCH SYSTEMS COMMONLY KNOWN AS RAIL GUNS. THIS PROPOSAL ADDRESSES A NOVEL CONCEPT TO ENHANCE THE PERFORMANCE OF RAIL GUNS BY INCREASIG THEIR EFFICIENC ...

    SBIR Phase I 1984 Department of DefenseAir Force
  9. LOW COST ATMOSPHERIC CORROSION SENSORS

    SBC: Photofabrication Technology            Topic: N/A

    THIS PROPOSAL ENVISIONS DETERMINING THE FEASIBILITY OF USING PHOTOFABRICATION TECHNOLOGY TO PRODUCE LOW COST ATMOSPHERIC CORROSION SENSORS. UNLIKE CONVENTIONAL ATMOSPHERIC CORROSION SENSORS WHICH MEASURE ONLY INSTANTANEOUS CORROSION RATE, THE PROPOSED SENSORS WILL MEASURE BOTH INSTANTANEOUS AND TIME-AVERAGED CORROSION RATE.THE TENTATIVE DESIGN OF THESE SENSORS IS VERY COMPACT, ABOUTTHE SIZE OF A P ...

    SBIR Phase II 1984 Department of DefenseAir Force
  10. THIS PROPOSAL ENVISIONS DETERMINING THE FEASIBILITY OF USING PHOTOFABRICATION TECHNOLOGY TO PRODUCE LOW COST SEAWATER CORROSION SENSORS.

    SBC: Photofabrication Technology            Topic: N/A

    THIS PROPOSAL ENVISIONS DETERMINING THE FEASIBILITY OF USING PHOTOFABRICATION TECHNOLOGY TO PRODUCE LOW COST SEAWATER CORROSION SENSORS. UNLIKE CONVENTIONAL ELECTROCHEMICAL CORROSION SENSORS WHICH MEASURE ONLY INSTANTANEOUS CORROSION RATE, THE PROPOSED SENSORS WILL MEASURE BOTH INSTANTANEOUS RATE AND CUMULATIVE CORROSION. THE TENTATIVE DESIGN OF THESE SENSORS IS VERY COMPACT, ABOUT THE SIZE OF A P ...

    SBIR Phase I 1984 Department of DefenseNavy

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