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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. A Modified GMAW System for Distortion Reduction and Travel Speed Increase through Separate Heat Input and Deposition Rate Control

    SBC: ADAPTIVE INTELLIGENT SYSTEMS            Topic: N07211

    In traditional GMAW and modifications, the current melting the wire is the same as the current heating the base metal. To maintain a minimally acceptable productivity, the base metal heat input is typically much greater than the required to control the distortion at an acceptable or desirable level. In the modified GMAW proposed, a bypass torch is added to an existing GMAW system to bypass part of ...

    SBIR Phase II 2009 Department of DefenseNavy
  2. Novel, Optimal, Physics-Based Reduced Order Models for Nonlinear Aeroelasticity

    SBC: Advanced Dynamics, Inc.            Topic: AF08BT03

    Research is proposed for the development and implementation of state of the art, reduced order nonlinear aeroelastic models for multidisciplinary/multi-fidelity optimization problems. Highly efficient and accurate aeroelastic simulation tools will be constructed based upon the mathematical formalism of optimal prediction theory and a novel implementation of a filtered harmonic balance solution met ...

    STTR Phase I 2009 Department of DefenseAir Force
  3. VABS Enabled Design Environment for Efficient High-Fidelity Composite Rotor Blade and Wing Section Design

    SBC: Advanced Dynamics, Inc.            Topic: A08022

    This SBIR aims at developing a high-fidelity, yet efficient and easy-to-use, composite rotor blade and wing section design environment to facilitate rapid and confident aeromechanics assessment during conceptual design stages. A well-known technical barrier for composite rotor blade and wing section design is the lack of a user friendly, efficient and high-fidelity design tool to realistically rep ...

    SBIR Phase II 2009 Department of DefenseArmy
  4. Decision Support System Based On Collaborative-orientated System Engineering Cpabilities

    SBC: ANAUTICS, INC.            Topic: AF083229

    As the Air Force (AF) begins the progression of applying systems engineering from the top-level definition of the system architecture down to a granular level of design it is very important to also realize the changes that will be taking place through Technology Insertion initiatives. Continuous system engineering is required to preserve the integrity of a system, facilitate the development of new ...

    SBIR Phase I 2009 Department of DefenseAir Force
  5. Accelerated Learning through Serious Game Technology

    SBC: Tier 1 Performance Solutions, LLC            Topic: OSD08CR8

    Military network environments will be subject to both internal and external threats for the foreseeable future. Internal threats to cyber networks from U.S. personnel receive little attention in comparison to external threats; yet, the consequences can be even more devastating. The lack of tools for understanding insider threat, analyzing risk mitigation alternatives, and communicating results e ...

    SBIR Phase I 2009 Department of DefenseAir Force
  6. Multi-layered lightweight alloy development for improved blast and penetration resistance

    SBC: ATI, INC.            Topic: A09AT010

    This program is to develop multi-layered,light weight armor alloys systems that offer improved fragmentation and armor piercing performance as compared to any other monolithic structures. Such alloys and laminated configuration will be developed by utilizing advanced computational techniques to assist in the development of complimentary alloys that would provide an optimal combination of hardness ...

    STTR Phase I 2009 Department of DefenseDefense Advanced Research Projects Agency
  7. Highly Corrosion Resistant Aluminum Alloys: Innovative Processing Methods to Enhanced Corrosion Resistance (e.g., layered structures, etc.)

    SBC: ATI, INC.            Topic: OSD09C03

    Two different approaches will be investigated for producing aluminum alloys with a layer structure that have mechanical properties similar to Al 7050-T7 and Al 7075-T6 and greatly improved corrosion resistance. Layered aluminum alloys will be produced using the Novelis-Fusion™ casting process. This process is very cost effective and has been demonstrate on commercial products. The other appro ...

    SBIR Phase I 2009 Department of DefenseNavy
  8. Innovative Methodologies for the Development of a High Strength, Anodize-Free Corrosion Resistant, Aerospace Aluminum Alloys

    SBC: ATI, INC.            Topic: OSD09C02

    The objective of this program is develop high strength aluminum alloys ( as high strength as that of 7075-T6) that would not require anodization to achieve corrosion resistance. Among the Al alloy systems, only 7xxx and Al-Cu-Li alloy systems are capable of such a high strength level of 7075-T6 properties ( design minimum tensile yield stress of 75 ksi). Therefore, only these two alloy systems ...

    SBIR Phase I 2009 Department of DefenseNavy
  9. Perching Micro Air Weapon

    SBC: Design Intelligence Incorporated, LLC            Topic: AF083096

    Design Intelligence Incorporated, LLC (DII) proposes an integrated design approach for an innovative perching micro air vehicle (MAV) using energy harvesting.  The proposed design concepts will build upon DIIs proprietary energy harvesting technology and hardware and will include innovative biomimitic MAV design concepts. In particular, DII proposes MAV design concepts that focus on energy harves ...

    SBIR Phase I 2009 Department of DefenseAir Force
  10. Condition-based Self Healing Systems for Multifunctional Composites

    SBC: RK COMPOSITES, INC.            Topic: A09096

    In this Phase I SBIR program, RK Composites, Inc. (RKCI) will develop condition-based self healing systems for multifunctional composite materials. Our technology enables damage mitigation by pre-damage repair, inclusion of condition based monitoring, extensive and tailorable multifunctionality, and material modifications to improve the mechanical properties of high-strength advanced composites. I ...

    SBIR Phase I 2009 Department of DefenseArmy

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