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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. Power-Dense Electrostatic Rotating Machines

    SBC: C-Motive Technologies, Inc.            Topic: N19AT007

    Next-generation naval ships will require electric machinery with at least 50% greater power density than is available today. Such machines must deliver up to 10s of MW at 100-200 rpm with very high energy efficiency, extremely low noise signature, and reasonable cost. Electrostatic machine technology is often overlooked but is perfectly suited to achieving these goals. C-Motive Technologies propos ...

    STTR Phase I 2019 Department of DefenseNavy
  2. Active Imaging through Fog

    SBC: Blackmore Sensors and Analytics, Inc.            Topic: N18AT021

    For this Phase 1 Small Business Technology Transfer (STTR) project, Blackmore Sensors and Analytics and university partner Montana State University will investigate the use of coherent frequency modulated continuous wave (FMCW) ladar/lidar and digital holography techniques for improved performance of active imaging through fog. Coherent range, Doppler, and polarization selective digital holography ...

    STTR Phase I 2018 Department of DefenseNavy
  3. Alternative Mixing Technologies for High-Energy, Solid Materials for Large Gas Generator Propellant

    SBC: RESODYN CORPORATION            Topic: N172141

    The Phase I project objective is to develop and demonstrate the feasibility for use of an alternative process for mixing high-energy solid propellant materials that are used for gas generators in U.S. Navy strategic missile post-boost propulsion systems, other large missiles, and launch vehicles. In addition, the advanced mixing technology does not use impellers for mixing. The process selected fo ...

    SBIR Phase I 2018 Department of DefenseNavy
  4. Development and Assessment of No-Impeller, No-Blade Propellant Mixing Equipment and Procedures

    SBC: Highland Point, Inc.            Topic: N172141

    The Phase I effort provides an evaluation of variations of the no-impeller, no-blade propellant mixing approach. The assessment of this technology, specific trade studies of the incorporation of the technology into the propellant manufacturing process, and the accompanying laboratory evaluations demonstrate the feasibility of using this technology to replace the legacy methods for producing substa ...

    SBIR Phase I 2018 Department of DefenseNavy
  5. All Solid-State Batteries for Navy Applications

    SBC: NanoCoatings, Inc.            Topic: N162092

    The U.S. Navy requires reliable all-solid-state batteries (ASSB) with solid electrolytes to enhance their performance and safety. The novelty of the proposed study by NanoCoatings, Inc. (NCI) is the use of Magnetron Sputtering Physical Vapor Deposition (MS PVD) to manufacture thin, dense electrolyte layers of lithium-ion conductor and multiple cathode layers to provide high levels of ionic and ele ...

    SBIR Phase II 2018 Department of DefenseNavy
  6. Friction-Stir-Processing of Aluminum-Armor and Alumina-Encapsulated Armor

    SBC: NanoCoatings, Inc.            Topic: N171037

    The Littoral Combat Ship (LCS) is a naval vessel developed to deal with unconventional post-cold-war threats. To protect valued assets, and still maintain the ships maneuverability and speed, the U.S. Navy requires lighter-weight armor. NanoCoatings, Inc. and South Dakota School of Mines & Technology propose a plastic-deformation mechanical treatment, friction-stir-processing (FSP), to enhance the ...

    SBIR Phase I 2017 Department of DefenseNavy
  7. Novel Composite for High Performance Thermal Interface Material

    SBC: GLACIGEN MATERIALS, INC.            Topic: N171081

    Navy operational needs dictate that thermal interface materials (TIMs) have high thermal conductance, high dielectric strength, form non-permanent bonds, and be resilient to vibration and abrasion. Available TIMs each satisfy a portion of these requirements, but not all of them.Glacigen Materials will develop a new class of TIM by creating a novel composite material. This material will be embodied ...

    SBIR Phase I 2017 Department of DefenseNavy
  8. Cold Spray Repair Process Development and Implementation on Navy Components

    SBC: VRC Metal Systems, LLC            Topic: N151052

    US Navy vessels and their components and equipment experience severe environmental conditions, leading to a level of unacceptable corrosion through a combination of sea water exposure, heat, humidity, UV exposure, and general inaccessibility for continual maintenance. Copper brush electroplating is the standard repair technique for many Navy corrosion repair applications, however this process is p ...

    SBIR Phase II 2017 Department of DefenseNavy
  9. Metrology of Visibly Opaque, Infrared-Transparent Aerodynamic Domes, Conformal Windows, and Optical Corrector Elements

    SBC: Bridger Photonics, Inc.            Topic: N152105

    There is a growing need to fabricate visibly-opaque, infrared-transparent, high-optical-quality optics that conform to an aircrafts outer moldline shape to reduce drag.However, fabrication of such free-form and aspheric infrared (IR) optics has proven challenging.The current fabrication bottleneck is in the speed and precision of measuring the optical figure and transmitted wavefront error for the ...

    SBIR Phase II 2017 Department of DefenseNavy
  10. Metrology of Visibly Transparent Large Aspheric Optics

    SBC: Bridger Photonics, Inc.            Topic: N152106

    There is a growing need to fabricate high-optical-quality optics that conform to an aircrafts outer moldline shape to reduce drag.However, fabrication of such free-form and aspheric optics has proven challenging.The current fabrication bottleneck is in the speed and precision of performing metrology of the optical surfaces because traditional interferometric techniques are not applicable.To meet t ...

    SBIR Phase II 2017 Department of DefenseNavy

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