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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. Weld Penetration Monitoring and Feedback Control in Submerged Arc Welding

    SBC: ADAPTIVE INTELLIGENT SYSTEMS            Topic: N093210

    This SBIR project aims at the development of an innovative technology that can be attached to existing submerged arc welding (SAW) systems to monitor and feedback control the depth of weld penetration. Existing SAW systems will be operated using existing welding procedures without modifications. In many applications skilled welders may adjust the welding parameters based on their observation of dy ...

    SBIR Phase I 2010 Department of DefenseNavy
  2. Meshfree-Based Fracture Evaluation and Design Tool for Welded Aluminum Ship Structures

    SBC: Advanced Dynamics, Inc.            Topic: N10AT041

    The aluminum alloys have low density, relatively high strength, and high strength-to-weight ratio, which brings some major advantages in marine structure design, fabrication, and operations. However, marine ships are subjected to a complex and severe loading, and the typical failure mode of aluminum under extreme dynamics loading such as wave slamming and high velocity impact is ductile fracture. ...

    STTR Phase I 2010 Department of DefenseNavy
  3. Deterministic and Statistical Characterization of the Impact of Control Surface Freeplay on Flutter and Limit-Cycle Oscillation (LCO) using Efficient

    SBC: Advanced Dynamics, Inc.            Topic: N10AT003

    Research is proposed for the development and implementation of state of the art computational and experimental tools for the investigation of the impact of control surface freeplay on the flutter and limit cycle oscillation characteristics of two-dimensional and three-dimensional wings in subsonic and transonic flow. Highly efficient and accurate aeroelastic simulation tools will be constructed ba ...

    STTR Phase I 2010 Department of DefenseNavy
  4. Multiscale Modeling and Analysis of Foreign Object Damage in Ceramic Matrix Composites with the Material Point Method

    SBC: Advanced Dynamics, Inc.            Topic: N10AT010

    This Small Business Technology Transfer Phase I project is aiming at developing and implementing a multiscale composite model to predict the ceramic matrix composite (CMC) response to the impact loading by foreign objects. In particular, the physics-based model will be applied to describe the multiscale foreign object damage (FOD) phenomena of CMCs due to the complex nature of impact dynamics coup ...

    STTR Phase I 2010 Department of DefenseNavy
  5. STOCHASTIC MUTISCALE/MULTISTAGE MODELING OF ENGINE DISKS

    SBC: Advanced Dynamics, Inc.            Topic: N10AT028

    Turbine disks are amongst the most critical components in aero- and naval-vessel engines. They operate in a high pressure and temperature environment requiring demanding properties. Nickel-based supperalloys which have high creep and oxidation resistance at high temperatures are widely used as the material of turbine disks. The elevated-temperature strength of this supperalloy and its resistance t ...

    STTR Phase I 2010 Department of DefenseNavy
  6. Ground Guidance ISK Integration (G2I2)

    SBC: ADVENTIUM ENTERPRISES, LLC            Topic: SB101007

    This Phase 1 SBIR project will establish the technical and commercial benefits of using previous task executions to augment model-based route planning for military applications. On this project, we will integrate a prototype route planner using ``Implicit Semantic Knowledge'' (ISK) derived from previous executions, with an existing model-based route planner, called ``Ground Guidance.'' Model-bas ...

    SBIR Phase I 2010 Department of DefenseDefense Advanced Research Projects Agency
  7. Ultra Low Power, High Performance Microprocessor Core for Military and Space Applications

    SBC: American Semiconductor, Inc.            Topic: AF093082

    For Phase I, an ultra low power, high performance microprocessor core using a combination of double-gated and independent double-gated Flexfet™ SOI CMOS technology from American Semiconductor will be designed to address the requirements of military and space communication systems. High integration feasibility using Flexfet technologies followed by confirmation of the power and performance improv ...

    SBIR Phase I 2010 Department of DefenseAir Force
  8. Multi-Robot Coordination and Pursuit System (MrCoPS)

    SBC: ARCHITECTURE TECHNOLOGY CORPORATION            Topic: A08204

    As autonomous systems are increasingly employed for combat support, many of the applicable missions require coordination of multiple unmanned systems. Robot-human teams present a number of communication, resource-allocation, task-coordination, and general-interaction challenges. Architecture Technology Corporation proposes a multi-robot coordination system for search, and mapping in urban environm ...

    SBIR Phase II 2010 Department of DefenseArmy
  9. Synapse

    SBC: ARCHITECTURE TECHNOLOGY CORPORATION            Topic: N091037

    Architecture Technology Corporation (ATC) will build Synapse, a “plug and play” software product that will augment the Joint Mission Planning System (JMPS) to close a critical capability gap identified by the Navy, i.e., the lack of a real-time, bandwidth-optimized collaboration infrastructure for mission planning. Synapse specifically targets the networking aspects of JMPS collaboration to en ...

    SBIR Phase II 2010 Department of DefenseNavy
  10. Integrative Communications Effects Environment

    SBC: ARCHITECTURE TECHNOLOGY CORPORATION            Topic: A09142

    The proposed Integrative Communications Effects Environment (ICEE) is a gateway that allows the creation of a "mixed-mode" test environment where live, virtual, and constructive (simulated) nodes can exchange data with one another during realtime test execution. ICEE bridges the mixed-mode testing capability gap, combining constructive (simulated), virtual (mostly real hardware), and live (complet ...

    SBIR Phase I 2010 Department of DefenseArmy

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