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Multi-temperature neutron irradiation of pure beryllium and beryllides to 2.5-3 dpa in BR2 reactor

delete2026-03-01
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PRE
AI
T
Taehyun Hwang
J
Jae-Hwan Kim *
S
Sugimoto, Yutaka
H
Hiroyasu Tanigawa
D
Dmitry Terentyev
S
Stefano Fontanelli
R
Ramil Gaisin
V
Vladimir Pavlovich Chakin
P
Pavel Vladimirov
DOI:10.1016/j.nme.2026.102088delete
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Abstract

Abstract

En 中文
This paper reports the current status of neutron irradiation experiments designed to evaluate beryllide (Be12V, Be12Ti, Be12Ti + 1 wt%Be12V) and pure beryllium under controlled neutron flux conditions in the BR2 reactor. The target fluence corresponds to 2.5-3 dpa in Fe, achieved over three to four cycles, at four distinct temperatures (400, 600, 750, and 900 degrees C) with using dedicated stainless-steel capsules, designed according to the BAMI (Basket for Material Irradiation) concept, which allows fast deployment and high neutron flux without active temperature control or gas flushing. To determine irradiation condition, thermal and neutronic calculations (FEM and MCNP) were conducted. Gadolinium (Gd) is selected as the thermal neutron shield to reduce thermal flux, with its burn-up and reactivity effects assessed for reactor safety. Eight capsules will accommodate different sample geometries (pebbles, disks, and cylinders), filled with helium to ensure inert conditions.
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N
Nuclear Materials and Energy
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2.7
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3.8K

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H
helmholtz association
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N
national institutes for quantum science & technology
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belgian nuclear research centre (sck cen)
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