An advanced carbon-carbon structural component is being experimentally evaluated for use as primary load carrying structure for future single-stage-to-orbit (SSTO) vehicles. The component is a wing torque box section featuring an advanced, three-spar design. This design features 3D-woven, angle-interlock skins, 3D integrally woven spar webs and caps, oxidation inhibited matrix, chemical vapor deposited (CVD) oxidation protection coating, and ceramic matrix composite fasteners. The box spar caps are nested into the skins which, when processed together through the carbon-carbon processing cycle, resulted in monolithic box halves. The box half sections were then joined at the spar web intersections using ceramic matrix composite fasteners. This method of fabrication eliminated fasteners through both the upper and lower skins. Development of the carbon-carbon wing box structure was accomplished in a four phase design and fabrication effort, conducted by Boeing, Information, Space and Defense Systems, Seattle, WA, under contract to the Air Force Research Laboratory (AFRL). The box is now set up for testing and will soon begin cyclic loads testing in the AFRL Structural Test Facility at Wright-Patterson Air Force Base (WPAFB), OH. This paper discusses the latest test setup accomplishments and the results of the pre-cyclic loads testing performed to date.
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22 January 1999
Space technology and applications international forum -1999
31 Jan - 4 Feb 1999
Albuquerque, New Mexico (USA)
Research Article|
January 22 1999
Thermo-mechanical cyclic testing of carbon-carbon primary structure for an SSTO vehicle Available to Purchase
Harold C. Croop;
Harold C. Croop
1Air Force Research Laboratory, Air Vehicles Directorate, Structures Division, 2790 D Street Bldg 65, Wright-Patterson AFB, Ohio 45433-7402
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Kenneth B. Leger;
Kenneth B. Leger
1Air 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
1Air 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
2The 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
2The Boeing Company, Information, Space & Defense Systems, Mail Stop 82-97, PO Box 3999, Seattle, Washington 98124-2499
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Harold C. Croop
1
Kenneth B. Leger
1
Holland B. Lowndes, III
1
Steven E. Hahn
2
Chris A. Barthel
2
1Air Force Research Laboratory, Air Vehicles Directorate, Structures Division, 2790 D Street Bldg 65, Wright-Patterson AFB, Ohio 45433-7402
2The Boeing Company, Information, Space & Defense Systems, Mail Stop 82-97, PO Box 3999, Seattle, Washington 98124-2499
AIP Conf. Proc. 458, 1175–1180 (1999)
Citation
Harold C. Croop, Kenneth B. Leger, Holland B. Lowndes, Steven E. Hahn, Chris A. Barthel; Thermo-mechanical cyclic testing of carbon-carbon primary structure for an SSTO vehicle. AIP Conf. Proc. 22 January 1999; 458 (1): 1175–1180. https://doi.org/10.1063/1.57513
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