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タイトルProcessing and Properties of a Phenolic Composite System
本文(外部サイト)http://hdl.handle.net/2060/20080014267
著者(英)Baughman, James M.; Bai, J. M.; Hou, Tan-Hung
著者所属(英)NASA Langley Research Center
発行日2006-01-01
言語eng
内容記述Phenolic resin systems generate water as a reaction by-product via condensation reactions during curing at elevated temperatures. In the fabrication of fiber reinforced phenolic resin matrix composites, volatile management is crucial in producing void-free quality laminates. A commercial vacuum-bag moldable phenolic prepreg system was selected for this study. The traditional single-vacuum-bag (SVB) process was unable to manage the volatiles effectively, resulting in inferior voidy laminates. However, a double vacuum bag (DVB) process was shown to afford superior volatile management and consistently yielded void-free quality parts. The DVB process cure cycle (temperature /pressure profiles) for the selected composite system was designed, with the vacuum pressure application point carefully selected, to avoid excessive resin squeeze-outs and achieve the net shape and target resin content in the final consolidated laminate parts. Laminate consolidation quality was characterized by optical photomicrography for the cross sections and measurements of mechanical properties. A 40% increase in short beam shear strength, 30% greater flexural strength, 10% higher tensile and 18% higher compression strengths were obtained in composite laminates fabricated by the DVB process.
NASA分類Composite Materials
レポートNOLAR-16877-1
権利Copyright, Distribution as joint owner in the copyright


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