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Rapid Assembly of Durable Composite Radome Panels Using Low-Cost Snap-Lock Connection Technology

Awardee

EBERT COMPOSITES CORPORATION

651 ANITA ST STE B8
CHULA VISTA, CA, 91911-4659
USA

Award Year: 2010

UEI: RBMKLFLCH6M8

HUBZone Owned: No

Woman Owned: No

Socially and Economically Disadvantaged: No

Congressional District: 51

Tagged as:

SBIR

Phase I

Seal of the Agency: DOD

Awarding Agency

DOD

Branch: USAF

Total Award Amount: $99,996

Contract Number: FA8222-10-C-0006

Agency Tracking Number: F093-200-1349

Solicitation Topic Code: AF093-200

Solicitation Number: 2009.3

Abstract

Ebert Composites Corporation proposes to develop for the Air Force a new type of “snap-lock” connection for composite radome sandwich panels. This will leverage Ebert’s rich history of finding alternative fastening methods in joining composites. Traditional joining means of either mechanical fasteners, or adhesives, or both, may not provide the optimum connection for thin walled sandwich panels. A 100% composite edge-joint is projected to be designed, meeting all objectives in the Phase I solicitation. Additionally, an innovative solution will be sought to interface composites to concrete without the typically alkali-attack one would anticipate. BENEFIT: The development of a 100% composite snap-together joint for the use in land-based radomes will be commercialized through use in US Air Force radar applications worldwide. Benefits include a lower installation cost, less maintenance, less RF interference, and a longer lasting radome. Further commercialization would use technology developed through this R&D program in atmospheric radomes used by the NOAA and overseas governments.

Award Schedule

  1. 2009
    Solicitation Year

  2. 2010
    Award Year

  3. May 13, 2010
    Award Start Date

  4. February 12, 2011
    Award End Date

Principal Investigator

Name: David Johnson
Phone: (619) 423-9360
Email: davidj@ebertcomposites.com

Business Contact

Name: David Johnson
Phone: (619) 423-9360
Email: davidj@ebertcomposites.com

Research Institution

Name: N/A