An advanced development program to demonstrate carbon-carbon composite structure for use as primary load carrying structure has entered the experimental validation phase. The component being evaluated is a wing torque box section for a single-stage-to-orbit (SSTO) vehicle. The validation or demonstration component features an advanced carbon-carbon design incorporating 3D woven graphite preforms, integral spars, oxidation inhibited matrix, chemical vapor deposited (CVD) oxidation protection coating, and ceramic matrix composite fasteners. The validation component represents the culmination of a four phase design and fabrication development effort. Extensive developmental testing was performed to verify material properties and integrity of basic design features before committing to fabrication of the full scale box. The wing box component is now being set up for testing in the Air Force Research Laboratory Structural Test Facility at Wright-Patterson Air Force Base, Ohio. One of the important developmental tests performed in support of the design and planned testing of the full scale box was the fabrication and test of a skin/spar trial subcomponent. The trial subcomponent incorporated critical features of the full scale wing box design. This paper discusses the results of the trial subcomponent test which served as a pathfinder for the upcoming full scale box test.
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15 January 1998
Space technology and applications international forum - 1998
Jan 1998
Albuquerque,New Mexico (USA)
Research Article|
January 15 1998
Thermo-mechanical evaluation of carbon-carbon primary structure for SSTO vehicles Available to Purchase
Harold C. Croop;
Harold C. Croop
Air Force Research Laboratory, Air Vehicles Directorate Structures Division, 2790 D Street, Bldg 65, Wright-Patterson AFB, Ohio 45433-7402
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Holland B. Lowndes, III;
Holland B. Lowndes, III
Air Force Research Laboratory, Air Vehicles Directorate Structures Division, 2790 D Street, Bldg 65, Wright-Patterson AFB, Ohio 45433-7402
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Steven E. Hahn;
Steven E. Hahn
The Boeing Company, Information, Space & Defense Systems, Mail Stop 82-97, PO Box 3999, Seattle, Washington 98124-2499
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Chris A. Barthel
Chris A. Barthel
The Boeing Company, Information, Space & Defense Systems, Mail Stop 82-97, PO Box 3999, Seattle, Washington 98124-2499
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Harold C. Croop
Air Force Research Laboratory, Air Vehicles Directorate Structures Division, 2790 D Street, Bldg 65, Wright-Patterson AFB, Ohio 45433-7402
Holland B. Lowndes, III
Air Force Research Laboratory, Air Vehicles Directorate Structures Division, 2790 D Street, Bldg 65, Wright-Patterson AFB, Ohio 45433-7402
Steven E. Hahn
The Boeing Company, Information, Space & Defense Systems, Mail Stop 82-97, PO Box 3999, Seattle, Washington 98124-2499
Chris A. Barthel
The Boeing Company, Information, Space & Defense Systems, Mail Stop 82-97, PO Box 3999, Seattle, Washington 98124-2499
AIP Conf. Proc. 420, 1020–1026 (1998)
Citation
Harold C. Croop, Holland B. Lowndes, Steven E. Hahn, Chris A. Barthel; Thermo-mechanical evaluation of carbon-carbon primary structure for SSTO vehicles. AIP Conf. Proc. 15 January 1998; 420 (1): 1020–1026. https://doi.org/10.1063/1.54713
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