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Small punch test size reduction to enable high flux irradiation

•The methodology followed to establish the non-standard Small Punch test set-up is given.•New SPT setup is developed for irradiation campaign using Chakrabarty model and FEA.•The new SPT set-up shows reproducibility and interchangeability with standard set-up. Screening and qualification of new nucl...

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Bibliographic Details
Published in:Journal of nuclear materials 2025-01, Vol.604, p.155491, Article 155491
Main Authors: Li, Ziwei, Terentyev, Dmitry, Holmström, Stefan, Pardoen, Thomas
Format: Article
Language:English
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Summary:•The methodology followed to establish the non-standard Small Punch test set-up is given.•New SPT setup is developed for irradiation campaign using Chakrabarty model and FEA.•The new SPT set-up shows reproducibility and interchangeability with standard set-up. Screening and qualification of new nuclear materials with superior irradiation resistance requires expensive irradiation exposure and post-irradiation examination before consideration into industrial nuclear structural components. The development of miniaturized test methods is needed for enhanced cost/time efficient testing, while enabling comparative and robust material property estimation in a timely and high throughput manner. The Small Punch Test (SPT) is drawing much interest, especially since the publication of an European standard. Motivated by this standard, a new SP test sample geometry is proposed in order to reduce the material volume to be tested, hences increasing the number of samples that can be introduced in an irradiation rig. The modified sample diameter has been reduced from 8 to 5.35 mm. The qualification of this new design is described here together with a detailed description of the SPT setup modification as compared to the reference setup of the EN standard. Finite element analyses and a series of experiments have been conducted using both standard and reduced size SP samples to demonstrate that the modified test gives estimates of the basic mechanical properties with the same magnitude of error and validates the modified sample geometry for usage in irradiated material testing.
ISSN:0022-3115
DOI:10.1016/j.jnucmat.2024.155491