Failure prediction of full-size reactor components from tensile specimen data on NBG-18 nuclear graphite

•Predicts failure on a full scale reactor component and compare it to experiments.•Shows the effect of volume on NBG-18 nuclear graphite failure prediction.•Provide independent verification of a previously published methodology.•Describe the influence of multiple locations of high stress on failure...

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Veröffentlicht in:Nuclear engineering and design 2015-04, Vol.284, p.1-9
Hauptverfasser: Hindley, Michael P., Blaine, Deborah C., Groenwold, Albert A., Becker, Thorsten H.
Format: Artikel
Sprache:eng
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Zusammenfassung:•Predicts failure on a full scale reactor component and compare it to experiments.•Shows the effect of volume on NBG-18 nuclear graphite failure prediction.•Provide independent verification of a previously published methodology.•Describe the influence of multiple locations of high stress on failure prediction. This paper concerns itself with predicting the failure of a full-size NBG-18 nuclear graphite reactor component based only on test data obtained from standard tensile test specimens. A full-size specimen structural test was developed to simulate the same failure conditions expected during a normal operation of the reactor in order to validate the failure prediction. The full-size specimen designed for this test is almost a hundred times larger than the tensile test specimen, has a completely different geometry and experiences a different loading condition to the standard tensile test specimen. Failure of the full-size component is predicted realistically, but conservatively.
ISSN:0029-5493
1872-759X
DOI:10.1016/j.nucengdes.2014.12.011