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Low-Risk Approach to High-Payoff Ultra-High Temperature Ceramic Matrix Composites

Awardee

ADVANCED CERAMIC FIBERS, L.L.C.

4323 Commerce Cir Ste A
Idaho Falls, ID, 83401-1207
USA

Award Year: 2020

UEI: WE9NMNL1ZNB6

HUBZone Owned: No

Woman Owned: No

Socially and Economically Disadvantaged: No

Congressional District: 2

Tagged as:

SBIR

Phase I

Seal of the Agency: NASA

Awarding Agency

NASA

Total Award Amount: $124,884

Contract Number: 80NSSC20C0335

Agency Tracking Number: 205147

Solicitation Topic Code: Z10

Solicitation Number: SBIR_20_P1

Abstract

As governments and commercial entities compete for opportunities to travel to Mars and throughout deep space, the need for more efficient engines, reduced launch weight and increased payload capacities are constantly being developed. NASA is re-engaging its interest in Nuclear Thermal Propulsion because of its promise to double the efficiencies of competing engine types and fuels including higher energy density, greater thrust, reduced weight and increased velocities. In order to achieve these benefits, the proposed Nuclear engines need to run at temperatures exceeding 2700 degrees Kelvin, which necessitates the use of fuel rods to contain and manage the flow of hydrogen being utilized as a propellant. Until recently, the available materials lacked the performance properties necessary for the utilization of Nuclear engines.Utilizing novel fibers, matrices and fabrication methods, the Offeror proposes the development of a new type of ceramic matrix composite specifically designed to meet the specifications and performance properties required for long-term use in Nuclear Thermal Propulsion engines. The Offeror#39;s proposed fuel rod and/or cladding will exhibit revolutionary refractory capabilities, reduced hydrogen permeability, radiation tolerance, low creep, high thermal and mechanical stability, retention of fission products and improved manufacturability. The potential advantages of Nuclear Thermal Propulsion can now be realized through the development of novel materials and advanced manufacturing processes by a U.S. supplier. nbsp;

Award Schedule

  1. 2020
    Solicitation Year

  2. 2020
    Award Year

  3. August 27, 2020
    Award Start Date

  4. March 1, 2021
    Award End Date

Principal Investigator

Name: John Garnier
Phone: (208) 881-4746
Email: jgarnier@acfibers.com

Business Contact

Name: Shawn Perkins
Phone: (208) 522-6008
Email: sperkins@acfibers.com

Research Institution

Name: N/A