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ASTM Selected Technical Papers
Effects of Radiation on Materials: 19th International Symposium
ISBN-10:
0-8031-2852-5
ISBN:
978-0-8031-2852-1
No. of Pages:
1286
Publisher:
ASTM International
Publication date:
2000
eBook Chapter
Temperature-Shift of Void Swelling Observed in Annealed Fe-18Cr-10Ni-Ti Stainless Steel Irradiated in the Reflector Region of BOR-60
By
VS Neustroev
,
VS Neustroev
1
Leading Research Scientist, Head of Laboratory, Senior Research Scientist, Senior Research Scientist
, respectively, Research Institute of Atomic Reactors
, Dimitrovgrad,
.Russia
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VK Shamardin
,
VK Shamardin
1
Leading Research Scientist, Head of Laboratory, Senior Research Scientist, Senior Research Scientist
, respectively, Research Institute of Atomic Reactors
, Dimitrovgrad,
.Russia
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ZE Ostrovsky
,
ZE Ostrovsky
1
Leading Research Scientist, Head of Laboratory, Senior Research Scientist, Senior Research Scientist
, respectively, Research Institute of Atomic Reactors
, Dimitrovgrad,
.Russia
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AM Pecherin
,
AM Pecherin
1
Leading Research Scientist, Head of Laboratory, Senior Research Scientist, Senior Research Scientist
, respectively, Research Institute of Atomic Reactors
, Dimitrovgrad,
.Russia
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FA Garner
FA Garner
2
Senior Staff Scientist
, Pacific Northwest National Laboratory
, Richland, WA
.USA
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Page Count:
9
-
Published:2000
Citation
Neustroev, V, Shamardin, V, Ostrovsky, Z, Pecherin, A, & Garner, F. "Temperature-Shift of Void Swelling Observed in Annealed Fe-18Cr-10Ni-Ti Stainless Steel Irradiated in the Reflector Region of BOR-60." Effects of Radiation on Materials: 19th International Symposium. Ed. Hamilton, M, Kumar, A, Rosinski, S, & Grossbeck, M. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959 : ASTM International, 2000.
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Evidence has been provided to support the “temperature-shift” concept of swelling. The swelling of annealed X18H10T stainless steel in the BOR-60 fast reactor at PWR-relevant dpa rates was found to be higher than predicted by a swelling equation developed from data obtained at dpa rates almost an order of magnitude higher. These data were derived from identical hexagonal wrappers irradiated in both in-core and reflector positions. Based on these results, irradiation in PWRs would yield higher swelling to lower temperatures than would occur in core regions of fast reactors.
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