In recent years, a use for cryogenic fluids as a coolant has been increasing because of the industrial development of low temperature technology. Therefore, the use of the cryogenic pressure vessel becomes general. LNG-tank, LN2, O2-tank at food factory and medical facilities are given for example. The shock tolerance of the various material under cryogenic temperature region that consist cryogenic pressure vessel is necessary with considering about them safety. The fact that material becomes fragile when it becomes a low temperature has already been known. Property of material in the temperature area of −200°C and under aren’t known very much. Therefore, we carried out experiments, which test piece are exposed to shock wave under cryogenic temperature region, and investigated destruction of test piece. The breaking surface of test piece was observed by using of the SEM. Structure of material was observed by an optical microscope.
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ASME 2003 Pressure Vessels and Piping Conference
July 20–24, 2003
Cleveland, Ohio, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
0-7918-4151-0
PROCEEDINGS PAPER
Basic Study for Destruction of Cryogenic Pressure Vessel By Shock Wave Available to Purchase
Toshiaki Watanabe,
Toshiaki Watanabe
National Fisheries University, Shimonoseki City, Japan
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Shigeru Itoh,
Shigeru Itoh
Kumamoto University, Kumamoto City, Kumamoto, Japan
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Toru Hamada,
Toru Hamada
Kumamoto University, Kumamoto City, Kumamoto, Japan
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Kazuyuki Hokamoto
Kazuyuki Hokamoto
Kumamoto University, Kumamoto City, Kumamoto, Japan
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Toshiaki Watanabe
National Fisheries University, Shimonoseki City, Japan
Shigeru Itoh
Kumamoto University, Kumamoto City, Kumamoto, Japan
Toru Hamada
Kumamoto University, Kumamoto City, Kumamoto, Japan
Kazuyuki Hokamoto
Kumamoto University, Kumamoto City, Kumamoto, Japan
Paper No:
PVP2003-1959, pp. 155-160; 6 pages
Published Online:
August 13, 2008
Citation
Watanabe, T, Itoh, S, Hamada, T, & Hokamoto, K. "Basic Study for Destruction of Cryogenic Pressure Vessel By Shock Wave." Proceedings of the ASME 2003 Pressure Vessels and Piping Conference. Emerging Technology in Fluids, Structures, and Fluid Structure Interactions. Cleveland, Ohio, USA. July 20–24, 2003. pp. 155-160. ASME. https://doi.org/10.1115/PVP2003-1959
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