SBIR-STTR Award

Development of Next-Generation Composite Flywheel Design for Shock and Vibration Tolerant, High Density Rotating Energy Storage
Award last edited on: 5/1/2019

Sponsored Program
STTR
Awarding Agency
DOD : Navy
Total Award Amount
$79,999
Award Phase
1
Solicitation Topic Code
N13A-T022
Principal Investigator
Michael McAleenan

Company Information

KaZak Technologies Inc

P0 Box 198 44 Indian Point Road
Georgetown, ME 04548
   (207) 371-2568
   N/A
   www.kazaktechnologies.com

Research Institution

University of Maine

Phase I

Contract Number: N00014-13-P-1203
Start Date: 7/1/2013    Completed: 4/30/2014
Phase I year
2013
Phase I Amount
$79,999
KaZaK Technologies and our program subcontractors and technical associates our proposing several concepts to significantly increase rim rotational velocity and increase storage energy density/ unit as identified by the Navy as a pre-requisite for shipboard integration of flywheel energy stowage systems. These systems have the potential to reduce drain on ship electrical systems and to provide access to an almost instantaneous supply of electrical energy. Incorporating such storage systems into next generation integrated power systems has potential to meet peak high power electrical demands and support shipboard integration of next generation high electric power technologies without compromising ship electrical systems, thermal signature and RCS. During Phase I, our team will develop rim designs and predict performance via finite element analysis, test coupon fabrication and testing emphasizing material and geometric optimization for low cost, high quality manufacturing automation. If awarded a Phase II, our team will work to apply Phase I materials, configurations and automated manufacturing technology to the fabrication of hardware for prototypes sea trials.

Keywords:
Ships, Ships, Manufacturing Automation, Corrosion Resistant, Grade A Shock, Robust Structure, Flywheel Energy Systems, Kinetic Energy Stowage, Modular Design

Phase II

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Start Date: 00/00/00    Completed: 00/00/00
Phase II year
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Phase II Amount
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