レーザーラマン分光およびFT赤外分光によりモニターしたKevlar/UPモデルコンポジット界面の水環境劣化過程

書誌事項

タイトル別名
  • Interfacial Degradation Process in a Kevlar/UP Model Composite in Water Environment Monitored by Laser Raman and FT-Infrared Microspectroscopy
  • レーザーラマン分光およびFT赤外分光によリモニターしたKevlar/UPモデルコンポジット界面の水環境劣化過程
  • レーザーラマン ブンコウ オヨビ FT セキガイ ブンコウ ニ ヨリモニターシタ Kevlar / UP モデル コンポジット カイメン ノ ミズ カンキョウ レッカ カテイ

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説明

The laser Raman and the FT-infrared microspectroscopic analyses were applied to evaluate the interfacial degradation behavior in a model composite of aramid fiber (Kevlar49) and unsaturated polyester (UP) in water at 30 and 90℃. The residual tensile stress, which was preliminarily introduced into the embedded fiber by removing the static tension after curing the specimen, was measured by the laser Raman technique. The progress of interfacial degradation was monitored from the variation in the residual stress. The quantity and the structure of absorbed water in the matrix very near the interface were analysed by the infrared spectra for the thin film speciemn, in which the fiber was not subjected to pre-tension during the cure. The residual tensile stress in the fiber was monotonously decreased in hot water at 90℃, although the stress reduction at early stage was mainly caused by the relaxation of elastic modulus of matrix resin. In water at 30℃ the residual stress remained the initial value for long time above 1000h. At early stage of immersion the isolated water was mainly observed, and then the amount of clustered water was increased with increasing time, particularly at 90℃. It remains to be elucidated which type of water more strongly contributes to the interfacial degradation.

収録刊行物

  • 材料システム

    材料システム 17 (0), 55-61, 1998

    学校法人 金沢工業大学 材料システム研究所

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