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首页> 外文期刊>Acta materialia >Resistance to hydride formation in zirconium: An emerging possibility
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Resistance to hydride formation in zirconium: An emerging possibility

机译:Resistance to hydride formation in zirconium: An emerging possibility

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摘要

Fully recrystallized Zircaloy 2 was subjected to hydride formation through gaseous hydrogen charging. Primarily grain boundary hydrides were observed. To describe the relative preference, if any, a hydride preference index (HPI) was proposed: HPI_Q =f_(h,Q)/f_(r,Q), where f_(h,Q) and f_(r,Q) are the respective fractions of g-type boundary present among hydrided boundaries and present in the total sample. HPI_Q values were estimated from 1200 distinctly hydrided boundaries and showed a clear preference for hydride formation and grain boundary nature. Coincident site lattice boundaries were, in general, resistant to hydride formation. Elastically harder grains or orientations also arrested the formation of hydrides. The study indicates a clear possibility: a previously unknown/uncharted possibility of suitably 'tailored' zirconium microstructures, microstructures with reduced potential for 'hydride embrittlement' and delayed hydrogen cracking.

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