Award

Portfolio Data

Icon: back arrowBack to Award Search

Negative Thermal Expansion ALLVAR Alloys for High Temperatures

Awardee

Thermal Expansion Solutions, Inc.

501 Graham Rd
College Station, TX, 77845-9662
USA

Award Year: 2020

UEI: JDMKJN2L1G17

HUBZone Owned: No

Woman Owned: No

Socially and Economically Disadvantaged: No

Congressional District: 17

Tagged as:

SBIR

Phase I

Seal of the Agency: NASA

Awarding Agency

NASA

Total Award Amount: $124,946

Contract Number: 80NSSC20C0458

Agency Tracking Number: 206638

Solicitation Topic Code: S1

Solicitation Number: SBIR_20_P1

Abstract

This NASA SBIR Phase I project will develop high temperature ALLVAR Alloys to improve the reliability of structures and sensors necessary for NASArsquo;s future planetary body exploration. Different thermal expansion mismatch between materials and components can push sensors out of specification and reduce sensor life after thermal cycling potentially leading to to mission failure. Negative thermal expansion ALLVAR Alloys can compensate for the thermal expansion mismatch between components by shrinking when heated and expanding when cooled; the opposite of other materials. Commercially available ALLVAR Alloy 30 is ideal for athermalizing infrared optics, telescope assemblies, and mechanical fasteners, but it is currently limited to applications below 100 degrees Celsius. New alloy development is necessary to push the maximum operating temperature of ALLVAR Alloys to the higher temperatures experienced on the Moon and Venus. The Phase I development will identify alloys and produce a new cost effective negative thermal expansion alloy for these high temperature environments. A follow-on Phase II will scale manufacturing processes and explore specific sensor athermalizing applications such as metering structures for optics or washers for constant force fasteners.

Award Schedule

  1. 2020
    Solicitation Year

  2. 2020
    Award Year

  3. August 12, 2020
    Award Start Date

  4. March 1, 2021
    Award End Date

Principal Investigator

Name: James Monroe
Phone: (956) 789-3723
Email: jamesamonroe@allvaralloys.com

Business Contact

Name: James Monroe
Phone: (956) 789-3723
Email: jamesamonroe@allvaralloys.com

Research Institution

Name: N/A