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Award Data
The Award database is continually updated throughout the year. As a result, data for FY22 is not expected to be complete until September, 2023.
Download all SBIR.gov award data either with award abstracts (290MB)
or without award abstracts (65MB).
A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.
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Advanced Materials for the Design of Lightweight JP5/JP8/DS2 Fueled Engines for Unmanned Aerial Vehicles (UAVs)
SBC: Northwest Uld, Inc. Topic: N10AT001Northwest UAV Propulsion Systems proposes using our purpose built heavy fuel engine designed and built in the USA for small unmanned aerial systems in the tier 2 & 3 class. We will be adding a lightweight ceramic material set combined with FEA (Finite Element Analysis) and heavy fuel atomizer (IRAD Project) to create a lightweight engine for a SUAS or STUAS class UAVs. The Ceramic material set is ...
STTR Phase I 2010 Department of DefenseNavy -
Dynamic Physical/Data-Driven Models for System-Level Prognostics and Health Management
SBC: QUALTECH SYSTEMS INC Topic: N10AT009The proposed effort leverages the capabilities of data-driven and physics of failure (PoF) based prognostic techniques for electronic systems by combining them within a hybrid approach. Data-driven and PoF-based techniques both have shortcomings; combining them into a hybrid framework allows using their capabilities in a complementary fashion, and thereby providing a reliable way of prognostics an ...
STTR Phase I 2010 Department of DefenseNavy -
Development of Surface Reaction Mechanism for C-SiC-SiO2-Rubber Composite Oxidation in Extreme Oxidizing Condition
SBC: CFD RESEARCH CORPORATION Topic: N10AT005The purpose of this STTR is to develop comprehensive detailed kinetics for oxidation of C-SiC-SiO2-rubber in extreme oxidizing environment. This material is used as a coating on the outer surface of Navy weapon systems. In order to predict the fate of this material under extreme conditions and mitigate the degradation of the coating, a comprehensive oxidation mechanism is required. In Phase I, CFD ...
STTR Phase I 2010 Department of DefenseNavy -
Laser Induced Surface Improvement for Superior Wear Resistance in Extreme Conditions
SBC: CFD RESEARCH CORPORATION Topic: AF09BT19The objective of this Phase I project is to evaluate the use of novel Laser Induced Surface Improvement (LISI) techniques to provide surface modification to substrate materials which will provide superior wear resistance in extreme conditions. The specific application of interest is the hypersonic metal-to-metal contact that occurs at high speed test track facilities that can and has lead to catas ...
STTR Phase I 2010 Department of DefenseAir Force -
Aerosol Jet Printing of Single-Wall Carbon Nanotube Transistors on Plastic Substrate
SBC: OPTOMEC, INC. Topic: AF09BT26Aerosol Jet printing is proposed as a method for printing large area, CNT-based transistor arrays on flexible substrate. The teaming relationship combines expertise in high resolution printing along with device and materials expertise. All semiconductor, dielectric, and conductive materials comprising the TFTs will be solution processed and printed with a single machine. This will lead to a cos ...
STTR Phase I 2010 Department of DefenseAir Force -
Advanced Computational Methods for Study of Electromagnetic Compatibility
SBC: MATHEMATICAL SYSTEMS & SOLUTIONS INC Topic: AF09BT13The present text proposes development of efficient, accurate and rapidly-convergent algorithms for the simulation of propagation and scattering of electromagnetic fields within and around structures that (i) Consist of complex combinations of penetrable materials as well as perfect and imperfect conductors, and, (ii) Possess complex geometrical characteristics, including open surfaces, metallic c ...
STTR Phase I 2010 Department of DefenseAir Force -
Sustainable Materials for Thermal Management of Base Camps
SBC: HI-Z TECHNOLOGY, INC. Topic: A10AT024Hi-Z Technology, Inc. (Hi-Z) and the University of California San Diego propose to adapt Hi-Z’s innovative Quantum Well (QW) thermoelectric (TE) technology to develop a TE cooler for the Army’s base camp tents. The cooler is to be embedded in the flexible tent materials and powered by electricity generated by photovoltaics. Hi-Z has developed nanocomposite QW TE materials that have high Figur ...
STTR Phase I 2010 Department of DefenseArmy -
Ultra Fine Grain Steel Alloys by Severe Plastic Deformation
SBC: TRANSITION45 TECHNOLOGIES INC Topic: A10AT001This STTR program proposes to exploit the tremendous benefits that could be offered by the development of ultra fine grain steel alloys for application to the production of high performance components for military rotorcraft applications. A severe plastic deformation technology based on isothermal forging technologies will be explored here. The goal is to demonstrate a practical, production leve ...
STTR Phase I 2010 Department of DefenseArmy -
Innovative Combat Simulation to Craft Tomorrow’s UAV Operational Doctrine
SBC: HPS Simulations Topic: AF09BT31Existing computer combat wargames offer a sophisticated and high fidelity base platform for accurately modeling standard combat scenarios. However, the rapid development of UAV capabilities in terms of sizes, weapons, sensors, communications and flight ability is presenting a new challenge for these simulations. At the same time, the general state of world affairs is changing such that the likeli ...
STTR Phase I 2010 Department of DefenseAir Force -
Innovative Combat Simulation to Craft Tomorrow’s UAV Operational Doctrine
SBC: John Tiller Software, Inc Topic: AF09BT31This proposal is for the use of state-of-the-art computer wargames to be used in the research on the impact and optimal use of unmanned aerial vehicles (UAVs) in realistic combat scenarios. High fidelity, historically calibrated wargames ranging from sub-tactical ground-centric game engines through operational, strategic, air campaign, and naval-centric game engines will be used to address the fu ...
STTR Phase I 2010 Department of DefenseAir Force