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  • A methodology for non-destructive evaluation of the fatigue crack growth behaviour by acoustic emission and potential drop technique has been proposed. A nuclear Cr–Ni–Mo–V ferritic steel, known as GOST 15Ch(Kh)2NMFA, has been chosen for this study. This material is used for the production of a key component of a nuclear power plant - reactor pressure vessel type VVER-1000. The serviceability of pressure vessels and piping is determined by the mechanical properties of the steels being used and, in particular, by the cyclic crack resistance of the base metal and its welded joints. Therefore, the main goal of this work is to propose a suitable methodology to predict a fatigue crack growth behaviour and to simulate the material behaviour during pressure test using non-destructive techniques. The acoustic emission monitoring has been used, together with electric potential difference measurements for monitoring crack growth, to correlate the signal parameters (such as the acoustic emission counts, ev
  • A methodology for non-destructive evaluation of the fatigue crack growth behaviour by acoustic emission and potential drop technique has been proposed. A nuclear Cr–Ni–Mo–V ferritic steel, known as GOST 15Ch(Kh)2NMFA, has been chosen for this study. This material is used for the production of a key component of a nuclear power plant - reactor pressure vessel type VVER-1000. The serviceability of pressure vessels and piping is determined by the mechanical properties of the steels being used and, in particular, by the cyclic crack resistance of the base metal and its welded joints. Therefore, the main goal of this work is to propose a suitable methodology to predict a fatigue crack growth behaviour and to simulate the material behaviour during pressure test using non-destructive techniques. The acoustic emission monitoring has been used, together with electric potential difference measurements for monitoring crack growth, to correlate the signal parameters (such as the acoustic emission counts, ev (en)
Title
  • Utilization of Non-Destructive Methods for Monitoring Fatigue Crack Growth in Power Plant Material
  • Utilization of Non-Destructive Methods for Monitoring Fatigue Crack Growth in Power Plant Material (en)
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  • Utilization of Non-Destructive Methods for Monitoring Fatigue Crack Growth in Power Plant Material
  • Utilization of Non-Destructive Methods for Monitoring Fatigue Crack Growth in Power Plant Material (en)
skos:notation
  • RIV/00216305:26210/14:PU110817!RIV15-MSM-26210___
http://linked.open...avai/riv/aktivita
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  • P(LO1202)
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  • 52628
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  • RIV/00216305:26210/14:PU110817
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  • acoustic emission, potential drop, fatigue crack growth, power plant material (en)
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  • [B0B552B176CD]
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  • Praha
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  • Praha
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  • XIth European Conference on NDT - Conference proceedings
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  • Vlašic, František
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  • Vysoké učení technické v Brně
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  • 978-80-214-5018-9
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  • 26210
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