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Fabrication and Evaluation of Graphite Fiber-Reinforced Polyimide Composite Tube Forms Using Modified Resin Transfer MoldingThe techniques necessary for the fabrication of a complex three-dimensional tubular form using a PMR-type resin have been developed to allow for the construction of several tubes with good physical and mechanical properties. Employing established resin transfer molding practices, the relatively non-hazardous AMB-21 in acetone formulation was used to successfully impregnate four layers of AS4 braided graphite fiber preform previously loaded around an aluminum cylindrical core in an enclosed mold cavity. Using heat and vacuum, the solvent was evaporated to form a prepreg followed by a partial imidization and removal of condensation products. The aluminum core was replaced by a silicone rubber bladder and the cure cycle continued to the final stage of 550 F with a bladder internal pressure of 200 lbs/sq in while simultaneously applying a strong vacuum to the prepreg for removal of any additional imidization products. A combination of several modifications to the standard resin transfer molding methodology enabled the mold to 'breathe', allowing the imidization products a pathway for escape. AMB-21 resin was chosen because of the carcinogenic nature of the primary commercial polyimide PMR-15. The AMB-21 resin was formulated using commercially available monomers or monomer precursors and dissolved in a mixture of methyl alcohol and acetone. The viscosity of the resulting monomer solution was checked by use of a Brookfield rheometer and adjusted by adding acetone to an easily pumpable viscosity of about 600 cP. In addition, several types of chromatographic and thermal analyses were of the braids, and excess handling of the preforms broke some of the microscopic fibers, needlessly decreasing the strength of the finished part. In addition, three dimensional braided preforms with fibers along the length of the tube will be significantly stronger in tension than the braided preforms used in this study.
Document ID
19970041495
Acquisition Source
Langley Research Center
Document Type
Thesis/Dissertation
Authors
Exum, Daniel B.
(North Carolina Agricultural and Technical State Univ. Greensboro, NC United States)
Ilias, S.
(North Carolina Agricultural and Technical State Univ. Greensboro, NC United States)
Avva, V. S.
(North Carolina Agricultural and Technical State Univ. Greensboro, NC United States)
Sadler, Bob
(North Carolina Agricultural and Technical State Univ. Greensboro, NC United States)
Date Acquired
September 6, 2013
Publication Date
June 1, 1997
Subject Category
Composite Materials
Report/Patent Number
NASA/CR-97-112559
NAS 1.26:112559
Report Number: NASA/CR-97-112559
Report Number: NAS 1.26:112559
Accession Number
97N32574
Funding Number(s)
CONTRACT_GRANT: NAG3-1452
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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