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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. Advanced IM Compliant Dual-Mode Energetic System

    SBC: Systima Technologies, Inc.            Topic: AF173012

    Systima Technologies, Inc. in collaboration with Aerojet Rocketdyne is proposing to develop and demonstrate a dual mode energetic system design that incorporates an advanced energetic formulation, technology for burn-rate control, and features for IM compliance and system performance enhancement (lethality).The Phase I program includes development and refinement of the system design concepts, comp ...

    SBIR Phase I 2018 Department of DefenseAir Force
  2. Frequency-Equalized Lithiumk Niobate Phase Modulator

    SBC: Eospace Inc.            Topic: N173146

    Develop frequency-equalized Electro-Optic lithium niobate phase modulators with flat frequency response, low switching voltage-length product, and multi-decade environmental lifetime for use in strategic-grade high-precision inertial sensors.New innovative approaches to improve phase modulator performance will be investigated and test structures fabricated to verify the new device concept.

    SBIR Phase I 2018 Department of DefenseNavy
  3. Modular Infrared Time-delay Integrated Systems

    SBC: Systima Technologies, Inc.            Topic: N181014

    Systima is proposing the development of an integrated modular flare dispenser system capable of delivering multiple discrete busts of pyrophoric flare material through the dispense of a single unit from an AN/ALE-47 dispenser. The Phase I program will conduct significant static ground testing to enable a higher TRL level at the start of the Phase II program. This approach will retire risk early an ...

    SBIR Phase I 2018 Department of DefenseNavy
  4. Precision Machining of Composite Structures

    SBC: Product Innovation And Engineering, LLC            Topic: N181028

    The goal of this SBIR Phase I research is to demonstrate the feasibility of developing an innovative laser-based approach as a precision machining tool to machine fastener holes of Fiber-Reinforced Polymer (FRP) composites for military aircraft use. The proposed technology is a model-based laser processing (MLP) system, with an eventual goal of the Phase II/III project to commercialize the develop ...

    SBIR Phase I 2018 Department of DefenseNavy
  5. Precision Machining of Composite with Waterjets

    SBC: Ormond, LLC            Topic: N181028

    Waterjets are widely used to cut and trim composites and techniques have been developed to trepan and pierce materials without causing delamination or fiber break-out on the exit side. However, using waterjets to mill countersunk holes has not been demonstrated before. This project will use a patented waterjet milling process to show that waterjets can successfully mill countersunk holes in compos ...

    SBIR Phase I 2018 Department of DefenseNavy
  6. Innovative Processing Techniques for Additive Manufacture of 7000 Series Aluminum Alloy Components

    SBC: Product Innovation And Engineering, LLC            Topic: N18AT005

    The goal of this STTR Phase I research proposal is to develop a proof of concept for a novel additive manufacturing (AM) process that will be capable of processing 7000 series AM aluminum alloys while minimizing defects, with an eventual goal of Phase II/III project to commercialize the developed technology. To achieve this goal, the technical objectives, the proposed technology includes the follo ...

    STTR Phase I 2018 Department of DefenseNavy
  7. AFFF Disposal

    SBC: Liquid Carbonic L.L.C.            Topic: AF17BT001

    Aqueous Film Forming Foam (AFFF) is the water-based firefighting agent of choice in military and civilian applications.No satisfactory disposal method has been identified.Liquid Carbonic proposes a treatment for AFFF that will also work for other polyfluorinated chemicals (PFCs) and their derivatives.The strength of the C-F bond is the ultimate problem in disposing of PFCs and residues.The very se ...

    STTR Phase I 2018 Department of DefenseAir Force
  8. Characterization of Piezoelectric Fibers for Sensing Shock Waves from Underwater Explosions

    SBC: Advanced Materials and Devices            Topic: DHA17C002

    This Small Business Technology Transfer (STTR) Phase I effort will demonstrate the feasibility of using piezoelectric fibers to detect shock waves from underwater explosions (UNDEX) and sensing physiological measures such as heart and respiratory rates on warfighters. Piezoelectric fibers will be characterized for their ability so sense different amplitudes and frequencies of shock and vibration. ...

    STTR Phase I 2018 Department of DefenseDefense Health Program
  9. Hyper-velocity Warhead with Advanced Load-out and Leathality (Hyper-WALL)

    SBC: Systima Technologies, Inc.            Topic: MDA18003

    Systima is proposing the development of a non-hit-to-kill warhead for hyper-velocity projectiles capable of deploying a volumetrically efficient tungsten payload using advanced manufacturing techniques. Using Wire Electrical Discharge Machining (Wire EDM), the payload packaging efficiency is dramatically increased while also reducing cost due to greater design simplicity and ease of assembly of th ...

    SBIR Phase I 2018 Department of DefenseMissile Defense Agency
  10. Damage Tolerance Analysis of Grinding Burn Cracks in High Strength Steels

    SBC: APES INC.            Topic: AF172001

    The United States Air Force (USAF) has identified the need for the development of damage tolerance methodologies to address grinding burns in high strength steel.Our team proposes a holistic approach for damage tolerance assessments in landing gear components (and other high-strength steel components) that focuses not only on grinding burns but also on other failure mechanisms, such as corrosion p ...

    SBIR Phase I 2018 Department of DefenseAir Force

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