The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches
We studied the effects of internal free surfaces on the evolution of ion-induced void swelling in pure iron. The study was initially driven by the motivation to introduce a planar free-surface defect sink at depths that would remove the injected interstitial effect from ion irradiation, possibly enh...
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doaj-321c691f5e8b40a48895f303780e5d142020-11-25T02:07:14ZengMDPI AGCrystals2073-43522019-05-019525210.3390/cryst9050252cryst9050252The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface TrenchesTianyao Wang0Hyosim Kim1Frank A. Garner2Kenneth L. Peddicord3Lin Shao4Department of Nuclear Engineering, Texas A&M University, TX 77843, USADepartment of Nuclear Engineering, Texas A&M University, TX 77843, USADepartment of Nuclear Engineering, Texas A&M University, TX 77843, USADepartment of Nuclear Engineering, Texas A&M University, TX 77843, USADepartment of Nuclear Engineering, Texas A&M University, TX 77843, USAWe studied the effects of internal free surfaces on the evolution of ion-induced void swelling in pure iron. The study was initially driven by the motivation to introduce a planar free-surface defect sink at depths that would remove the injected interstitial effect from ion irradiation, possibly enhancing swelling. Using the focused ion beam technique, deep trenches were created on a cross section of pure iron at various depths, so as to create bridges of thickness ranging from 0.88 μm to 1.70 μm. Samples were then irradiated with 3.5 MeV Fe<sup>2+</sup> ions at 475 °C to a fluence corresponding to a peak displacement per atom dose of 150 dpa. The projected range of 3.5 MeV Fe<sup>2+</sup> ions is about 1.2 μm so the chosen bridge thicknesses involved fractions of the ion range, thicknesses comparable to the mean ion range (peak of injected interstitial distribution), and thicknesses beyond the full range. It was found that introduction of such surfaces did not enhance swelling but actually decreased it, primarily because there were now two denuded zones with a combined stronger influence than that of the injected interstitial. The study suggests that such strong surface effects must be considered for ion irradiation studies of thin films or bridge-like structures.https://www.mdpi.com/2073-4352/9/5/252swellingirradiationsurfacedefect sink |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tianyao Wang Hyosim Kim Frank A. Garner Kenneth L. Peddicord Lin Shao |
spellingShingle |
Tianyao Wang Hyosim Kim Frank A. Garner Kenneth L. Peddicord Lin Shao The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches Crystals swelling irradiation surface defect sink |
author_facet |
Tianyao Wang Hyosim Kim Frank A. Garner Kenneth L. Peddicord Lin Shao |
author_sort |
Tianyao Wang |
title |
The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches |
title_short |
The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches |
title_full |
The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches |
title_fullStr |
The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches |
title_full_unstemmed |
The Effect of Internal Free Surfaces on Void Swelling of Irradiated Pure Iron Containing Subsurface Trenches |
title_sort |
effect of internal free surfaces on void swelling of irradiated pure iron containing subsurface trenches |
publisher |
MDPI AG |
series |
Crystals |
issn |
2073-4352 |
publishDate |
2019-05-01 |
description |
We studied the effects of internal free surfaces on the evolution of ion-induced void swelling in pure iron. The study was initially driven by the motivation to introduce a planar free-surface defect sink at depths that would remove the injected interstitial effect from ion irradiation, possibly enhancing swelling. Using the focused ion beam technique, deep trenches were created on a cross section of pure iron at various depths, so as to create bridges of thickness ranging from 0.88 μm to 1.70 μm. Samples were then irradiated with 3.5 MeV Fe<sup>2+</sup> ions at 475 °C to a fluence corresponding to a peak displacement per atom dose of 150 dpa. The projected range of 3.5 MeV Fe<sup>2+</sup> ions is about 1.2 μm so the chosen bridge thicknesses involved fractions of the ion range, thicknesses comparable to the mean ion range (peak of injected interstitial distribution), and thicknesses beyond the full range. It was found that introduction of such surfaces did not enhance swelling but actually decreased it, primarily because there were now two denuded zones with a combined stronger influence than that of the injected interstitial. The study suggests that such strong surface effects must be considered for ion irradiation studies of thin films or bridge-like structures. |
topic |
swelling irradiation surface defect sink |
url |
https://www.mdpi.com/2073-4352/9/5/252 |
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