ATS-MER, LLC

Company Information
Address 7960 S Kolb Rd
Tucson, AZ, 85756-9237

http://www.atsmer.com

Information

DUNS: 147518286

# of Employees: 36


Ownership Information

HUBZone Owned: N

Socially and Economically Disadvantaged: N

Woman Owned: N



Award Charts




Award Listing

  1. SiC-SiC Slurry Bonding

    Amount: $155,000.00

    SiC is an excellent material for fusion reactor environments, including first wall plasma facing materials and breeder-blanket modules. It is also being considered as structural elements in Small Modu ...

    SBIRPhase I2017Department of Energy
  2. Reduced Activity Complex Concentrated Alloys for Generation IV Reactor Systems

    Amount: $154,998.00

    High-temperature and radiation resistant complex concentrated alloys will be developed for Generation IV nuclear reactor systems. These low activity alloys with high creep strength, good weldability, ...

    STTRPhase I2017Department of Energy
  3. Solid State Non-powder Process for Boron Nitride Nanotube Metal Matrix Composite

    Amount: $124,860.00

    Boron nitride nanotube (BNNT) reinforced metal matrix composites (MMCs) provide potential for advanced lightweight high stiffness structures that are critical for virtually all NASA space missions. St ...

    SBIRPhase I2017National Aeronautics and Space Administration
  4. Inducing Known, Controlled Flaws in Electron Beam Wire Fed Additive Manufactured Material for the Purpose of Creating Non-Destructive Inspection Stand

    Amount: $999,999.00

    Several military platforms are beginning qualification of fusion additive manufacturing such as e-beam of Ti-6Al-4V and other titanium alloys for production of new, replacement and repaired components ...

    SBIRPhase II2017Department of Defense Navy
  5. Inducing Known, Controlled Flaws in Electron Beam Wire Fed Additive Manufactured Material for the Purpose of Creating Non-Destructive Inspection Stand

    Amount: $149,994.00

    To induce controlled defects in wire feed E-Beam additive manufacturing for making NDT standards, MER will work with Applied Optimization (AO) to develop a Physics based ICMSE based process model of d ...

    SBIRPhase I2016Department of Defense Navy
  6. Long Lifetime, Improved Performance Ceramic Aircraft Brakes

    Amount: $99,993.40

    This Small Business Innovation Research Phase I project addresses the need for lighter weight brake materials that will allow for longer lifetimes with improved performance. Certain ceramic material ...

    SBIRPhase I2016Department of Defense Defense Logistics Agency
  7. FRICTION STIR ADDITIVE MANUFACTURING OF TITANIUM ALLOYS FOR HIGH PERFORMANCE MILITARY APPLICATIONS

    Amount: $149,994.00

    Friction stir additive manufacturing (FSAM) will be utilized for repair, fabrication and processing of Titanium components and sub-assemblies for high performance military applications. The innovation ...

    STTRPhase I2016Department of Defense Army
  8. A NON-MELT WELDING PROCESS TO REPAIR TITANIUM BLADES OF IBDS

    Amount: $149,985.00

    ABSTRACT: Integrally bladed disks (IBDs) are extremely expensive componentry used in military turbine engines which receive foreign object damage to which there is not a proven certifiable repair proc ...

    SBIRPhase I2016Department of Defense Air Force
  9. Alternate Additive Manufacturing to Produce and/or Join Nuclear Quality Components

    Amount: $150,000.00

    Advanced fabrication and manufacturing methods like additive manufacturing that can produce nuclear quality components are required for the success of the Small Modular Reactor SMR). Most typical AM ...

    STTRPhase I2015Department of Energy
  10. Alternative Additive Manufacturing to Produce Fossil Energy Critical Systems

    Amount: $150,000.00

    Fossil fuels FE) are projected to remain the mainstay of energy consumption and energy generation well into the next century. New technologies including advanced material manufacturing must be devel ...

    STTRPhase I2015Department of Energy

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