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RESODYN CORPORATION

Company Information
Address
130 N MAIN ST STE 600
BUTTE, MT 59701-9314
United States


http://www.resodyn.com

Information

UEI: NUT8PKD37ZH3

# of Employees: 26


Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: No

Woman Owned: No




Success Stories

  1. SBIR-STTR-Success: Resodyn, Corp.

    SAFE AND SOUND DEFENSE: Low-frequency, high-intensity acoustic energy mixes a broad range of compoundsWhether it’s mixing pharmaceuticals, nanomaterials, or energetics for Department of Defense applications, the ResonantAcoustic® Mixing (RAM) technology uses sound energy to mix anything...

Award Charts




Award Listing

  1. Fatigue Enhanced Cold-worked Hole FECH – Analyzer

    Amount: $850,000.00

    The U.S. Navy uses a cold-hole expansion method for increasing the fatigue life of primary aircraft structures at fastener locations. The derived benefit results from compressive stresses concentrate ...

    SBIRPhase II2007Department of Defense Navy
  2. SBIR Phase I: ResonantAcoustic Centrifuge for Platelet Concentrate Preparation

    Amount: $100,000.00

    This Small Business Small Business Innovation Research (SBIR) Phase I research project aims to develop an improved method for generating platelet concentrates for transfusion that reduces platelet act ...

    SBIRPhase I2007National Science Foundation
  3. SBIR Phase I: Processing of Low-Permeability Polymer Insulating Foam for Use in Extreme Temperature Applications

    Amount: $100,000.00

    The Small Business Innovation Research (SBIR) Phase I project seeks to develop a welding technology for joining low permeability polymer insulation (LPPI) foams prior to applying a composite overwrap. ...

    SBIRPhase I2007National Science Foundation
  4. SBIR Phase II: Development of a BioAcoustic Mixing Platform

    Amount: $500,000.00

    This Small Business Innovation Research (SBIR) Phase II research project develops a mixer based on sound waves applicable for use in bioreactors for cell culturing and fermentors. Cell culturing and f ...

    SBIRPhase II2007National Science Foundation
  5. SBIR Phase II: Powder-Powder Mixing and Powder-Liquid Mixing by a Novel High-Intensity Vibrational Mixer

    Amount: $422,987.00

    This Small Business Innovation Research (SBIR) Phase II project will enable the development of a high intensity, low frequency resonant-acoustic mixer for industrial uses, focusing on the incorporatio ...

    SBIRPhase II2006National Science Foundation
  6. SBIR Phase I: Synthesis of New Ionomer Resins Based on Polycyclopentadiene Monomers

    Amount: $100,000.00

    This Small Business Innovation Research (SBIR) Phase I project focuses on the synthesis of a novel set of proprietary ionomeric polymeric materials. Through the use of established techniques (Ring Op ...

    SBIRPhase I2006National Science Foundation
  7. A Heliportable Sonic Drilling Platform for Microhole Drilling and Exploration

    Amount: $100,000.00

    The exploration and development of new energy resources in remote and environmentally sensitive areas can benefit greatly from a reduction in the size of the associated equipment and operations. This ...

    SBIRPhase I2006Department of Energy
  8. No-Bake Powder Coating for Shipbuilding Applications

    Amount: $69,999.00

    The U.S. Navy desires a ship painting procedure that produces powder coating quality without the requirement of putting the whole ship in an oven Resodyn Corporation proposes an innovative no-bake po ...

    SBIRPhase I2006Department of Defense Navy
  9. No-Bake Powder Coating

    Amount: $100,000.00

    The U.S. Air Force desires an airplane painting procedure that produces powder coating quality without the requirement of putting the whole plane in an oven. Resodyn Corporation proposes an innovativ ...

    SBIRPhase I2006Department of Defense Air Force
  10. Multimodal Acoustic Mixing Process for Carbon Nanotube Polymer Composites

    Amount: $100,000.00

    79430S Conventional, industrial polymer mixers, such as kneaders and twin screws, do not provide sufficient carbon nanotube dispersion to realize the full potential of nanotube reinforcements in poly ...

    SBIRPhase I2005Department of Energy
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