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High hydrogen gas barrier performance of carbon fiber reinforced plastic with non-metallic crystal layer

  • Koichi Yonemoto
  • , Yuta Yamamoto
  • , Takeo Ebina
  • , Keiichi Okuyama

Research output: Contribution to journalConference articlepeer-review

Abstract

In the future, carbon fiber reinforced plastics (CFRPs) with high hydrogen gas barrier performance will find wide applications in all industrial hydrogen tanks that aim at weight reduction; the use of such materials will be preferred to the use of conventional metallic materials such as stainless steel or aluminum. In modern aircraft, CFRP has become the major material used in the manufacture of the primary structure. The hydrogen gas barrier performance of CFRP will become an important issue with the introduction of hydrogen-fuel aircraft. It will also play an important role in realizing fully reusable space transportation system that will have high specific tensile CFRP structures. Such materials are also required for the manufacture of high-pressure hydrogen gas vessels for use in the fuel cell systems of automobiles. This paper proposes a new composite concept that can be used to realize CFRPs with high hydrogen gas barrier performance for applications in the cryogenic tanks of fully reusable space transportation system by the incorporation of a nonmetallic crystal layer, which is actually a dense and highly oriented clay crystal laminate. The preliminary test results show that the hydrogen gas barrier characteristics of this material are better than those of other polymer materials by approximately two orders of magnitude.

Original languageEnglish
JournalInternational SAMPE Symposium and Exhibition (Proceedings)
Volume52
Publication statusPublished - 18 Dec 2008
EventSAMPE 2008 - 52nd International SAMPE Symposium - Material and Process Innovations: Changing our World - Long Beach, CA, United States
Duration: 18 May 200822 May 2008

Keywords

  • Carbon fiber composites
  • Materials - Clay

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