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  • Experience with operating nuclear power plants worldwide reveals that many failures may be attributed to fatigue associated with mechanical loading due to vibration and with corrosion effect due to exposure to high-temperature environment. In order to clarify the simultaneous influence on reactor pressure vessel (RPV) material testing of ferritic steel 15Ch2MFA used for RPV of WWER 440 was performed at NRI autoclaves. Cyclic and constant loadings were applied to CT specimens in WWER primary water environment at 290°C and simultaneous effect of different oxygen levels (< 20 ppb, 200 ppb, 2000 ppb) on crack propagation has been searched. Obtained crack growth rates are compared with ASME XI Code and VERLIFE curves and crack behaviour is discussed.
  • Experience with operating nuclear power plants worldwide reveals that many failures may be attributed to fatigue associated with mechanical loading due to vibration and with corrosion effect due to exposure to high-temperature environment. In order to clarify the simultaneous influence on reactor pressure vessel (RPV) material testing of ferritic steel 15Ch2MFA used for RPV of WWER 440 was performed at NRI autoclaves. Cyclic and constant loadings were applied to CT specimens in WWER primary water environment at 290°C and simultaneous effect of different oxygen levels (< 20 ppb, 200 ppb, 2000 ppb) on crack propagation has been searched. Obtained crack growth rates are compared with ASME XI Code and VERLIFE curves and crack behaviour is discussed. (en)
Title
  • Over limit oxygen effect on crack propagation of WWER 440 RPV steel in primary circuit water
  • Over limit oxygen effect on crack propagation of WWER 440 RPV steel in primary circuit water (en)
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  • Over limit oxygen effect on crack propagation of WWER 440 RPV steel in primary circuit water
  • Over limit oxygen effect on crack propagation of WWER 440 RPV steel in primary circuit water (en)
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  • RIV/46356088:_____/09:#0000981!RIV11-MSM-46356088
http://linked.open...avai/riv/aktivita
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  • 332367
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  • RIV/46356088:_____/09:#0000981
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  • corrosion fatigue; RPV steel; WWER primary water (en)
http://linked.open.../riv/klicoveSlovo
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  • [566DECE81ABF]
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  • Praha
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  • New York
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  • Proceedings of PVP2009 2009 ASME Pressure Vessels and Piping Division Conference
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  • Hojná, Anna
  • Ernestová, Miroslava
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number of pages
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  • ASME
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  • 978-0-7918-3854-9
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