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The Award database is continually updated throughout the year. As a result, data for the given year is not complete until April of the following year. Annual Reports data is a snapshot of agency reported information for that year and hence might look different from the live data in the Awards Information charts.

  1. Space Radiation Intelligence System (SPRINTS)

    SBC: Nextgen Federal Systems LLC            Topic: T602

    NextGen Federal Systems proposes an innovative SPace Radiation INTelligence System (SPRINTS) which provides an interactive and web-delivered capability that significantly improves long-range forecasts (2-3 days), all-clear forecasts, and forecast accuracies of solar particle events (SPEs). SPRINTS provides SPE-related data, visualizations, and forecasts that leverage and integrate two complimentar ...

    STTR Phase I 2016 National Aeronautics and Space Administration
  2. Optimized Process for Ultrasonic Consolidation of Metallic Composites

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: A12aT004

    The overall objective of the proposed effort is to develop an improved ultrasonic consolidation (UC) process for metal matrix composites (MMCs). The Phase I effort demonstrated the feasibility of using a fiber-matrix unit cell finite element analysis to study the thermal and acoustic softening that occurs during UC. The analyses completed in Phase I highlighted the need for uniform prepreg mater ...

    STTR Phase II 2014 Department of DefenseArmy
  3. Theoretical and experimental development of an atmospheric sensing suite for deep-turbulence research

    SBC: Radio-Hydro-Physics LLC            Topic: AF11BT41

    ABSTRACT: This Phase I SBIR will produce a concept, and algorithms, for a Sensor Suite which can be used as a research tool to characterize strong atmospheric turbulence. Previous and on-going theories, statistics, and empirical data will be evaluated to arrive at an optimal Sensor design concept. That Sensor may exploit the superior resolution and performance inherent in the Radio-Hydro-Physi ...

    STTR Phase I 2012 Department of DefenseAir Force
  4. Optimized Process for Ultrasonic Consolidation of Metallic Composites

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: A12aT004

    The overall objective of the proposed effort is to develop an improved ultrasonic consolidation process for metal matrix composites (MMCs). This will be done through the development and validation of multiscale models of the bonding process and the laminated structures produced. These models will facilitate the optimization of the in-coming material, the structural performance of the processed m ...

    STTR Phase I 2012 Department of DefenseArmy
  5. Auxetic Fabric Technology Development for Military Protective Clothing

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: N12AT012

    The United States Navy has identified the need to investigate the use of auxetic fabric for military personnel protective clothing including jackets, shirts, pants, helmets, boots, gloves, and even body armor. Auxetic fabric technology has a unique feature in that it exhibits a negative Poisson"s ratio effect when subjected to an axial load. Auxetic fabric consists of an elastomeric core yarn ...

    STTR Phase I 2012 Department of DefenseNavy
  6. Development of Multi-layer Aluminum Alloys for Armor

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: A09AT010

    The proposed STTR Phase II study is aimed at exploring lightweight and multi-layer materials towards enhancing their armor performance. Different Al alloys will be assembled into a multi-layer configuration with good metallic bond between inter-layers. 2139-T8 Al alloy evolved by efforts of Alcan and the Army Research Laboratory will be selected as one of the layers in the laminated assembly. Othe ...

    STTR Phase II 2011 Department of DefenseArmy
  7. Nonlinear Interaction of Impulsive Acoustic/Hydrodynamic Sources and Natural Ocean Inhomogeneities

    SBC: Radio-Hydro-Physics LLC            Topic: N09T002

    This program will encompass two main thrusts: First, development of numerical methods for calculation of the scattering from random surfaces which does not use any approximate analytical solutions. This method is suitable for calculations of the radar back scattering for a wide range of grazing angles, including low grazing angles. Second, development of data assimilation techniques for incorporat ...

    STTR Phase II 2010 Department of DefenseNavy
  8. Nonlinear Interaction of Impulsive Acoustic/Hydrodynamic Sources and Natural Ocean Inhomogeneities

    SBC: Radio-Hydro-Physics LLC            Topic: N09T002

    Scattering models have been developed during previous efforts, improving understanding of radar and optical signatures which may be anticipated under varying conditions and viewing geometries. Those models are extended here to the domain of impulsive, nonlinear interactions between acoustics and hydrodynamics, with attention to E-M field influences and the impact of a moving underwater object on ...

    STTR Phase I 2009 Department of DefenseNavy
  9. Development of Multi-layer Aluminum Alloys for Armor

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: A09AT010

    The proposed STTR Phase I study is aimed at exploring lightweight and multi-layer materials towards enhancing their armor performance. Different Al alloys will be assembled into a two-layer configuration with good metallic bond between inter-layers. 2139-T8 Al alloy evolved by efforts of Alcan and the Army Research Laboratory will be selected as one of the layers in the laminated assembly. 5083, 7 ...

    STTR Phase I 2009 Department of DefenseDefense Advanced Research Projects Agency
  10. STTR Phase I: Software-Based Liveness to Prevent Spoofing Fingerprint Biometric Scanners

    SBC: NexID Biometrics, LLC            Topic: EO

    This Small Business Technology Transfer Phase I research project is the development of liveness confirmation for fingerprint systems to reduce vulnerability to spoofing. Biometrics systems, authentication through physiologic characteristics such as fingerprints, have been suggested to improve security while increasing convenience. One limitation is that it can be 'stolen' and replicated to achieve ...

    STTR Phase I 2008 National Science Foundation

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