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Resin Film Infusion (RFI) Process Modeling for Large Transport Aircraft Wing StructuresResin film infusion (RFI) is a cost-effective method for fabricating stiffened aircraft wing structures. The RFI process lends itself to the use of near net shape textile preforms manufactured through a variety of automated textile processes such as knitting and braiding. Often, these advanced fiber architecture preforms have through-the-thickness stitching for improved damage tolerance and delamination resistance. The challenge presently facing RFI is to refine the process to ensure complete infiltration and cure of a geometrically complex shape preform with the high fiber volume fraction needed for structural applications. An accurate measurement of preform permeability is critical for successful modeling of the RFI resin infiltration process. Small changes in the permeability can result in very different infiltration behavior and times. Therefore, it is important to accurately measure the permeabilities of the textile preforms used in the RFI process. The objective of this investigation was to develop test methods that can be used to measure the compaction behavior and permeabilities of high fiber volume fraction, advanced fiber architecture textile preforms. These preforms are often highly compacted due to through-the-thickness stitching used to improve damage tolerance. Test fixtures were designed and fabricated and used to measure both transverse and in-plane permeabilities. The fixtures were used to measure the permeabilities of multiaxial warp knit and triaxial braided preforms at fiber volume fractions from 55% to 65%. In addition, the effects of stitching characteristics, thickness, and batch variability on permeability and compaction behavior were investigated.
Document ID
20000094842
Acquisition Source
Langley Research Center
Document Type
Contractor or Grantee Report
Authors
Knott, Tamara W.
(Virginia Polytechnic Inst. and State Univ. Blacksburg, VA United States)
Loos, Alfred C.
(Virginia Polytechnic Inst. and State Univ. Blacksburg, VA United States)
Date Acquired
September 7, 2013
Publication Date
August 15, 2000
Subject Category
Aircraft Design, Testing And Performance
Funding Number(s)
CONTRACT_GRANT: NAG1-1881
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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